FN Thomson Reuters Web of Science™
VR 1.0
PT J
AU Sannigrahi, P
Ragauskas, AJ
Tuskan, GA
AF Sannigrahi, Poulomi
Ragauskas, Arthur J.
Tuskan, Gerald A.
TI Poplar as a feedstock for biofuels: A review of compositional
characteristics
SO BIOFUELS BIOPRODUCTS & BIOREFINING-BIOFPR
LA English
DT Review
DE poplar; biofuels; lignin; cellulose; hemicellulose
ID CINNAMYL ALCOHOL-DEHYDROGENASE; O-METHYLTRANSFERASE ACTIVITY;
NUCLEAR-MAGNETIC-RESONANCE; ASPEN POPULUS-TREMULOIDES; HYBRID POPLAR;
NMR-SPECTROSCOPY; LEADING TECHNOLOGIES; ELECTRON-DIFFRACTION; CELLULOSIC
BIOFUELS; TRANSGENIC POPLARS
AB The growing demand for transportation fuels, along with concerns about the harmful effects of greenhouse gas emissions from the burning of fossil fuels, has assured a viable future for the development of alternative fuels from renewable resources, such as lignocellulosic biomass. The efficient utilization of these biomass resources is critically dependant on the in-depth knowledge of their chemical constituents. This, together with the desired fuel properties, helps tailor the chemical and/or enzymatic processes involved in converting biomass to biofuels. Hybrid poplars are among the fastest growing temperate trees in the world and a very promising feedstock for biofuels and other value-added products. Sequencing of the poplar genome has paved the way for tailoring new cultivars and clones optimized for biofuels production. Our objective is to review published research on the composition of the key chemical constituents of hybrid poplar species used for biofuels. Biomass yields, elemental composition, carbohydrate and lignin content and composition are some of the characteristics reviewed, with emphasis on lignin structure. Genetic modifications used to alter lignin content and composition, with the aim of improving biofuels yields, are also examined. (C) 2010 Society of Chemical Industry and John Wiley & Sons, Ltd
C1 [Ragauskas, Arthur J.] Georgia Inst Technol, Inst Paper Sci & Technol, BioEnergy Sci Ctr, Sch Chem & Biochem, Atlanta, GA 30332 USA.
[Tuskan, Gerald A.] Oak Ridge Natl Lab, BioEnergy Sci Ctr, Oak Ridge, TN USA.
RP Ragauskas, AJ (reprint author), Georgia Inst Technol, Inst Paper Sci & Technol, BioEnergy Sci Ctr, Sch Chem & Biochem, Atlanta, GA 30332 USA.
EM Arthur.Ragauskas@chemistry.gatech.edu
RI Tuskan, Gerald/A-6225-2011;
OI Tuskan, Gerald/0000-0003-0106-1289; Ragauskas,
Arthur/0000-0002-3536-554X
FU BioEnergy Science Center; Office of Biological and Environmental
Research in the DOE Office of Science
FX This work was supported and performed as part of the BioEnergy Science
Center. The BioEnergy Science Center is a US Department of Energy
Bioenergy Research Center supported by the Office of Biological and
Environmental Research in the DOE Office of Science.
NR 82
TC 189
Z9 189
U1 7
U2 125
PU JOHN WILEY & SONS LTD
PI CHICHESTER
PA THE ATRIUM, SOUTHERN GATE, CHICHESTER PO19 8SQ, W SUSSEX, ENGLAND
SN 1932-104X
J9 BIOFUEL BIOPROD BIOR
JI Biofuels Bioprod. Biorefining
PD MAR-APR
PY 2010
VL 4
IS 2
BP 209
EP 226
DI 10.1002/bbb.206
PG 18
WC Biotechnology & Applied Microbiology; Energy & Fuels
SC Biotechnology & Applied Microbiology; Energy & Fuels
GA 579TQ
UT WOS:000276398500016
ER
PT J
AU Mani, S
Sokhansanj, S
Tagore, S
Turhollow, AF
AF Mani, S.
Sokhansanj, S.
Tagore, S.
Turhollow, A. F.
TI Techno-economic analysis of using corn stover to supply heat and power
to a corn ethanol plant - Part 2: Cost of heat and power generation
systems
SO BIOMASS & BIOENERGY
LA English
DT Article
DE CHP system; Payback period; Corn stover; Coal; Natural gas;
Environmental impact assessment
ID COMBUSTION; POTENTIALS; EMISSIONS
AB This paper presents a techno-economic analysis of corn stover fired process heating (PH) and the combined heat and power (CHP) generation systems for a typical corn ethanol plant (ethanol production capacity of 170 dam(3)). Discounted cash flow method was used to estimate both the capital and operating costs of each system and compared with the existing natural gas fired heating system. Environmental impact assessment of using corn stover, coal and natural gas in the heat and/or power generation systems was also evaluated. Coal fired process heating (PH) system had the lowest annual operating cost due to the low fuel cost, but had the highest environmental and human toxicity impacts. The proposed combined heat and power (CHP) generation system required about 137 Gg of corn stover to generate 9.5 MW of electricity and 52.3 MW of process heat with an overall CHP efficiency of 83.3%. Stover fired CHP system would generate an annual savings of 3.6 M$ with an payback period of 6 y. Economics of the coal fired CHP system was very attractive compared to the stover fired CHP system due to lower fuel cost. But the greenhouse gas emissions per Mg of fuel for the coal fired CHP system was 32 times higher than that of stover fired CHP system. Corn stover fired heat and power generation system for a corn ethanol plant can improve the net energy balance and add environmental benefits to the corn to ethanol biorefinery. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Mani, S.] Univ Georgia, Driftmier Engn Ctr, Athens, GA 30602 USA.
[Sokhansanj, S.; Turhollow, A. F.] Oak Ridge Natl Lab, Div Environm Sci, Oak Ridge, TN 37831 USA.
[Tagore, S.] US DOE, Off Biomass Program, Washington, DC 20585 USA.
RP Mani, S (reprint author), Univ Georgia, Driftmier Engn Ctr, Athens, GA 30602 USA.
EM smani@engr.uga.edu
RI Mani, Sudhagar/A-4315-2010
FU Oak Ridge National Laboratory (ORNL); U.S. Department of Energy (DOE)
FX Authors acknowledge Oak Ridge National Laboratory (ORNL) and Office of
Biomass Program, U.S. Department of Energy (DOE), for providing funding
to conduct this research.
NR 34
TC 17
Z9 17
U1 0
U2 5
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0961-9534
J9 BIOMASS BIOENERG
JI Biomass Bioenerg.
PD MAR
PY 2010
VL 34
IS 3
BP 356
EP 364
DI 10.1016/j.biombioe.2009.11.007
PG 9
WC Agricultural Engineering; Biotechnology & Applied Microbiology; Energy &
Fuels
SC Agriculture; Biotechnology & Applied Microbiology; Energy & Fuels
GA 576UE
UT WOS:000276173800012
ER
PT J
AU Zhang, YHP
AF Zhang, Y. -H. Percival
TI Production of Biocommodities and Bioelectricity by Cell-Free Synthetic
Enzymatic Pathway Biotransformations: Challenges and Opportunities
SO BIOTECHNOLOGY AND BIOENGINEERING
LA English
DT Article
DE biocatalyst; bioelectricity; biocommodity; cell-free synthetic biology;
synthetic pathway biotransformation (SyPaB); weight-based total
turn-over number (TTNw)
ID 2,5-DIKETO-D-GLUCONIC ACID REDUCTASE; RECOMBINANT PROTEIN EXPRESSION;
NICOTINAMIDE ADENINE-DINUCLEOTIDE; ARTIFICIAL COENZYME CL4;
COFACTOR-BINDING POCKET; MICROBIAL FUEL-CELLS; ESCHERICHIA-COLI;
CLOSTRIDIUM-ACETOBUTYLICUM; BIOFUEL CELLS; HYPERTHERMOPHILIC ENZYMES
AB Cell-free synthetic (enzymatic) Pathway biotransformation (SyPaB) is the assembly of a number of purified enzymes (usually more than 10) and coenzymes for the production of desired products through complicated biochemical reaction networks that a single enzyme cannot do. Cell-free SyPaB, as compared to microbial fermentation, has several distinctive advantages, such as high product yield, great engineering flexibility, high product titer, and fast reaction rate. Biocommodities (e.g., ethanol, hydrogen, and butanol) are low-value products where costs of feedstock carbohydrates often account for similar to 30-70% of the prices of the products. Therefore, yield of biocommodities is the most important cost factor, and the lowest yields of profitable biofuels are estimated to be ca. 70% of the theoretical yields of sugar-to-biofuels based on sugar prices of ca. US$ 0.18 per kg. The opinion that SyPaB is too costly for producing low-value biocommodities are mainly attributed to the lack of stable standardized building blocks (e.g., enzymes or their complexes), costly labile coenzymes, and replenishment of enzymes and coenzymes. In this perspective, I propose design principles for SyPaB, present several SyPaB examples for generating hydrogen, alcohols, and electricity, and analyze the advantages and limitations of SyPaB. The economical analyses clearly suggest that developments in stable enzymes or their complexes as standardized parts, efficient coenzyme recycling, and, use of low-cost and more stable biomimetic coenzyme analogs, would result in much lower production costs than do microbial fermentations because the stabilized enzymes have more than 3 orders of magnitude higher weight-based total turn-over numbers than microbial biocatalysts, although extra costs for enzyme purification and stabilization are spent. Biotechnol. Bioeng. 2010;105: 663-677. (C) 2009 Wiley Periodicals, Inc.
C1 [Zhang, Y. -H. Percival] Virginia Polytech Inst & State Univ, Dept Biol Syst Engn, Blacksburg, VA 24061 USA.
[Zhang, Y. -H. Percival] Virginia Polytech Inst & State Univ, ICTAS, Blacksburg, VA 24061 USA.
[Zhang, Y. -H. Percival] DOE Bioenergy Sci Ctr, Oak Ridge, TN USA.
RP Zhang, YHP (reprint author), Virginia Polytech Inst & State Univ, Dept Biol Syst Engn, 210-A Seitz Hall, Blacksburg, VA 24061 USA.
EM biofuels@vt.edu
FU Air Force Office of Scientific Research and Muri; DOE Bioenergy Science
Center (BESC); USDA Biodesign and Bioprocess Center; ICTAS; DOD
FX Contract grant sponsor: Air Force Office of Scientific Research and Muri
Contract grant sponsor: DOE Bioenergy Science Center (BESC) Contract
grant sponsor: USDA Biodesign and Bioprocess Center Contract grant
sponsor: ICTAS Contract grant sponsor: DOD
NR 186
TC 77
Z9 82
U1 4
U2 48
PU JOHN WILEY & SONS INC
PI HOBOKEN
PA 111 RIVER ST, HOBOKEN, NJ 07030 USA
SN 0006-3592
J9 BIOTECHNOL BIOENG
JI Biotechnol. Bioeng.
PD MAR 1
PY 2010
VL 105
IS 4
BP 663
EP 677
DI 10.1002/bit.22630
PG 15
WC Biotechnology & Applied Microbiology
SC Biotechnology & Applied Microbiology
GA 558KX
UT WOS:000274742200001
PM 19998281
ER
PT J
AU Shehabi, A
Ganguly, S
Gundel, LA
Horvath, A
Kirchstetter, TW
Lunden, MM
Tschudi, W
Gadgil, AJ
Nazaroff, WW
AF Shehabi, Arman
Ganguly, Srirupa
Gundel, Lara A.
Horvath, Arpad
Kirchstetter, Thomas W.
Lunden, Melissa M.
Tschudi, William
Gadgil, Ashok J.
Nazaroff, William W.
TI Can combining economizers with improved filtration save energy and
protect equipment in data centers?
SO BUILDING AND ENVIRONMENT
LA English
DT Article
DE Indoor air quality; Particulate matter; Hygroscopic salts; Black carbon;
Equipment reliability; Energy efficiency
ID BLACK CARBON; AEROSOL; INDOOR; PERFORMANCE; NITRATE; ORIGIN
AB Economizer use in data centers is an energy efficiency strategy that could significantly limit electricity demand in this rapidly growing economic sector. Widespread economizer implementation, however, has been hindered by potential reliability concerns associated with exposing information technology equipment to particulate matter of outdoor origin. This study explores the feasibility of using economizers in data centers to save energy while controlling particle concentrations with high-quality air filtration. Physical and chemical properties of indoor and outdoor particles were analyzed at an operating northern California data center equipped with an economizer under varying levels of air filtration efficiency. Results show that when improved filtration is used in combination with an economizer, the indoor/outdoor concentration ratios for most measured particle types were similar to levels when using conventional filtration without economizers. An energy analysis of the data center reveals that, even during the summer months, chiller savings from economizer use greatly outweigh any increase in fan power associated with improved filtration. These findings indicate that economizer use combined with improved filtration could reduce data center energy demand while providing a level of protection from particles of outdoor origin similar to that observed with conventional design. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Shehabi, Arman; Horvath, Arpad; Gadgil, Ashok J.; Nazaroff, William W.] Univ Calif Berkeley, Dept Civil & Environm Engn, Berkeley, CA 94720 USA.
[Shehabi, Arman; Ganguly, Srirupa; Gundel, Lara A.; Kirchstetter, Thomas W.; Lunden, Melissa M.; Tschudi, William; Gadgil, Ashok J.; Nazaroff, William W.] Univ Calif Berkeley, Lawrence Berkeley Lab, Environm Energy Technol Div, Berkeley, CA 94720 USA.
RP Nazaroff, WW (reprint author), Univ Calif Berkeley, Dept Civil & Environm Engn, Berkeley, CA 94720 USA.
EM nazaroff@ce.berkeley.edu
RI Nazaroff, William/C-4106-2008;
OI Nazaroff, William/0000-0001-5645-3357; Gadgil, Ashok/0000-0002-0357-9455
FU Pacific Gas Electric; University of California Energy Institute; U.S.
Department of Energy [DE-AC02-05CH11231]
FX We thank Benjamin Chu, Dennis DiBartolomeo, Ray Dod, Michael
Lough-Stevens, and Douglas Sullivan for their contributions to
developing the experimental apparatus and performing on-site monitoring,
and Dale Christensen at IBM for conducting the ion chromatography
analysis. We thank David Shroyer, Cameron Smith, Rudy Tajalle, Richard
Turner, and the rest of the data center staff for their generous
cooperation. This project was funded by Pacific Gas & Electric and by
the University of California Energy Institute, California Studies Grant
Program. Most of the work was performed at LBNL under the U.S.
Department of Energy Contract No. DE-AC02-05CH11231.
NR 32
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U1 0
U2 5
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0360-1323
J9 BUILD ENVIRON
JI Build. Environ.
PD MAR
PY 2010
VL 45
IS 3
BP 718
EP 726
DI 10.1016/j.buildenv.2009.08.009
PG 9
WC Construction & Building Technology; Engineering, Environmental;
Engineering, Civil
SC Construction & Building Technology; Engineering
GA 526QN
UT WOS:000272307700023
ER
PT J
AU Tung, YC
Hu, SC
Xu, TF
Wang, RH
AF Tung, Yun-Chun
Hu, Shih-Cheng
Xu, Tengfang
Wang, Ren-Huei
TI Influence of ventilation arrangements on particle removal in industrial
cleanrooms with various tool coverage
SO BUILDING SIMULATION
LA English
DT Article
DE cleanroom; particle; CFD; Lagrangian; industrial building
ID ROOM; TRANSPORT; PERFORMANCE; SIMULATION; DIFFUSION; SYSTEM
AB This paper aims to investigate the influence of comparative ventilation arrangements (wall-return, locally balanced ceiling-return, and four-way ceiling-return) on the airflow distribution and particle fates within cleanrooms of ISO cleanliness class 7 with various tool coverage ratios (0%, 38%, and 60%). Computational fluid dynamics (CFD) was employed to analyze and compare the influence of the three ventilation arrangements on concentrations for particles of various sizes (diameters ranging from 0.01 to 100 mu m) in the cleanrooms. The techniques of Eulerian and Lagrangian in CFD were employed for solving the continuous fluid and tracking the particle trajectory, respectively. The outcomes from this study suggested that particle removal rates for the given cleanrooms were significantly affected by the tool coverage ratios, the design of ventilation, and the particle sizes of concerns. In the cases of heavy tool coverage, the locally balanced ceiling-return ventilation arrangements can minimize the need for the relocation of the production lines and layouts of the production tools in cleanrooms, and may provide viable solutions to effective contamination without compromising contamination effectiveness or efficiency.
C1 [Tung, Yun-Chun; Hu, Shih-Cheng; Wang, Ren-Huei] Natl Taipei Univ Technol, Dept Energy & Refrigerating Air Conditioning Engn, Taipei 10608, Taiwan.
[Xu, Tengfang] Univ Calif Berkeley, Lawrence Berkeley Lab, Environm Energy Technol Div, Int Energy Studies Grp, Berkeley, CA 94720 USA.
RP Hu, SC (reprint author), Natl Taipei Univ Technol, Dept Energy & Refrigerating Air Conditioning Engn, 1,Sec 3,Chung Hsiao E Rd, Taipei 10608, Taiwan.
EM schu.ntut@gmail.com
NR 24
TC 3
Z9 3
U1 2
U2 8
PU TSINGHUA UNIV PRESS
PI BEIJING
PA TSINGHUA UNIV, RM A703, XUEYAN BLDG, BEIJING, 10084, PEOPLES R CHINA
SN 1996-3599
EI 1996-8744
J9 BUILD SIMUL-CHINA
JI Build. Simul.
PD MAR
PY 2010
VL 3
IS 1
BP 3
EP 13
DI 10.1007/s12273-010-0301-z
PG 11
WC Thermodynamics; Construction & Building Technology
SC Thermodynamics; Construction & Building Technology
GA 746ZQ
UT WOS:000289290300002
ER
PT J
AU Merkle, AP
Erdemir, A
Eryilmaz, OL
Johnson, JA
Marks, LD
AF Merkle, A. P.
Erdemir, A.
Eryilmaz, O. L.
Johnson, J. A.
Marks, L. D.
TI In situ TEM studies of tribo-induced bonding modifications in
near-frictionless carbon films
SO CARBON
LA English
DT Article
ID DLC COATINGS; ATMOSPHERES; BEHAVIOR; DRY
AB Direct in situ TEM evidence is presented for a mechanically-induced increase in sp(2) bond content in the tribolayers formed on near-frictionless carbon (NFC) films. An in situ TEM nanomanipulation holder is used to perform sliding experiments between a nano-sized tungsten probe and electron transparent NFC samples. Electron energy loss spectra (EELS) were acquired between sliding events to show an incremental increase in the 1s-pi peak, suggesting that a graphitization-like process occurs which can lead to a change in the tribological performance of a variety of hard carbon films. Presently, this behavior is only observed for one of the two varieties of NFC, while supporting TEM imaging evidence is in qualitative agreement with macroscopic friction and wear behavior. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Merkle, A. P.; Marks, L. D.] Northwestern Univ, Dept Mat Sci & Engn, Evanston, IL 60208 USA.
[Erdemir, A.; Eryilmaz, O. L.] Argonne Natl Lab, Div Energy Syst, Argonne, IL 60439 USA.
[Johnson, J. A.] Univ Tennessee, Ctr Laser Applicat, Inst Space, Tullahoma, TN 37388 USA.
[Johnson, J. A.] Argonne Natl Lab, Nucl Engn Div, Argonne, IL 60439 USA.
RP Merkle, AP (reprint author), Carl Zeiss SMT Inc, Peabody, MA 01960 USA.
EM arnomerkle@gmail.com
RI Marks, Laurence/B-7527-2009; Johnson, Jacqueline/P-4844-2014
OI Johnson, Jacqueline/0000-0003-0830-9275
FU National Science Foundation [DGE-0114429]; Air Force office of
Scientific Research [49620-03-1-0092]; Office of Energy Efficiency and
Renewable Energy, Freedom Car and Vehicle Technologies Program
[DE-AC02-06CH11357]; DOE Office of Science [W-31-109-Eng-38]
FX This work was supported by the National Science Foundation on Grant No.
DGE-0114429, the Air Force office of Scientific Research on Grant No.
49620-03-1-0092, Office of Energy Efficiency and Renewable Energy,
Freedom Car and Vehicle Technologies Program, under Contract No.
DE-AC02-06CH11357, and was carried out in the Electron Microscopy Center
at Argonne National Laboratory, which is supported by the DOE Office of
Science under Contract No. W-31-109-Eng-38.
NR 18
TC 27
Z9 27
U1 3
U2 35
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0008-6223
J9 CARBON
JI Carbon
PD MAR
PY 2010
VL 48
IS 3
BP 587
EP 591
DI 10.1016/j.carbon.2009.08.036
PG 5
WC Chemistry, Physical; Materials Science, Multidisciplinary
SC Chemistry; Materials Science
GA 548XX
UT WOS:000274004700002
ER
PT J
AU Wang, JJA
Liu, KC
Naus, D
AF Wang, John Jy-An
Liu, Ken C.
Naus, Dan
TI A new test method for determining the fracture toughness of concrete
materials
SO CEMENT AND CONCRETE RESEARCH
LA English
DT Article
DE Fracture toughness; Mortar; Concrete
AB The Spiral Notch Torsion Test (SNTT) determines the intrinsic fracture toughness (K(IC)) of structural materials by applying pure torsion to cylindrical specimens having a notch line that spirals around the specimen at a 45 degrees pitch. K(IC) values are obtained with the aid of a three-dimensional finite-element computer code, TOR3D-KIC. The SNTT method is suitable for testing a wide variety of materials used extensively in pressure vessel and piping structural components and weldments, as well as ceramic and graphite materials. One important characteristic of SNTT is that neither a fatigue precrack nor a deep notch is required for evaluation of brittle materials, significantly reducing the sample size requirement. Results are reported for a Portland cement-based mortar demonstrating applicability of the SNTT method to cementitious materials. The estimated K(IC) of the tested mortar samples with compressive strength of 34.45 MPa was found to be 0.360 +/- 0.017 MPa root m. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Wang, John Jy-An; Liu, Ken C.; Naus, Dan] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
RP Wang, JJA (reprint author), Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
EM wangja@ornl.gov
RI Chen, Wei/A-5694-2010;
OI Wang, Jy-An/0000-0003-2402-3832
FU ORNL LDRD [DE-AC05-00OR22725]
FX The research was sponsored by the ORNL LDRD Seed Money Program under
contract DE-AC05-00OR22725 with UT-Battelle, LLC.
NR 13
TC 4
Z9 4
U1 0
U2 8
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0008-8846
J9 CEMENT CONCRETE RES
JI Cem. Concr. Res.
PD MAR
PY 2010
VL 40
IS 3
BP 497
EP 499
DI 10.1016/j.cemconres.2009.09.019
PG 3
WC Construction & Building Technology; Materials Science, Multidisciplinary
SC Construction & Building Technology; Materials Science
GA 559YV
UT WOS:000274869600019
ER
PT J
AU Veith, GM
Lupini, AR
Pennycook, SJ
Dudney, NJ
AF Veith, Gabriel M.
Lupini, Andrew R.
Pennycook, Stephen J.
Dudney, Nancy J.
TI Influence of Support Hydroxides on the Catalytic Activity of Oxidized
Gold Clusters
SO CHEMCATCHEM
LA English
DT Article
DE gold; heterogeneous catalysis; hydroxylation; oxidation; supported
catalysts
ID TEMPERATURE CO OXIDATION; RAY-ABSORPTION SPECTROSCOPY;
THERMAL-STABILITY; NANOPARTICLES; WATER; OXIDE; TIO2; SILICA; AU;
PRECURSOR
AB Gold oxide nanoparticles were prepared on the native surface and a hydroxylated surface of a nonporous TiO2 support (Degussa P25). Scanning transmission electron microscopy shows the formation of similarly sized clusters on both support materials (1.86 and 1.61 nm clusters on the native oxide and the hydroxylated oxide respectively). X-ray absorption near-edge spectroscopy and X-ray photoelectron spectroscopy clearly indicate the formation of Au3+-rich oxide nanoparticles. Despite the similar cluster sizes and oxidation states, the gold oxide clusters grown on the hydroxylated surface were at least 180 times more catalytically active for the oxidation of carbon monoxide than those grown on the native oxide surface. Thus hydroxides, which are incidentally introduced during the solution-phase synthesis of gold catalysts, appear to play a dominant, but previously largely unrecognized, role in the catalytic properties of both oxidized and metallic gold particles.
C1 [Veith, Gabriel M.; Lupini, Andrew R.; Pennycook, Stephen J.; Dudney, Nancy J.] Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA.
RP Veith, GM (reprint author), Oak Ridge Natl Lab, Div Mat Sci & Technol, 1 Bethel Valley Rd, Oak Ridge, TN 37831 USA.
EM veithgm@ornl.gov
RI Dudney, Nancy/I-6361-2016
OI Dudney, Nancy/0000-0001-7729-6178
FU National Synchrotron Light Source; Brookhaven National Laboratory; U.S.
Department of Energy; Office of Science; Office of Basic Energy Sciences
[DE-AC02-98CH10886]
FX The authors thank Degusso for donating the P25 and Nebojsa (Ned)
Marinkovic for helping with the XANES measurements. Microscopy studies
at Oak Ridge National Laboratory's Center for Nanophose Materials
Sciences, were sponsored by the Scientific User Facilities Division,
Office of Basic Energy Sciences, U.S. Department of Energy. Use of the
National Synchrotron Light Source, Brookhaven National Laboratory, was
supported by the U.S. Department of Energy, Office of Science, Office of
Basic Energy Sciences, under Contract No. DE-AC02-98CH10886. This
research was sponsored by the Division of Materials Sciences and
Engineering, U.S. Deportment of Energy under contract with UT-Bottelle,
LLC.
NR 53
TC 22
Z9 22
U1 2
U2 24
PU WILEY-V C H VERLAG GMBH
PI WEINHEIM
PA POSTFACH 101161, 69451 WEINHEIM, GERMANY
SN 1867-3880
EI 1867-3899
J9 CHEMCATCHEM
JI ChemCatChem
PD MAR
PY 2010
VL 2
IS 3
BP 281
EP 286
DI 10.1002/cctc.200900243
PG 6
WC Chemistry, Physical
SC Chemistry
GA 573UF
UT WOS:000275939700008
ER
PT J
AU Simmons, BA
Singh, S
Holmes, BM
Blanch, HW
AF Simmons, Blake A.
Singh, Seema
Holmes, Bradley M.
Blanch, Harvey W.
TI Ionic Liquid Pretreatment
SO CHEMICAL ENGINEERING PROGRESS
LA English
DT Article
ID ENZYMATIC-HYDROLYSIS; LIGNOCELLULOSIC MATERIALS; LIGNIN; WOOD;
DISSOLUTION; EXPLOSION; SOFTWOOD; ETHANOL; POLAR; ACID
C1 [Simmons, Blake A.] Joint BioEnergy Inst, Deconstruct Div, Livermore, CA 94551 USA.
RP Simmons, BA (reprint author), Joint BioEnergy Inst, Deconstruct Div, 7011 East Ave, Livermore, CA 94551 USA.
EM basimmo@sandia.gov
NR 24
TC 20
Z9 20
U1 0
U2 2
PU AMER INST CHEMICAL ENGINEERS
PI NEW YORK
PA 3 PARK AVE, NEW YORK, NY 10016-5901 USA
SN 0360-7275
J9 CHEM ENG PROG
JI Chem. Eng. Prog.
PD MAR
PY 2010
VL 106
IS 3
SU S
BP 50
EP 55
PG 6
WC Engineering, Chemical
SC Engineering
GA 572CL
UT WOS:000275804300016
ER
PT J
AU Oraka, E
King, ME
Callahan, DB
AF Oraka, Emeka
King, Michael E.
Callahan, David B.
TI Asthma and Serious Psychological Distress Prevalence and Risk Factors
Among US Adults, 2001-2007
SO CHEST
LA English
DT Article
ID QUALITY-OF-LIFE; FACTOR SURVEILLANCE SYSTEM; HEALTH INTERVIEW SURVEY;
UNITED-STATES; PSYCHIATRIC-DISORDERS; ANXIETY DISORDERS; LIMITATION
INDEX; CHRONIC DISEASES; MENTAL-ILLNESS; PANIC-ATTACKS
AB Background: For millions of adults, effective control of asthma requires a regimen of care that may be compromised by psychological factors, such as anxiety and depression. This study estimated the prevalence and risk factors for serious psychological distress (SPD) and explored their relationship to health-related quality of life (HRQOL) among adults with asthma in the United States.
Methods: We analyzed data from 186,738 adult respondents from the 2001-2007 US National Health Interview Survey. We calculated weighted average prevalence estimates of current asthma and SPD by demographic characteristics and health-related factors. We used logistic regression analysis to calculate odds ratios for factors that may have predicted asthma, SPD, and HRQOL.
Results: From 2001 to 2007, the average annual prevalence of cut-rent asthma was 7.0% and the average prevalence of SPD was 3.0%. Among adults with asthma, the prevalence of SPD was 7.5% (95% CI, 7.0%-8.1%). A negative association between HRQOL and SPD was found for all adults, independent of asthma status. A similar pattern of risk factors predicted SPD and the co-occurrence of SPD and asthma, although adults with asthma who reported lower socioeconomic status, a history of smoking or alcohol use, and more comorbid chronic conditions had significantly higher odds of SPD.
Conclusion: This research suggests the importance of mental health screening for persons with asthma and the need for clinical and community-based interventions to target modifiable lifestyle factors that contribute to psychological distress and make asthma worse. CHEST 2010; 137(3):609-616
C1 [Oraka, Emeka; King, Michael E.; Callahan, David B.] Ctr Dis Control & Prevent, Natl Ctr Environm Hlth, Air Pollut & Resp Hlth Branch, Atlanta, GA USA.
[Oraka, Emeka] Oak Ridge Inst Sci & Educ, Oak Ridge, TN USA.
RP Oraka, E (reprint author), Bldg 106,4770 Buford Hwy, Chamblee, GA 30341 USA.
EM eoraka@cdc.gov
FU Centers for Disease Control and Prevention; National Center for
Environmental Health; Air Pollution and Respiratory Health Branch
FX This work was performed and funded by the Centers for Disease Control
and Prevention, National Center for Environmental Health, Air Pollution
and Respiratory Health Branch.
NR 56
TC 37
Z9 38
U1 1
U2 3
PU AMER COLL CHEST PHYSICIANS
PI NORTHBROOK
PA 3300 DUNDEE ROAD, NORTHBROOK, IL 60062-2348 USA
SN 0012-3692
J9 CHEST
JI Chest
PD MAR
PY 2010
VL 137
IS 3
BP 609
EP 616
DI 10.1378/chest.09-1777
PG 8
WC Critical Care Medicine; Respiratory System
SC General & Internal Medicine; Respiratory System
GA 567WC
UT WOS:000275477100017
PM 19837824
ER
PT J
AU Shahzad, F
Siddiqi, SA
Im, MY
Avallone, A
Fischer, P
Hussain, Z
Siddiqi, I
Hellman, F
AF Shahzad, F.
Siddiqi, S. A.
Im, M. Y.
Avallone, A.
Fischer, P.
Hussain, Z.
Siddiqi, I.
Hellman, F.
TI Layer resolved magnetization reversal study in SmCo5/Fe nanocomposite
bilayers
SO CHINESE PHYSICS B
LA English
DT Article
DE multilayers; x-ray microscopes; magnetic properties of nanostructures
ID X-RAY MICROSCOPY; EXCHANGE-SPRING MAGNETS; COMPOSITE; DOMAINS
AB A hard/soft SmCo5/Fe nanocomposite magnetic bilayer system is fabricated on x-ray transparent 100-200 nm thin Si3N4 films by magnetron sputtering. The microscopic magnetic domain pattern and its behaviours during magnetization reversal in the hard and the soft magnetic phases are studied separately by element specific magnetic soft x-ray microscopy at a spatial resolution of better than 25 nm. We observe that the domain patterns for the soft and hard phases show coherent behaviours in varying magnetic fields. We derive local M(H) curves from the images of Fe and SmCo5 separately and find the switches for hard and soft phases to be the same.
C1 [Shahzad, F.; Siddiqi, S. A.] Univ Punjab, Ctr Solid State Phys, Lahore 54590, Pakistan.
[Im, M. Y.; Avallone, A.; Fischer, P.] Univ Calif Berkeley, Lawrence Berkeley Lab, Ctr Xray Opt, Berkeley, CA 94720 USA.
[Hussain, Z.] Univ Calif Berkeley, Lawrence Berkeley Lab, Adv Light Source, Berkeley, CA 94720 USA.
[Siddiqi, I.; Hellman, F.] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
RP Shahzad, F (reprint author), Univ Punjab, Ctr Solid State Phys, Lahore 54590, Pakistan.
EM furrukh11@yahoo.com
RI MSD, Nanomag/F-6438-2012; Fischer, Peter/A-3020-2010; Siddiqi,
Irfan/E-5548-2015;
OI Fischer, Peter/0000-0002-9824-9343; Siddiqi, Saadat
Anwar/0000-0002-9488-2627
FU Higher Education Commission of Pakistan; BES/DOE
FX Project supported by the Higher Education Commission of Pakistan under
International Research Support Initiative Program and partially
supported by BES/DOE funding.
NR 19
TC 6
Z9 8
U1 0
U2 14
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1674-1056
J9 CHINESE PHYS B
JI Chin. Phys. B
PD MAR
PY 2010
VL 19
IS 3
AR 037504
DI 10.1088/1674-1056/19/3/037504
PG 5
WC Physics, Multidisciplinary
SC Physics
GA 570GQ
UT WOS:000275660700093
ER
PT J
AU Jiao, Y
Guan, XL
Satogata, T
Fang, SX
Wei, J
Tang, JY
Chen, Y
Qiu, J
Shu, H
AF Jiao Yi
Guan Xia-Ling
Satogata Todd
Fang Shou-Xian
Wei Jie
Tang Jing-Yu
Chen Yuan
Qiu Jing
Shu Hang
TI Physical design of scanning gantry for proton therapy facility
SO CHINESE PHYSICS C
LA English
DT Article
DE proton therapy; gantry; optics; scanning system
ID ION-THERAPY; BEAMS
AB A proton therapy facility based on a linac injector and a slow cycling synchrotron is proposed. To achieve effective treatment of cancer, a scanning gantry is required. The flexible transmission of beam and high beam position accuracy are the most basic requirements For a gantry. The designed gantry optics and scanning system are presented. Great efforts are put into studying the sensitivity of the beam position in the isocenter to the element misalignments. It shows that quadrupole shift makes the largest contribution and special attention should be paid to it.
C1 [Jiao Yi; Guan Xia-Ling; Fang Shou-Xian; Tang Jing-Yu; Chen Yuan; Qiu Jing; Shu Hang] Chinese Acad Sci, Inst High Energy Phys, Beijing 100049, Peoples R China.
[Satogata Todd; Wei Jie] Brookhaven Natl Lab, Upton, NY 11973 USA.
[Wei Jie] Tsinghua Univ, Beijing 100084, Peoples R China.
RP Jiao, Y (reprint author), Chinese Acad Sci, Inst High Energy Phys, Beijing 100049, Peoples R China.
EM jiaoyi@ihep.ac.cn
RI Jiao, Yi/G-3008-2015
OI Jiao, Yi/0000-0001-6318-2583
FU National Natural Science Foundation of China [K711350503]
FX Supported by National Natural Science Foundation of China (K711350503)
NR 10
TC 1
Z9 1
U1 1
U2 6
PU CHINESE PHYSICAL SOC
PI BEIJING
PA P O BOX 603, BEIJING 100080, PEOPLES R CHINA
SN 1674-1137
J9 CHINESE PHYS C
JI Chin. Phys. C
PD MAR
PY 2010
VL 34
IS 3
BP 394
EP 397
PG 4
WC Physics, Nuclear; Physics, Particles & Fields
SC Physics
GA 568AY
UT WOS:000275495100017
ER
PT J
AU Swager, MR
Gray, LJ
Fata, SN
AF Swager, M. R.
Gray, L. J.
Fata, S. Nintcheu
TI Galerkin Boundary Integral Analysis for the 3D Helmholtz Equation
SO CMES-COMPUTER MODELING IN ENGINEERING & SCIENCES
LA English
DT Article
DE Helmholtz equation; boundary integral method; Galerkin approximation;
hypersingular integrals
ID ACOUSTIC RADIATION; CRACK PROBLEMS; ELEMENT METHOD; SCATTERING;
FORMULATIONS; ELASTICITY
AB A linear element Galerkin boundary integral analysis for the three-dimensional Helmholtz equation is presented. The emphasis is on solving acoustic scattering by an open (crack) surface, and to this end both a dual equation formulation and a symmetric hypersingular formulation have been developed. All singular integrals are defined and evaluated via a boundary limit process, facilitating the evaluation of the (finite) hypersingular Galerkin integral. This limit process is also the basis for the algorithm for post-processing of the surface gradient. The analytic integrations required by the limit process are carried out by employing a Taylor series expansion for the exponential factor in the Helmholtz fundamental solutions. For the open surface, the implementations are validated by comparing the numerical results obtained by using the two methods.
C1 [Swager, M. R.] Emporia State Univ, Dept Math, Emporia, KS 66801 USA.
[Gray, L. J.; Fata, S. Nintcheu] Oak Ridge Natl Lab, Comp Sci & Math Div, Oak Ridge, TN 37831 USA.
RP Swager, MR (reprint author), Emporia State Univ, Dept Math, Emporia, KS 66801 USA.
FU Office of Advanced Scientific Computing, U.S. Department of Energy
[AC05-00OR22725]
FX The authors gratefully acknowledge the support of the Applied
Mathematical Sciences Research Program of the Office of Advanced
Scientific Computing, U.S. Department of Energy, under contract
DE-AC05-00OR22725 with UT-Battelle, LLC. M. Swager's participation was
through an appointment to the Higher Education Research Experiences
Program (HERE) at Oak Ridge National Laboratory.
NR 32
TC 1
Z9 1
U1 0
U2 0
PU TECH SCIENCE PRESS
PI NORCROSS
PA 6825 JIMMY CARTER BLVD, STE 1850, NORCROSS, GA 30071 USA
SN 1526-1492
J9 CMES-COMP MODEL ENG
JI CMES-Comp. Model. Eng. Sci.
PD MAR
PY 2010
VL 58
IS 3
BP 297
EP 314
PG 18
WC Engineering, Multidisciplinary; Mathematics, Interdisciplinary
Applications
SC Engineering; Mathematics
GA 617BL
UT WOS:000279255700004
ER
PT J
AU Richardson, ES
Sankaran, R
Grout, RW
Chen, JH
AF Richardson, E. S.
Sankaran, R.
Grout, R. W.
Chen, J. H.
TI Numerical analysis of reaction-diffusion effects on species mixing rates
in turbulent premixed methane-air combustion
SO COMBUSTION AND FLAME
LA English
DT Article
DE Turbulent mixing time scale; Premixed flame; Scalar dissipation rate;
Direct numerical simulation
ID SCALAR DISSIPATION EQUATION; BOUNDARY-CONDITIONS; FLAMES; FLOWS;
SIMULATIONS; MODEL; DILATATION; FLUX
AB The scalar mixing time scale, a key quantity in many turbulent combustion models, is investigated for reactive scalars in premixed combustion. Direct numerical simulations (DNS) of three-dimensional, turbulent Bunsen flames with reduced methane-air chemistry have been analyzed in the thin reaction zones regime. Previous conclusions from single step chemistry DNS studies are confirmed regarding the role of dilatation and turbulence-chemistry interactions on the progress variable dissipation rate. Compared to the progress variable, the mixing rates of intermediate species is found to be several times greater. The variation of species mixing rates are explained with reference to the structure of one-dimensional premixed laminar flames. According to this analysis, mixing rates are governed by the strong gradients which are imposed by flamelet structures at high Damkohler numbers. This suggests a modeling approach to estimate the mixing rate of individual species which can be applied, for example, in transported probability density function simulations. Flame-turbulence interactions which modify the flamelet based representation are analyzed. (C) 2009 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
C1 [Richardson, E. S.; Grout, R. W.; Chen, J. H.] Sandia Natl Labs, Combust Res Facil, Reacting Flow Res Dept, Livermore, CA 94551 USA.
[Sankaran, R.] Oak Ridge Natl Lab, Natl Ctr Computat Sci, Oak Ridge, TN 37831 USA.
RP Richardson, ES (reprint author), Sandia Natl Labs, Combust Res Facil, Reacting Flow Res Dept, POB 969,MS 9051, Livermore, CA 94551 USA.
EM esrich@sandia.gov
RI Sankaran, Ramanan/D-9254-2015
OI Sankaran, Ramanan/0000-0002-5352-9915
FU Division of Chemical Sciences, Geosciences and Bio-sciences, the Office
of Basic Energy Sciences (BES), the US Department of Energy (DOE); US
DOE [DE-AC04-94-AL85000, DE-AC05-00OR22725]; National Center for
Computational Sciences (NCCS) at Oak Ridge National Laboratory (ORNL)
FX The authors are grateful to Prof. S.B. Pope (Cornell University, Ithaca,
NY) for his comments on this work. The work at SNL was supported by the
Division of Chemical Sciences, Geosciences and Bio-sciences, the Office
of Basic Energy Sciences (BES), the US Department of Energy (DOE) and
also by the US DOE, BES, SciDAC Computational Chemistry program. SNL is
a multiprogram laboratory operated by Sandia Corporation, a Lockheed
Martin Company, for the US DOE under Contract No. DE-AC04-94-AL85000.
This research used resources of the National Center for Computational
Sciences (NCCS) at Oak Ridge National Laboratory (ORNL), which is
supported by the Office of Science of the US DOE under Contract No.
DE-AC05-00OR22725.
NR 41
TC 12
Z9 12
U1 1
U2 8
PU ELSEVIER SCIENCE INC
PI NEW YORK
PA 360 PARK AVE SOUTH, NEW YORK, NY 10010-1710 USA
SN 0010-2180
J9 COMBUST FLAME
JI Combust. Flame
PD MAR
PY 2010
VL 157
IS 3
BP 506
EP 515
DI 10.1016/j.combustflame.2009.11.007
PG 10
WC Thermodynamics; Energy & Fuels; Engineering, Multidisciplinary;
Engineering, Chemical; Engineering, Mechanical
SC Thermodynamics; Energy & Fuels; Engineering
GA 548YD
UT WOS:000274005400010
ER
PT J
AU Murphy, JJ
Shaddix, CR
AF Murphy, Jeffrey J.
Shaddix, Christopher R.
TI Effect of reactivity loss on apparent reaction order of burning char
particles
SO COMBUSTION AND FLAME
LA English
DT Article
DE Coal; Char; Combustion; Kinetics; Reaction order; Burnout
ID PULVERIZED-COAL COMBUSTION; THERMAL DEACTIVATION; ACTIVATION-ENERGY;
FUEL COMBUSTION; RATE-EQUATIONS; FLUIDIZED-BED; SOLID-FUEL; OXIDATION;
KINETICS; CARBON
AB Considerable debate still exists in the char combustion community over the expected and observed reaction orders of carbon reacting with oxygen. In particular, very low values of the reaction order (approaching zero) are commonly observed in char combustion experiments. These observations appear to conflict with porous catalyst theory as first expressed by Thiele, which suggests that the apparent reaction order Must be greater than 0.5. In this work, we propose that this conflict may be resolved by considering the decrease in char reactivity with burnout due to ash effects, thermal annealing, or other phenomena. Specifically, the influence of ash dilution of the available Surface area on the apparent reaction order is explored. Equations describing the ash dilution effect are combined with a model for particle burnout based on single-film nth-order Arrhenius char combustion and yield an analytical expression for the effective reaction order. When this expression is applied for experimental conditions reflecting combustion of individual pulverized coal particles in an entrained flow reactor, the apparent reaction order is shown to be lower than the inherent char matrix reaction order, even for negligible extents of char conversion. As char conversion proceeds and approaches completion, the apparent reaction order drops precipitously past zero to negative values. Conversely, the inclusion of the ash dilution model has little effect on the char conversion profile or char particle temperature until significant burnout has occurred. Taken together, these results suggest that the common experimental observation of low apparent reaction orders during char combustion is a consequence of the lack of explicit modeling of the decrease in char reactivity with burnout. (C) 2009 The Combustion Institute. Published by Elsevier Inc. All rights reserved.
C1 [Murphy, Jeffrey J.; Shaddix, Christopher R.] Sandia Natl Labs, Combust Res Facil, Livermore, CA 94550 USA.
RP Shaddix, CR (reprint author), Sandia Natl Labs, Combust Res Facil, MS 9052,7011 E Ave, Livermore, CA 94550 USA.
EM crshadd@sandia.gov
FU US Department of Energy [DE-AC04-94-AL85000]
FX This work was supported by the US Department of Energy through the
National Energy Technology Laboratory's Power Systems Advanced Research
Program, managed by Dr. Robert Romanosky. Sandia is operated by the
Sandia Corporation, a Lock-heed Martin Company, for the US DOE under
Contract DE-AC04-94-AL85000.
NR 35
TC 17
Z9 18
U1 3
U2 23
PU ELSEVIER SCIENCE INC
PI NEW YORK
PA 360 PARK AVE SOUTH, NEW YORK, NY 10010-1710 USA
SN 0010-2180
J9 COMBUST FLAME
JI Combust. Flame
PD MAR
PY 2010
VL 157
IS 3
BP 535
EP 539
DI 10.1016/j.combustflame.2009.09.013
PG 5
WC Thermodynamics; Energy & Fuels; Engineering, Multidisciplinary;
Engineering, Chemical; Engineering, Mechanical
SC Thermodynamics; Energy & Fuels; Engineering
GA 548YD
UT WOS:000274005400013
ER
PT J
AU Pappacena, KE
Johnson, MT
Wang, H
Porter, WD
Faber, KT
AF Pappacena, K. E.
Johnson, M. T.
Wang, H.
Porter, W. D.
Faber, K. T.
TI Thermal properties of wood-derived copper-silicon carbide composites
fabricated via electrodeposition
SO COMPOSITES SCIENCE AND TECHNOLOGY
LA English
DT Article
DE Thermal properties; Finite element analysis (FEA); Ceramic-matrix
composites (CMCs); Anisotrophy; Thermal conductivity
ID METAL-MATRIX COMPOSITES; CERAMICS; MICROSTRUCTURES; CONDUCTIVITY
AB Copper-silicon carbide composites were fabricated by electrodeposition of copper into pores of wood-derived silicon carbide, a ceramic with a microstructure that can be tailored via the use of different wood precursors. Thermal conductivity values were determined using flash diffusivity, at temperatures from 0 to 900 degrees C. Thermal conductivities of up to 202 W/m K at 0 degrees C and 148 W/mK at 900 degrees C were achieved. Object-oriented finite-element analysis (OOF) modeling was used to understand the heat flux distributions throughout the microstructures. OOF was also used to calculate the effective thermal conductivity, which correlated well with experimentally-determined values for axially-oriented composites. In addition, OOF was used to predict effective conductivity values and heat flux distributions for transversely-oriented composites. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Pappacena, K. E.; Johnson, M. T.; Faber, K. T.] Northwestern Univ, Dept Mat Sci & Engn, Evanston, IL 60208 USA.
[Wang, H.; Porter, W. D.] Oak Ridge Natl Lab, High Temp Mat Lab, Oak Ridge, TN 37831 USA.
RP Faber, KT (reprint author), Northwestern Univ, Dept Mat Sci & Engn, 2220 N Campus Dr, Evanston, IL 60208 USA.
EM k-faber@northwestern.edu
RI Faber, Katherine/B-6741-2009; Wang, Hsin/A-1942-2013
OI Wang, Hsin/0000-0003-2426-9867
FU National Science Foundation [DMR-0710630]; NSF-NSEC; NSF-MRSEC; Keck
Foundation; State of Illinois; Northwestern University; Office of
FreedomCAR and Vehicle Technologies
FX This work was funded by the National Science Foundation (DMR-0710630).;
The SEM work was performed in the EPIC facilities of NUANCE Center at
Northwestern University. NUANCE Center is supported by NSF-NSEC,
NSF-MRSEC, Keck Foundation, the State of Illinois, and Northwestern
University.; Thermal diffusivity and specific heat experiments were
sponsored by the Assistant Secretary for Energy Efficiency and Renewable
Energy, Office of FreedomCAR and Vehicle Technologies, as part of the
High Temperature Materials Laboratory User Program, Oak Ridge National
Laboratory, managed by UT-Battelle, LLC, for the US Department of Energy
under contract Number DE-AC0500OR22725.
NR 24
TC 10
Z9 10
U1 1
U2 10
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 0266-3538
J9 COMPOS SCI TECHNOL
JI Compos. Sci. Technol.
PD MAR
PY 2010
VL 70
IS 3
BP 478
EP 484
DI 10.1016/j.compscitech.2009.11.011
PG 7
WC Materials Science, Composites
SC Materials Science
GA 562UJ
UT WOS:000275080100009
ER
PT J
AU Engdahl, NB
Weissmann, GS
Bonal, ND
AF Engdahl, Nicholas B.
Weissmann, Gary S.
Bonal, Nedra D.
TI An integrated approach to shallow aquifer characterization: combining
geophysics and geostatistics
SO COMPUTATIONAL GEOSCIENCES
LA English
DT Article
DE Heterogeneity modeling; Geophysics; Geostatistics; GPR; Aquifer
characterization
ID REGION-GROWING ALGORITHM; GROUND-PENETRATING RADAR;
TRANSITION-PROBABILITY GEOSTATISTICS; POROUS-MEDIA; DEPOSITS;
HETEROGENEITY; HYDROFACIES; IMAGES; MODEL
AB We present a method of aquifer characterization that is able to utilize multiple sources of conditioning data to build a more realistic model of heterogeneity. This modeling approach (InMod) uses geophysical data to delineate bounding surfaces within sedimentary deposits. The depositional volumes between bounding surfaces are identified automatically from the geophysical data by a region growing algorithm. Simple geometric rules are used to constrain the growth of the regions in 3-D. The nodes within the depositional volume are assigned to categorical lithologies using geostatistical realizations and a dynamic lookup routine that can be conditioned to field data. The realizations created with this method preserve geologically expected features and produces sharp juxtapositions of high and low hydraulic conductivity lithologies along bounding surfaces. The realizations created with InMod also have higher variance than models created only with geostatistics and honor the volumetric distribution of sediments measured from field data.
C1 [Engdahl, Nicholas B.] Univ Calif Davis, Davis, CA 95616 USA.
[Weissmann, Gary S.] Univ New Mexico, Dept Earth & Planetary Sci, Albuquerque, NM 87131 USA.
[Bonal, Nedra D.] Sandia Natl Labs, Dept Geophys, Albuquerque, NM 87185 USA.
RP Engdahl, NB (reprint author), Univ Calif Davis, Davis, CA 95616 USA.
EM nbengdahl@gmail.com; weissman@unm.edu
FU US Department of Energy [DE-AC04-94AL85000]
FX The authors would like to thank the New Mexico Institute of Mining and
Technology, Department of Geophysics, for the use of their GPR system,
Fred Gebhardt and Dale Rankin of the US Geological Survey New Mexico
Water Science center for their assistance in the collection of the
sample cores, and Chris Engdahl and Amy Williams for their assistance in
the collection of the GPR data used in this study. The authors also
thank two anonymous reviewers for comments that improved this
manuscript. Sandia is a multiprogram laboratory operated by Sandia
Corporation, a Lockheed Martin Company, for the US Department of
Energy's National Nuclear Security Administration under contract
DE-AC04-94AL85000.
NR 45
TC 12
Z9 12
U1 3
U2 16
PU SPRINGER
PI DORDRECHT
PA VAN GODEWIJCKSTRAAT 30, 3311 GZ DORDRECHT, NETHERLANDS
SN 1420-0597
J9 COMPUTAT GEOSCI
JI Comput. Geosci.
PD MAR
PY 2010
VL 14
IS 2
BP 217
EP 229
DI 10.1007/s10596-009-9145-y
PG 13
WC Computer Science, Interdisciplinary Applications; Geosciences,
Multidisciplinary
SC Computer Science; Geology
GA 554SY
UT WOS:000274455900001
ER
PT J
AU Li, DS
Khaleel, M
Sun, X
Garmestani, H
AF Li, Dongsheng
Khaleel, Moe
Sun, Xin
Garmestani, Hamid
TI Representation of correlation statistics functions in heterogeneous
materials using layered fast spherical harmonics expansion
SO COMPUTATIONAL MATERIALS SCIENCE
LA English
DT Article
DE Statistical continuum mechanics; Statistics correlation; Spherical
harmonics; Microstructure representation; Probability functions
ID SPATIAL CORRELATION-FUNCTIONS; ELASTIC PROPERTIES; PREDICTING
PROPERTIES; COMPOSITES; DESIGN; OPTIMIZATION; BEHAVIOR; SOLIDS
AB Statistical correlation function, including two-point function, is one of the popular methods to digitize microstructure quantitatively. This paper investigated how to represent statistical correlations using layered fast spherical harmonics expansion. A set of spherical harmonics coefficients may be used to represent the corresponding microstructures. It is applied to represent carbon nanotube composite microstructures to demonstrate how efficiently and precisely the harmonics coefficients will characterize the microstructure. This microstructure representation methodology will dramatically improve the computational efficiencies for future works in microstructure reconstruction and property prediction. (C) 2009 Elsevier B.V. All rights reserved.
C1 [Li, Dongsheng; Garmestani, Hamid] Georgia Inst Technol, Sch Mat Sci & Engn, Atlanta, GA 30332 USA.
[Khaleel, Moe; Sun, Xin] Pacific NW Natl Lab, Fundamental & Computat Sci Directorate, Richland, WA 99352 USA.
RP Li, DS (reprint author), Georgia Inst Technol, Sch Mat Sci & Engn, Atlanta, GA 30332 USA.
EM dl138@mail.gatech.edu
OI khaleel, mohammad/0000-0001-7048-0749
FU US Department of Energy; [DE-AC05-76RL01830]
FX Pacific Northwest National Laboratory is operated by Battelle Memorial
Institute for the US Department of Energy under Contract No.
DE-AC05-76RL01830. This work was funded by the US Department of Energy
under the Nuclear Energy Advanced Modeling and Simulation (NEAMS)
Program managed by Mr. Alex Larzelere.
NR 21
TC 9
Z9 9
U1 1
U2 4
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0927-0256
J9 COMP MATER SCI
JI Comput. Mater. Sci.
PD MAR
PY 2010
VL 48
IS 1
BP 133
EP 139
DI 10.1016/j.commatsci.2009.12.019
PG 7
WC Materials Science, Multidisciplinary
SC Materials Science
GA 572RO
UT WOS:000275850700015
ER
PT J
AU Wienke, BR
AF Wienke, B. R.
TI Computer validation and statistical correlations of a modern
decompression diving algorithm
SO COMPUTERS IN BIOLOGY AND MEDICINE
LA English
DT Article
DE Decompression diving; Data correlations; Model validation; Dual phase
models; Maximum likelihood; RGBM Data Bank
ID BUBBLE FORMATION; SICKNESS
AB A diving algorithm is a safe combination of model and data to efficiently stage diver ascents following arbitrary underwater exposures. To that end, we detail a modern one, the LANL reduced gradient bubble model (RGBM), dynamical principles, and correlations with the LANL Data Bank data. Table, profile, and meter fit and risk parameters are obtained in statistical likelihood analysis from decompression exposure data. The RGBM algorithm enjoys extensive and utilitarian application in mixed gas diving, both in recreational and technical sectors, and forms the bases for released tables, software, and decompression meters used by scientific, commercial, and research divers. The LANL Data Bank is described, and the methods used to deduce risk are detailed. Risk functions for dissolved gas and bubbles are summarized. Parameters that can be used to estimate profile risk are tallied. To fit data, a modified Levenberg-Marquardt routine is employed. The LANL Data Bank presently contains 2879 profiles with 20 cases of DCS across nitrox, trimix, and heliox deep and decompression diving. This work establishes needed correlation between global mixed gas diving, specific bubble model, and deep stop data. Our objective is operational diving, not clinical science. The fit of bubble model to deep stop data is chi squared significant to 93%, using the logarithmic likelihood ratio of null set (actual set) to fit set. The RGBM algorithm is thus validated within the LANL Data Bank. Extensive and safe utilization of the model reported in field user statistics for tables, meters, and software also suggests real world validation, that is, one without noted nor reported DCS spikes in the field. (C) 2009 Elsevier Ltd. All rights reserved.
C1 Los Alamos Natl Lab, Appl & Computat Phys Div, Los Alamos, NM 87545 USA.
RP Wienke, BR (reprint author), Los Alamos Natl Lab, Appl & Computat Phys Div, LANL MS D409, Los Alamos, NM 87545 USA.
EM brw@lanl.gov
NR 22
TC 1
Z9 2
U1 0
U2 1
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0010-4825
J9 COMPUT BIOL MED
JI Comput. Biol. Med.
PD MAR
PY 2010
VL 40
IS 3
BP 252
EP 260
DI 10.1016/j.compbiomed.2009.11.021
PG 9
WC Biology; Computer Science, Interdisciplinary Applications; Engineering,
Biomedical; Mathematical & Computational Biology
SC Life Sciences & Biomedicine - Other Topics; Computer Science;
Engineering; Mathematical & Computational Biology
GA 582JE
UT WOS:000276592400003
PM 20080233
ER
PT J
AU Kanai, Y
Neaton, JB
Grossman, JC
AF Kanai, Yosuke
Neaton, Jeffrey B.
Grossman, Jeffrey C.
TI Theory and Simulation of Nanostructured Materials for Photovoltaic
Applications
SO COMPUTING IN SCIENCE & ENGINEERING
LA English
DT Article
ID DENSITY-FUNCTIONAL THEORY; SEMICONDUCTORS; INSULATORS
C1 [Kanai, Yosuke; Neaton, Jeffrey B.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Grossman, Jeffrey C.] MIT, Cambridge, MA 02139 USA.
RP Kanai, Y (reprint author), Lawrence Livermore Natl Lab, Livermore, CA USA.
EM ykanai@llnl.gov; jbneaton@lbl.gov; jcg@mit.edu
RI Kanai, Yosuke/B-5554-2016; Neaton, Jeffrey/F-8578-2015
OI Neaton, Jeffrey/0000-0001-7585-6135
NR 25
TC 6
Z9 7
U1 0
U2 9
PU IEEE COMPUTER SOC
PI LOS ALAMITOS
PA 10662 LOS VAQUEROS CIRCLE, PO BOX 3014, LOS ALAMITOS, CA 90720-1314 USA
SN 1521-9615
J9 COMPUT SCI ENG
JI Comput. Sci. Eng.
PD MAR-APR
PY 2010
VL 12
IS 2
BP 18
EP 27
PG 10
WC Computer Science, Interdisciplinary Applications
SC Computer Science
GA 567IJ
UT WOS:000275439900004
ER
PT J
AU Soltis, J
Krouse, DP
Laycock, NJ
Zavadil, KR
AF Soltis, J.
Krouse, D. P.
Laycock, N. J.
Zavadil, K. R.
TI Automated processing of electrochemical current noise in the time
domain: I. Simulated signal
SO CORROSION SCIENCE
LA English
DT Article
DE Electrochemical calculations; Potentiostatic; Pitting corrosion;
Repassivation
ID PITTING CORROSION; STAINLESS-STEEL; STATISTICAL-ANALYSIS;
STOCHASTIC-MODELS; CHLORIDE SOLUTION; SPECTRAL-ANALYSIS; PIT INITIATION;
GROWTH; IRON; FLUCTUATIONS
AB The concept of automated processing of electrochemical current noise in the time domain is presented. The methodology is based on the identification of "run-ups", which are representative of every single rising feature (transient) in a signal. Selected transients are then subjected to the analysis in terms of their characteristic parameters. Functionality is first demonstrated on a simulated signal with a predefined sample of pitting nucleation events and then in application to processing current signatures from potentiostatic tests on Alloy C22. The results from the analysis of the simulated signal are compared with those of a frequency-based analysis, and it is demonstrated that analysis in the time domain provides direct quantitative information on electrochemical processes that cannot be obtained from frequency-domain analysis. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Soltis, J.; Laycock, N. J.] Quest Reliabil Ltd, Wellington, New Zealand.
[Krouse, D. P.] Ind Res Ltd, Wellington, New Zealand.
[Zavadil, K. R.] Sandia Natl Labs, Albuquerque, NM 87185 USA.
RP Soltis, J (reprint author), Quest Reliabil Ltd, POB 38096, Wellington, New Zealand.
EM j.soltis@questreliability.com
FU New Zealand Foundation for Research Science and Technology [C08X0409];
U.S. Department of Energy; Basic Energy Sciences, Office of Materials
and Engineering Sciences
FX This work was funded by the New Zealand Foundation for Research Science
and Technology under Contract C08X0409. K.R. Zavadil gratefully
acknowledges support from the U.S. Department of Energy, Basic Energy
Sciences, Office of Materials and Engineering Sciences.
NR 58
TC 11
Z9 11
U1 3
U2 7
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0010-938X
J9 CORROS SCI
JI Corrosion Sci.
PD MAR
PY 2010
VL 52
IS 3
BP 838
EP 847
DI 10.1016/j.corsci.2009.11.007
PG 10
WC Materials Science, Multidisciplinary; Metallurgy & Metallurgical
Engineering
SC Materials Science; Metallurgy & Metallurgical Engineering
GA 565QS
UT WOS:000275309900021
ER
PT J
AU Joyce, CK
Jennings, KE
Hey, J
Grossman, JC
Kalil, T
AF Joyce, Caneel K.
Jennings, Kyle E.
Hey, Jonathan
Grossman, Jeffrey C.
Kalil, Thomas
TI Getting Down to Business: Using Speedstorming to Initiate Creative
Cross-Disciplinary Collaboration
SO CREATIVITY AND INNOVATION MANAGEMENT
LA English
DT Article
AB Creative collaborations that cross disciplinary boundaries are essential to innovation. Individuals face challenges, however, in forming new collaborations. Empirical and anecdotal evidence suggests that the common formats of brainstorming and free-form networking are insufficient for enabling such collaborations to form. We present a potential solution called speedstorming, a pair-wise method of creative interaction similar to the round-robin 'speed-dating' technique. Speedstorming combines an explicit purpose, time limits, and one-on-one encounters to create a setting where boundary-spanning opportunities can be recognized, ideas can be explored at a deep level of interdisciplinary expertise, and potential collaborators can be quickly assessed. A comparison of speedstorming and brainstorming suggests that ideas from speedstorming were more technically specialized and that speedstorming participants were more certain in their assessments of the collaborative potential of others. This paper concludes with a discussion of the method's application in a variety of settings.
C1 [Joyce, Caneel K.] London Sch Econ, Dept Management, London, England.
[Grossman, Jeffrey C.] MIT, Dept Mat Sci & Engn, Cambridge, MA 02139 USA.
[Grossman, Jeffrey C.] Univ Calif Berkeley, Berkeley, CA 94720 USA.
[Grossman, Jeffrey C.] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
RP Joyce, CK (reprint author), London Sch Econ, Dept Management, London, England.
NR 37
TC 3
Z9 3
U1 4
U2 9
PU WILEY-BLACKWELL
PI MALDEN
PA COMMERCE PLACE, 350 MAIN ST, MALDEN 02148, MA USA
SN 0963-1690
J9 CREAT INNOV MANAG
JI Creat. Innov. Manag.
PD MAR
PY 2010
VL 19
IS 1
BP 57
EP 67
DI 10.1111/j.1467-8691.2009.00538.x
PG 11
WC Management
SC Business & Economics
GA V21PP
UT WOS:000208219800006
ER
PT J
AU Lizarazo, J
Caspi, S
Ferracin, P
Joseph, J
Lietzke, AF
Sabbi, GL
Wang, X
AF Lizarazo, J.
Caspi, S.
Ferracin, P.
Joseph, J.
Lietzke, A. F.
Sabbi, G. L.
Wang, X.
TI Analysis of voltage signals from superconducting accelerator magnets
SO CRYOGENICS
LA English
DT Article; Proceedings Paper
CT 8th CHATS (computation of thermo-hydraulic transients in
superconductors) workshop
CY OCT 29-NOV 01, 2008
CL Tsukuba, JAPAN
DE Superconducting magnet; Voltage tap; Magnet training; Quench analysis
ID NB3SN; QUADRUPOLE; TRANSIENTS; LARP
AB We present two techniques used in the analysis of voltage tap data collected during recent tests of superconducting magnets developed by the Superconducting Magnet Program at Lawrence Berkeley National Laboratoiy. The first technique was used on a quadrupole to provide information about quench origins that could not be obtained using the time-of-flight method The second technique illustrates the use of data from transient flux imbalances occurring during magnet ramping to diagnose changes in the current-temperature margin of a superconducting cable In both cases, the results of this analysis contributed to make improvements on subsequent magnets Published by Elsevier Ltd
C1 [Lizarazo, J.; Caspi, S.; Ferracin, P.; Joseph, J.; Lietzke, A. F.; Sabbi, G. L.; Wang, X.] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
RP Lizarazo, J (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
NR 12
TC 1
Z9 1
U1 0
U2 5
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 0011-2275
EI 1879-2235
J9 CRYOGENICS
JI Cryogenics
PD MAR
PY 2010
VL 50
IS 3
SI SI
BP 204
EP 214
DI 10.1016/j.cryogenics.2009.09.004
PG 11
WC Thermodynamics; Physics, Applied
SC Thermodynamics; Physics
GA 578XN
UT WOS:000276330500010
ER
PT J
AU Fernandez, CA
Thallapally, PK
Motkuri, RK
Nune, SK
Sumrak, JC
Tian, J
Liu, J
AF Fernandez, Carlos A.
Thallapally, Praveen K.
Motkuri, Radha Kishan
Nune, Satish K.
Sumrak, Joseph C.
Tian, Jian
Liu, Jun
TI Gas-Induced Expansion and Contraction of a Fluorinated Metal-Organic
Framework
SO CRYSTAL GROWTH & DESIGN
LA English
DT Article
ID INDUCED TRANSFORMATION; CARBON-DIOXIDE; HIGH-CAPACITY; SEPARATION; CO2;
ADSORPTION; STORAGE; PORES; CH4
AB Synthesis and gas sorption properties of a novel fluorinated metal-organic framework using commercially available 2,2-bis(4-carboxyphenyl)hexafluoropropane is reported with high selectivity toward CO(2), H(2)S, and SO(2) as well as breathing motion upon solvent removal and gas inclusion.
C1 [Fernandez, Carlos A.; Thallapally, Praveen K.; Motkuri, Radha Kishan; Nune, Satish K.; Sumrak, Joseph C.; Tian, Jian; Liu, Jun] Pacific NW Natl Lab, Energy & Environm Directorate, Richland, WA 99352 USA.
RP Thallapally, PK (reprint author), Pacific NW Natl Lab, Energy & Environm Directorate, Richland, WA 99352 USA.
EM Praveen.thallapally@pnl.gov
RI Tian, Jian/I-8637-2012; Motkuri, Radha/F-1041-2014; thallapally,
praveen/I-5026-2014
OI Motkuri, Radha/0000-0002-2079-4798; thallapally,
praveen/0000-0001-7814-4467
FU Laboratory Directed Research Development (LDRD); Office of Basic Energy
Sciences (BES), U.S. Department of Energy (DOE) [DE-AC05-76RL01830]
FX This work is partially supported by Laboratory Directed Research
Development (LDRD) and Office of Basic Energy Sciences (BES), U.S.
Department of Energy (DOE). PNNL is a multiprogramming laboratory
operated by Battelle Memorial Institute for the Department of Energy
under Contract DE-AC05-76RL01830.
NR 29
TC 86
Z9 86
U1 4
U2 34
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 1528-7483
J9 CRYST GROWTH DES
JI Cryst. Growth Des.
PD MAR
PY 2010
VL 10
IS 3
BP 1037
EP 1039
DI 10.1021/cg9014948
PG 3
WC Chemistry, Multidisciplinary; Crystallography; Materials Science,
Multidisciplinary
SC Chemistry; Crystallography; Materials Science
GA 562KT
UT WOS:000275049800006
ER
PT J
AU Zolotoyabko, E
Caspi, EN
Fieramosca, JS
Von Dreele, RB
Marin, F
Mor, G
Addadi, L
Weiner, S
Politi, Y
AF Zolotoyabko, E.
Caspi, E. N.
Fieramosca, J. S.
Von Dreele, R. B.
Marin, F.
Mor, G.
Addadi, L.
Weiner, S.
Politi, Y.
TI Differences between Bond Lengths in Biogenic and Geological Calcite
SO CRYSTAL GROWTH & DESIGN
LA English
DT Article
ID ANISOTROPIC LATTICE-DISTORTIONS; X-RAY; RHOMBOHEDRAL CARBONATES;
MAGNESIAN CALCITE; ELECTRON-DENSITY; PINNA-NOBILIS; MOLLUSK SHELL;
BIOMINERALIZATION; ARAGONITE; CRYSTALS
AB We used high-resolution neutron powder diffraction to accurately measure the atomic positions and bond lengths in biogenic and geological calcite. A special procedure for data analysis was developed in order to take into account the considerable amounts of magnesium present in all the investigated samples. As a result, in biogenic calcite we found some atomic bonds to have significantly different lengths as compared to those in geological calcite, after the contribution of magnesium is accounted for. The maximum effect (elongation up to 0.7%) was found for the C-O bonds. We also analyzed changes in frequencies and spectral widths of normal vibrations of carbonate groups in biogenic calcite (as compared to geological calcite) measured by Raman and Fourier transform I R techniques. Surprisingly, the frequency shifts after subtracting the magnesium contribution are close to zero. At the same time, substantial spectral broadening (up to 1.2%) in biogenic calcite as compared to geological samples was detected. Possible explanations for the experimental findings are discussed.
C1 [Zolotoyabko, E.] Technion Israel Inst Technol, Dept Mat Engn, IL-32000 Haifa, Israel.
[Caspi, E. N.] Nucl Res Ctr Negev, Dept Phys, IL-84190 Beer Sheva, Israel.
[Fieramosca, J. S.; Von Dreele, R. B.] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
[Marin, F.] Univ Bourgogne, UMR 5561, Lab Biogeosci, F-21000 Dijon, France.
[Mor, G.; Addadi, L.; Weiner, S.; Politi, Y.] Weizmann Inst Sci, Dept Biol Struct, IL-76100 Rehovot, Israel.
RP Zolotoyabko, E (reprint author), Technion Israel Inst Technol, Dept Mat Engn, IL-32000 Haifa, Israel.
EM zloto@tx.technion.ac.il
FU U.S. Department of Energy, Office of Science, Office of Basic Energy
Sciences [DE-ACO2-O6CH11357]
FX We thank the Israeli Ministry of Science, the Minerva Foundation, the
Technion V. P. Research Fund, and the Shore Research Fund in Advanced
Composites for financial support of this work. Neutron diffraction
measurements were supported by the U.S. Department of Energy, Office of
Science, Office of Basic Energy Sciences under contract No.
DE-ACO2-O6CH11357. The help of Dr. A. Berner (Technion) in elemental
analysis by EDS and WDS is gratefully acknowledged. One of Lis (E.Z.)
thanks Dr. B. Pokroy (Technion) for helpful discussions. E.Z. is the
incumbent of the Abrallam Tulin Academic Chair, L.A. is the incumbent of
the Dorothy and Patrick Gorman Professorial Chair of Biological
Ultrastructure, and S.W. is the incumbent of the Dr. Walter and Dr.
Trude Burchardt Professorial Chair of Structural Biology.
NR 55
TC 31
Z9 31
U1 0
U2 32
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 1528-7483
J9 CRYST GROWTH DES
JI Cryst. Growth Des.
PD MAR
PY 2010
VL 10
IS 3
BP 1207
EP 1214
DI 10.1021/cg901195t
PG 8
WC Chemistry, Multidisciplinary; Crystallography; Materials Science,
Multidisciplinary
SC Chemistry; Crystallography; Materials Science
GA 562KT
UT WOS:000275049800029
ER
PT J
AU Zou, RQ
Abdel-Fattah, AI
Xu, HW
Burrell, AK
Larson, TE
McCleskey, TM
Wei, Q
Janicke, MT
Hickmott, DD
Timofeeva, TV
Zhao, YS
AF Zou, Ruqiang
Abdel-Fattah, Amr I.
Xu, Hongwu
Burrell, Anthony K.
Larson, Toti E.
McCleskey, Thomas M.
Wei, Qiang
Janicke, Michael T.
Hickmott, Donald D.
Timofeeva, Tatiana V.
Zhao, Yusheng
TI Porous Metal-Organic Frameworks Containing Alkali-Bridged Two-Fold
Interpenetration: Synthesis, Gas Adsorption, and Fluorescence Properties
SO CRYSTAL GROWTH & DESIGN
LA English
DT Article
ID SECONDARY BUILDING UNITS; COORDINATION POLYMERS; CRYSTAL-STRUCTURE;
SURFACE-AREA; NETWORKS; MOLECULES; OXIDATION; CHEMISTRY; COPOLYMER;
SORPTION
AB Solvothermal reactions of Zn(NO(3))(2)center dot 6H(2)O and alkali (Na, K) chloride with the trigonal-planar ligand benzene-1,3,5-tribenzoic acid (H(3)BTB) gave rise to two new crystalline porous metal-organic frameworks (MOFs), [Zn(3)Na(2)O(BTB)(2)(DMF)(2)](DMF)(H(2)O) and [Zn(2)K(3)(BTB)(2)(HCOO)(DMF)(3)](DMF)(3)(H(2)O)(2), respectively. Both phases have Zn(3)Na(2)(mu(4)-O) and Zn(2)K(2)(HCOO) clusters as molecular building block nodes, and they form similar alkali-bridged 2-fold interpenetrated, (3,6)-connected nets with the mineral rtl-c topology. The alkali-bridged interpenetration reduces the flexibility of their interpenetrated nets, affording permanent porosity and high thermal stability. These two MOFs also exhibit high capacities of hydrogen uptake and strong solid fluorescent emissions.
C1 [Zou, Ruqiang; Abdel-Fattah, Amr I.; Xu, Hongwu; Burrell, Anthony K.; Larson, Toti E.; McCleskey, Thomas M.; Wei, Qiang; Janicke, Michael T.; Hickmott, Donald D.; Zhao, Yusheng] Los Alamos Natl Lab, Div Earth & Environm Sci, Los Alamos Neutron Sci Ctr, Mat Phys & Applicat Div, Los Alamos, NM 87545 USA.
[Zou, Ruqiang; Abdel-Fattah, Amr I.; Xu, Hongwu; Burrell, Anthony K.; Larson, Toti E.; McCleskey, Thomas M.; Wei, Qiang; Janicke, Michael T.; Hickmott, Donald D.; Zhao, Yusheng] Los Alamos Natl Lab, Div Chem, Los Alamos, NM 87545 USA.
[Timofeeva, Tatiana V.] New Mexico Highlands Univ, Dept Chem, Las Vegas, NM 87701 USA.
RP Zou, RQ (reprint author), Los Alamos Natl Lab, Div Earth & Environm Sci, Los Alamos Neutron Sci Ctr, Mat Phys & Applicat Div, Los Alamos, NM 87545 USA.
EM rzou@lanl.gov; yzhao@lanl.gov
RI Hickmott, Donald/C-2886-2011; Lujan Center, LANL/G-4896-2012; McCleskey,
Thomas/J-4772-2012; zou, ruqiang/N-8803-2013;
OI Larson, Toti/0000-0002-2291-5979; Janicke, Michael/0000-0002-3139-2882;
Xu, Hongwu/0000-0002-0793-6923; Mccleskey, Thomas/0000-0003-3750-3245;
Zou, Ruqiang/0000-0003-0456-4615
FU LANL [20080780PRD2]; NSF [0934212]
FX We especially acknowledge Professor Bernard De Jong for his invaluable
suggestions and comments. R.Z. sincerely thanks LANL for a Director's
Postdoctoral Fellowship. This work was financially supported by LANL
Director's funded postdoc LDRD Project No. 20080780PRD2. TVT is grateful
for NSF support via DMR/PREM program grant No. 0934212.
NR 46
TC 32
Z9 32
U1 0
U2 26
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 1528-7483
J9 CRYST GROWTH DES
JI Cryst. Growth Des.
PD MAR
PY 2010
VL 10
IS 3
BP 1301
EP 1306
DI 10.1021/cg901347p
PG 6
WC Chemistry, Multidisciplinary; Crystallography; Materials Science,
Multidisciplinary
SC Chemistry; Crystallography; Materials Science
GA 562KT
UT WOS:000275049800043
ER
PT J
AU Bouvy, C
Baker, GA
Yin, HF
Dai, S
AF Bouvy, Claire
Baker, Gary A.
Yin, Hongfeng
Dai, Sheng
TI Growth of Gold Nanosheets and Nanopolyhedra in Pyrrolidinium-Based Ionic
Liquids: Investigation of the Cation Effect on the Resulting
Morphologies
SO CRYSTAL GROWTH & DESIGN
LA English
DT Article
ID IONOTHERMAL SYNTHESIS; OPTICAL-PROPERTIES; BLOCK-COPOLYMERS; SIZE
CONTROL; NANOPARTICLES; NANOCRYSTALS; SHAPE; IMIDAZOLIUM; NANORODS;
SILVER
AB Large gold nanosheets and small gold polyhedra have been successfully synthesized in room-temperature ionic liquids (ILs) by an ionothermal reduction of HAuCl(4) under N(2) atmosphere, without using any additives. The effect of the organic cation on the final morphologies of the gold particles has been studied, and a series of pyrrolidinium-, imidazolium-, and quaternary amine-based ionic liquids have been investigated by scanning electron microscopy (SEM) and X-ray diffraction (XRD) measurements. Our results show that these ILs favor the anisotropic growth of gold by acting as template agents and that only gold microspheres can be obtained with the IL containing a reductive functionality.
C1 [Bouvy, Claire] Univ Namur FUNDP, Lab Inorgan Mat Chem, B-5000 Namur, Belgium.
[Baker, Gary A.; Yin, Hongfeng; Dai, Sheng] Oak Ridge Natl Lab, Div Chem Sci, Oak Ridge, TN 37831 USA.
RP Bouvy, C (reprint author), Univ Namur FUNDP, Lab Inorgan Mat Chem, 61 Rue Bruxelles, B-5000 Namur, Belgium.
EM claire.bouvy@fundp.ac.be
RI Baker, Gary/H-9444-2016; Dai, Sheng/K-8411-2015
OI Baker, Gary/0000-0002-3052-7730; Dai, Sheng/0000-0002-8046-3931
FU FRS-FNRS (Fonds National de lit. Recherche Scientifique, Belgium);
Division of Chemical Sciences, Office of Basic Energy Sciences, U.S.
Department of Energy [DE-AC05-00OR22725]
FX C.B. thanks the FRS-FNRS (Fonds National de lit. Recherche Scientifique,
Belgium) for a "postdoctoral researcher" fellowship. This work was
partially sponsored by the Division of Chemical Sciences, Office of
Basic Energy Sciences, U.S. Department of Energy under contract
DE-AC05-00OR22725 with Oak Ridge National Laboratory, managed and
operated by UT-Battelle, LLC.
NR 53
TC 18
Z9 19
U1 3
U2 26
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 1528-7483
J9 CRYST GROWTH DES
JI Cryst. Growth Des.
PD MAR
PY 2010
VL 10
IS 3
BP 1319
EP 1322
DI 10.1021/cg9013575
PG 4
WC Chemistry, Multidisciplinary; Crystallography; Materials Science,
Multidisciplinary
SC Chemistry; Crystallography; Materials Science
GA 562KT
UT WOS:000275049800046
ER
PT J
AU Burr, T
AF Burr, Tom
TI Phylogenetic Trees in Bioinformatics
SO CURRENT BIOINFORMATICS
LA English
DT Article
DE Phylogenetic trees; nucleotide substitution models; inference methods;
bootstrap; Markov Chain Monte Carlo; population history
ID CHAIN MONTE-CARLO; IMMUNE-DEFICIENCY-SYNDROME; SEQUENCE DATA;
TRANSMISSION HISTORY; MOLECULAR EVOLUTION; POPULATION-GENETICS;
DEMOGRAPHIC HISTORY; MODEL SELECTION; DNA-SEQUENCES; NUCLEOTIDE
AB Genetic data is often used to infer evolutionary relationships among a collection of viruses, bacteria, animal or plant species, or other operational taxonomic units (OTU). A phylogenetic tree depicts such relationships and provides a visual representation of the estimated branching order of the OTUs. Tree estimation is unique for several reasons, including the types of data used to represent each OTU; the use of probabilistic nucleotide substitution models; the inference goals involving both tree topology and branch length, and the huge number of possible trees for a given sample of a very modest number of OTUs, which implies that finding the best tree(s) to describe the genetic data for each OTU is computationally demanding.
Bioinformatics is too large a field to review here. We focus on that aspect of bioinformatics that includes study of similarities in genetic data from multiple OTUs. Although research questions are diverse, a common underlying challenge is to estimate the evolutionary history of the OTUs. Therefore, this paper reviews the role of phylogenetic tree estimation in bioinformatics, available methods and software, and identifies areas for additional research and development.
C1 Los Alamos Natl Lab, Stat Grp, Los Alamos, NM 87545 USA.
RP Burr, T (reprint author), Los Alamos Natl Lab, Stat Grp, Mail Stop F600, Los Alamos, NM 87545 USA.
EM tburr@lanl.gov
NR 72
TC 2
Z9 2
U1 1
U2 10
PU BENTHAM SCIENCE PUBL LTD
PI SHARJAH
PA EXECUTIVE STE Y-2, PO BOX 7917, SAIF ZONE, 1200 BR SHARJAH, U ARAB
EMIRATES
SN 1574-8936
EI 2212-392X
J9 CURR BIOINFORM
JI Curr. Bioinform.
PD MAR
PY 2010
VL 5
IS 1
BP 40
EP 52
PG 13
WC Biochemical Research Methods; Mathematical & Computational Biology
SC Biochemistry & Molecular Biology; Mathematical & Computational Biology
GA 554EB
UT WOS:000274417200004
ER
PT J
AU Brennecka, GA
Borg, LE
Hutcheon, ID
Sharp, MA
Anbar, AD
AF Brennecka, Gregory A.
Borg, Lars E.
Hutcheon, Ian D.
Sharp, Michael A.
Anbar, Ariel D.
TI Natural variations in uranium isotope ratios of uranium ore
concentrates: Understanding the U-238/U-235 fractionation mechanism
SO EARTH AND PLANETARY SCIENCE LETTERS
LA English
DT Article
DE uranium; isotopes; UOC; fractionation; geolocation
ID HEAVY-ELEMENTS; WATER
AB Precise measurement of the U-238/U-235 ratio in geologic samples is now possible with modern techniques and mass spectrometers. Natural variations in this ratio have been shown in previous studies. In this study, data obtained from uranium ore concentrates of mining facilities around the world show clear evidence that the depositional redox environment in which uranium is precipitated is the primary factor affecting U-238/U-235 fractionation. Low-temperature uranium deposits are, on average, isotopically similar to 0.4 parts per thousand. heavier than uranium deposited at high temperatures or by non-redox processes. U-238/U-235 ratios coupled with U-235/U-234 ratios in the same sample provide evidence that the redox transition (U-VI -> U-IV) at low temperatures is the primary mechanism of U-238/U-235 fractionation and that aqueous alteration plays a very limited, if any, role in fractionation of the U-238/U-235 ratio. The isotopic variation of U is therefore a potential signature that can be used to trace the origin of uranium ore concentrate. (c) 2010 Elsevier B.V. All rights reserved.
C1 [Brennecka, Gregory A.; Anbar, Ariel D.] Arizona State Univ, Sch Earth & Space Explorat, Tempe, AZ USA.
[Borg, Lars E.; Hutcheon, Ian D.; Sharp, Michael A.] Lawrence Livermore Natl Lab, Inst Geophys & Planetary Phys, Livermore, CA 94550 USA.
[Anbar, Ariel D.] Arizona State Univ, Dept Chem & Biochem, Tempe, AZ USA.
RP Brennecka, GA (reprint author), POB 871404, Tempe, AZ 85287 USA.
EM brennecka@asu.edu
FU U.S. Department of Energy by Lawrence Livermore National Laboratory
[DE-AC52-07NA27344]
FX The authors thank R. Williams for his efforts in helping create the
double spike used in this study and G. Gordon for help with the
MCICP-MS. We thank E. Schauble and one anonymous reviewer whose comments
significantly improved this manuscript. This work was partially funded
and supported by the NNSA Office of Dismantlement and Transparency. This
work was performed under the auspices of the U.S. Department of Energy
by Lawrence Livermore National Laboratory under contract
DE-AC52-07NA27344.
NR 17
TC 73
Z9 74
U1 1
U2 37
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0012-821X
EI 1385-013X
J9 EARTH PLANET SC LETT
JI Earth Planet. Sci. Lett.
PD MAR 1
PY 2010
VL 291
IS 1-4
BP 228
EP 233
DI 10.1016/j.epsl.2010.01.023
PG 6
WC Geochemistry & Geophysics
SC Geochemistry & Geophysics
GA 568RB
UT WOS:000275539100023
ER
PT J
AU Iversen, CM
Bridgham, SD
Kellogg, LE
AF Iversen, Colleen M.
Bridgham, Scott D.
Kellogg, Laurie E.
TI Scaling plant nitrogen use and uptake efficiencies in response to
nutrient addition in peatlands
SO ECOLOGY
LA English
DT Article
DE allocation; co-limitation; mean residence time; N limitation; nitrogen
response efficiency; nitrogen uptake efficiency; nitrogen use
efficiency; nutrient productivity; peatlands; P limitation; Upper
Peninsula, Michigan, USA
ID MINERAL-NUTRITION; WILD PLANTS; TRADE-OFFS; AVAILABILITY; COMMUNITIES;
LIMITATION; GRADIENTS; PHOSPHORUS; SPHAGNUM; WETLANDS
AB Nitrogen (N) is the primary growth-limiting nutrient in many terrestrial ecosystems, and therefore plant production per unit N taken up (i.e., N use efficiency, NUE) is a fundamentally important component of ecosystem function. Nitrogen use efficiency comprises two components: N productivity (A(N), plant production per peak biomass N content) and the mean residence time of N in plant biomass (MRTN). We utilized a five-year fertilization experiment to examine the manner in which increases in N and phosphorus (P) availability affected plant NUE at multiple biological scales (i.e., from leaf to community level). We fertilized a natural gradient of nutrient-limited peatland ecosystems in the Upper Peninsula of Michigan. USA, with 6 g N.m(-2).yr(-1), 2 g P.m(-2)-yr(-1), or a combination of N and P. Our objectives were to determine how changes in carbon and N allocation within a plant to leaf and woody tissue and changes in species composition within a community, both above- and belowground, would affect (1) NUE; (2) the adaptive trade-off between the components of NUE; (3) the efficiency with which plants acquired N from the soil (N uptake efficiency). and (4) plant community production per unit soil N availability (N response efficiency, NRE). As expected, N and P addition generally increased aboveground production and N uptake. In particular, P availability strongly affected the way in which plants took up and used N. Nitrogen use efficiency response to nutrient addition was not straightforward. Nitrogen use efficiency differed between leaf and woody tissue, among species, and across the ombrotrophic-minerotrophic gradient because plants and communities were adapted to maximize either A(N) or MRT(N), but not both concurrently. Increased N availability strongly decreased plant and community N uptake efficiency, while increased P availability increased N uptake efficiency, particularly in a nitrogen-fixing shrub. Nitrogen uptake efficiency was more important in controlling overall plant community response to soil N availability than was NUE, and above- and belowground community N uptake efficiencies responded to nutrient addition in a similar manner. Our results demonstrate that plants respond to nutrient availability at multiple biological scales, and we suggest that N uptake efficiency may be a more representative measurement of plant responses to nutrient availability gradients than plant NUE.
C1 [Iversen, Colleen M.; Bridgham, Scott D.; Kellogg, Laurie E.] Univ Notre Dame, Dept Sci, Notre Dame, IN 46556 USA.
RP Iversen, CM (reprint author), Oak Ridge Natl Lab, Div Environm Sci, Oak Ridge, TN 37831 USA.
EM iversencm@ornl.gov
RI Iversen, Colleen/B-8983-2012
FU National Science Foundation
FX This work would not have been possible without the help of K. Lysyshyn,
J. Keller, C. Stewart, and numerous undergraduate researchers. Thanks
are also due to the University of Notre Dame Environmental Research
Center for allowing us to conduct our experiments in these peatland
ecosystems. Comments from two anonymous reviewers greatly improved a
previous version of the manuscript. This experiment was supported by a
National Science Foundation CAREER grant to S. D. Bridgham.
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PU ECOLOGICAL SOC AMER
PI WASHINGTON
PA 1990 M STREET NW, STE 700, WASHINGTON, DC 20036 USA
SN 0012-9658
J9 ECOLOGY
JI Ecology
PD MAR
PY 2010
VL 91
IS 3
BP 693
EP 707
DI 10.1890/09-0064.1
PG 15
WC Ecology
SC Environmental Sciences & Ecology
GA 582XZ
UT WOS:000276635500008
PM 20426329
ER
PT J
AU Kardol, P
Cregger, MA
Campany, CE
Classen, AT
AF Kardol, Paul
Cregger, Melissa A.
Campany, Courtney E.
Classen, Aimee T.
TI Soil ecosystem functioning under climate change: plant species and
community effects
SO ECOLOGY
LA English
DT Article
DE elevated [CO(2)]; extracellular enzymes; Festuca pratense; global
warming; Lespedeza cuneata; multifactor experiment; nematodes; Oak
Ridge, Tennessee, USA; old fields; open-top chambers; precipitation;
redundancy analysis
ID ELEVATED CARBON-DIOXIDE; EXTRACELLULAR ENZYME-ACTIVITY; TEMPERATURE
SENSITIVITY; TERRESTRIAL ECOSYSTEMS; WATER AVAILABILITY; BIOMASS
PRODUCTION; ATMOSPHERIC CO2; GLOBAL CHANGE; GRASSLAND; RESPONSES
AB Feedbacks of terrestrial ecosystems to atmospheric and climate change depend on soil ecosystem dynamics. Soil ecosystems can directly and indirectly respond to climate change. For example, warming directly alters microbial communities by increasing their activity. Climate change may also alter plant community composition, thus indirectly altering the soil communities that depend on their inputs. To better understand how climate change may directly and indirectly alter soil ecosystem functioning, we investigated old-field plant community and soil ecosystem responses to single and combined effects of elevated [CO(2)], warming, and precipitation in Tennessee (USA). Specifically, we collected soils at the plot level (plant community soils) and beneath dominant plant species (plant-specific soils). We used microbial enzyme activities and soil nematodes as indicators for soil ecosystem functioning.
Our study resulted in two main findings: (I) Overall, while there were some interactions, water, relative to increases in [CO(2)] and warming, had the largest impact on plant community composition, soil enzyme activity, and soil nematodes. Multiple climate-change factors can interact to shape ecosystems, but in our study, those interactions were largely driven by changes in water. (2) Indirect effects of change, via changes in plant communities, had a significant impact on soil ecosystem functioning, and this impact was not obvious when looking at plant community soils. Climate-change effects on enzyme activities and soil nematode abundance and community structure strongly differed between plant community soils and plant-specific soils, but also within plant-specific soils.
These results indicate that accurate assessments of climate-change impacts on soil ecosystem functioning require incorporating the concurrent changes in plant function and plant community composition. Climate-change-induced shifts in plant community composition will likely modify or counteract the direct impact of atmospheric and climate change on soil ecosystem functioning, and hence, these indirect effects should be taken into account when predicting the manner in which global change will alter ecosystem functioning.
C1 [Kardol, Paul] Oak Ridge Natl Lab, Div Environm Sci, Oak Ridge, TN 37831 USA.
[Kardol, Paul; Cregger, Melissa A.; Campany, Courtney E.; Classen, Aimee T.] Univ Tennessee, Dept Ecol & Evolutionary Biol, Knoxville, TN 37919 USA.
RP Kardol, P (reprint author), Swedish Univ Agr Sci, Fac Forest Ecol & Management, SE-90183 Umea, Sweden.
EM Paul.Kardol@seksko.slu.se
RI Kardol, Paul/A-2600-2010; Classen, Aimee/C-4035-2008; Kardol,
Paul/N-8383-2015
OI Classen, Aimee/0000-0002-6741-3470; Kardol, Paul/0000-0001-7065-3435
FU U.S. Department of Energy, Office of Science [DE-FG02-02ER63366,
DE-AC05-000R22725]
FX We thank Emily Austin, Joanne Childs, and Penny Long for technical
assistance: Ernest Bernard (Department of Entomology and Plant
Pathology. University of Tennessee, Knoxville) for advice and use of
equipment: and Richard Norby for critical reading of the manuscript.
Jake Weltzin and Richard Norby were integral in establishing and
designing the experiment. Research was sponsored by the U.S. Department
of Energy, Office of Science, Biological and Environmental Research
Program. grant number DE-FG02-02ER63366, and work was conducted in
collaboration with Oak Ridge National Laboratory, which is managed by
UT-Battelle, LLC, for the U.S. Department of Energy under Contract
DE-AC05-000R22725.
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PU ECOLOGICAL SOC AMER
PI WASHINGTON
PA 1990 M STREET NW, STE 700, WASHINGTON, DC 20036 USA
SN 0012-9658
J9 ECOLOGY
JI Ecology
PD MAR
PY 2010
VL 91
IS 3
BP 767
EP 781
DI 10.1890/09-0135.1
PG 15
WC Ecology
SC Environmental Sciences & Ecology
GA 582XZ
UT WOS:000276635500014
PM 20426335
ER
PT J
AU Bissell, M
AF Bissell, M.
TI Models to study breast cancer invasion and metastases: lessons from
normal
SO EJC SUPPLEMENTS
LA English
DT Meeting Abstract
CT European Breast Cancer Conference
CY MAR 24-24, 2010
CL Barcelona, SPAIN
C1 [Bissell, M.] Lawrence Berkeley Natl Lab, Div Life Sci, Berkeley, CA USA.
NR 0
TC 0
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U1 1
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PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 1359-6349
J9 EJC SUPPL
JI EJC Suppl.
PD MAR
PY 2010
VL 8
IS 3
BP 183
EP 183
DI 10.1016/S1359-6349(10)70449-3
PG 1
WC Oncology
SC Oncology
GA 584MT
UT WOS:000276756900446
ER
PT J
AU Choi, DW
Wang, DH
Viswanathan, VV
Bae, IT
Wang, W
Nie, ZM
Zhang, JG
Graff, GL
Liu, J
Yang, ZG
Duong, T
AF Choi, Daiwon
Wang, Donghai
Viswanathan, Vish V.
Bae, In-Tae
Wang, Wei
Nie, Zimin
Zhang, Ji-Guang
Graff, Gordon L.
Liu, Jun
Yang, Zhenguo
Duong, Tien
TI Li-ion batteries from LiFePO4 cathode and anatase/graphene composite
anode for stationary energy storage
SO ELECTROCHEMISTRY COMMUNICATIONS
LA English
DT Article
DE Li-ion battery; LiFePO4; Anatase TiO2; Graphene; Stationary electrical
storage
ID INSERTION; GRAPHITE; TIO2
AB Li-ion batteries made from LiFePO4 cathode and anatase TiO2/graphene composite anode were investigated for potential application in stationary energy storage. Fine-structured LiFePO4 was synthesized by a novel molten surfactant approach whereas anatase TiO2/graphene nanocomposite was prepared via self-assembly method. The full cell that operated at 1.6 V demonstrated negligible fade even after more than 700 cycles at measured 1 C rate. While with relative lower energy density than traditional Li-ion chemistries interested for vehicle applications, the Li-ion batteries based on LiFePO4/TiO2 combination potentially offers long life and low cost, along with safety, all which are critical to the stationary applications. Published by Elsevier B.V.
C1 [Choi, Daiwon; Wang, Donghai; Viswanathan, Vish V.; Wang, Wei; Nie, Zimin; Zhang, Ji-Guang; Graff, Gordon L.; Liu, Jun; Yang, Zhenguo] Pacific NW Natl Lab, Richland, WA 99352 USA.
[Bae, In-Tae] SUNY Binghamton, Small Scale Syst Integrat & Packaging Ctr, Binghamton, NY 13902 USA.
[Duong, Tien] US DOE, Washington, DC USA.
RP Choi, DW (reprint author), Pacific NW Natl Lab, 902 Battelle Blvd,POB 999, Richland, WA 99352 USA.
EM daiwon.choi@pnl.gov
RI Wang, Wei/F-4196-2010; Wang, Wei/E-4366-2010; Choi, Daiwon/B-6593-2008;
Wang, Donghai/L-1150-2013
OI Wang, Wei/0000-0002-5453-4695; Wang, Donghai/0000-0001-7261-8510
FU Pacific Northwest National Laboratory (PNNL); Office of Electricity
Delivery and Energy Reliability (OE), US Department of Energy (DOE)
FX The work is supported by Laboratory-Directed Research and Development
Program of the Pacific Northwest National Laboratory (PNNL) and by the
Office of Electricity Delivery and Energy Reliability (OE), US
Department of Energy (DOE). Authors would like to thank Dr. Imre Gyuk at
DOE-OE for discussion. SEM investigation was performed in
S3IP Center at SUNY Binghamton by Empire State Development
Corporation.
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PI NEW YORK
PA 360 PARK AVE SOUTH, NEW YORK, NY 10010-1710 USA
SN 1388-2481
J9 ELECTROCHEM COMMUN
JI Electrochem. Commun.
PD MAR
PY 2010
VL 12
IS 3
BP 378
EP 381
DI 10.1016/j.elecom.2009.12.039
PG 4
WC Electrochemistry
SC Electrochemistry
GA 571VS
UT WOS:000275784600013
ER
PT J
AU Wang, XJ
Lee, HS
Li, H
Yang, XQ
Huang, XJ
AF Wang, X. J.
Lee, H. S.
Li, H.
Yang, X. Q.
Huang, X. J.
TI The effects of substituting groups in cyclic carbonates for stable SEI
formation on graphite anode of lithium batteries
SO ELECTROCHEMISTRY COMMUNICATIONS
LA English
DT Article
DE SEI film; Ring-opening reaction; Lithium-ion batteries; Electrolytes
ID PROPYLENE CARBONATE; ION BATTERIES; ELECTROLYTES; ALKALI; INTERCALATION;
DECOMPOSITION; REDUCTION; BEHAVIOR; ETHYLENE; SOLVENT
AB Monofluoropropylene carbonate (MFPC) and trifluoropropylene carbonate (TFPC) with a monofluoromethyl (or trifluoromethyl) replacing the methyl group in propylene carbonate (PC) as well as EC-CH(2)CH(2)Si(CH(3))(2)OSi(CH(3))(3) (Si-A) and EC-CH(2)CH(2)Si(CH(3))(3) (Si-B) have been synthesized. The charge-discharge studies in a Li/MCMB (mesocarbon microbeads) cell using electrolyte containing these compounds show that the solid electrolyte interphase (SE!) formation capability of MFPC/DMC (dimethyl carbonate) and TFPC/DMC are about the same as ethylene carbonate (EC)/DMC, and TFPC/PC/DMC is better than that of EC/PC/DMC, while MFPC/PC/DMC is poorer than the EC/PC/DMC. The superior SEI formation capability of TFPC could be attributed to the strong electron withdrawing group of CF(3), which promote the "ring opening" reaction. In contrast, the electron donating group CH(3) in the PC structure may demote the "ring opening" and cause the poor SEI formation. The results of MFPC with weaker electron withdrawing group give further support of this hypothesis. The bi-solvent electrolytes of Si-A/DMC and Si-B/DMC have comparable SEI formation capability as EC/DMC and TFPC/DMC, regardless of their bulky chains. This indicates that if proper chain structures are used, good SEI formation capability could be obtained for cyclic carbonate with bulky chains. These new solvents provide valuable information in studying the SEI formation mechanism and designing new electrolytes. (C) 2010 Elsevier B.V. All rights reserved.
C1 [Wang, X. J.; Li, H.; Huang, X. J.] Chinese Acad Sci, Inst Phys, Beijing 100190, Peoples R China.
[Wang, X. J.; Lee, H. S.; Yang, X. Q.] Brookhaven Natl Lab, Upton, NY 11973 USA.
RP Li, H (reprint author), Chinese Acad Sci, Inst Phys, Beijing 100190, Peoples R China.
EM hli@aphy.iphy.ac.cn; xqyang@gmail.com
RI Li, Hong/C-4643-2008
OI Li, Hong/0000-0002-8659-086X
FU Nature Scientific Foundation of China [50730005, 60621061]; "973"
project [2007CB936501]; US Department of Energy [DEAC02-98CH10886]
FX The work in CAS was supported by Nature Scientific Foundation of China
(50730005 and 60621061) and "973" project (2007CB936501). The work at
BNL was supported by the Assistant Secretary for Energy Efficiency and
Renewable Energy, Office of Vehicle Technologies, of the US Department
of Energy under Contract Number DEAC02-98CH10886.
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PU ELSEVIER SCIENCE INC
PI NEW YORK
PA 360 PARK AVE SOUTH, NEW YORK, NY 10010-1710 USA
SN 1388-2481
J9 ELECTROCHEM COMMUN
JI Electrochem. Commun.
PD MAR
PY 2010
VL 12
IS 3
BP 386
EP 389
DI 10.1016/j.elecom.2009.12.041
PG 4
WC Electrochemistry
SC Electrochemistry
GA 571VS
UT WOS:000275784600015
ER
PT J
AU Zhao, N
He, YQ
Mao, X
Sun, YH
Zhang, XB
Li, CZ
Lin, YH
Liu, GD
AF Zhao, Ning
He, Yuqing
Mao, Xun
Sun, Yuhan
Zhang, Xibao
Li, Chen-zhong
Lin, Yuehe
Liu, Guodong
TI Electrochemical assay of active prostate-specific antigen (PSA) using
ferrocene-functionalized peptide probes
SO ELECTROCHEMISTRY COMMUNICATIONS
LA English
DT Article
DE Prostate-specific antigen (PSA); Electrochemistry; Peptide; Ferrocene
ID ENZYME-ACTIVITY; CANCER; FORMS
AB This paper presents a novel approach to electrochemically determine enzymatically active PSA using ferrocene-functionalized helix peptide (CHSSLKQK). The principle of electrochemical measurement is based on the specific proteolytic cleavage events of the FC-peptide on the gold electrode surface in the presence of PSA, resulting the change of the current signal of the electrode. The percentage of the decreased current is linear with the concentration of active PSA at the range of 0.5-40 ng mL(-1) with a detection limit of 0.2 ng mL(-1). The direct transduction of peptide cleavage events into an electrical signal provides a simple, sensitive method for detecting the enzymatic activity of PSA and determining the active PSA concentration. Published by Elsevier B.V.
C1 [He, Yuqing; Zhang, Xibao] Guangzhou Inst Dermatol, Dept Dermatol, Guangzhou 510095, Guangdong, Peoples R China.
[Zhao, Ning; Mao, Xun; Liu, Guodong] N Dakota State Univ, Dept Chem & Mol Biol, Fargo, ND 58105 USA.
[Zhao, Ning; Sun, Yuhan] Chinese Acad Sci, Inst Coal Chem, State Key Lab Coal Convers, Taiyuan 030001, Peoples R China.
[Li, Chen-zhong] Florida Int Univ, Dept Biomed Engn, Nanobioengn Bioelect Lab, Miami, FL 33199 USA.
[Lin, Yuehe] Pacific NW Natl Lab, Richland, WA 99352 USA.
RP Zhang, XB (reprint author), Guangzhou Inst Dermatol, Dept Dermatol, Guangzhou 510095, Guangdong, Peoples R China.
EM zxibao@126.com; guodong.liu@ndsu.edu
RI Lin, Yuehe/D-9762-2011
OI Lin, Yuehe/0000-0003-3791-7587
FU North Dakota Experimental Program to Stimulate Competitive Research
(EPSCoR); North Dakota State University; Pacific Northwest National
laboratory (PNNL)
FX G. Liu acknowledges financial support from the North Dakota Experimental
Program to Stimulate Competitive Research (EPSCoR) and new faculty
startup funds from North Dakota State University. Y. Lin acknowledges
the financial support from the laboratory directed research and
development program at Pacific Northwest National laboratory (PNNL).
PNNL is operated by Battelle for DOE under Contract DE-AC05-76RL01830.
NR 16
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PU ELSEVIER SCIENCE INC
PI NEW YORK
PA 360 PARK AVE SOUTH, NEW YORK, NY 10010-1710 USA
SN 1388-2481
J9 ELECTROCHEM COMMUN
JI Electrochem. Commun.
PD MAR
PY 2010
VL 12
IS 3
BP 471
EP 474
DI 10.1016/j.elecom.2010.01.022
PG 4
WC Electrochemistry
SC Electrochemistry
GA 571VS
UT WOS:000275784600036
ER
PT J
AU Wang, Y
Mukherjee, PP
Mishler, J
Mukundan, R
Borup, RL
AF Wang, Yun
Mukherjee, Partha P.
Mishler, Jeff
Mukundan, Rangachary
Borup, Rodney L.
TI Cold start of polymer electrolyte fuel cells: Three-stage startup
characterization
SO ELECTROCHIMICA ACTA
LA English
DT Article
DE PEM fuel cell; Cold start; Temperature dependence; Analysis; Voltage
loss
ID OXYGEN REDUCTION REACTION; TEMPERATURE-DEPENDENCE; CATHODE ELECTRODE;
LAYER ELECTRODES; REACTION-RATES; TAFEL SLOPE; MODEL; PLATINUM;
KINETICS; PERFORMANCE
AB In this paper, the electrochemical kinetics, oxygen transport and solid water formation within the cathode electrode of polymer electrolyte fuel cells (PEFCs) during cold start is investigated. We specifically evaluate the key parameters that govern the self-startup of PEFCs by considering a wide range of the relevant factors. These parameters include characteristic time scales of cell warm-up, ionomer hydration in the catalyst layer, ice build-up and melting, as well as the ratios of the time constants. Supporting experimental observation using neutron imaging and isothermal cold start experiment is discussed. Gas purge is found to facilitate the PEFC cold start but the improvement may be relatively small compared with other methods such as selecting suitable materials and modifying the cell design. We define a three-step electrode process for cold start and conduct a one-dimensional analysis, which enables the evaluation of the impact of ice volume fraction and temperature variations on the cell cold start performance. The ionic conductivity data of Nafion (R) 117 membrane at subfreezing temperature, evaluated from experiment, is utilized to analyze the temperature dependence of the ohmic polarization during cold start. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Wang, Yun; Mishler, Jeff] Univ Calif Irvine, Dept Mech & Aerosp Engn, RERL, Irvine, CA 92697 USA.
[Wang, Yun; Mishler, Jeff] Univ Calif Irvine, Dept Mech & Aerosp Engn, Natl Fuel Cell Res Ctr, Irvine, CA 92697 USA.
[Mukherjee, Partha P.; Mukundan, Rangachary; Borup, Rodney L.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Wang, Y (reprint author), Univ Calif Irvine, Dept Mech & Aerosp Engn, RERL, Irvine, CA 92697 USA.
EM yunw@uci.edu
OI Mukundan, Rangachary/0000-0002-5679-3930
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PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0013-4686
J9 ELECTROCHIM ACTA
JI Electrochim. Acta
PD MAR 1
PY 2010
VL 55
IS 8
BP 2636
EP 2644
DI 10.1016/j.electacta.2009.12.029
PG 9
WC Electrochemistry
SC Electrochemistry
GA 574JQ
UT WOS:000275985700008
ER
PT J
AU Sasaki, K
Wang, JX
Naohara, H
Marinkovic, N
More, K
Inada, H
Adzic, RR
AF Sasaki, K.
Wang, J. X.
Naohara, H.
Marinkovic, N.
More, K.
Inada, H.
Adzic, R. R.
TI Recent advances in platinum monolayer electrocatalysts for oxygen
reduction reaction: Scale-up synthesis, structure and activity of Pt
shells on Pd cores
SO ELECTROCHIMICA ACTA
LA English
DT Article
DE Oxygen reduction; Platinum; Electrocatalysis; Fuel cells
ID METAL NANOPARTICLES; ELECTRODE; DEPOSITION; CATALYSTS
AB We have established a scale-up synthesis method to produce gram-quantities of Pt monolayer electrocatalysts. The core-shell structure of the Pt/Pd/C electrocatalyst has been verified using the HAADF-STEM Z-contrast images, STEM/EELS, and STEM/EDS line profile analysis. The atomic structure of this electrocatalyst and formation of a Pt monolayer on Pd nanoparticle surfaces were examined using in situ EXAFS. The Pt mass activity of the Pt/Pd/C electrocatalyst for ORR is considerably higher than that of commercial Pt/C electrocatalysts. The results with Pt monolayer electrocatalysts may significantly impact science of electrocatalysis and fuel-cell technology, as they have demonstrated an exceptionally effective way of using Pt that can resolve problems of other approaches, including electrocatalysts' inadequate activity and high Pt content. Published by Elsevier Ltd.
C1 [Sasaki, K.; Wang, J. X.; Adzic, R. R.] Brookhaven Natl Lab, Dept Chem, Upton, NY 11973 USA.
[Naohara, H.] Toyota Motor Co Ltd, Susono 4101193, Japan.
[Marinkovic, N.] Univ Delaware, Dept Chem Engn, Newark, DE 19716 USA.
[More, K.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
[Inada, H.] Hitachi High Technol Amer, Pleasanton, CA 94588 USA.
RP Sasaki, K (reprint author), Brookhaven Natl Lab, Dept Chem, Upton, NY 11973 USA.
EM ksasaki@bnl.gov; adzic@bnl.gov
RI Wang, Jia/B-6346-2011; Marinkovic, Nebojsa/A-1137-2016; More,
Karren/A-8097-2016
OI Marinkovic, Nebojsa/0000-0003-3579-3453; More,
Karren/0000-0001-5223-9097
FU U.S. Department of Energy, Divisions of Chemical and Material Sciences
[DE-AC02-98CH10886]; Toyota Motor Corporation [BNL-C-05-09]
FX This work is supported by U.S. Department of Energy, Divisions of
Chemical and Material Sciences under the Contract No. DE-AC02-98CH10886,
and Toyota Motor Corporation under the CRADA No. BNL-C-05-09. The
authors thank A.I. Frenkel for helpful discussion of the EXAFS analysis.
NR 18
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PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0013-4686
J9 ELECTROCHIM ACTA
JI Electrochim. Acta
PD MAR 1
PY 2010
VL 55
IS 8
BP 2645
EP 2652
DI 10.1016/j.electacta.2009.11.106
PG 8
WC Electrochemistry
SC Electrochemistry
GA 574JQ
UT WOS:000275985700009
ER
PT J
AU Mei, A
Wang, XL
Lan, JL
Feng, YC
Geng, HX
Lin, YH
Nan, CW
AF Mei, Ao
Wang, Xiao-Liang
Lan, Jin-Le
Feng, Yu-Chuan
Geng, Hong-Xia
Lin, Yuan-Hua
Nan, Ce-Wen
TI Role of amorphous boundary layer in enhancing ionic conductivity of
lithium-lanthanum-titanate electrolyte
SO ELECTROCHIMICA ACTA
LA English
DT Article
DE Solid state electrolyte; Lithium lanthanum titanate; Lithium ionic
battery; Composites; Amorphous layer
ID CRYSTAL-STRUCTURE; BATTERY; MICROSCOPY; CONDUCTORS; OXIDES; PHASE
AB The low ionic conductivity is a bottleneck of the inorganic solid state electrolyte used for lithium ion battery. In ceramic electrolytes, grain boundary usually dominates the total conductivity. In order to improve the grain boundary effect, an amorphous silica layer is introduced into grain boundary of ceramic electrolytes based on lithium-lanthanum-titanate, as evidenced by electron microscopy. The results showed that the total ionic conductivity could be to be enhanced over 1 x 10(-4) S/cm at room temperature. The reasons can be attributed to removing the anisotropy of outer-shell of grains, supplement of lithium ions in various sites in grain boundary and close bindings among grains by the amorphous boundary layer among grains. (C) 2010 Elsevier Ltd. All rights reserved.
C1 [Mei, Ao; Lan, Jin-Le; Feng, Yu-Chuan; Geng, Hong-Xia; Lin, Yuan-Hua; Nan, Ce-Wen] Tsinghua Univ, Dept Mat Sci & Engn, Beijing 100084, Peoples R China.
[Mei, Ao; Lan, Jin-Le; Feng, Yu-Chuan; Geng, Hong-Xia; Lin, Yuan-Hua; Nan, Ce-Wen] Tsinghua Univ, State Key Lab New Ceram & Fine Proc, Beijing 100084, Peoples R China.
[Wang, Xiao-Liang] Brookhaven Natl Lab, Ctr Funct Nanomat, Upton, NY 11973 USA.
RP Nan, CW (reprint author), Tsinghua Univ, Dept Mat Sci & Engn, Beijing 100084, Peoples R China.
EM cwnan@tsinghua.edu.cn
RI Lan, Jin-Le/M-9053-2014
OI Lan, Jin-Le/0000-0001-6844-0879
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PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0013-4686
J9 ELECTROCHIM ACTA
JI Electrochim. Acta
PD MAR 1
PY 2010
VL 55
IS 8
BP 2958
EP 2963
DI 10.1016/j.electacta.2010.01.036
PG 6
WC Electrochemistry
SC Electrochemistry
GA 574JQ
UT WOS:000275985700051
ER
PT J
AU Griffiths, SK
Nilson, RH
AF Griffiths, Stewart K.
Nilson, Robert H.
TI Optimization of charged species separation by autogenous electric
field-flow fractionation in nano-scale channels
SO ELECTROPHORESIS
LA English
DT Article
DE Electric; Field-flow; Fractionation; Nano-scale; Optimization
ID ELECTROKINETIC TRANSPORT; ZETA-POTENTIALS; RECTANGULAR CHANNELS; FLUIDIC
CHANNELS; PRESSURE-DRIVEN; NANOCHANNELS; DISPERSION; SOLUTE; CAPILLARY;
ELECTROMIGRATION
AB Numerical methods are employed to examine the resolution and optimization of a relatively new technique for charged species separation that is based on flow along nanoscale channels having an electric double-layer thickness comparable to the channel size. In such channels, the electric field inherent to the double-layer produces transverse species distributions that depend on the species charge Flow along the channel thus yields mean axial species speeds that also depend on the species charge, enabling species separation and identification. Building on earlier work describing retention and plate heights, here we characterize this new type of field-flow fractionation via the classic metric of resolution Sample results are presented and discussed for a wide range of conditions for both pressure-driven and electroosmotic flows Optimum design and operating conditions are also examined We find that resolution is maximized for optimum values of the zeta potential and Debye layer thickness and that these optima depend strongly on the species charge or range of charges of interest. Under optimum conditions, acceptable resolution can be obtained over a wide range of species charges for pressure-driven flows This separable range of charges is much smaller for electroosmotic flows Finally, sample calculations are presented showing that all species in the range of charge between -8 to 10 can be separated simultaneously with resolutions above unity, and this is possible in less than 6 s under optimum conditions that are readily achievable.
C1 [Griffiths, Stewart K.; Nilson, Robert H.] Sandia Natl Labs, Livermore, CA 94550 USA.
RP Griffiths, SK (reprint author), Sandia Natl Labs, Livermore, CA 94550 USA.
FU Sandia Engineering Sciences LDRD; United States Department of Energy
[DE-AC04-94AL85000]
FX This work was funded in part by a Sandia Engineering Sciences LDRD.
Sandia is a multi-program laboratory operated by Sandia Corporation, a
Lockheed Martin Company, for the United States Department of Energy
under contract DE-AC04-94AL85000.
NR 37
TC 2
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U1 0
U2 8
PU WILEY-V C H VERLAG GMBH
PI WEINHEIM
PA PO BOX 10 11 61, D-69451 WEINHEIM, GERMANY
SN 0173-0835
J9 ELECTROPHORESIS
JI Electrophoresis
PD MAR
PY 2010
VL 31
IS 5
SI SI
BP 832
EP 842
DI 10.1002/elps.200900542
PG 11
WC Biochemical Research Methods; Chemistry, Analytical
SC Biochemistry & Molecular Biology; Chemistry
GA 570RT
UT WOS:000275696400007
PM 20191545
ER
PT J
AU Levinson, R
Akbari, H
AF Levinson, Ronnen
Akbari, Hashem
TI Potential benefits of cool roofs on commercial buildings: conserving
energy, saving money, and reducing emission of greenhouse gases and air
pollutants
SO ENERGY EFFICIENCY
LA English
DT Article
DE Air pollution; Building energy simulation; Carbon dioxide; Cool roof;
Cooling energy; Energy cost; Greenhouse gas; Heating energy; Mercury;
Nitrogen oxides; Solar reflectance; Sulfur dioxide
AB Cool roofs-roofs that stay cool in the sun by minimizing solar absorption and maximizing thermal emission-lessen the flow of heat from the roof into the building, reducing the need for space cooling energy in conditioned buildings. Cool roofs may also increase the need for heating energy in cold climates. For a commercial building, the decrease in annual cooling load is typically much greater than the increase in annual heating load. This study combines building energy simulations, local energy prices, local electricity emission factors, and local estimates of building density to characterize local, state average, and national average cooling energy savings, heating energy penalties, energy cost savings, and emission reductions per unit conditioned roof area. The annual heating and cooling energy uses of four commercial building prototypes-new office (1980+), old office (pre-1980), new retail (1980+), and old retail (pre-1980)-were simulated in 236 US cities. Substituting a weathered cool white roof (solar reflectance 0.55) for a weathered conventional gray roof (solar reflectance 0.20) yielded annually a cooling energy saving per unit conditioned roof area ranging from 3.30 kWh/m(2) in Alaska to 7.69 kWh/m(2) in Arizona (5.02 kWh/m(2) nationwide); a heating energy penalty ranging from 0.003 therm/m(2) in Hawaii to 0.14 therm/m(2) in Wyoming (0.065 therm/m(2) nationwide); and an energy cost saving ranging from $0.126/m(2) in West Virginia to $1.14/m(2) in Arizona ($0.356/m(2) nationwide). It also offered annually a CO(2) reduction ranging from 1.07 kg/m(2) in Alaska to 4.97 kg/m(2) in Hawaii (3.02 kg/m(2) nationwide); an NO(x) reduction ranging from 1.70 g/m(2) in New York to 11.7 g/m(2) in Hawaii (4.81 g/m(2) nationwide); an SO(2) reduction ranging from 1.79 g/m(2) in California to 26.1 g/m(2) in Alabama (12.4 g/m(2) nationwide); and an Hg reduction ranging from 1.08 mu g/m(2) in Alaska to 105 mu g/m(2) in Alabama (61.2 mu g/m(2) nationwide). Retrofitting 80% of the 2.58 billion square meters of commercial building conditioned roof area in the USA would yield an annual cooling energy saving of 10.4 TWh; an annual heating energy penalty of 133 million therms; and an annual energy cost saving of $735 million. It would also offer an annual CO(2) reduction of 6.23 Mt, offsetting the annual CO(2) emissions of 1.20 million typical cars or 25.4 typical peak power plants; an annual NO(x) reduction of 9.93 kt, offsetting the annual NO(x) emissions of 0.57 million cars or 65.7 peak power plants; an annual SO(2) reduction of 25.6 kt, offsetting the annual SO(2) emissions of 815 peak power plants; and an annual Hg reduction of 126 kg.
C1 [Levinson, Ronnen; Akbari, Hashem] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
RP Levinson, R (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, 1 Cyclotron Rd,MS 90R2000, Berkeley, CA 94720 USA.
EM RML27@cornell.edu
FU Sika Sarnafil corporation; Assistant Secretary for Renewable Energy
[DE-AC02-05CH11231]
FX This study was funded by the Sika Sarnafil corporation. The writing of
this document was supported by the Assistant Secretary for Renewable
Energy under Contract No. DE-AC02-05CH11231. We would like to thank
Kevin Foley, Stanley Graveline, and Brian Whelan of Sika Sarnafil for
their comments. We would also like to thank Art Diem of the US EPA for
assistance with eGRID electricity emission factors, and Miguel Echavarri
of Intelimap, Inc. for supplying eGRID mapping data.
NR 28
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U1 4
U2 29
PU SPRINGER
PI DORDRECHT
PA VAN GODEWIJCKSTRAAT 30, 3311 GZ DORDRECHT, NETHERLANDS
SN 1570-646X
J9 ENERG EFFIC
JI Energy Effic.
PD MAR
PY 2010
VL 3
IS 1
BP 53
EP 109
DI 10.1007/s12053-008-9038-2
PG 57
WC GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY; Energy & Fuels; Environmental
Studies
SC Science & Technology - Other Topics; Energy & Fuels; Environmental
Sciences & Ecology
GA 796QD
UT WOS:000293065800004
ER
PT J
AU Chakravarthy, VK
Daw, CS
Pihl, JA
Conklin, JC
AF Chakravarthy, V. Kalyana
Daw, C. Stuart
Pihl, Josh A.
Conklin, James C.
TI Study of the Theoretical Potential of Thermochemical Exhaust Heat
Recuperation for Internal Combustion Engines
SO ENERGY & FUELS
LA English
DT Article
ID GAS-TURBINE; POWER-PLANT; PERFORMANCE; DESTRUCTION; EXERGY
AB A detailed thermodynamic analysis of thermochemical recuperation (TCR) applied to an idealized internal combustion engine with single-stage work extraction is presented. Results for several different fuels are included. For a stoichiometric mixture of methanol and air, TCR can increase the estimated ideal engine second law efficiency by about 3% for constant pressure reforming and over 5% for constant volume reforming. For ethanol and isooctane, the estimated second law efficiency increases for constant volume reforming are 9 and 1 1%, respectively. The second law efficiency improvements from TCR result primarily from the higher intrinsic exergy of the reformed fuel and pressure boost associated with the gas mole increase. Reduced combustion irreversibility may also yield benefits for future implementations of combined cycle work extraction.
C1 [Chakravarthy, V. Kalyana; Daw, C. Stuart; Pihl, Josh A.; Conklin, James C.] Oak Ridge Natl Lab, Fuels Engines & Emiss Res Ctr, Knoxville, TN 37932 USA.
RP Pihl, JA (reprint author), Oak Ridge Natl Lab, Fuels Engines & Emiss Res Ctr, 2360 Cherahala Blvd, Knoxville, TN 37932 USA.
EM pihlja@ornl.gov
FU U.S. Department of Energy (DOE) [DE-AC05-00OR22725]; Gurpreet Singh of
the Office of Vehicle Technologies, DOE
FX This research was sponsored by the U.S. Department of Energy (DOE) under
Contract DE-AC05-00OR22725 with the Oak Ridge National Laboratory,
managed by UT-Battelle, LLC. The authors specifically thank Gurpreet
Singh of the Office of Vehicle Technologies, DOE, for sponsoring this
work. The authors also thank Dr. K. Dean Edwards of Oak Ridge National
Laboratory for enlightening discussions and insights.
NR 18
TC 7
Z9 7
U1 3
U2 16
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 0887-0624
J9 ENERG FUEL
JI Energy Fuels
PD MAR
PY 2010
VL 24
BP 1529
EP 1537
DI 10.1021/ef901113b
PG 9
WC Energy & Fuels; Engineering, Chemical
SC Energy & Fuels; Engineering
GA 581YY
UT WOS:000276563100008
ER
PT J
AU Cheng, AS
Fisher, BT
Martin, GC
Mueller, CJ
AF Cheng, A. S. (Ed)
Fisher, Brian T.
Martin, Glen C.
Mueller, Charles J.
TI Effects of Fuel Volatility on Early Direct-Injection, Low-Temperature
Combustion in an Optical Diesel Engine
SO ENERGY & FUELS
LA English
DT Article
AB The effect of fuel volatility on early direct-injection, low-temperature combustion (LTC) was investigated using an optically accessible diesel engine. Five blends of conventional no. 2 diesel fuel and a high-volatility (HV) fuel mixture of n-heptane and toluene having approximately the same ignition quality were tested over a range of injection timings at steady-state speed-load operating conditions. Diagnostics included conventional heat-release analysis, the measurement of spatially integrated broadband light emitted during the combustion process (natural luminosity), and high-speed, in-cylinder imaging of both natural luminosity and laser light elastically scattered from liquid-phase fuel in the charge gas. Engine-out emissions of nitrogen oxides (NO(x)), smoke, unburned hydrocarbons (HC), and carbon monoxide (CO) also were monitored. Results show that, as the injection timing is advanced during LTC operation, liquid-fuel films on in-cylinder surfaces are likely to form because of low in-cylinder gas and surface temperatures, particularly for the lower-volatility fuels. Such liquid-fuel films can lead to pool fires and higher smoke, HC, and CO emissions, as well as lower fuel-conversion efficiencies. Increasing H V fuel content was found to be an effective means of reducing or eliminating liquid-fuel films and pool fires, as well as their undesirable effects on efficiency and emissions. Small increases in the H V content produced large changes under conditions where pool-fire activity was significant. For the LTC conditions studied, an H V content of 78% eliminated pool fires and reduced smoke emissions to near-zero levels.
C1 [Cheng, A. S. (Ed)] San Francisco State Univ, Sch Engn, San Francisco, CA 94132 USA.
[Fisher, Brian T.; Martin, Glen C.; Mueller, Charles J.] Sandia Natl Labs, Combust Res Facil, Livermore, CA 94550 USA.
RP Cheng, AS (reprint author), San Francisco State Univ, Sch Engn, San Francisco, CA 94132 USA.
EM ascheng@sfsu.edu
FU U.S. Department of Energy, Office of Vehicle Technologies; U.S.
Department of Energy's National Nuclear Security Administration
[DE-AC04-94AL85000]
FX Funding for this research was provided by the U.S. Department of Energy,
Office of Vehicle Technologies. The authors thank program manager Kevin
Stork for supporting this study. The research was conducted at the
Combustion Research Facility, Sandia National Laboratories, Livermore,
CA. Sandia is a multiprogram laboratory operated by Sandia Corp., a
Lockheed Martin Company, for the U.S. Department of Energy's National
Nuclear Security Administration under Contract DE-AC04-94AL85000.
NR 16
TC 28
Z9 28
U1 0
U2 13
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 0887-0624
J9 ENERG FUEL
JI Energy Fuels
PD MAR
PY 2010
VL 24
BP 1538
EP 1551
DI 10.1021/ef9011142
PG 14
WC Energy & Fuels; Engineering, Chemical
SC Energy & Fuels; Engineering
GA 581YY
UT WOS:000276563100009
ER
PT J
AU Kauffman, DR
Tang, YF
Kichambare, PD
Jackovitz, JF
Star, A
AF Kauffman, Douglas R.
Tang, Yifan
Kichambare, Padmakar D.
Jackovitz, John F.
Star, Alexander
TI Long-Term Performance of Pt-Decorated Carbon Nanotube Cathodes in
Phosphoric Acid Fuel Cells
SO ENERGY & FUELS
LA English
DT Article
ID INTERFACIAL CHARACTERISTICS; CATALYSTS; METHANOL; NANOPARTICLES;
PLATINUM; ELECTROOXIDATION; NANOSTRUCTURES; DEPOSITION; REDUCTION;
MEMBRANES
AB We report the electrochemical properties and performance of Pt-decorated carbon nanotube (Pt-CNT) catalysts for long-term operation in phosphoric acid fuel cells (PAFCs). Electrochemical measurements of Pt-CNT catalysts including cyclic voltammetry, rotating ring disk electrode voltammetry, and electrochemical impedance spectroscopy were conducted to evaluate the catalyzed oxygen reduction reaction (ORR). Furthermore, we tested the long-term performance of the Pt-CNT catalysts in 2 '' x 2 '' PAFC cathodes operating at 190 C in 85% H(3)PO(4) for extended periods (up to 240 days). Lifetime studies show that electrodes containing the Pt-CNT catalysts were approximately 20 times more stable than conventional Pt-C catalyst materials, even with a substantially thinner catalyst layer. This finding of the enhanced Pt-CNT catalyst stability bodes well for possible personal electronics or automotive applications, where catalyst longevity is an essential requirement.
C1 [Kauffman, Douglas R.; Tang, Yifan; Kichambare, Padmakar D.; Jackovitz, John F.; Star, Alexander] Univ Pittsburgh, Dept Chem, Pittsburgh, PA 15260 USA.
[Kauffman, Douglas R.; Tang, Yifan; Star, Alexander] US DOE, Natl Energy Technol Lab, Pittsburgh, PA 15263 USA.
RP Star, A (reprint author), Univ Pittsburgh, Dept Chem, Pittsburgh, PA 15260 USA.
EM astar@pitt.edu
RI Tang, Yifan/F-4275-2012; Star, Alexander/C-3399-2013;
OI Kauffman, Douglas/0000-0002-7855-3428
FU Pennsylvania NanoMaterials Commercialization Center through Department
of Community and Economic Development (DCED)
FX D.R.K. acknowledges a graduate student fellowship through Bayer
MaterialScience. This work was supported by the Pennsylvania
NanoMaterials Commercialization Center through funding provided by the
Department of Community and Economic Development (DCED). We also thank
the technical staff of Hydrogen, LLC for performing the fuel cell
lifetime measurements and the Department of Materials Science and
Engineering at the University of Pittsburgh for access to the SEM, TEM,
and XRD instrumentation.
NR 37
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U1 4
U2 28
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 0887-0624
J9 ENERG FUEL
JI Energy Fuels
PD MAR
PY 2010
VL 24
BP 1877
EP 1881
DI 10.1021/ef100013v
PG 5
WC Energy & Fuels; Engineering, Chemical
SC Energy & Fuels; Engineering
GA 581YY
UT WOS:000276563100051
ER
PT J
AU Spangler, LH
Dobeck, LM
Repasky, KS
Nehrir, AR
Humphries, SD
Barr, JL
Keith, CJ
Shaw, JA
Rouse, JH
Cunningham, AB
Benson, SM
Oldenburg, CM
Lewicki, JL
Wells, AW
Diehl, JR
Strazisar, BR
Fessenden, JE
Rahn, TA
Amonette, JE
Barr, JL
Pickles, WL
Jacobson, JD
Silver, EA
Male, EJ
Rauch, HW
Gullickson, KS
Trautz, R
Kharaka, Y
Birkholzer, J
Wielopolski, L
AF Spangler, Lee H.
Dobeck, Laura M.
Repasky, Kevin S.
Nehrir, Amin R.
Humphries, Seth D.
Barr, Jamie L.
Keith, Charlie J.
Shaw, Joseph A.
Rouse, Joshua H.
Cunningham, Alfred B.
Benson, Sally M.
Oldenburg, Curtis M.
Lewicki, Jennifer L.
Wells, Arthur W.
Diehl, J. Rodney
Strazisar, Brian R.
Fessenden, Julianna E.
Rahn, Thom A.
Amonette, James E.
Barr, Jon L.
Pickles, William L.
Jacobson, James D.
Silver, Eli A.
Male, Erin J.
Rauch, Henry W.
Gullickson, Kadie S.
Trautz, Robert
Kharaka, Yousif
Birkholzer, Jens
Wielopolski, Lucien
TI A shallow subsurface controlled release facility in Bozeman, Montana,
USA, for testing near surface CO2 detection techniques and transport
models
SO ENVIRONMENTAL EARTH SCIENCES
LA English
DT Article
DE Geological carbon sequestration; Controlled release of carbon dioxide;
Transport models; Near surface monitoring; Eddy covariance;
Hyperspectral imaging
ID CARBON-DIOXIDE; FLUX MEASUREMENTS; MAMMOTH MOUNTAIN; VADOSE ZONE; SOIL;
ATMOSPHERE; CALIFORNIA; EXCHANGE
AB A controlled field pilot has been developed in Bozeman, Montana, USA, to study near surface CO2 transport and detection technologies. A slotted horizontal well divided into six zones was installed in the shallow subsurface. The scale and CO2 release rates were chosen to be relevant to developing monitoring strategies for geological carbon storage. The field site was characterized before injection, and CO2 transport and concentrations in saturated soil and the vadose zone were modeled. Controlled releases of CO2 from the horizontal well were performed in the summers of 2007 and 2008, and collaborators from six national labs, three universities, and the U. S. Geological Survey investigated movement of CO2 through the soil, water, plants, and air with a wide range of near surface detection techniques. An overview of these results will be presented.
C1 [Spangler, Lee H.; Dobeck, Laura M.; Gullickson, Kadie S.] Montana State Univ, Dept Chem & Biochem, Bozeman, MT 59717 USA.
[Repasky, Kevin S.; Nehrir, Amin R.; Humphries, Seth D.; Barr, Jamie L.; Keith, Charlie J.; Shaw, Joseph A.; Rouse, Joshua H.] Montana State Univ, Dept Elect & Comp Engn, Bozeman, MT 59717 USA.
[Cunningham, Alfred B.] Montana State Univ, Dept Civil Engn, Bozeman, MT 59717 USA.
[Benson, Sally M.] Stanford Univ, Global Climate & Energy Project, Stanford, CA 94305 USA.
[Oldenburg, Curtis M.; Lewicki, Jennifer L.; Birkholzer, Jens] Ernest Orlando Lawrence Berkeley Natl Lab, Div Earth Sci, Berkeley, CA 94720 USA.
[Wells, Arthur W.; Diehl, J. Rodney; Strazisar, Brian R.] Natl Energy Technol Lab, Div Environm Sci, Pittsburgh, PA 15236 USA.
[Fessenden, Julianna E.; Rahn, Thom A.] Los Alamos Natl Lab, Div Earth & Environm Sci, Los Alamos, NM 87545 USA.
[Amonette, James E.; Barr, Jon L.] Pacific NW Natl Lab, Richland, WA 99352 USA.
[Pickles, William L.; Jacobson, James D.; Silver, Eli A.; Male, Erin J.] Univ Calif Santa Cruz, Santa Cruz, CA 95064 USA.
[Rauch, Henry W.] W Virginia Univ, Dept Geol & Geog, Morgantown, WV 26506 USA.
[Trautz, Robert] Elect Power Res Inst, Palo Alto, CA 94304 USA.
[Kharaka, Yousif] US Geol Survey, Menlo Pk, CA 94025 USA.
[Wielopolski, Lucien] Brookhaven Natl Lab, Dept Environm Sci, Upton, NY 11973 USA.
RP Spangler, LH (reprint author), Montana State Univ, Dept Chem & Biochem, Bozeman, MT 59717 USA.
EM spangler@montana.edu
RI Birkholzer, Jens/C-6783-2011; Rahn, Thom/C-5211-2012; Oldenburg,
Curtis/L-6219-2013;
OI Birkholzer, Jens/0000-0002-7989-1912; Oldenburg,
Curtis/0000-0002-0132-6016; Rahn, Thomas/0000-0001-8634-1348
FU Assistant Secretary for Fossil Energy, Office of Sequestration,
Hydrogen, and Clean Coal Fuels, and National Energy Technology
Laboratory; U.S. Department of Energy [DE-FC26-04NT42262]
FX We would like to thank Ray Solbau, Paul Cook and Alex Morales (LBNL) for
the design and valuable technical support of the flow control system and
Liz Burton and Frank Gouveia (LLNL) for assistance with soil
CO2 concentration instrumentation. This work was carried out
within the ZERT project, funded by the Assistant Secretary for Fossil
Energy, Office of Sequestration, Hydrogen, and Clean Coal Fuels, and
National Energy Technology Laboratory. This paper was prepared with the
support of the U.S. Department of Energy, under Award No.
DE-FC26-04NT42262. However, any opinions, findings, conclusions, or
recommendations expressed herein are those of the author(s) and do not
necessarily reflect the views of the DOE.
NR 28
TC 87
Z9 89
U1 1
U2 29
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1866-6280
J9 ENVIRON EARTH SCI
JI Environ. Earth Sci.
PD MAR
PY 2010
VL 60
IS 2
BP 227
EP 239
DI 10.1007/s12665-009-0400-2
PG 13
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 582YI
UT WOS:000276637000002
ER
PT J
AU Oldenburg, CM
Lewicki, JL
Pan, LH
Dobeck, L
Spangler, L
AF Oldenburg, Curtis M.
Lewicki, Jennifer L.
Pan, Lehua
Dobeck, Laura
Spangler, Lee
TI Origin of the patchy emission pattern at the ZERT CO2 release test
SO ENVIRONMENTAL EARTH SCIENCES
LA English
DT Article
DE Geologic carbon sequestration; CO2 surface leakage; Gas transport in the
vadose zone; Shallow-release experiment; Leakage detection
ID GEOLOGIC CARBON SEQUESTRATION; VERIFICATION; SEEPAGE; LEAKAGE; SITES
AB A numerical experiment was carried out to test whether the patchy CO2 emission patterns observed at the Zero Emissions Research and Technology release facility are caused by the presence of packers that divide the horizontal injection well into six CO2-injection zones. A three-dimensional model of the horizontal well and cobble-soil system was developed and simulations using TOUGH2/EOS7CA were carried out. Simulation results show patchy emissions for the seven-packer (six-injection-zone) configuration of the field test. Numerical experiments were then conducted for the cases of 24 packers (23 injection zones) and an effectively infinite number of packers. The time to surface breakthrough and the number of patches increased as the number of packers increased suggesting that packers and associated along-pipe flow are the origin of the patchy emissions. In addition, it was observed that early breakthrough occurs at locations where the horizontal well pipe is shallow and installed mostly in soil rather than the deeper cobble. In the cases where the pipe is installed at shallow depths and directly in the soil, higher pipe gas saturations occur than where the pipe is installed slightly deeper in the cobble. It is believed this is an effect mostly relevant to the model rather than the field system and arises through the influence of capillarity, permeability, and pipe elevation of the soil compared to the cobble adjacent to the pipe.
C1 [Oldenburg, Curtis M.; Lewicki, Jennifer L.; Pan, Lehua] Univ Calif Berkeley, Lawrence Berkeley Lab, Earth Sci Div 90 1116, Berkeley, CA 94720 USA.
[Dobeck, Laura; Spangler, Lee] Montana State Univ, Dept Chem, Bozeman, MT 59717 USA.
RP Oldenburg, CM (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, Earth Sci Div 90 1116, Berkeley, CA 94720 USA.
EM CMOldenburg@lbl.gov
RI Oldenburg, Curtis/L-6219-2013; Pan, Lehua/G-2439-2015;
OI Oldenburg, Curtis/0000-0002-0132-6016; Spangler, Lee/0000-0002-3870-6696
FU Assistant Secretary for Fossil Energy, Office of Sequestration,
Hydrogen, and Clean Coal Fuels, through the National Energy Technology
Laboratory; U.S. Department of Energy [DE-AC02-05CH11231]
FX We thank the entire ZERT team for an exciting and supportive research
environment. James Amonette (PNNL) pointed out to the first author the
correlation of emission patches with packer locations with a figure
similar to Fig. 1. Stefan Finsterle and Christine Doughty (LBNL)
provided helpful internal review comments. This work was carried out in
the ZERT project funded by the Assistant Secretary for Fossil Energy,
Office of Sequestration, Hydrogen, and Clean Coal Fuels, through the
National Energy Technology Laboratory, U.S. Department of Energy under
Contract No. DE-AC02-05CH11231.
NR 16
TC 11
Z9 14
U1 0
U2 10
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1866-6280
J9 ENVIRON EARTH SCI
JI Environ. Earth Sci.
PD MAR
PY 2010
VL 60
IS 2
BP 241
EP 250
DI 10.1007/s12665-009-0442-5
PG 10
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 582YI
UT WOS:000276637000003
ER
PT J
AU Male, EJ
Pickles, WL
Silver, EA
Hoffmann, GD
Lewicki, J
Apple, M
Repasky, K
Burton, EA
AF Male, Erin Jing
Pickles, William L.
Silver, Eli A.
Hoffmann, Gary D.
Lewicki, Jennifer
Apple, Martha
Repasky, Kevin
Burton, Elizabeth A.
TI Using hyperspectral plant signatures for CO2 leak detection during the
2008 ZERT CO2 sequestration field experiment in Bozeman, Montana
SO ENVIRONMENTAL EARTH SCIENCES
LA English
DT Article
DE Geologic carbon sequestration; Hyperspectral plant signatures;
Reflectance spectra; CO2 leak detection; Surface monitoring of carbon
sequestration
ID CHLOROPHYLL CONCENTRATION; SPECTRAL REFLECTANCE; NATURAL-GAS; STRESS;
RESPONSES; WATER
AB Hyperspectral plant signatures can be used as a short-term, as well as long-term (100-year timescale) monitoring technique to verify that CO2 sequestration fields have not been compromised. An influx of CO2 gas into the soil can stress vegetation, which causes changes in the visible to near-infrared reflectance spectral signature of the vegetation. For 29 days, beginning on July 9, 2008, pure carbon dioxide gas was released through a 100-m long horizontal injection well, at a flow rate of 300 kg day(-1). Spectral signatures were recorded almost daily from an unmown patch of plants over the injection with a "FieldSpec Pro'' spectrometer by Analytical Spectral Devices, Inc. Measurements were taken both inside and outside of the CO2 leak zone to normalize observations for other environmental factors affecting the plants. Four to five days after the injection began, stress was observed in the spectral signatures of plants within 1 m of the well. After approximately 10 days, moderate to high amounts of stress were measured out to 2.5 m from the well. This spatial distribution corresponded to areas of high CO2 flux from the injection. Airborne hyperspectral imagery, acquired by Resonon, Inc. of Bozeman, MT using their hyperspectral camera, also showed the same pattern of plant stress. Spectral signatures of the plants were also compared to the CO2 concentrations in the soil, which indicated that the lower limit of soil CO2 needed to stress vegetation is between 4 and 8% by volume.
C1 [Male, Erin Jing; Pickles, William L.; Silver, Eli A.; Hoffmann, Gary D.] Univ Calif Santa Cruz, Santa Cruz, CA 95064 USA.
[Lewicki, Jennifer] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
[Apple, Martha] Univ Montana, Montana Tech, Butte, MT 59701 USA.
[Repasky, Kevin] Montana State Univ, Dept Elect & Comp Engn, Bozeman, MT 59717 USA.
[Burton, Elizabeth A.] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
RP Male, EJ (reprint author), Univ Calif Santa Cruz, Santa Cruz, CA 95064 USA.
EM emale@ucsc.edu
FU Montana Board of Research and Commercialization Technology [08-44]; NASA
[NNX06AD11G]; US Department of Energy EPSCoR [DE-FG02-08ER46527]
FX We thank Laura Dobeck and Kadie Gullickson of Montana State University
for their help with the experiment layout. We also thank Lee Spangler of
Montana State University and Rand Swanson of Resonon, Inc., in Bozeman,
Montana. We acknowledge the Montana Board of Research and
Commercialization Technology (Grant No. 08-44) and NASA (Grant No.
NNX06AD11G) for funding of the airborne hyperspectral imagery. Martha
Apple acknowledges support by the US Department of Energy EPSCoR program
under (Grant No. DE-FG02-08ER46527) for plant response research.
NR 21
TC 34
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U1 2
U2 17
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1866-6280
J9 ENVIRON EARTH SCI
JI Environ. Earth Sci.
PD MAR
PY 2010
VL 60
IS 2
BP 251
EP 261
DI 10.1007/s12665-009-0372-2
PG 11
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 582YI
UT WOS:000276637000004
ER
PT J
AU Amonette, JE
Barr, JL
Dobeck, LM
Gullickson, K
Walsh, SJ
AF Amonette, James E.
Barr, Jonathan L.
Dobeck, Laura M.
Gullickson, Kadie
Walsh, Stephen J.
TI Spatiotemporal changes in CO2 emissions during the second ZERT
injection, August-September 2008
SO ENVIRONMENTAL EARTH SCIENCES
LA English
DT Article
DE Geologic carbon sequestration; Soil gas flux; Continuous monitoring;
Multi-channel auto-dilution system; Zero Emissions Research and
Technology Program; ZERT; Carbon dioxide; CO2
ID FLUX CHAMBER; SEQUESTRATION
AB This study reports the first field test of a multi-channel, auto-dilution, steady-state, soil-CO2 flux monitoring system being developed to help understand the pathways by which fugitive CO2 from a geologic sequestration site migrates to the surface. The test was conducted from late August through mid-October 2008 at the Zero Emissions Research and Technology project site located in Bozeman, MT. Twenty steady-state and five non-steady-state flux chambers were installed in a 10 9 15 m area, one boundary of which was directly above a shallow (2-m depth) horizontal injection well located 0.5 m below the water table. A total flux of 52 kg CO2 day(-1) was injected into the well for 13 days and the efflux from the soil was monitored by the chambers before, during, and for 33 days after the injection. The results showed a rapid increase in soil efflux once injection started, with maximal values reached within 3-7 days in most chambers. Efflux returned to background levels within a similar time period after injection ceased. A radial efflux pattern was observed to at least 2 m from the injection well, and evidence for movement of the CO2 plume during the injection, presumably due to groundwater flow, was seen. The steady-state chambers yielded very stable data, but threefold to fivefold higher fluxes than the non-steady-state chambers. The higher fluxes were attributed to vacuum induced in the steady-state chambers by narrow vent tubes. High winds resulted in significant decreases in measured soil CO2 efflux, presumably by enhancing efflux from soil outside the chambers.
C1 [Amonette, James E.; Barr, Jonathan L.; Walsh, Stephen J.] Pacific NW Natl Lab, Richland, WA 99354 USA.
[Dobeck, Laura M.; Gullickson, Kadie] Montana State Univ, Dept Chem & Biochem, Bozeman, MT 59717 USA.
RP Amonette, JE (reprint author), Pacific NW Natl Lab, POB 999, Richland, WA 99354 USA.
EM jim.amonette@pnl.gov
OI Walsh, Stephen/0000-0002-0505-648X
NR 11
TC 12
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U1 1
U2 10
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1866-6280
J9 ENVIRON EARTH SCI
JI Environ. Earth Sci.
PD MAR
PY 2010
VL 60
IS 2
BP 263
EP 272
DI 10.1007/s12665-009-0402-0
PG 10
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 582YI
UT WOS:000276637000005
ER
PT J
AU Kharaka, YK
Thordsen, JJ
Kakouros, E
Ambats, G
Herkelrath, WN
Beers, SR
Birkholzer, JT
Apps, JA
Spycher, NF
Zheng, LE
Trautz, RC
Rauch, HW
Gullickson, KS
AF Kharaka, Yousif K.
Thordsen, James J.
Kakouros, Evangelos
Ambats, Gil
Herkelrath, William N.
Beers, Sarah R.
Birkholzer, Jens T.
Apps, John A.
Spycher, Nicholas F.
Zheng, Liange
Trautz, Robert C.
Rauch, Henry W.
Gullickson, Kadie S.
TI Changes in the chemistry of shallow groundwater related to the 2008
injection of CO2 at the ZERT field site, Bozeman, Montana
SO ENVIRONMENTAL EARTH SCIENCES
LA English
DT Article
DE Geological carbon sequestration; Groundwater monitoring; Groundwater
chemistry; Trace metals; Dissolved organics
ID WATER-ROCK INTERACTIONS; DEEP SALINE AQUIFERS; CARBON-DIOXIDE;
SEDIMENTARY BASINS; CLIMATE-CHANGE; SEQUESTRATION; STORAGE; USA;
SIMULATION; TRANSPORT
AB Approximately 300 kg/day of food-grade CO2 was injected through a perforated pipe placed horizontally 2-2.3 m deep during July 9-August 7, 2008 at the MSU-ZERT field test to evaluate atmospheric and near-surface monitoring and detection techniques applicable to the subsurface storage and potential leakage of CO2. As part of this multidisciplinary research project, 80 samples of water were collected from 10 shallow monitoring wells (1.5 or 3.0 m deep) installed 1-6 m from the injection pipe, at the southwestern end of the slotted section (zone VI), and from two distant monitoring wells. The samples were collected before, during, and following CO2 injection. The main objective of study was to investigate changes in the concentrations of major, minor, and trace inorganic and organic compounds during and following CO2 injection. The ultimate goals were (1) to better understand the potential of groundwater quality impacts related to CO2 leakage from deep storage operations, (2) to develop geochemical tools that could provide early detection of CO2 intrusion into underground sources of drinking water (USDW), and (3) to test the predictive capabilities of geochemical codes against field data. Field determinations showed rapid and systematic changes in pH (7.0-5.6), alkalinity (400-1,330 mg/l as HCO3), and electrical conductance (600-1,800 mu S/cm) following CO2 injection in samples collected from the 1.5 m-deep wells. Laboratory results show major increases in the concentrations of Ca (90-240 mg/l), Mg (25-70 mg/l), Fe (5-1,200 ppb), and Mn (5-1,400 ppb) following CO2 injection. These chemical changes could provide early detection of CO2 leakage into shallow groundwater from deep storage operations. Dissolution of observed carbonate minerals and desorptionion exchange resulting from lowered pH values following CO2 injection are the likely geochemical processes responsible for the observed increases in the concentrations of solutes; concentrations generally decreased temporarily following four significant precipitation events. The DOC values obtained are 5 +/- 2 mg/l, and the variations do not correlate with CO2 injection. CO2 injection, however, is responsible for detection of BTEX (e.g. benzene, 00.8 ppb), mobilization of metals, the lowered pH values, and increases in the concentrations of other solutes in groundwater. The trace metal and BTEX concentrations are all significantly below the maximum contaminant levels (MCLs). Sequential leaching of core samples is being carried out to investigate the source of metals and other solutes.
C1 [Kharaka, Yousif K.; Thordsen, James J.; Kakouros, Evangelos; Ambats, Gil; Herkelrath, William N.; Beers, Sarah R.] US Geol Survey, Menlo Pk, CA 94025 USA.
[Birkholzer, Jens T.; Apps, John A.; Spycher, Nicholas F.; Zheng, Liange] Ernest Orlando Lawrence Berkeley Natl Lab, Div Earth Sci, Berkeley, CA 94720 USA.
[Trautz, Robert C.] Elect Power Res Inst, Palo Alto, CA 94304 USA.
[Rauch, Henry W.] W Virginia Univ, Dept Geol & Geog, Morgantown, WV 26506 USA.
[Gullickson, Kadie S.] Montana State Univ, Dept Chem & Biochem, Bozeman, MT 59717 USA.
RP Kharaka, YK (reprint author), US Geol Survey, 345 Middlefield Rd, Menlo Pk, CA 94025 USA.
EM ykharaka@usgs.gov
RI Spycher, Nicolas/E-6899-2010; Birkholzer, Jens/C-6783-2011; Zheng,
Liange/E-9521-2010; zheng, liange/B-9748-2011
OI Birkholzer, Jens/0000-0002-7989-1912; zheng, liange/0000-0002-9376-2535
FU Electric Power Research Institute, EPRI; EPA; DOE; LBNL; USGS
FX This research was conducted within the ZERT project directed by Lee
Spangler and managed by Laura Dobeck, MSU, Bozeman, MT.
http://www.montana.edu/zert. We thank the entire ZERT team and
participating organizations for creating a supportive and exciting
research environment. This research was funded primarily by the Electric
Power Research Institute, EPRI, but funds were also obtained from EPA,
DOE, LBNL, and USGS.
NR 33
TC 135
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PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1866-6280
J9 ENVIRON EARTH SCI
JI Environ. Earth Sci.
PD MAR
PY 2010
VL 60
IS 2
BP 273
EP 284
DI 10.1007/s12665-009-0401-1
PG 12
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 582YI
UT WOS:000276637000006
ER
PT J
AU Lewicki, JL
Hilley, GE
Dobeck, L
Spangler, L
AF Lewicki, Jennifer L.
Hilley, George E.
Dobeck, Laura
Spangler, Lee
TI Dynamics of CO2 fluxes and concentrations during a shallow subsurface
CO2 release
SO ENVIRONMENTAL EARTH SCIENCES
LA English
DT Article
DE Soil CO2 flux; CO2 concentration; Leakage; Geological carbon
sequestration monitoring
ID SOIL; TRANSPORT; ATMOSPHERE; EXCHANGE; GASES; MEDIA
AB A field facility located in Bozeman, Montana provides the opportunity to test methods to detect, locate, and quantify potential CO2 leakage from geologic storage sites. From 9 July to 7 August 2008, 0.3 t CO2 day(-1) were injected from a 100-m long, similar to 2.5-m deep horizontal well. Repeated measurements of soil CO2 fluxes on a grid characterized the spatio-temporal evolution of the surface leakage signal and quantified the surface leakage rate. Infrared CO2 concentration sensors installed in the soil at 30 cm depth at 0-10 m from the well and at 4 cm above the ground at 0 and 5 m from the well recorded surface breakthrough of CO2 leakage and migration of CO2 leakage through the soil. Temporal variations in CO2 concentrations were correlated with atmospheric and soil temperature, wind speed, atmospheric pressure, rainfall, and CO2 injection rate.
C1 [Lewicki, Jennifer L.] Ernest Orlando Lawrence Berkeley Natl Lab, Div Earth Sci, Berkeley, CA 94720 USA.
[Hilley, George E.] Stanford Univ, Dept Geol & Environm Sci, Stanford, CA 94305 USA.
[Dobeck, Laura; Spangler, Lee] Montana State Univ, Dept Chem & Biochem, Bozeman, MT 59717 USA.
RP Lewicki, JL (reprint author), Ernest Orlando Lawrence Berkeley Natl Lab, Div Earth Sci, 1 Cyclotron Rd, Berkeley, CA 94720 USA.
EM jllewicki@lbl.gov
OI Spangler, Lee/0000-0002-3870-6696
FU ZERT; Assistant Secretary for Fossil Energy, Office of Sequestration,
Hydrogen, and Clean Coal Fuels, NETL, of the US Department of Energy
[DE-AC02-05CH11231]
FX We thank K. Gullickson for helpful assistance in the field. This work
was funded by the ZERT Project, Assistant Secretary for Fossil Energy,
Office of Sequestration, Hydrogen, and Clean Coal Fuels, NETL, of the US
Department of Energy under Contract No. DE-AC02-05CH11231.
NR 19
TC 39
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U1 0
U2 13
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1866-6280
J9 ENVIRON EARTH SCI
JI Environ. Earth Sci.
PD MAR
PY 2010
VL 60
IS 2
BP 285
EP 297
DI 10.1007/s12665-009-0396-7
PG 13
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 582YI
UT WOS:000276637000007
ER
PT J
AU Wells, A
Strazisar, B
Diehl, JR
Veloski, G
AF Wells, Arthur
Strazisar, Brian
Diehl, J. Rodney
Veloski, Garret
TI Atmospheric tracer monitoring and surface plume development at the ZERT
pilot test in Bozeman, Montana, USA
SO ENVIRONMENTAL EARTH SCIENCES
LA English
DT Article
DE Carbon sequestration; Carbon capture and storage; Monitoring; Tracer
gases; Perfluorocarbons; Carbon dioxide; Global climate change
AB A controlled release of CO(2) was conducted at a field site in Bozeman, Montana, USA in July of 2008 in a multi-laboratory study of near surface transport and detection technologies. The development of a subsurface CO(2) plume near the middle packer section of the horizontal release was studied using soil-gas and surface flux measurements of CO(2). A perfluorocarbon tracer was added to the CO(2) released from this section of the horizontal well, and the development of atmospheric plumes of the tracer was studied under various meteorological conditions using horizontal and vertical grids of monitors containing sorbent material to collect the tracer. This study demonstrated the feasibility of using remote sensing for the ultra low level detection of atmospheric plumes of tracers as means to monitor the near surface leakage of sequestered CO(2).
C1 [Wells, Arthur; Strazisar, Brian; Diehl, J. Rodney; Veloski, Garret] Natl Energy Technol Lab, Pittsburgh, PA 15236 USA.
RP Strazisar, B (reprint author), Natl Energy Technol Lab, Pittsburgh, PA 15236 USA.
EM brian.strazisar@netl.doe.gov
NR 3
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U2 10
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1866-6280
J9 ENVIRON EARTH SCI
JI Environ. Earth Sci.
PD MAR
PY 2010
VL 60
IS 2
BP 299
EP 305
DI 10.1007/s12665-009-0371-3
PG 7
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 582YI
UT WOS:000276637000008
ER
PT J
AU Wielopolski, L
Mitra, S
AF Wielopolski, Lucian
Mitra, Sudeep
TI Near-surface soil carbon detection for monitoring CO2 seepage from a
geological reservoir
SO ENVIRONMENTAL EARTH SCIENCES
LA English
DT Article
DE INS System; Carbon detection; Geological sequestration; Belowground
ID MAMMOTH MOUNTAIN; DIOXIDE; EMISSIONS
AB The promise of the Brookhaven National Laboratory (BNL) Inelastic Neutron Scattering (INS) System was evaluated for use as a long-term, in-field monitor to detect cumulative changes in belowground carbon resulting from the leakage of CO2 stored in deep geological reservoirs. This system underwent tests at a facility constructed specifically for testing, under controlled conditions, various detection systems for monitoring near-surface transport and accumulations of CO2 fluxes emanating from a shallow buried, slotted horizontal well. The INS System was assessed by comparing the results from placing it above the horizontal well at a spot with a known high CO2 leak identified and quantified the previous years, with those obtained from background readings adjacent to the well. At two different "Hot Spots'', a suppression of about 14% in 2008 and about 7% in 2009 in carbon content above the well in comparison to the background signal was observed. An overview of these results is presented.
C1 [Wielopolski, Lucian; Mitra, Sudeep] Brookhaven Natl Lab, Dept Environm Sci, Upton, NY 11973 USA.
RP Wielopolski, L (reprint author), Brookhaven Natl Lab, Dept Environm Sci, Bldg 490D, Upton, NY 11973 USA.
EM lwielo@bnl.gov
FU U.S. Department of Energy [DE-AC02-98CH10886]; DOE office of NETL
FX The assistance of Lee Spangler and Laura Dobeck from Montana State
University in carrying out the experiments is greatly appreciated. We
would like to thank Jenifer Lewicki from LBNL for providing flux maps in
Figs. 3 and 4. The partial support by the U.S. Department of Energy
under Contract no. DE-AC02-98CH10886 is recognized. The direct financial
support to this project by the DOE office of NETL is greatly
appreciated.
NR 16
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PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1866-6280
J9 ENVIRON EARTH SCI
JI Environ. Earth Sci.
PD MAR
PY 2010
VL 60
IS 2
BP 307
EP 312
DI 10.1007/s12665-009-0397-6
PG 6
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 582YI
UT WOS:000276637000009
ER
PT J
AU Rouse, JH
Shaw, JA
Lawrence, RL
Lewicki, JL
Dobeck, LM
Repasky, KS
Spangler, LH
AF Rouse, Joshua H.
Shaw, Joseph A.
Lawrence, Rick L.
Lewicki, Jennifer L.
Dobeck, Laura M.
Repasky, Kevin S.
Spangler, Lee H.
TI Multi-spectral imaging of vegetation for detecting CO2 leaking from
underground
SO ENVIRONMENTAL EARTH SCIENCES
LA English
DT Article
DE Multispectral imaging; Plant stress; Vegetation; Carbon sequestration;
CO2 monitoring
ID DIFFERENTIAL ABSORPTION LIDAR; MAMMOTH MOUNTAIN; ATMOSPHERIC CO2; SOIL
CARBON; PLANT; REFLECTANCE; RESPONSES; STRESS
AB Practical geologic CO2 sequestration will require long-term monitoring for detection of possible leakage back into the atmosphere. One potential monitoring method is multi-spectral imaging of vegetation reflectance to detect leakage through CO2-induced plant stress. A multi-spectral imaging system was used to simultaneously record green, red, and near-infrared (NIR) images with a real-time reflectance calibration from a 3-m tall platform, viewing vegetation near shallow subsurface CO2 releases during summers 2007 and 2008 at the Zero Emissions Research and Technology field site in Bozeman, Montana. Regression analysis of the band reflectances and the Normalized Difference Vegetation Index with time shows significant correlation with distance from the CO2 well, indicating the viability of this method to monitor for CO2 leakage. The 2007 data show rapid plant vigor degradation at high CO2 levels next to the well and slight nourishment at lower, but above-background CO2 concentrations. Results from the second year also show that the stress response of vegetation is strongly linked to the CO2 sink-source relationship and vegetation density. The data also show short-term effects of rain and hail. The real-time calibrated imaging system successfully obtained data in an autonomous mode during all sky and daytime illumination conditions.
C1 [Rouse, Joshua H.; Shaw, Joseph A.; Repasky, Kevin S.] Montana State Univ, Elect & Comp Engn Dept, Bozeman, MT 59717 USA.
[Lawrence, Rick L.] Montana State Univ, Land Resources & Environm Sci Dept, Bozeman, MT 59717 USA.
[Lewicki, Jennifer L.] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Earth Sci, Berkeley, CA 94720 USA.
[Dobeck, Laura M.; Spangler, Lee H.] Montana State Univ, Dept Chem & Biochem, Bozeman, MT 59717 USA.
RP Shaw, JA (reprint author), Montana State Univ, Elect & Comp Engn Dept, Bozeman, MT 59717 USA.
EM jshaw@ece.montana.edu
OI Spangler, Lee/0000-0002-3870-6696
FU U.S. Department of Energy [DE-FC26-04NT42262]
FX This paper was prepared with the support of the U.S. Department of
Energy, under Award No. DE-FC26-04NT42262. However, any opinions,
findings, conclusions, or recommendations expressed herein are those of
the authors and do not necessarily reflect the views of the DOE. The
authors express gratitude to the many colleagues who made working at the
ZERT site productive and enjoyable.
NR 34
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PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1866-6280
J9 ENVIRON EARTH SCI
JI Environ. Earth Sci.
PD MAR
PY 2010
VL 60
IS 2
BP 313
EP 323
DI 10.1007/s12665-010-0483-9
PG 11
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 582YI
UT WOS:000276637000010
ER
PT J
AU Fessenden, JE
Clegg, SM
Rahn, TA
Humphries, SD
Baldridge, WS
AF Fessenden, J. E.
Clegg, S. M.
Rahn, T. A.
Humphries, S. D.
Baldridge, W. S.
TI Novel MVA tools to track CO2 seepage, tested at the ZERT controlled
release site in Bozeman, MT
SO ENVIRONMENTAL EARTH SCIENCES
LA English
DT Article
DE Geologic carbon sequestration; Carbon capture and storage; Monitoring
verification and accounting; Carbon stable isotopes; Leak detection
ID FREQUENCY-MODULATION SPECTROSCOPY; TEMPORAL VARIATION; OXYGEN ISOTOPES;
CARBON; SOIL; LASER; RESPIRATION; ECOSYSTEM; ANALYZER; FLUX
AB Over the past 4 years, controlled field experiments have taken place in Bozeman, MT, USA where pure CO2 has been released at known rates and depths to quantify the detection limits of various monitoring tools and techniques for the use of CO2 seepage detection. As part of this study, new tools engineered at Los Alamos National Laboratory were deployed to determine the sensitivity of these technologies to detect and measure CO2 seepage. These technologies were engineered for above-ground CO2 detection and include laser-based closed path delta(CO2)-C-13 measurement systems, an O-2/CO2 concentration ratio measurement system, and a chamber-based radon detection system. The sensitivity of these technologies to detect CO2 were measured through spatial transects taken perpendicular to the CO2 source and through temporal changes measured diurnally over the course of a 30 day experiment. Results show that the radon system is most sensitive to CO2 detection at the start of the experiment in locations adjacent to the CO2 source. The closed path or in situ delta(CO2)-C-13 system detected CO2 seepage as far as 2 m away from the source during non-windy periods. The O-2/CO2 system detected the CO2 seepage as far as 2 m above-ground and 1 m away from the source. Descriptions of these technologies and an overview of these results are presented.
C1 [Fessenden, J. E.; Rahn, T. A.; Baldridge, W. S.] Los Alamos Natl Lab, Div Earth & Environm Sci, Los Alamos, NM 87545 USA.
[Clegg, S. M.; Humphries, S. D.] Los Alamos Natl Lab, Div Chem, Los Alamos, NM 87545 USA.
RP Fessenden, JE (reprint author), Los Alamos Natl Lab, Div Earth & Environm Sci, Los Alamos, NM 87545 USA.
EM julianna@lanl.gov
RI Rahn, Thom/C-5211-2012;
OI Rahn, Thomas/0000-0001-8634-1348; Clegg, Sam/0000-0002-0338-0948
FU MVA [04FE18-09]; ZERT; Assistant Secretary for Fossil Energy, Office of
Sequestration, Hydrogen, and Clean Coal Fuels, NETL, of the US
Department of Energy [DE-AC02-05CH11231]
FX We thank L. Dobeck for assistance in the field and for all logistical
help. We thank L. Spangler for expert leadership of the project and for
allowing us to participate in the experiment. This work was funded by
the MVA Project (04FE18-09) and the ZERT Project, Assistant Secretary
for Fossil Energy, Office of Sequestration, Hydrogen, and Clean Coal
Fuels, NETL, of the US Department of Energy under Contract No.
DE-AC02-05CH11231.
NR 35
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U1 2
U2 21
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1866-6280
J9 ENVIRON EARTH SCI
JI Environ. Earth Sci.
PD MAR
PY 2010
VL 60
IS 2
BP 325
EP 334
DI 10.1007/s12665-010-0489-3
PG 10
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 582YI
UT WOS:000276637000011
ER
PT J
AU Pan, LH
Lewicki, JL
Oldenburg, CM
Fischer, ML
AF Pan, Lehua
Lewicki, Jennifer L.
Oldenburg, Curtis M.
Fischer, Marc L.
TI Time-window-based filtering method for near-surface detection of leakage
from geologic carbon sequestration sites
SO ENVIRONMENTAL EARTH SCIENCES
LA English
DT Article
DE Geologic carbon sequestration; Monitoring; eddy covariance; CO(2) flux;
Leakage detection; Signal filtering
AB We use process-based modeling techniques to characterize the temporal features of natural biologically controlled surface CO(2) fluxes and the relationships between the assimilation and respiration fluxes. Based on these analyses, we develop a signal-enhancing technique that combines a novel time-window splitting scheme, a simple median filtering, and an appropriate scaling method to detect potential signals of leakage of CO(2) from geologic carbon sequestration sites from within datasets of net near-surface CO(2) flux measurements. The technique can be directly applied to measured data and does not require subjective gap filling or data-smoothing preprocessing. Preliminary application of the new method to flux measurements from a CO(2) shallow-release experiment appears promising for detecting a leakage signal relative to background variability. The leakage index of +/- 2 was found to span the range of biological variability for various ecosystems as determined by observing CO(2) flux data at various control sites for a number of years.
C1 [Pan, Lehua; Lewicki, Jennifer L.; Oldenburg, Curtis M.; Fischer, Marc L.] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Earth Sci, Berkeley, CA 94720 USA.
RP Pan, LH (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, Div Earth Sci, Mail Stop 90-1116,1 Cyclotron Rd, Berkeley, CA 94720 USA.
EM lpan@lbl.gov
RI Oldenburg, Curtis/L-6219-2013; Pan, Lehua/G-2439-2015
OI Oldenburg, Curtis/0000-0002-0132-6016;
FU Assistant Secretary for Fossil Energy, Office of Sequestration,
Hydrogen, and Clean Coal Fuels, NETL, of the U.S. Department of Energy
[DE-AC02-05CH11231]
FX This work was funded by the Assistant Secretary for Fossil Energy,
Office of Sequestration, Hydrogen, and Clean Coal Fuels, NETL, of the
U.S. Department of Energy under Contract DE-AC02-05CH11231. We thank the
U.S. Department of Energy as part of the Atmospheric Radiation
Measurement Program Climate Research Facility for use of the ARM-SGP
flux data and thanks also to Dr. Roser Matamala and Dr. Steven Wofsy as
well as their coworkers for the use of data from their sites.
NR 15
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SN 1866-6280
J9 ENVIRON EARTH SCI
JI Environ. Earth Sci.
PD MAR
PY 2010
VL 60
IS 2
BP 359
EP 369
DI 10.1007/s12665-009-0436-3
PG 11
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 582YI
UT WOS:000276637000014
ER
PT J
AU Hill, WR
Ryon, MG
Smith, JG
Adams, SM
Boston, HL
Stewart, AJ
AF Hill, Walter R.
Ryon, Michael G.
Smith, John G.
Adams, S. Marshall
Boston, Harry L.
Stewart, Arthur J.
TI The Role of Periphyton in Mediating the Effects of Pollution in a Stream
Ecosystem
SO ENVIRONMENTAL MANAGEMENT
LA English
DT Article
DE Periphyton; Eutrophication; Nutrients; Biomonitoring; Metals; Stream
fish
ID DIATOM COMMUNITIES; TROPHIC STATE; FRESH-WATER; ALGAE; PHOSPHORUS;
BIOACCUMULATION; EUTROPHICATION; PHYTOPLANKTON; LIMITATION; MESOCOSMS
AB The effects of pollutants on primary producers ramify through ecosystems because primary producers provide food and structure for higher trophic levels and they mediate the biogeochemical cycling of nutrients and contaminants. Periphyton (attached algae) were studied as part of a long-term biological monitoring program designed to guide remediation efforts by the Department of Energy's Y-12 National Security Complex on East Fork Poplar Creek (EFPC) in Oak Ridge, Tennessee. High concentrations of nutrients entering EFPC were responsible for elevated periphyton production and placed the stream in a state of eutrophy. High rates of primary production at upstream locations in EFPC were associated with alterations in both invertebrate and fish communities. Grazers represented > 50% of the biomass of invertebrates and fish near the Y-12 Complex but < 10% at downstream and reference sites. An index of epilithic periphyton production accounted for 95% of the site-to-site variation in biomass of grazing fish. Analyses of heavy metals in EFPC periphyton showed that concentrations of zinc, cadmium, copper and nickel in periphyton decreased exponentially with distance downstream from Y-12. Zinc uptake by periphyton was estimated to reduce the concentration of this metal in stream water similar to 60% over a 5-km reach of EFPC. Management options for mitigating eutrophy in EFPC include additional reductions in nutrient inputs and/or allowing streamside trees to grow and shade the stream. However, reducing periphyton growth may lead to greater downstream transport of contaminants while simultaneously causing higher concentrations of mercury and PCBs in fish at upstream sites.
C1 [Hill, Walter R.] Univ Illinois, Inst Nat Resource Sustainabil, Champaign, IL 61820 USA.
[Hill, Walter R.; Ryon, Michael G.; Smith, John G.; Adams, S. Marshall; Boston, Harry L.; Stewart, Arthur J.] Oak Ridge Natl Lab, Div Environm Sci, Oak Ridge, TN 37831 USA.
RP Hill, WR (reprint author), Univ Illinois, Inst Nat Resource Sustainabil, 1816 S Oak St, Champaign, IL 61820 USA.
EM wrhill@illlinois.edu
OI stewart, arthur/0000-0003-1968-5997
FU Environmental Compliance Department of the Y-12 National Security
Complex [BWXT Y-12]; U.S. Department of Energy [DE-AC05-00OR22800,
DE-AC05-00OR22725]
FX This work was funded by the Environmental Compliance Department of the
Y-12 National Security Complex, which is managed by BWXT Y-12, LLC for
the U.S. Department of Energy under contract number DE-AC05-00OR22800.
Oak Ridge National Laboratory is managed by the University of
Tennessee-Battelle LLC for the U.S. Department of Energy under contract
DE-AC05-00OR22725. We thank Roger Petrie of the Tennessee Department of
Environmental Conservation for EFPC nutrient data.
NR 31
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PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 0364-152X
EI 1432-1009
J9 ENVIRON MANAGE
JI Environ. Manage.
PD MAR
PY 2010
VL 45
IS 3
BP 563
EP 576
DI 10.1007/s00267-010-9425-2
PG 14
WC Environmental Sciences
SC Environmental Sciences & Ecology
GA 571XN
UT WOS:000275789700013
PM 20108138
ER
PT J
AU Goldstein, SJ
Abdel-Fattah, AI
Murrell, MT
Dobson, PF
Norman, DE
Amato, RS
Nunn, AJ
AF Goldstein, Steven J.
Abdel-Fattah, Amr I.
Murrell, Michael T.
Dobson, Patrick F.
Norman, Deborah E.
Amato, Ronald S.
Nunn, Andrew J.
TI Uranium-Series Constraints on Radionuclide Transport and Groundwater
Flow at the Nopal I Uranium Deposit, Sierra Pena Blanca, Mexico
SO ENVIRONMENTAL SCIENCE & TECHNOLOGY
LA English
DT Article
ID SPENT NUCLEAR-FUEL; MASS-SPECTROMETRY; YUCCA MOUNTAIN; NEVADA;
MIGRATION; CHIHUAHUA; PLUTONIUM; RADIUM; WATER; TH
AB Uranium-series data for groundwater samples from the Nopal I uranium ore deposit were obtained to place constraints on radionuclide transport and hydrologic processes for a nuclear waste repository located in fractured, unsaturated volcanic tuff. Decreasing uranium concentrations for wells drilled in 2003 are consistent with a simple physical mixing model that indicates that groundwater velocities are low (similar to 10 m/y). Uranium isotopic constraints, well productivities, and radon systematics also suggest limited groundwater mixing and slow flow in the saturated zone. Uranium isotopic systematics for seepage water collected in the mine adit show a spatial dependence which is consistent with longer water-rock interaction times and higher uranium dissolution inputs at the front adit where the deposit is located. Uranium-series disequilibria measurements for mostly unsaturated zone samples indicate that (230)Th/(238)U activity ratios range from 0.005 to 0.48 and (226)Ra/(238)U activity ratios range from 0.006 to 113. (239)Pu/(238)U mass ratios for the saturated zone are <2 x 10(-14), and Pu mobility in the saturated zone is > 1000 times lower than the U mobility. Saturated zone mobility decreases in the order (238)U approximate to(226)Ra > (230)Th approximate to (239)Pu. Radium and thorium appear to have higher mobility in the unsaturated zone based on U-series data from fractures and seepage water near the deposit.
C1 [Goldstein, Steven J.; Murrell, Michael T.; Norman, Deborah E.; Amato, Ronald S.; Nunn, Andrew J.] Los Alamos Natl Lab, Nucl & Radiochem Grp, Los Alamos, NM 87545 USA.
[Abdel-Fattah, Amr I.] Los Alamos Natl Lab, Earth & Environm Sci Div EES 14, Los Alamos, NM 87545 USA.
[Dobson, Patrick F.] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Earth Sci, Berkeley, CA 94720 USA.
RP Goldstein, SJ (reprint author), Los Alamos Natl Lab, Nucl & Radiochem Grp, POB 1663,MS J514, Los Alamos, NM 87545 USA.
EM sgoldstein@lanl.gov
RI Dobson, Patrick/D-8771-2015
OI Dobson, Patrick/0000-0001-5031-8592
FU U.S. DOE; Office of Civilian Radioactive Waste Management (OCRWM)
[DE-AC02-05CH11231]
FX We thank Ignacio Reyes and Rodrigo de la Garza (Universidad Autonoma de
Chihuahua), Alfredo Rodriguez (WWF), Paul Cook and Teamrat Ghezzehei
(LBNL), and Paul Reimus, John Dinsmoor, and Ron Oliver (LANL) for
valuable discussions and assistance in the field, We also thank Ardyth
Simmons and Schon Levy (LANL) for project guidance. Finally, we thank
the anonymous ES&T reviewers for helpful comments. This work was
supported by the U.S. DOE, Office of Civilian Radioactive Waste
Management (OCRWM), under contract DE-AC02-05CH11231. The views
expressed in this article are those of the authors and do not
necessarily reflect the views or policies of the United States
Department of Energy or OCRWM.
NR 26
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U2 17
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 0013-936X
J9 ENVIRON SCI TECHNOL
JI Environ. Sci. Technol.
PD MAR 1
PY 2010
VL 44
IS 5
BP 1579
EP 1586
DI 10.1021/es902689e
PG 8
WC Engineering, Environmental; Environmental Sciences
SC Engineering; Environmental Sciences & Ecology
GA 559QT
UT WOS:000274842000013
PM 20136119
ER
PT J
AU O'Loughlin, EJ
Kelly, SD
Kemner, KM
AF O'Loughlin, Edward J.
Kelly, Shelly D.
Kemner, Kenneth M.
TI XAFS Investigation of the Interactions of U-VI with Secondary
Mineralization Products from the Bioreduction of Fe-III Oxides
SO ENVIRONMENTAL SCIENCE & TECHNOLOGY
LA English
DT Article
ID X-RAY-ABSORPTION; GREEN RUST; BIOGENIC MAGNETITE; SELENITE REDUCTION;
SURFACE; U(VI); URANIUM(VI); TRANSFORMATION; MINERALS; URANYL
AB Biogenic Fe-II phases (magnetite, green rust siderite, vivianite, etc.) provide a reservoir of reducing capacity in many subsurface environments that may contribute to the reduction of contaminants such as U-VI. We have examined the uptake and reduction of U-VI in the presence of biogenic green rust(BioGR), magnetite (BioMAG), and siderite (BioSID) formed during the reduction of Fe-III oxides by Shewanella putrefaciens CN32. Within 48 h, total solution-phase U-VI concentrations decreased from 500 mu M to 1.5 mu M, 392 mu M, and 472 mu M in the U-BioGR, U-BioMAG, and U-BioSID systems, respectively. Analysis of the samples by U L-III extended X-ray absorption fine structure spectroscopy (EXAFS) indicated that despite a stoichiometric excess of Fe-II, no more than 6% of U-VI was reduced to U-IV in the U-BioSID system, and no more than 22% of U-VI was reduced in the U-BioMAG system. For comparison, in the U-BioGR system, >99% of U-VI was reduced to U-IV. Uptake of U-VI by BioGR and BioMAG was accompanied by formation of nanoparticulate uraninite. The U EXAFS data for the U-BioSID system were consistent with partial U-VI/U-IV substitution for Fe-II in the surface layer of siderite particles and adsorption of U-IV.
C1 [O'Loughlin, Edward J.; Kelly, Shelly D.; Kemner, Kenneth M.] Argonne Natl Lab, Biosci Div, Argonne, IL 60439 USA.
[Kelly, Shelly D.] EXAFS Anal, Bolingbrook, IL 60440 USA.
RP O'Loughlin, EJ (reprint author), Argonne Natl Lab, Biosci Div, Bldg 203,Room E-137,9700 S Cass Ave, Argonne, IL 60439 USA.
EM oloughlin@anl.gov
RI O'Loughlin, Edward/C-9565-2013; ID, MRCAT/G-7586-2011
OI O'Loughlin, Edward/0000-0003-1607-9529;
FU U.S. Department of Energy (DOE) Office of Science, Office of Biological
and Environmental Research, Environmental Remediation Science Program
[DE-AC02-06CH11357]
FX We thank Maxim Boyanov and Bruce Ravel for their assistance in
collecting the XAFS data, Russell Cook for his assistance with SEM
imaging, and Karen Haugen and three anonymous reviewers for their
thoughtful reviews of the manuscript. Funding was provided by the U.S.
Department of Energy (DOE) Office of Science, Office of Biological and
Environmental Research, Environmental Remediation Science Program, under
contract DE-AC02-06CHI1357. MRCAT operations are supported by DOE and
the MRCAT member institutions. Use of the APS and the Electron
Microscopy Center for Materials Research at Argonne National Laboratory
was supported by the U.S. Department of Energy, Office of Science,
Office of Basic Energy Sciences, under contract DE-AC02-06CH11357.
NR 28
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PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 0013-936X
J9 ENVIRON SCI TECHNOL
JI Environ. Sci. Technol.
PD MAR 1
PY 2010
VL 44
IS 5
BP 1656
EP 1661
DI 10.1021/es9027953
PG 6
WC Engineering, Environmental; Environmental Sciences
SC Engineering; Environmental Sciences & Ecology
GA 559QT
UT WOS:000274842000024
PM 20146462
ER
PT J
AU Torkzaban, S
Kim, HN
Simunek, J
Bradford, SA
AF Torkzaban, Saeed
Kim, Hyunjung N.
Simunek, Jiri
Bradford, Scott A.
TI Hysteresis of Colloid Retention and Release in Saturated Porous Media
During Transients in Solution Chemistry
SO ENVIRONMENTAL SCIENCE & TECHNOLOGY
LA English
DT Article
ID SECONDARY ENERGY MINIMUM; MICROMETER-SCALE PARTICLES; IONIC-STRENGTH;
CHEMICAL CONDITIONS; PATCHY SURFACES; TRANSPORT; DEPOSITION; ADHESION;
WATER; FLOW
AB Saturated packed column and micromodel transport studies were conducted to gain insight on mechanisms of colloid retention and release under unfavorable attachment conditions. The initial deposition of colloids in porous media was found to be a strongly coupled process that depended on solution chemistry and pore space geometry. During steady state chemical conditions, colloid deposition was not a readily reversible process, and micromodel photos indicated that colloids were immobilized in the presence of fluid drag. Upon stepwise reduction in eluting solution ionic strength (IS), a sharp release of colloids occurred in each step which indicates that colloid retention depends on a balance of applied (hydrodynamic) and resisting (adhesive) torques which varied with pore space geometry, surface roughness, and interaction energy. When the eluting fluid IS was reduced to deionized water, the final retention locations occurred near grain-grain contacts, and colloid aggregation was sometimes observed in micromodel experiments. Significant amounts of colloid retention hysteresis with IS were observed in the column experiments, and it depended on the porous medium (glass beads compared with sand), the colloid size (1.1 and 0.5 mu m), and on the initial deposition IS. These observations were attributed to weak adhesive interactions that depended on the double layer thickness (e.g., the depth of the secondary minimum and/or nanoscale heterogeneity), colloid mass transfer on the solid phase to regions where the torque and force balances were favorable for retention, the number and extent of grain-grain contacts, and surface roughness.
C1 [Bradford, Scott A.] ARS, USDA, US Salin Lab, Riverside, CA USA.
[Torkzaban, Saeed] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Earth Sci, Berkeley, CA 94720 USA.
[Kim, Hyunjung N.] Univ Calif Riverside, Dept Chem & Environm Engn, Riverside, CA 92521 USA.
[Simunek, Jiri] Univ Calif Riverside, Dept Environm Sci, Riverside, CA 92521 USA.
RP Bradford, SA (reprint author), ARS, USDA, US Salin Lab, Riverside, CA USA.
EM Scott.Bradford@ars.usda.gov
RI Simunek, Jiri/F-3196-2011; Kim, Hyunjung/F-1505-2013; Torkzaban,
Saeed/G-7377-2013
OI Kim, Hyunjung/0000-0003-2115-6891; Torkzaban, Saeed/0000-0002-5146-9461
FU USDA-ARS; NRI [NRI 2006-02541]
FX This research was supported by the 206 Manure and Byproduct Utilization
Project of the USDA-ARS, and by a grant from NRI (NRI 2006-02541).
Mention of trade names and company names in this manuscript does not
imply any endorsement or preferential treatment by the USDA.
NR 41
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U1 2
U2 33
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 0013-936X
EI 1520-5851
J9 ENVIRON SCI TECHNOL
JI Environ. Sci. Technol.
PD MAR 1
PY 2010
VL 44
IS 5
BP 1662
EP 1669
DI 10.1021/es903277p
PG 8
WC Engineering, Environmental; Environmental Sciences
SC Engineering; Environmental Sciences & Ecology
GA 559QT
UT WOS:000274842000025
PM 20136144
ER
PT J
AU Nakayama, T
Kaneshita, E
AF Nakayama, T.
Kaneshita, E.
TI Interacting dipoles in type-I clathrates: Why glass-like though
crystalline? (vol 84, 66001, 2008)
SO EPL
LA English
DT Correction
C1 [Nakayama, T.] Argonne Natl Lab, Div Mat Sci, Argonne, IL 60439 USA.
[Kaneshita, E.] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
RP Nakayama, T (reprint author), Toyota Phys & Chem Res Inst Nagakute, Aichi 4801192, Japan.
EM Riken-nakayama@mosk.tytlabs.co.jp
NR 1
TC 0
Z9 0
U1 0
U2 1
PU EPL ASSOCIATION, EUROPEAN PHYSICAL SOCIETY
PI MULHOUSE
PA 6 RUE DES FRERES LUMIERE, MULHOUSE, 68200, FRANCE
SN 0295-5075
J9 EPL-EUROPHYS LETT
JI EPL
PD MAR
PY 2010
VL 89
IS 6
AR 69901
DI 10.1209/0295-5075/89/69901
PG 1
WC Physics, Multidisciplinary
SC Physics
GA 615EB
UT WOS:000279115100034
ER
PT J
AU Wilson, DP
Tkachenko, AV
Meiners, JC
AF Wilson, D. P.
Tkachenko, A. V.
Meiners, J. -C.
TI A generalized theory of DNA looping and cyclization
SO EPL
LA English
DT Article
ID STATISTICAL-MECHANICS; WORMLIKE CHAINS; FLEXIBILITY; SEQUENCE;
ELASTICITY; COMPLEXES; FRAGMENTS; FLUCTUATIONS; REPRESSOR; CLOSURE
AB We have developed a generalized semi-analytic approach for efficiently computing cyclization and looping J factors of DNA under arbitrary binding constraints. Many biological systems involving DNA-protein interactions impose precise boundary conditions on DNA, which necessitates a treatment beyond the Shimada-Yamakawa model for ring cyclization. Our model allows for DNA to be treated as a heteropolymer with sequence-dependent intrinsic curvature and stiffness, yet faithfully reproduces the results of Shimada and Yamakawa for the ring and unconstrained loop. In this framework, we independently compute enthlapic and entropic contributions to the J factor and show that even at small length scales (similar to l(p)) entropic effects are significant. We propose a simple analytic formula to describe our numerical results for near planar loops of homogenous DNA, which can be used to predict experimental cyclization and loop formation probabilities as a function of loop size and binding geometry. We also introduce an effective torsional persistence length that describes the coupling between twist and bending of DNA when looped. Copyright (C) EPLA, 2010
C1 [Wilson, D. P.; Meiners, J. -C.] Univ Michigan, Dept Phys, Ann Arbor, MI 48109 USA.
[Tkachenko, A. V.] Brookhaven Natl Lab, Ctr Funct Nanomat, Upton, NY 11973 USA.
[Meiners, J. -C.] Univ Michigan, LSA Biophys, Ann Arbor, MI 48109 USA.
RP Wilson, DP (reprint author), Univ Michigan, Dept Phys, 450 Church St, Ann Arbor, MI 48109 USA.
EM davewilson13@gmail.com
RI Tkachenko, Alexei/I-9040-2012
OI Tkachenko, Alexei/0000-0003-1291-243X
FU National Institutes of Health [GM 65934]
FX The authors would like to thank N. Perkins, S. Goyal, T. Lillian, G.
Blab, K. Raghunathan, P. Koehn, Y.-F. Chen and M. Wilson for their many
helpful conversations. This work was partially funded through grant GM
65934 from the National Institutes of Health.
NR 33
TC 8
Z9 8
U1 1
U2 6
PU EPL ASSOCIATION, EUROPEAN PHYSICAL SOCIETY
PI MULHOUSE
PA 6 RUE DES FRERES LUMIERE, MULHOUSE, 68200, FRANCE
SN 0295-5075
J9 EPL-EUROPHYS LETT
JI EPL
PD MAR
PY 2010
VL 89
IS 5
AR 58005
DI 10.1209/0295-5075/89/58005
PG 6
WC Physics, Multidisciplinary
SC Physics
GA 575WT
UT WOS:000276101500032
ER
PT J
AU Ilieva, Y
Berman, BL
Kudryavtsev, AE
Strakovsky, II
Tarasov, VE
Amarian, M
Ambrozewicz, P
Anghinolfi, M
Asryan, G
Avakian, H
Bagdasaryan, H
Baillie, N
Ball, JP
Baltzell, NA
Batourine, V
Battaglieri, M
Bedlinskiy, I
Bellis, M
Benmouna, N
Biselli, AS
Bouchigny, S
Boiarinov, S
Bradford, R
Branford, D
Briscoe, WJ
Brooks, WK
Bultmann, S
Burkert, VD
Butuceanu, C
Calarco, JR
Careccia, SL
Carman, DS
Chen, S
Cole, PL
Collins, P
Coltharp, P
Crabb, D
Crede, V
De Masi, R
De Sanctis, E
De Vita, R
Degtyarenko, PV
Deur, A
Dickson, R
Djalali, C
Dodge, GE
Donnelly, J
Doughty, D
Dugger, M
Dzyubak, OP
Egiyan, H
Egiyan, KS
Elouadrhiri, L
Eugenio, P
Fedotov, G
Feldman, G
Funsten, H
Garcon, M
Gavalian, G
Gilfoyle, GP
Giovanetti, KL
Girod, FX
Goetz, JT
Gonenc, A
Gothe, RW
Griffioen, KA
Guidal, M
Guler, N
Guo, L
Gyurjyan, V
Hafidi, K
Hakobyan, RS
Hersman, FW
Hicks, K
Hleiqawi, I
Holtrop, M
Hyde-Wright, CE
Ireland, DG
Ishkhanov, BS
Isupov, EL
Ito, MM
Jenkins, D
Jo, HS
Joo, K
Juengst, HG
Kalantarians, N
Kellie, JD
Khandaker, M
Kim, W
Klein, A
Klein, FJ
Kossov, M
Krahn, Z
Kramer, LH
Kubarovsky, V
Kuhn, J
Kuhn, SE
Kuleshov, SV
Lachniet, J
Laget, JM
Langheinrich, J
Lawrence, D
Livingston, K
Lu, H
MacCormick, M
Markov, N
McKinnon, B
Mecking, BA
Mestayer, MD
Meyer, CA
Mibe, T
Mikhailov, K
Mirazita, M
Miskimen, R
Mokeev, V
Moriya, K
Morrow, SA
Moteabbed, M
Munevar, E
Mutchler, GS
Nadel-Turonski, P
Nasseripour, R
Niccolai, S
Niculescu, G
Niculescu, I
Niczyporuk, BB
Niroula, MR
Niyazov, RA
Nozar, M
Osipenko, M
Ostrovidov, AI
Park, K
Pasyuk, E
Paterson, C
Pierce, J
Pivnyuk, N
Pogorelko, O
Pozdniakov, S
Price, JW
Prok, Y
Protopopescu, D
Raue, BA
Ricco, G
Ripani, M
Ritchie, BG
Ronchetti, F
Rosner, G
Rossi, P
Sabatie, F
Salgado, C
Santoro, JP
Sapunenko, V
Schumacher, RA
Serov, VS
Sharabian, YG
Shvedunov, NV
Smith, ES
Smith, LC
Sober, DI
Stavinsky, A
Stepanyan, SS
Stepanyan, S
Stokes, BE
Stoler, P
Strauch, S
Taiuti, M
Tedeschi, DJ
Thoma, U
Tkabladze, A
Tkachenko, S
Tur, C
Ungaro, M
Vineyard, MF
Vlassov, AV
Watts, DP
Weinstein, LB
Weygand, DP
Williams, M
Wolin, E
Wood, MH
Yegneswaran, A
Zana, L
Zhang, J
Zhao, B
Zhao, Z
AF Ilieva, Y.
Berman, B. L.
Kudryavtsev, A. E.
Strakovsky, I. I.
Tarasov, V. E.
Amarian, M.
Ambrozewicz, P.
Anghinolfi, M.
Asryan, G.
Avakian, H.
Bagdasaryan, H.
Baillie, N.
Ball, J. P.
Baltzell, N. A.
Batourine, V.
Battaglieri, M.
Bedlinskiy, I.
Bellis, M.
Benmouna, N.
Biselli, A. S.
Bouchigny, S.
Boiarinov, S.
Bradford, R.
Branford, D.
Briscoe, W. J.
Brooks, W. K.
Bueltmann, S.
Burkert, V. D.
Butuceanu, C.
Calarco, J. R.
Careccia, S. L.
Carman, D. S.
Chen, S.
Cole, P. L.
Collins, P.
Coltharp, P.
Crabb, D.
Crede, V.
De Masi, R.
De Sanctis, E.
De Vita, R.
Degtyarenko, P. V.
Deur, A.
Dickson, R.
Djalali, C.
Dodge, G. E.
Donnelly, J.
Doughty, D.
Dugger, M.
Dzyubak, O. P.
Egiyan, H.
Egiyan, K. S.
Elouadrhiri, L.
Eugenio, P.
Fedotov, G.
Feldman, G.
Funsten, H.
Garcon, M.
Gavalian, G.
Gilfoyle, G. P.
Giovanetti, K. L.
Girod, F. X.
Goetz, J. T.
Gonenc, A.
Gothe, R. W.
Griffioen, K. A.
Guidal, M.
Guler, N.
Guo, L.
Gyurjyan, V.
Hafidi, K.
Hakobyan, R. S.
Hersman, F. W.
Hicks, K.
Hleiqawi, I.
Holtrop, M.
Hyde-Wright, C. E.
Ireland, D. G.
Ishkhanov, B. S.
Isupov, E. L.
Ito, M. M.
Jenkins, D.
Jo, H. S.
Joo, K.
Juengst, H. G.
Kalantarians, N.
Kellie, J. D.
Khandaker, M.
Kim, W.
Klein, A.
Klein, F. J.
Kossov, M.
Krahn, Z.
Kramer, L. H.
Kubarovsky, V.
Kuhn, J.
Kuhn, S. E.
Kuleshov, S. V.
Lachniet, J.
Laget, J. M.
Langheinrich, J.
Lawrence, D.
Livingston, K.
Lu, H.
MacCormick, M.
Markov, N.
McKinnon, B.
Mecking, B. A.
Mestayer, M. D.
Meyer, C. A.
Mibe, T.
Mikhailov, K.
Mirazita, M.
Miskimen, R.
Mokeev, V.
Moriya, K.
Morrow, S. A.
Moteabbed, M.
Munevar, E.
Mutchler, G. S.
Nadel-Turonski, P.
Nasseripour, R.
Niccolai, S.
Niculescu, G.
Niculescu, I.
Niczyporuk, B. B.
Niroula, M. R.
Niyazov, R. A.
Nozar, M.
Osipenko, M.
Ostrovidov, A. I.
Park, K.
Pasyuk, E.
Paterson, C.
Pierce, J.
Pivnyuk, N.
Pogorelko, O.
Pozdniakov, S.
Price, J. W.
Prok, Y.
Protopopescu, D.
Raue, B. A.
Ricco, G.
Ripani, M.
Ritchie, B. G.
Ronchetti, F.
Rosner, G.
Rossi, P.
Sabatie, F.
Salgado, C.
Santoro, J. P.
Sapunenko, V.
Schumacher, R. A.
Serov, V. S.
Sharabian, Y. G.
Shvedunov, N. V.
Smith, E. S.
Smith, L. C.
Sober, D. I.
Stavinsky, A.
Stepanyan, S. S.
Stepanyan, S.
Stokes, B. E.
Stoler, P.
Strauch, S.
Taiuti, M.
Tedeschi, D. J.
Thoma, U.
Tkabladze, A.
Tkachenko, S.
Tur, C.
Ungaro, M.
Vineyard, M. F.
Vlassov, A. V.
Watts, D. P.
Weinstein, L. B.
Weygand, D. P.
Williams, M.
Wolin, E.
Wood, M. H.
Yegneswaran, A.
Zana, L.
Zhang, J.
Zhao, B.
Zhao, Z.
CA CLAS Collaboration
TI Evidence for a backward peak in the gamma d -> pi(0)d cross section near
the eta threshold
SO EUROPEAN PHYSICAL JOURNAL A
LA English
DT Article
ID COHERENT PION-PHOTOPRODUCTION; D ELASTIC-SCATTERING; DIBARYON
RESONANCES; NEAR-THRESHOLD; MESIC NUCLEUS; BOUND-STATES; DEUTERON;
MESON; SIGNATURE; REGION
AB High-quality cross sections for the reaction gamma d -> pi(0)d have been measured using the CLAS at Jefferson Lab over a wide energy range near and above the eta-meson photoproduction threshold. At backward c.m. angles for the outgoing pions, we observe a resonance-like structure near E-gamma = 700 MeV. Our model analysis shows that it can be explained by eta excitation in the intermediate state. The effect is the result of the contribution of the N(1535) S-11-resonance to the amplitudes of the subprocesses occurring between the two nucleons and of a two-step process in which the excitation of an intermediate eta-meson dominates.
C1 [Ilieva, Y.; Berman, B. L.; Kudryavtsev, A. E.; Strakovsky, I. I.; Benmouna, N.; Briscoe, W. J.; Feldman, G.; Munevar, E.; Nadel-Turonski, P.; Tkabladze, A.] George Washington Univ, Washington, DC 20052 USA.
[Kudryavtsev, A. E.; Tarasov, V. E.; Bedlinskiy, I.; Kossov, M.; Kuleshov, S. V.; Mikhailov, K.; Pivnyuk, N.; Pogorelko, O.; Pozdniakov, S.; Serov, V. S.; Stavinsky, A.; Vlassov, A. V.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Hafidi, K.] Argonne Natl Lab, Argonne, IL 60439 USA.
[Ball, J. P.; Collins, P.; Dugger, M.; Pasyuk, E.; Ritchie, B. G.] Arizona State Univ, Tempe, AZ 85287 USA.
[Goetz, J. T.] Univ Calif Los Angeles, Los Angeles, CA 90095 USA.
[Price, J. W.] Calif State Univ Dominguez Hills, Carson, CA 90747 USA.
[Bellis, M.; Bradford, R.; Dickson, R.; Krahn, Z.; Kuhn, J.; Meyer, C. A.; Moriya, K.; Schumacher, R. A.; Williams, M.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Hakobyan, R. S.; Klein, F. J.; Sober, D. I.] Catholic Univ Amer, Washington, DC 20064 USA.
[De Masi, R.; Garcon, M.; Girod, F. X.; Morrow, S. A.; Sabatie, F.] CEA Saclay, Serv Phys Nucl, F-91191 Gif Sur Yvette, France.
[Doughty, D.] Christopher Newport Univ, Newport News, VA 23606 USA.
[Joo, K.; Markov, N.; Ungaro, M.; Zhao, B.] Univ Connecticut, Storrs, CT 06269 USA.
[Branford, D.; Watts, D. P.] Univ Edinburgh, Edinburgh EH9 3JK, Midlothian, Scotland.
[Biselli, A. S.] Fairfield Univ, Fairfield, CT 06824 USA.
[Ambrozewicz, P.; Gonenc, A.; Kramer, L. H.; Moteabbed, M.; Raue, B. A.] Florida Int Univ, Miami, FL 33199 USA.
[Chen, S.; Coltharp, P.; Crede, V.; Eugenio, P.; Ostrovidov, A. I.; Stokes, B. E.] Florida State Univ, Tallahassee, FL 32306 USA.
[Donnelly, J.; Ireland, D. G.; Kellie, J. D.; Livingston, K.; McKinnon, B.; Paterson, C.; Protopopescu, D.; Rosner, G.] Univ Glasgow, Glasgow G12 8QQ, Lanark, Scotland.
[Cole, P. L.] Idaho State Univ, Pocatello, ID 83209 USA.
[De Sanctis, E.; Mirazita, M.; Ronchetti, F.; Rossi, P.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Anghinolfi, M.; Battaglieri, M.; De Vita, R.; Osipenko, M.; Ricco, G.; Ripani, M.; Stoler, P.; Taiuti, M.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Bouchigny, S.; Guidal, M.; Jo, H. S.; MacCormick, M.; Morrow, S. A.; Niccolai, S.] Inst Phys Nucl ORSAY, Orsay, France.
[Giovanetti, K. L.; Niculescu, G.; Niculescu, I.] James Madison Univ, Harrisonburg, VA 22807 USA.
[Batourine, V.; Kim, W.; Park, K.; Stepanyan, S. S.] Kyungpook Natl Univ, Taegu 702701, South Korea.
[Lawrence, D.; Miskimen, R.] Univ Massachusetts, Amherst, MA 01003 USA.
[Fedotov, G.; Ishkhanov, B. S.; Isupov, E. L.; Mokeev, V.; Osipenko, M.; Shvedunov, N. V.] Moscow MV Lomonosov State Univ, Gen Nucl Phys Inst, Moscow 119899, Russia.
[Calarco, J. R.; Hersman, F. W.; Holtrop, M.; Zana, L.] Univ New Hampshire, Durham, NH 03824 USA.
[Khandaker, M.; Salgado, C.] Norfolk State Univ, Norfolk, VA 23504 USA.
[Hicks, K.; Hleiqawi, I.; Mibe, T.] Ohio Univ, Athens, OH 45701 USA.
[Amarian, M.; Bagdasaryan, H.; Bueltmann, S.; Careccia, S. L.; Dodge, G. E.; Gavalian, G.; Guler, N.; Hyde-Wright, C. E.; Juengst, H. G.; Kalantarians, N.; Klein, A.; Kuhn, S. E.; Lachniet, J.; Niroula, M. R.; Tkachenko, S.; Weinstein, L. B.; Zhang, J.] Old Dominion Univ, Norfolk, VA 23529 USA.
[Kubarovsky, V.] Rensselaer Polytech Inst, Troy, NY 12180 USA.
[Mutchler, G. S.] Rice Univ, Houston, TX 77005 USA.
[Gilfoyle, G. P.] Univ Richmond, Richmond, VA 23173 USA.
[Baltzell, N. A.; Djalali, C.; Dzyubak, O. P.; Gothe, R. W.; Langheinrich, J.; Lu, H.; Nasseripour, R.; Strauch, S.; Tedeschi, D. J.; Tur, C.; Wood, M. H.; Zhao, Z.] Univ S Carolina, Columbia, SC 29208 USA.
[Avakian, H.; Boiarinov, S.; Brooks, W. K.; Burkert, V. D.; Carman, D. S.; Degtyarenko, P. V.; Deur, A.; Doughty, D.; Egiyan, H.; Elouadrhiri, L.; Guo, L.; Gyurjyan, V.; Ito, M. M.; Kramer, L. H.; Laget, J. M.; Mecking, B. A.; Mestayer, M. D.; Niczyporuk, B. B.; Niyazov, R. A.; Nozar, M.; Raue, B. A.; Santoro, J. P.; Sapunenko, V.; Sharabian, Y. G.; Smith, E. S.; Stepanyan, S.; Thoma, U.; Weygand, D. P.; Wolin, E.; Yegneswaran, A.] Thomas Jefferson Natl Accelerator Facil, Newport News, VA 23606 USA.
TRIUMF, Vancouver, BC V6T 2A3, Canada.
[Vineyard, M. F.] Union Coll, Schenectady, NY 12308 USA.
[Jenkins, D.; Santoro, J. P.] Virginia Polytech Inst & State Univ, Blacksburg, VA 24061 USA.
[Crabb, D.; Pierce, J.; Prok, Y.; Smith, L. C.] Univ Virginia, Charlottesville, VA 22901 USA.
[Baillie, N.; Butuceanu, C.; Funsten, H.; Griffioen, K. A.] Coll William & Mary, Williamsburg, VA 23187 USA.
[Asryan, G.; Egiyan, K. S.] Yerevan Phys Inst, Yerevan 375036, Armenia.
RP Ilieva, Y (reprint author), USC, Columbia, SC 29208 USA.
EM ilieva@sc.edu
RI Osipenko, Mikhail/N-8292-2015; Zhang, Jixie/A-1461-2016; Ireland,
David/E-8618-2010; Lu, Haiyun/B-4083-2012; Protopopescu,
Dan/D-5645-2012; Zana, Lorenzo/H-3032-2012; Isupov, Evgeny/J-2976-2012;
Ishkhanov, Boris/E-1431-2012; Zhao, Bo/J-6819-2012; Brooks,
William/C-8636-2013; Kuleshov, Sergey/D-9940-2013; Schumacher,
Reinhard/K-6455-2013; Meyer, Curtis/L-3488-2014; Sabatie,
Franck/K-9066-2015
OI Osipenko, Mikhail/0000-0001-9618-3013; Ireland,
David/0000-0001-7713-7011; Zhao, Bo/0000-0003-3171-5335; Brooks,
William/0000-0001-6161-3570; Kuleshov, Sergey/0000-0002-3065-326X;
Schumacher, Reinhard/0000-0002-3860-1827; Meyer,
Curtis/0000-0001-7599-3973; Sabatie, Franck/0000-0001-7031-3975
FU U.S. Department of Energy [DE-FG02-95ER40901, DE-FG02-99ER41110,
DE-AC05-84ER40150]; Russian Ministry of Industry, Science, and
Technology [NSh 5603.2006.2]; Science and Technology Facilities Council
(STFC); National Research Foundation of Korea
FX We thank Y. Sumi for providing us with the numerical values of the cross
sections of ref. [36]. We would like to acknowledge the efforts of the
staff of the Accelerator and the Physics Divisions at Jefferson Lab that
made this experiment possible. This work was supported by the U.S.
Department of Energy under grant DE-FG02-95ER40901, in part under grant
DE-FG02-99ER41110, by the grant of the Russian Ministry of Industry,
Science, and Technology NSh 5603.2006.2, by the Science and Technology
Facilities Council (STFC), and by the National Research Foundation of
Korea. The Southeastern Universities Research Association (SURA)
operated the Thomas Jefferson National Accelerator Facility for the
United States Department of Energy under contract DE-AC05-84ER40150
until May 31, 2006.
NR 38
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U1 0
U2 5
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1434-6001
J9 EUR PHYS J A
JI Eur. Phys. J. A
PD MAR
PY 2010
VL 43
IS 3
BP 261
EP 267
DI 10.1140/epja/i2010-10918-x
PG 7
WC Physics, Nuclear; Physics, Particles & Fields
SC Physics
GA 563VA
UT WOS:000275161800002
ER
PT J
AU Hirshler, Y
Polat, U
Biegon, A
AF Hirshler, Yafit (Kuttner)
Polat, Uri
Biegon, Anat
TI Intracranial electrode implantation produces regional neuroinflammation
and memory deficits in rats
SO EXPERIMENTAL NEUROLOGY
LA English
DT Article
DE Deep brain stimulation; Brain injury; Peripheral Benzodiazepine
Receptor; Translocator protein; Autoradiography; Novel Object
Recognition
ID DEEP-BRAIN-STIMULATION; PERIPHERAL BENZODIAZEPINE-RECEPTORS; SUBTHALAMIC
NUCLEUS STIMULATION; SILICON MICROELECTRODE ARRAYS; CHRONIC BILATERAL
STIMULATION; PARKINSONS-DISEASE; COGNITIVE FUNCTION; STN-DBS; MICROGLIAL
ACTIVATION; EXECUTIVE FUNCTIONS
AB Deep brain stimulation (DBS) is an established treatment for advanced Parkinson's disease (PD). The procedure entails intracranial implantation of an electrode in a specific brain structure followed by chronic stimulation. Although the beneficial effects of DBS on motor symptoms in PD are well known. it is often accompanied by cognitive impairments, the origin of which is not fully understood. To explore the possible contribution of the surgical procedure itself, we studied the effect of electrode implantation in the subthalamic nucleus (STN) on regional neuroinflammation and memory function in rats implanted bilaterally with stainless steel electrodes. Age-matched sham and intact rats were used as controls. Brains were removed I or 8 weeks post-implantation and processed for in vitro autoradiography with [(3)H]PK11195, an established marker of microglial activation. Memory function was assessed by the novel object recognition test (ORT) before surgery and 2 and 8 weeks after surgery. Electrode implantation produced region-dependent changes in ligand binding density in the implanted brains at I as well as 8 weeks post-implantation. Cortical regions showed more intense and widespread neuroinflammation than striatal or thalamic structures. Furthermore, implanted animals showed deficits in ORT performance 2 and 8 weeks post-implantation. Thus, electrode implantation resulted in a widespread and persistent neuroinflammation and sustained memory impairment. These results suggest that the insertion and continued presence of electrodes in the brain, even without stimulation, may lead to inflammation-mediated cognitive deficits in susceptible individuals, as observed in patients treated with DBS. Published by Elsevier Inc.
C1 [Biegon, Anat] Brookhaven Natl Lab, Dept Med, Upton, NY 11973 USA.
[Hirshler, Yafit (Kuttner); Biegon, Anat] Chaim Sheba Med Ctr, Joseph Sagol Neurosci Ctr, IL-52621 Tel Hashomer, Israel.
[Hirshler, Yafit (Kuttner)] Bar Ilan Univ, Leslie & Susan Gonda Goldschmied Multidisciplinar, Ramat Gan, Israel.
[Polat, Uri] Chaim Sheba Med Ctr, Goldschleger Eye Res Inst, IL-52621 Tel Hashomer, Israel.
[Polat, Uri] Tel Aviv Univ, Sackler Sch Med, IL-69978 Tel Aviv, Israel.
RP Biegon, A (reprint author), Brookhaven Natl Lab, Dept Med, Bldg 490, Upton, NY 11973 USA.
EM Biegon@bnl.gov
FU NIH [R01 NS050285]
FX We would like to thank Dr. Spiegelman from the Department of
Neurosurgery in Sheba Medical Center for helpful discussions. Supported
in part by NIH R01 NS050285 to Anat Biegon.
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PU ACADEMIC PRESS INC ELSEVIER SCIENCE
PI SAN DIEGO
PA 525 B ST, STE 1900, SAN DIEGO, CA 92101-4495 USA
SN 0014-4886
J9 EXP NEUROL
JI Exp. Neurol.
PD MAR
PY 2010
VL 222
IS 1
BP 42
EP 50
DI 10.1016/j.expneurol.2009.12.006
PG 9
WC Neurosciences
SC Neurosciences & Neurology
GA 565PO
UT WOS:000275306600007
PM 20026042
ER
PT J
AU Karpinets, TV
Obraztsova, AY
Wang, YB
Schmoyer, DD
Kora, GH
Park, BH
Serres, MH
Romine, MF
Land, ML
Kothe, TB
Fredrickson, JK
Nealson, KH
Uberbacher, EC
AF Karpinets, Tatiana V.
Obraztsova, Anna Y.
Wang, Yanbing
Schmoyer, Denise D.
Kora, Guruprasad H.
Park, Byung H.
Serres, Margrethe H.
Romine, Margaret F.
Land, Miriam L.
Kothe, Terence B.
Fredrickson, Jim K.
Nealson, Kenneth H.
Uberbacher, Edward C.
TI Conserved synteny at the protein family level reveals genes underlying
Shewanella species' cold tolerance and predicts their novel phenotypes
SO FUNCTIONAL & INTEGRATIVE GENOMICS
LA English
DT Article
DE Phenotypic trait; Bacteria; Molecular mechanisms of cold tolerance;
Shewanella; Protein families
ID ONEIDENSIS MR-1; SALMONELLA-ENTERICA; PHENYLACETIC ACID;
ESCHERICHIA-COLI; LOW-TEMPERATURE; GENOME; EVOLUTION; BACTERIA; SYSTEM;
IDENTIFICATION
AB Bacteria of the genus Shewanella can thrive in different environments and demonstrate significant variability in their metabolic and ecophysiological capabilities including cold and salt tolerance. Genomic characteristics underlying this variability across species are largely unknown. In this study, we address the problem by a comparison of the physiological, metabolic, and genomic characteristics of 19 sequenced Shewanella species. We have employed two novel approaches based on association of a phenotypic trait with the number of the trait-specific protein families (Pfam domains) and on the conservation of synteny (order in the genome) of the trait-related genes. Our first approach is top-down and involves experimental evaluation and quantification of the species' cold tolerance followed by identification of the correlated Pfam domains and genes with a conserved synteny. The second, a bottom-up approach, predicts novel phenotypes of the species by calculating profiles of each Pfam domain among their genomes and following pair-wise correlation of the profiles and their network clustering. Using the first approach, we find a link between cold and salt tolerance of the species and the presence in the genome of a Na+/H+ antiporter gene cluster. Other cold-tolerance-related genes include peptidases, chemotaxis sensory transducer proteins, a cysteine exporter, and helicases. Using the bottom-up approach, we found several novel phenotypes in the newly sequenced Shewanella species, including degradation of aromatic compounds by an aerobic hybrid pathway in Shewanella woodyi, degradation of ethanolamine by Shewanella benthica, and propanediol degradation by Shewanella putrefaciens CN32 and Shewanella sp. W3-18-1.
C1 [Karpinets, Tatiana V.; Land, Miriam L.; Uberbacher, Edward C.] Oak Ridge Natl Lab, Biosci Div, Oak Ridge, TN USA.
[Obraztsova, Anna Y.; Wang, Yanbing; Nealson, Kenneth H.] Univ So Calif, Dept Earth Sci, Los Angeles, CA USA.
[Schmoyer, Denise D.; Kora, Guruprasad H.; Park, Byung H.; Kothe, Terence B.] Oak Ridge Natl Lab, Div Math & Comp Sci, Oak Ridge, TN USA.
[Serres, Margrethe H.] Marine Biol Lab, Ctr Comparat Mol Biol & Evolut, Woods Hole, MA 02543 USA.
[Romine, Margaret F.; Fredrickson, Jim K.] Pacific NW Natl Lab, Div Biol Sci, Richland, WA 99352 USA.
RP Karpinets, TV (reprint author), Oak Ridge Natl Lab, Biosci Div, Oak Ridge, TN USA.
EM karpinetstv@ornl.gov
RI Land, Miriam/A-6200-2011;
OI Land, Miriam/0000-0001-7102-0031; Romine, Margaret/0000-0002-0968-7641
FU US Department of Energy Joint Genome; GTL Program via the Shewanella
Federation consortium
FX We are very grateful to Arcady R. Mushegian and other reviewers of the
paper for thoughtful suggestions and comments on the study. The sequence
data for the Shewanella species except S. oneidensis MR-1 and S.
benthica KT99 were produced by the US Department of Energy Joint Genome
Institute http://www.jgi.doe.gov/. The sequence data for S. oneidensis
MR-1 and S. benthica KT99 were produced by J. Craig Venter Institute
(http://www.tigr.org/). This research was supported by the U.S.
Department of Energy (DOE) Office of Biological and Environmental
Research under the Genomics: GTL Program via the Shewanella Federation
consortium.
NR 59
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U1 1
U2 12
PU SPRINGER HEIDELBERG
PI HEIDELBERG
PA TIERGARTENSTRASSE 17, D-69121 HEIDELBERG, GERMANY
SN 1438-793X
EI 1438-7948
J9 FUNCT INTEGR GENOMIC
JI Funct. Integr. Genomics
PD MAR
PY 2010
VL 10
IS 1
BP 97
EP 110
DI 10.1007/s10142-009-0142-y
PG 14
WC Genetics & Heredity
SC Genetics & Heredity
GA 567FP
UT WOS:000275429100009
PM 19802638
ER
PT J
AU Scott, SL
Vallee, G
Naughton, T
Tikotekar, A
Engelmann, C
Ong, H
AF Scott, Stephen L.
Vallee, Geoffroy
Naughton, Thomas
Tikotekar, Anand
Engelmann, Christian
Ong, Hong
TI System-level virtualization research at Oak Ridge National Laboratory
SO FUTURE GENERATION COMPUTER SYSTEMS-THE INTERNATIONAL JOURNAL OF ESCIENCE
LA English
DT Article
DE Systems; System architectures; Fault tolerance
AB System-level virtualization is today enjoying a rebirth as a technique to effectively share what had been considered large computing resources which subsequently faded from the spotlight as individual workstations gained in popularity with a "one machine-one user" approach. One reason for this resurgence is that the simple workstation has grown in capability to rival anything similar, available in the past. Thus, computing centers are again looking at the price/performance benefit of sharing that single computing box via server consolidation.
However, industry is only concentrating on the benefits of using virtualization for server consolidation (enterprise computing) whereas our interest is in leveraging virtualization to advance high-performance computing (HPC). While these two interests may appear to be orthogonal, one consolidating multiple applications and users on a single machine while the other requires all the power from many machines to be dedicated solely to its purpose, we propose that virtualization does provide attractive capabilities that may be exploited to the benefit of HPC interests. This does raise the two fundamental questions: is the concept of virtualization (a machine "sharing" technology) really suitable for HPC and if so, how does one go about leveraging these virtualization capabilities for the benefit of HPC.
To address these questions, this document presents ongoing studies on the usage of system-level virtualization in a HPC context. These studies include an analysis of the benefits of system-level virtualization for HPC, a presentation of research efforts based on virtualization for system availability, and a presentation of research efforts for the management of virtual systems. The basis for this document was the material presented by Stephen L. Scott at the Collaborative and Grid Computing Technologies meeting held in Cancun, Mexico on April 12-14, 2007. Published by Elsevier B.V.
C1 [Scott, Stephen L.; Vallee, Geoffroy; Naughton, Thomas; Tikotekar, Anand; Engelmann, Christian; Ong, Hong] Oak Ridge Natl Lab, Oak Ridge, TN 37830 USA.
RP Scott, SL (reprint author), Oak Ridge Natl Lab, Oak Ridge, TN 37830 USA.
EM scottsl@ornl.gov; valleegr@ornl.gov; naughtont@ornl.gov;
tikotekaraa@ornl.gov; engelmannc@ornl.gov; hongong@ornl.gov
NR 9
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Z9 9
U1 0
U2 6
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0167-739X
EI 1872-7115
J9 FUTURE GENER COMP SY
JI Futur. Gener. Comp. Syst.
PD MAR
PY 2010
VL 26
IS 3
BP 304
EP 307
DI 10.1016/j.future.2009.07.001
PG 4
WC Computer Science, Theory & Methods
SC Computer Science
GA 538YD
UT WOS:000273219400002
ER
PT J
AU Philip, VM
Duvvuru, S
Gomero, B
Ansah, TA
Blaha, CD
Cook, MN
Hamre, KM
Lariviere, WR
Matthews, DB
Mittleman, G
Goldowitz, D
Chesler, EJ
AF Philip, V. M.
Duvvuru, S.
Gomero, B.
Ansah, T. A.
Blaha, C. D.
Cook, M. N.
Hamre, K. M.
Lariviere, W. R.
Matthews, D. B.
Mittleman, G.
Goldowitz, D.
Chesler, E. J.
TI High-throughput behavioral phenotyping in the expanded panel of BXD
recombinant inbred strains
SO GENES BRAIN AND BEHAVIOR
LA English
DT Article
DE gene expression; heritability; sex differences; systems genetics
ID QUANTITATIVE TRAIT LOCI; GENOME-WIDE ASSOCIATION; MOUSE STRAINS;
SEX-DIFFERENCES; COMPLEX TRAITS; LABORATORY ENVIRONMENT; COLLABORATIVE
CROSS; THERMAL NOCICEPTION; NEUROPATHIC PAIN; GENE-EXPRESSION
AB Genetic reference populations, particularly the BXD recombinant inbred (BXD RI) strains derived from C57BL/6J and DBA/2J mice, are a valuable resource for the discovery of the bio-molecular substrates and genetic drivers responsible for trait variation and covariation. This approach can be profitably applied in the analysis of susceptibility and mechanisms of drug and alcohol use disorders for which many predisposing behaviors may predict the occurrence and manifestation of increased preference for these substances. Many of these traits are modeled by common mouse behavioral assays, facilitating the detection of patterns and sources of genetic coregulation of predisposing phenotypes and substance consumption. Members of the Tennessee Mouse Genome Consortium (TMGC) have obtained phenotype data from over 250 measures related to multiple behavioral assays across several batteries: response to, and withdrawal from cocaine, 3,4-methylenedioxymethamphetamine; "ecstasy" (MDMA), morphine and alcohol; novelty seeking; behavioral despair and related neurological phenomena; pain sensitivity; stress sensitivity; anxiety; hyperactivity and sleep/wake cycles. All traits have been measured in both sexes in approximately 70 strains of the recently expanded panel of BXD RI strains. Sex differences and heritability estimates were obtained for each trait, and a comparison of early (N = 32) and recent (N = 37) BXD RI lines was performed. Primary data are publicly available for heritability, sex difference and genetic analyses using the MouseTrack database, and are also available in GeneNetwork.org for quantitative trait locus (QTL) detection and genetic analysis of gene expression. Together with the results of related studies, these data form a public resource for integrative systems genetic analysis of neurobehavioral traits.
C1 [Philip, V. M.; Duvvuru, S.; Gomero, B.; Chesler, E. J.] Oak Ridge Natl Lab, Biosci Div, Syst Genet Grp, Oak Ridge, TN USA.
[Ansah, T. A.] Meharry Med Coll, Dept Neurobiol & Neurotoxicol, Nashville, TN 37208 USA.
[Blaha, C. D.; Cook, M. N.; Mittleman, G.] Univ Memphis, Dept Psychol, Memphis, TN 38152 USA.
[Hamre, K. M.] Univ Tennessee, Hlth Sci Ctr, Dept Anat, Memphis, TN USA.
[Hamre, K. M.] Univ Tennessee, Hlth Sci Ctr, Dept Neurobiol, Memphis, TN USA.
[Lariviere, W. R.] Univ Pittsburgh, Sch Med, Dept Anesthesiol, Pittsburgh, PA 15261 USA.
[Lariviere, W. R.] Univ Pittsburgh, Sch Med, Dept Neurobiol, Pittsburgh, PA 15261 USA.
[Matthews, D. B.] Baylor Univ, Dept Psychol, Waco, TX 76798 USA.
[Matthews, D. B.] Baylor Univ, Dept Neurosci, Waco, TX 76798 USA.
[Goldowitz, D.] Univ British Columbia, Dept Med Genet, Ctr Mol Med & Therapeut, Vancouver, BC, Canada.
RP Chesler, EJ (reprint author), Jackson Lab, 600 Main St, Bar Harbor, ME 04609 USA.
EM Elissa.Chesler@jax.org
OI Blaha, Charles/0000-0001-5155-1505; Philip, Vivek/0000-0001-5126-707X
FU NIH [DA020677, AA13509, AA13499, AA016662, DA021198]; Office of
Biological and Environmental Research, US Department of Energy
[DE-AC05-00OR22725]
FX This project is supported by NIH DA020677, AA13509, AA13499, AA016662,
DA021198 and the Office of Biological and Environmental Research, US
Department of Energy, under Contract DE-AC05-00OR22725 with UT-Battelle,
LLC. We gratefully acknowledge Leslie Galloway, Jason S. Spence, Betty
Lou Alspaugh and Barbara Jackson for their involvement in the
development and maintenance of MouseTrack, Xiaolong Zhou for
facilitating Gene Network submission and Darla Miller for technical
co-ordination of the Mouse Genetics Research Facility at ORNL. We
gratefully acknowledge The Jackson Laboratory and Lu Lu for facilitating
this high-throughput phenotyping endeavor.
NR 93
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Z9 63
U1 3
U2 14
PU WILEY-BLACKWELL PUBLISHING, INC
PI MALDEN
PA COMMERCE PLACE, 350 MAIN ST, MALDEN 02148, MA USA
SN 1601-1848
J9 GENES BRAIN BEHAV
JI Genes Brain Behav.
PD MAR
PY 2010
VL 9
IS 2
BP 129
EP 159
DI 10.1111/j.1601-183X.2009.00540.x
PG 31
WC Behavioral Sciences; Neurosciences
SC Behavioral Sciences; Neurosciences & Neurology
GA 568JX
UT WOS:000275519700001
PM 19958391
ER
PT J
AU Catalano, JG
Fenter, P
Park, C
Zhang, Z
Rosso, KM
AF Catalano, Jeffrey G.
Fenter, Paul
Park, Changyong
Zhang, Zhan
Rosso, Kevin M.
TI Structure and oxidation state of hematite surfaces reacted with aqueous
Fe(II) at acidic and neutral pH
SO GEOCHIMICA ET COSMOCHIMICA ACTA
LA English
DT Article
ID X-RAY REFLECTIVITY; SEMICONDUCTING MINERAL SURFACES;
SCANNING-TUNNELING-MICROSCOPY; INTERFACIAL ELECTRON-TRANSFER;
IRON-OXIDE; FE(II)-FE(III) ELECTRON; ISOTOPE FRACTIONATION; PHOSPHATE
REMOVAL; IRON(III) OXIDES; PYRITE OXIDATION
AB Structural changes and surface oxidation state were examined following the reaction of hematite (0 0 1), (0 1 2), and (1 1 0) with aqueous Fe(II). X-ray reflectivity measurements indicated that Fe(II) induces changes in the structure of all three surfaces under both acidic (pH 3) and neutral (pH 7) conditions. The structural changes were generally independent of pH although the extent of surface transformation varied slightly between acidic and neutral conditions; no systematic trends with pH were observed. Induced changes on the (1 1 0) and (0 1 2) surfaces include the addition or removal of partial surface layers consistent with either growth or dissolution. In contrast, a <1 nm thick, discontinuous film formed on the (0 0 1) surface that appears to be epitaxial yet is not a perfect extension of the underlying hematite lattice, being either structurally defective, compositionally distinct, or nanoscale in size and highly relaxed. Resonant anomalous X-ray reflectivity measurements determined that the surface concentration of Fe(II) present after reaction at pH 7 was below the detection limit of approximately 0.5-1 mu mol/m(2) on all surfaces. These observations are consistent with Fe(II) oxidative adsorption, whereby adsorbed Fe(II) is oxidized by structural Fe(III) in the hematite lattice, with the extent of this reaction controlled by surface structure at the atomic scale. The observed surface transformations at pH 3 show that Fe(II) oxidatively adsorbs on hematite surfaces at pH values where little net adsorption occurs, based on historical macroscopic Fe(II) adsorption behavior on fine-grained hematite powders. This suggests that Fe(II) plays a catalytic role, in which an electron from an adsorbed Fe(II) migrates to and reduces a lattice Fe(III) cation elsewhere, which subsequently desorbs in a scenario with zero net reduction and zero net adsorption. Given the general pH-independence and substantial mass transfer involved, this electron and atom exchange process appears to be a significant subsystem within macroscopic pH-dependent Fe(II) adsorption. (c) 2009 Elsevier Ltd. All rights reserved.
C1 [Catalano, Jeffrey G.] Washington Univ, Dept Earth & Planetary Sci, St Louis, MO 63130 USA.
[Fenter, Paul; Park, Changyong] Argonne Natl Lab, Chem Sci & Engn Div, Argonne, IL 60439 USA.
[Zhang, Zhan] Argonne Natl Lab, Xray Sci Div, Argonne, IL 60439 USA.
[Rosso, Kevin M.] Pacific NW Natl Lab, Div Mat & Chem Sci, Richland, WA 99352 USA.
RP Catalano, JG (reprint author), Washington Univ, Dept Earth & Planetary Sci, 1 Brookings Dr, St Louis, MO 63130 USA.
EM catalano@wustl.edu
RI Catalano, Jeffrey/A-8322-2013; ID, MRCAT/G-7586-2011; Park,
Changyong/A-8544-2008; Zhang, Zhan/A-9830-2008
OI Catalano, Jeffrey/0000-0001-9311-977X; Park,
Changyong/0000-0002-3363-5788; Zhang, Zhan/0000-0002-7618-6134
FU National Science Foundation [EAR-0818354]; Office of Basic Energy
Sciences (BES), US Department of Energy (DOE) [DE-AC02-06CH11357];
NSERC; University of Washington; Simon Fraser University; Pacific
Northwest National Laboratory; Advanced Photon Source
FX Acknowledgment is made to the donors of the American Chemical Society
Petroleum Research Fund for partial support of this research. Portions
of this work were also supported by the National Science Foundation
through Grant EAR-0818354 (J.G.C.) and the Geosciences Research Program
of the Office of Basic Energy Sciences (BES), US Department of Energy
(DOE) through contract DE-AC02-06CH11357 (P.A.F.). K.M.R. also
gratefully acknowledges support from the DOE BES Geosciences Research
Program. The data were collected at the X-ray Operations and Research
(XOR) beamlines 20-ID-C (PNC/XOR) and 4-ID-D at the Advanced Photon
Source (APS), Argonne National Laboratory. PNC/XOR facilities, and
research at these facilities, are supported by the US Department of
Energy-Basic Energy Sciences, a major facilities access grant from
NSERC, the University of Washington, Simon Fraser University, the
Pacific Northwest National Laboratory and the Advanced Photon Source.
Use of the Advanced Photon Source is also supported by the US Department
of Energy, Office of Science, Office of Basic Energy Sciences, under
Contract DE-AC02-06CH11357. Julie Cross, Steve Heald, and Daniel Haskel
are thanked for their help with beamline operations, and Vaibhav Kohli
is thanked for his assistance during data collection. We thank the
associate editor and three anonymous reviewers for their comments which
greatly improved the quality of this manuscript.
NR 67
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U1 4
U2 56
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0016-7037
J9 GEOCHIM COSMOCHIM AC
JI Geochim. Cosmochim. Acta
PD MAR 1
PY 2010
VL 74
IS 5
BP 1498
EP 1512
DI 10.1016/j.gca.2009.12.018
PG 15
WC Geochemistry & Geophysics
SC Geochemistry & Geophysics
GA 556CU
UT WOS:000274566500003
ER
PT J
AU Aciego, SM
Jourdan, F
DePaolo, DJ
Kennedy, BM
Renne, PR
Sims, KWW
AF Aciego, S. M.
Jourdan, F.
DePaolo, D. J.
Kennedy, B. M.
Renne, P. R.
Sims, K. W. W.
TI Combined U-Th/He and Ar-40/Ar-39 geochronology of post-shield lavas from
the Mauna Kea and Kohala volcanoes, Hawaii
SO GEOCHIMICA ET COSMOCHIMICA ACTA
LA English
DT Article
ID POTASSIUM-ARGON AGES; EAST PACIFIC RISE; SERIES DISEQUILIBRIA; ISOTOPIC
CONSTRAINTS; COSMOGENIC NUCLIDES; ALKALIC BASALTS; BENEATH HAWAII;
ERUPTION AGES; MANTLE PLUMES; NEW-MEXICO
AB Late Quaternary, post-shield lavas from the Mauna Kea and Kohala volcanoes on the Big Island of Hawaii have been dated using the Ar-40/Ar-39 and U-Th/He methods. The objective of the study is to compare the recently demonstrated U-Th/He age method, which uses basaltic olivine phenocrysts, with Ar-40/Ar-39 ages measured on groundmass from the same samples. As a corollary, the age data also increase the precision of the chronology of volcanism on the Big Island. For the U-Th/He ages, U, Th and He concentrations and isotopes were measured to account for U-series disequilibrium and initial He. Single analyses U-Th/He ages for Hamakua lavas from Mauna Kea are 87 +/- 40 to 119 +/- 23 ka (2 sigma uncertainties), which are in general equal to or younger than Ar-40/Ar-39 ages. Basalt from the Polulu sequence on Kohala gives a U-Th/He age of 354 +/- 54 ka and a Ar-40/Ar-39 age of 450 +/- 40 ka. All of the U-Th/He ages, and all but one spurious Ar-40/Ar-39 ages conform to the previously proposed stratigraphy and published C-14 and K-Ar ages. The ages also compare favorably to U-Th whole rock-olivine ages calculated from U-238-Th-230 disequilibria. The U-Th/He and Ar-40/Ar-39 results agree best where there is a relatively large amount of radiogenic Ar-40 (>10%), and where the Ar-40/Ar-36 intercept calculated from the Ar isochron diagram is close to the atmospheric value. In two cases, it is not clear why U-Th/He and Ar-40/Ar-39 ages do not agree within uncertainty. U-Th/He and Ar-40/Ar-39 results diverge the most on a low-K transitional tholeiitic basalt with abundant olivine. For the most alkalic basalts with negligible olivine phenocrysts, U-Th/He ages were unattainable while Ar-40/Ar-39 results provide good precision even on ages as low as 19 +/- 4 ka. Hence, the strengths and weaknesses of the U-Th/He and Ar-40/Ar-39 methods are complimentary for basalts with ages of order 100-500 ka. (c) 2009 Elsevier Ltd. All rights reserved.
C1 [Aciego, S. M.] ETH, Inst Isotope Geochem & Mineral Resources, CH-8092 Zurich, Switzerland.
[Aciego, S. M.; DePaolo, D. J.; Kennedy, B. M.] Univ Calif Berkeley, Lawrence Berkeley Lab, Ctr Isotope Geochem, Berkeley, CA 94720 USA.
[Jourdan, F.] Curtin Univ Technol, Western Australian Argon Isotope Facil, Dept Appl Geol, Perth, WA 6845, Australia.
[Jourdan, F.] Curtin Univ Technol, JdL Ctr, Perth, WA 6845, Australia.
[Jourdan, F.; Renne, P. R.] Berkeley Geochronol Ctr, Berkeley, CA 94709 USA.
[Sims, K. W. W.] Woods Hole Oceanog Inst, Dept Geol & Geophys, Woods Hole, MA 02543 USA.
[Sims, K. W. W.] Univ Wyoming, Dept Geol & Geophys, Laramie, WY 82071 USA.
RP Aciego, SM (reprint author), ETH, Inst Isotope Geochem & Mineral Resources, Clausiusstr 25,NW C83-1, CH-8092 Zurich, Switzerland.
EM aciego@erdw.ethz.ch
FU National Science Foundation [EAR0408521]; Ann and Gordon Getty
Foundation; Director, Office of Energy Research, Basic Energy Sciences
Division of the Department of Energy [De-AC03-76SF00098]
FX We thank the Hawaiian Homelands division of the State of Hawaii for
allowing access to limited areas of the Kohala volcano. This work was
supported by the National Science Foundation, EAR0408521, the Ann and
Gordon Getty Foundation, and by the Director, Office of Energy Research,
Basic Energy Sciences Division of the Department of Energy, under
Contract No. De-AC03-76SF00098. T.A. Becker is thanked for analytical
assistance in the BGC Ar lab and L. Ball for assistance in the WHOI
Plasma Facility. M. Kurz, M. Reid, and an anonymous reviewer are thanked
for their helpful comments, which greatly improved the work.
NR 63
TC 7
Z9 10
U1 0
U2 13
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0016-7037
EI 1872-9533
J9 GEOCHIM COSMOCHIM AC
JI Geochim. Cosmochim. Acta
PD MAR 1
PY 2010
VL 74
IS 5
BP 1620
EP 1635
DI 10.1016/j.gca.2009.11.020
PG 16
WC Geochemistry & Geophysics
SC Geochemistry & Geophysics
GA 556CU
UT WOS:000274566500012
ER
PT J
AU Mikesell, LR
Weissmann, GS
Karachewski, JA
AF Mikesell, Leslie R.
Weissmann, Gary S.
Karachewski, John A.
TI Stream capture and piracy recorded by provenance in fluvial fan strata
SO GEOMORPHOLOGY
LA English
DT Article; Proceedings Paper
CT Alluvial Fans Conference 2007
CY JUN, 2007
CL Banff, CANADA
DE Stream capture and piracy; Livermore Valley; Fluvial fan; California
Coast Ranges; Franciscan Assemblage; Provenance
ID GREAT VALLEY SEQUENCE; FORE-ARC BASIN; SOUTHEAST SPAIN; RIVER CAPTURE;
SE SPAIN; DIABLO-RANGE; DRAINAGE DEVELOPMENT; CENTRAL CALIFORNIA; BETIC
CORDILLERA; ALLUVIAL FANS
AB Stream capture and piracy in tectonically active regions have been described in geomorphic systems worldwide; however, few studies show the influence stream capture has on the rock record. We present an analysis of fluvial fan stratigraphy that developed as a result of multiple stream capture events, building a complex stratigraphic succession beneath the Lawrence Livermore National Laboratory (LLNL), California. The LLNL site is located in the southeast portion of the tectonically active Livermore Basin, a transpressional basin in the California Coast Ranges. Geomorphic evidence for this stream capture include: (1) the Arroyo Seco enters the basin from the south through an uplifted fault block, (2) south of this fault block lies an abandoned Arroyo Seco fluvial fan, (3) north of the fault block, in the Livermore Basin, Arroyo Seco built a 7-km(2) fluvial fan, apparently forcing the Arroyo Las Positas, a smaller stream that enters the basin from the east, northward around the Arroyo Seco fan, and (4) a knickpoint exists near the point of capture on Arroyo Seco. Stratigraphic evidence reflecting this shift in the Arroyo Seco position into the Livermore Basin was evaluated through a provenance study of 215 gravel units from 34 boreholes spaced evenly over the 2.6 km(2) LLNL site. The Arroyo Seco derives its sediment from both the Jurassic-Cretaceous Franciscan Assemblage and the Altamont Hills (which are comprised of Mesozoic Great Valley Group and Tertiary continental sediments). The Arroyo Las Positas drains only the Altamont Hills and thus lacks the Franciscan Assemblage-derived clasts. The origin of the individual gravel units was determined by the percentage of Franciscan Assemblage indicator pebbles (red chert, green chert and blueschist) in the samples. Through this analysis, we determined that high-percentage Franciscan Assemblage-derived clasts were present below a depth of approximately 35 m below the surface, low-percentage Franciscan Assemblage-derived clasts were present at depths between 35 m and 18 m, and high-percentage Franciscan Assemblage-derived clasts were present from depths of approximately 18 m to the surface of the fluvial fan. These results indicate that the Arroyo Seco flowed north and deposited sediments at the LLNL site, then was later absent from the basin at which time it formed a fan south of the fault block. During this absence of the Arroyo Seco, the Arroyo Las Positas, a westerly flowing stream, dominated the sediment supply at the LLNL site. The Arroyo Seco was then captured by a gully headward eroding through the uplifted fault block, redirecting the Arroyo Seco into the basin once again. This history of multiple stream captures created three stratigraphic units with alternating overall channel and paleoflow orientations. (C) 2009 Elsevier B.V. All rights reserved.
C1 [Mikesell, Leslie R.] Michigan State Univ, Dept Geol Sci, E Lansing, MI 48824 USA.
[Weissmann, Gary S.] 1 Univ New Mexico, Dept Earth & Planetary Sci, Albuquerque, NM 87131 USA.
[Karachewski, John A.] Lawrence Livermore Natl Lab, Weiss Associates, Environm Restorat Div, Livermore, CA 94551 USA.
RP Mikesell, LR (reprint author), Michigan State Univ, Dept Geol Sci, 206 Nat Sci Bldg, E Lansing, MI 48824 USA.
EM mikese10@msu.edu; weissman@unm.edu; karachewski1@llnl.gov
NR 76
TC 2
Z9 2
U1 1
U2 4
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0169-555X
J9 GEOMORPHOLOGY
JI Geomorphology
PD MAR 1
PY 2010
VL 115
IS 3-4
SI SI
BP 267
EP 277
DI 10.1016/j.geomorph.2009.04.025
PG 11
WC Geography, Physical; Geosciences, Multidisciplinary
SC Physical Geography; Geology
GA 569KJ
UT WOS:000275595100006
ER
PT J
AU Newman, GA
Commer, M
Carazzone, JJ
AF Newman, Gregory A.
Commer, Michael
Carazzone, James J.
TI Imaging CSEM data in the presence of electrical anisotropy
SO GEOPHYSICS
LA English
DT Article
DE geomagnetism; geophysical techniques; terrestrial electricity
ID INVERSION; 3D; HYDROCARBONS; INDUCTION; EQUATIONS
AB Formation anisotropy should be incorporated into the analysis of controlled-source electromagnetic (CSEM) data because failure to do so can produce serious artifacts in the resulting resistivity images for certain data configurations of interest. This finding is demonstrated in model and case studies. Sensitivity to horizontal resistivity will be strongest in the broadside electric field data where detectors are offset from the tow line. Sensitivity to vertical resistivity is strongest for overflight data where the transmitting antenna passes directly over the detecting antenna. Consequently, consistent treatment of overflight and broadside electric field measurements requires an anisotropic modeling assumption. To produce a consistent resistivity model for such data, we develop and use a 3D CSEM imaging algorithm that treats transverse anisotropy. The algorithm is based on nonlinear conjugate gradients and full wave-equation modeling. It exploits parallel computing systems to effectively treat 3D imaging problems and CSEM data volumes of industrial size. We use it to demonstrate the anisotropic imaging process on model and field data sets from the North Sea and offshore Brazil. We also verify that isotropic imaging of overflight data alone produces an image generally consistent with vertical resistivity. However, superior data fits are obtained when the same overflight data are analyzed assuming an anisotropic resistivity model.
C1 [Newman, Gregory A.; Commer, Michael] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Earth Sci, Berkeley, CA 94720 USA.
[Carazzone, James J.] ExxonMobil Upstream Res Co, Houston, TX USA.
RP Newman, GA (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, Div Earth Sci, Berkeley, CA 94720 USA.
EM ganewman@lbl.gov; mcommer@lbl.gov; jim.j.carazzone@exxonmobil.com
RI Newman, Gregory/G-2813-2015; Commer, Michael/G-3350-2015
OI Commer, Michael/0000-0003-0015-9217
FU United States Department of Energy; Office of Basic Energy Sciences
[DE-AC02-05CH11231]; ExxonMobil Corporation
FX We thank PGS for permission to present the Campos Basin CSEM data and
TGS-NOPEC for permission to present the seismic data. This work was
carried out at Lawrence Berkeley National Laboratory, with base funding
provided by the United States Department of Energy, Office of Basic
Energy Sciences, under contract DE-AC02-05CH11231. Additional funding
and support was provided by the ExxonMobil Corporation.
NR 30
TC 51
Z9 54
U1 2
U2 16
PU SOC EXPLORATION GEOPHYSICISTS
PI TULSA
PA 8801 S YALE ST, TULSA, OK 74137 USA
SN 0016-8033
J9 GEOPHYSICS
JI Geophysics
PD MAR-APR
PY 2010
VL 75
IS 2
BP F51
EP F61
DI 10.1190/1.3295883
PG 11
WC Geochemistry & Geophysics
SC Geochemistry & Geophysics
GA 585YY
UT WOS:000276868100012
ER
PT J
AU Masson, YJ
Pride, SR
AF Masson, Y. J.
Pride, S. R.
TI Finite-difference modeling of Biot's poroelastic equations across all
frequencies
SO GEOPHYSICS
LA English
DT Article
DE flow through porous media; porous materials; seismic waves
ID SATURATED POROUS-MEDIA; DYNAMIC PERMEABILITY; NUMERICAL-SIMULATION;
WAVE-PROPAGATION; SOUND SPEED
AB An explicit time-stepping finite-difference scheme is presented for solving Biot's equations of poroelasticity across the entire band of frequencies. In the general case for which viscous boundary layers in the pores must be accounted for, the time-domain version of Darcy's law contains a convolution integral. It is shown how to efficiently and directly perform the convolution so that the Darcy velocity can be properly updated at each time step. At frequencies that are low enough compared to the onset of viscous boundary layers, no memory terms are required. At higher frequencies, the number of memory terms required is the same as the number of time points it takes to sample accurately the wavelet being used. In practice, we never use more than 20 memory terms and often considerably fewer. Allowing for the convolution makes the scheme even more stable (even larger time steps might be used) than it is when the convolution is entirely neglected. The accuracy of the scheme is confirmed by comparing numerical examples to exact analytic results.
C1 [Masson, Y. J.] Univ Calif Berkeley, Dept Earth & Planetary Sci, Berkeley, CA 94720 USA.
[Pride, S. R.] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Earth Sci, Berkeley, CA 94720 USA.
RP Masson, YJ (reprint author), Univ Calif Berkeley, Dept Earth & Planetary Sci, Berkeley, CA 94720 USA.
EM yder_masson@berkeley.edu; srpride@lbl.gov
RI masson, yder/K-8264-2012;
OI masson, yder/0000-0001-6884-8823
FU University of California, Lawrence Berkeley National Laboratory
[DE-AC02-05CH11231]; U.S. Department of Energy, Office of Basic Energy
Sciences, Division of Chemical Sciences, Geosciences and Biosciences
FX Work of SRP was performed under the auspices of the U.S. Department of
Energy by the University of California, Lawrence Berkeley National
Laboratory, under Contract No. DE-AC02-05CH11231 and supported
specifically by the Geosciences Research Program of the U.S. Department
of Energy, Office of Basic Energy Sciences, Division of Chemical
Sciences, Geosciences and Biosciences.
NR 20
TC 21
Z9 22
U1 0
U2 10
PU SOC EXPLORATION GEOPHYSICISTS
PI TULSA
PA 8801 S YALE ST, TULSA, OK 74137 USA
SN 0016-8033
J9 GEOPHYSICS
JI Geophysics
PD MAR-APR
PY 2010
VL 75
IS 2
BP N33
EP N41
DI 10.1190/1.3332589
PG 9
WC Geochemistry & Geophysics
SC Geochemistry & Geophysics
GA 585YY
UT WOS:000276868100016
ER
PT J
AU Snyder, SF
Traub, RJ
AF Snyder, Sandra F.
Traub, Richard J.
TI THE LIVERMORE PHANTOM HISTORY AND SUPPLEMENTATION
SO HEALTH PHYSICS
LA English
DT Review
DE detector, radiation; dosimetry, internal; lungs, human; phantom
AB In vivo monitoring facilities determine the absence or presence of internally entrained radionuclides. To be of greatest utility, the detection systems must detect and quantify the nuclides of interest at levels of interest. Phantoms have been developed to improve measurements at in vivo monitoring facilities. Since the 1970's, the torso phantom originally developed at Lawrence Livermore National Laboratory (LLNL, or simply "Livermore") continues to be a well-used tool at lung monitoring facilities, especially for the detection of low-energy photons from transuranics. The history of its development from need through design development and current availability is summarized. The authors have taken the LLNL phantom one step further by scanning the phantom surface and announce the availability of the scan riles on the Internet. Health Phys. 98(3):459-465; 2010
C1 [Snyder, Sandra F.; Traub, Richard J.] PNNL, Richland, WA 99352 USA.
RP Snyder, SF (reprint author), PNNL, MS K3-54, Richland, WA 99352 USA.
EM sandra.snyder@pnl.gov
OI Snyder, Sandra/0000-0001-5826-1324
FU U.S. Department of Energy [DE-AC0576RL01 830]
FX Pacific Northwest National Laboratory is operated by Battelle for the
U.S. Department of Energy under contract DE-AC0576RL01 830.
NR 21
TC 7
Z9 8
U1 0
U2 1
PU LIPPINCOTT WILLIAMS & WILKINS
PI PHILADELPHIA
PA 530 WALNUT ST, PHILADELPHIA, PA 19106-3621 USA
SN 0017-9078
EI 1538-5159
J9 HEALTH PHYS
JI Health Phys.
PD MAR
PY 2010
VL 98
IS 3
BP 459
EP 465
DI 10.1097/HP.0b013e3181c03cc4
PG 7
WC Environmental Sciences; Public, Environmental & Occupational Health;
Nuclear Science & Technology; Radiology, Nuclear Medicine & Medical
Imaging
SC Environmental Sciences & Ecology; Public, Environmental & Occupational
Health; Nuclear Science & Technology; Radiology, Nuclear Medicine &
Medical Imaging
GA 555IJ
UT WOS:000274502500001
PM 20147787
ER
PT J
AU Levitskaia, TG
Creim, JA
Curry, TL
Luders, T
Morris, JE
Woodstock, AD
Levinson, B
Thrall, KD
AF Levitskaia, Tatiana G.
Creim, Jeffrey A.
Curry, Terry L.
Luders, Teresa
Morris, James E.
Woodstock, Angela D.
Levinson, Barry
Thrall, Karla D.
TI EVALUATION OF CUPRIMINE (R) AND SYPRINE (R) FOR DECORPORATION OF Co-60
AND Po-210
SO HEALTH PHYSICS
LA English
DT Article
DE Co-60; chelation; contamination, internal; intake, radionuclide
ID SULFUR-CONTAINING LIGANDS; CHELATING-AGENTS; COMPLEXES; COBALT;
BIOKINETICS; STABILITY; PLUTONIUM; TOXICITY; POLONIUM; WORKERS
AB The acknowledged risk of deliberate release of radionuclides into local environments by terrorist activities has prompted a drive to improve novel materials and methods for removing internally deposited radionuclides. These decorporation treatments will also benefit workers in the nuclear industry, should an exposure occur. Cuprimine and Syprine (R) are oral therapeutics based on the active ingredients D-penicillamine and N,N'-bis-(2-aininoethyl)-1,2-ethanediamine dihydrochloride, respectively. These therapeutic drugs have been used for several decades to treat Wilson's disease, a genetic defect leading to copper overload, by chelation and accelerated excretion of internally deposited copper. Studies were undertaken to evaluate these FDA-approved drugs for the in vivo decorporation of radioactive cobalt (Co-60) and polonium (Po-210) using male Wistar-Han rats. In these studies, Co-60 or Po-210 was administered to animals by IV injection, followed by oral gavage doses of either Cuprimine (R) or Syprine (R). Control animals received the radionuclide alone. For Co-60 studies, animals received a single dose of Cuprimine (R) or Syprine (R), while for Po-210 studies animals were repeatedly dosed at 24-h intervals for a total of 5 doses. Results show that Syprine (R) significantly increased urinary elimination and skeletal concentrations of Co-60 compared to controls. While Cuprimine (R) had little effect on total excretion of Co-60, the skeletal, kidney, liver, muscle, and stomach tissues had significantly lower radioactivity compared to control animals. The low overall excretion of Po-210 made it difficult to reliably measure urinary or fecal radioactivity and draw a definitive conclusion on the effect of Cuprimine (R) or Syprine (R) treatment on excretion. However, Cuprimine (R) treatment was effective at reducing spleen levels of Po-210 compared to controls. Similarly, Syprine (R) treatment produced statistically significant reductions of Po-210 in the spleen and skeletal tissues compared to control animals. Based on these promising findings, further studies to evaluate the dose-response pharmacokinetic profiles for decorporation are warranted. Health Phys. 98(3):471-479; 2010
C1 [Levitskaia, Tatiana G.; Creim, Jeffrey A.; Curry, Terry L.; Luders, Teresa; Morris, James E.; Woodstock, Angela D.; Thrall, Karla D.] Pacific NW Div, Richland, WA 99352 USA.
[Levinson, Barry] Aton Pharma Inc, Lawrenceville, NJ 08648 USA.
RP Levitskaia, TG (reprint author), Pacific NW Div, 902 Battelle Blvd,Mail Stop P7-25, Richland, WA 99352 USA.
EM tatiana.levitskaia@pnl.gov
NR 43
TC 4
Z9 4
U1 0
U2 6
PU LIPPINCOTT WILLIAMS & WILKINS
PI PHILADELPHIA
PA 530 WALNUT ST, PHILADELPHIA, PA 19106-3621 USA
SN 0017-9078
EI 1538-5159
J9 HEALTH PHYS
JI Health Phys.
PD MAR
PY 2010
VL 98
IS 3
BP 471
EP 479
DI 10.1097/HP.0b013e3181bcdf4f
PG 9
WC Environmental Sciences; Public, Environmental & Occupational Health;
Nuclear Science & Technology; Radiology, Nuclear Medicine & Medical
Imaging
SC Environmental Sciences & Ecology; Public, Environmental & Occupational
Health; Nuclear Science & Technology; Radiology, Nuclear Medicine &
Medical Imaging
GA 555IJ
UT WOS:000274502500003
PM 20147789
ER
PT J
AU Rhee, DB
Wang, YS
Mizesko, M
Zhou, F
Haneline, L
Liu, Y
AF Rhee, David B.
Wang, Yisong
Mizesko, Melissa
Zhou, Fang
Haneline, Laura
Liu, Yie
TI FANCC suppresses short telomere-initiated telomere sister chromatid
exchange
SO HUMAN MOLECULAR GENETICS
LA English
DT Article
ID ABERRANT HOMOLOGOUS RECOMBINATION; DNA-DAMAGE RESPONSE; STEM-CELLS;
REPOPULATING ABILITY; DEFICIENT MOUSE; ALT CELLS; ANEMIA; MICE; LENGTH;
REPAIR
AB Telomere shortening has been linked to rare human disorders that present with bone marrow failure including Fanconi anemia (FA). FANCC is one of the most commonly mutated FA genes in FA patients and the FANCC subtype tends to have a relatively early onset of bone marrow failure and hematologic malignancies. Here, we studied the role of Fancc in telomere length regulation in mice. Deletion of Fancc (Fancc(-/-)) did not affect telomerase activity, telomere length or telomeric end-capping in a mouse strain possessing intrinsically long telomeres. However, ablation of Fancc did exacerbate telomere attrition when murine bone marrow cells experienced high cell turnover after serial transplantation. When Fancc(-/-) mice were crossed into a telomerase reverse transcriptase heterozygous or null background (Tert(+/-) or Tert(-/-)) with short telomeres, Fancc deficiency led to an increase in the incidence of telomere sister chromatid exchange. In contrast, these phenotypes were not observed in Tert mutant mice with long telomeres. Our data indicate that Fancc deficiency accelerates telomere shortening during high turnover of hematopoietic cells and promotes telomere recombination initiated by short telomeres.
C1 [Mizesko, Melissa; Haneline, Laura] Indiana Univ, Sch Med, Dept Pediat, Herman B Wells Ctr, Indianapolis, IN 46202 USA.
[Mizesko, Melissa; Haneline, Laura] Indiana Univ, Sch Med, Dept Microbiol & Immunol, Herman B Wells Ctr, Indianapolis, IN 46202 USA.
[Rhee, David B.; Zhou, Fang; Liu, Yie] NIA, Lab Mol Gerontol, NIH, Biomed Res Ctr, Baltimore, MD 21224 USA.
[Wang, Yisong] Oak Ridge Natl Lab, Biosci Div, Oak Ridge, TN USA.
RP Haneline, L (reprint author), Indiana Univ, Sch Med, Dept Pediat, Herman B Wells Ctr, R4-476,1044 W Walnut St, Indianapolis, IN 46202 USA.
EM lhanelin@iupui.edu; liuyie@mail.nih.gov
FU Intramural Research Program of the NIA; National Institutes of Health;
U. S. Public Health Services [R01 HL077175, P30 CA82709, T32 DK07519];
Riley Children's Foundation
FX This study was supported by the Intramural Research Program of the NIA,
National Institutes of Health (Y. L.), U. S. Public Health Services
Grants R01 HL077175 (L. H.), P30 CA82709 (L. H.), T32 DK07519 (M. M.)
and the Riley Children's Foundation (L. H.).
NR 54
TC 17
Z9 18
U1 0
U2 0
PU OXFORD UNIV PRESS
PI OXFORD
PA GREAT CLARENDON ST, OXFORD OX2 6DP, ENGLAND
SN 0964-6906
J9 HUM MOL GENET
JI Hum. Mol. Genet.
PD MAR 1
PY 2010
VL 19
IS 5
BP 879
EP 887
DI 10.1093/hmg/ddp556
PG 9
WC Biochemistry & Molecular Biology; Genetics & Heredity
SC Biochemistry & Molecular Biology; Genetics & Heredity
GA 553CD
UT WOS:000274341400012
PM 20022886
ER
PT J
AU Liu, HH
AF Liu, Hui-Hai
TI Comment on "Sensitivity of the active fracture model parameter to
fracture network orientation and injection scenarios": paper published
in Hydrogeology Journal (2009) 17:1347-1358, by Hakan BaAYagaoglu, Sauro
Succi, Chandrika Manepally, Randall Fedors, Danielle Y. Wyrick
SO HYDROGEOLOGY JOURNAL
LA English
DT Editorial Material
ID UNSATURATED FLOW; REGION MODEL; TRANSPORT
C1 Lawrence Berkeley Natl Lab, Div Earth Sci, Berkeley, CA 94720 USA.
RP Liu, HH (reprint author), Lawrence Berkeley Natl Lab, Div Earth Sci, 1 Cyclotron Rd,MS 90-1116, Berkeley, CA 94720 USA.
EM hhliu@lbl.gov
NR 6
TC 1
Z9 1
U1 1
U2 3
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1431-2174
J9 HYDROGEOL J
JI Hydrogeol. J.
PD MAR
PY 2010
VL 18
IS 2
BP 535
EP 537
DI 10.1007/s10040-009-0564-6
PG 3
WC Geosciences, Multidisciplinary; Water Resources
SC Geology; Water Resources
GA 554TF
UT WOS:000274456600021
ER
PT J
AU Madhavan, R
del Pobil, AP
Messina, E
AF Madhavan, Raj
del Pobil, Angel P.
Messina, Elena
TI Performance Evaluation and Benchmarking of Robotic and Automation
Systems
SO IEEE ROBOTICS & AUTOMATION MAGAZINE
LA English
DT Editorial Material
C1 [Madhavan, Raj] Oak Ridge Natl Lab, Computat Sci & Engn Div, Oak Ridge, TN 37831 USA.
[del Pobil, Angel P.] Univ Jaume 1, Dept Comp Sci & Engn, Castellon de La Plana, Spain.
[del Pobil, Angel P.] Sungkyunkwan Univ, Dept Interact Sci, Seoul, South Korea.
RP Madhavan, R (reprint author), Oak Ridge Natl Lab, Computat Sci & Engn Div, Oak Ridge, TN 37831 USA.
EM raj.madhavan@ieee.org; pobil@uji.es; elena.messina@nist.gov
OI Messina, Elena/0000-0002-1727-9357
NR 0
TC 1
Z9 1
U1 0
U2 3
PU IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
PI PISCATAWAY
PA 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA
SN 1070-9932
J9 IEEE ROBOT AUTOM MAG
JI IEEE Robot. Autom. Mag.
PD MAR
PY 2010
VL 17
IS 1
BP 120
EP 122
DI 10.1109/MRA.2010.935811
PG 3
WC Automation & Control Systems; Robotics
SC Automation & Control Systems; Robotics
GA 656ZZ
UT WOS:000282381100021
ER
PT J
AU Giles, TM
Hayat, MM
Krishna, S
AF Giles, Todd M.
Hayat, Majeed M.
Krishna, Sanjay
TI Shift Estimation Algorithm for Dynamic Sensors With Frame-to-Frame
Variation in Their Spectral Response
SO IEEE SENSORS JOURNAL
LA English
DT Article
DE Dot-in-a-well (DWELL) quantum-dot detectors; focal plane arrays; image
registration; infrared; motion estimating; spectral imager
ID DIGITAL IMAGE REGISTRATION; HIGH-RESOLUTION IMAGE; NONUNIFORMITY
CORRECTION; RECONSTRUCTION; INTENSITY; SEQUENCES; NOISE
AB This study is motivated by the emergence of a new class of tunable infrared spectral-imaging sensors that offer the ability to dynamically vary the sensor's intrinsic spectral response from frame to frame in an electronically controlled fashion. A manifestation of this is when a sequence of dissimilar spectral responses is periodically realized, whereby in every period of acquired imagery, each frame is associated with a distinct spectral band. Traditional scene-based global shift estimation algorithms are not applicable to such spectrally heterogeneous video sequences, as a pixel value may change from frame to frame as a result of both global motion and varying spectral response. In this paper, a novel algorithm is proposed and examined to fuse a series of coarse global shift estimates between periodically sampled pairs of nonadjacent frames to estimate motion between consecutive frames; each pair corresponds to two nonadjacent frames of the same spectral band. The proposed algorithm outperforms three alternative methods, with the average error being one half of that obtained by using an equal weights version of the proposed algorithm, one-fourth of that obtained by using a simple linear interpolation method, and one-twentieth of that obtained by using a naive correlation-based direct method.
C1 [Giles, Todd M.; Hayat, Majeed M.; Krishna, Sanjay] Univ New Mexico, Ctr High Technol Mat, Albuquerque, NM 87131 USA.
[Giles, Todd M.; Hayat, Majeed M.; Krishna, Sanjay] Univ New Mexico, Dept Elect & Comp Engn, Albuquerque, NM 87131 USA.
RP Giles, TM (reprint author), Sandia Natl Labs, Albuquerque, NM 87123 USA.
EM tgiles@sandia.gov; hayat@ece.unm.edu; skrishna@chtm.unm.edu
RI Krishna, Sanjay /C-5766-2009; Hayat, Majeed/E-4924-2010
FU National Science Foundation [IIS-0434102, ECS-401154]; National
Consortium for MASINT Research; Los Alamos National Laboratories; Sandia
National Laboratories
FX This work was supported in part by the National Science Foundation under
Award IIS-0434102 and Award ECS-401154, by the National Consortium for
MASINT Research, by Los Alamos National Laboratories, and by Sandia
National Laboratories.
NR 21
TC 0
Z9 0
U1 0
U2 2
PU IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
PI PISCATAWAY
PA 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA
SN 1530-437X
J9 IEEE SENS J
JI IEEE Sens. J.
PD MAR
PY 2010
VL 10
IS 3
BP 686
EP 692
DI 10.1109/JSEN.2009.2037805
PG 7
WC Engineering, Electrical & Electronic; Instruments & Instrumentation;
Physics, Applied
SC Engineering; Instruments & Instrumentation; Physics
GA 561RW
UT WOS:000274997400001
ER
PT J
AU Koomey, JG
AF Koomey, Jonathan G.
TI Outperforming Moore's Law
SO IEEE SPECTRUM
LA English
DT Editorial Material
C1 Lawrence Berkeley Natl Lab, Berkeley, CA USA.
RP Koomey, JG (reprint author), Lawrence Berkeley Natl Lab, Berkeley, CA USA.
NR 0
TC 2
Z9 2
U1 0
U2 3
PU IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
PI PISCATAWAY
PA 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA
SN 0018-9235
J9 IEEE SPECTRUM
JI IEEE Spectr.
PD MAR
PY 2010
VL 47
IS 3
BP 68
EP 68
PG 1
WC Engineering, Electrical & Electronic
SC Engineering
GA 562EF
UT WOS:000275031600021
ER
PT J
AU Brown, CG
Sarabandi, K
Pierce, LE
AF Brown, Charles G., Jr.
Sarabandi, Kamal
Pierce, Leland E.
TI Model-Based Estimation of Forest Canopy Height in Red and Austrian Pine
Stands Using Shuttle Radar Topography Mission and Ancillary Data: A
Proof-of-Concept Study
SO IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING
LA English
DT Article
DE Interferometry; remote sensing; synthetic aperture radar (SAR)
ID POLARIMETRIC SAR INTERFEROMETRY; COHERENT SCATTERING MODEL; VEGETATION
HEIGHT; BOREAL FORESTS; ALGORITHM
AB In this paper, accurate tree stand height retrieval is demonstrated using C-band Shuttle Radar Topography Mission (SRTM) height and ancillary data. The tree height retrieval algorithm is based on modeling uniform tree stands with a single layer of randomly oriented vegetation particles. For such scattering media, the scattering phase center height, as measured by SRTM, is a function of tree height, incidence angle, and the extinction coefficient of the medium. The extinction coefficient for uniform tree stands is calculated as a function of tree height and density using allometric equations and a fractal tree model. The accuracy of the proposed algorithm is demonstrated using SRTM and TOPSAR data for 15 red pine and Austrian pine stands (TOPSAR is an airborne interferometric synthetic aperture radar). The algorithm yields root-mean-square (rms) errors of 2.5-3.6 m, which is a substantial improvement over the 6.8-8.3-m rms errors from the raw SRTM minus National Elevation Dataset Heights.
C1 [Brown, Charles G., Jr.] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
[Sarabandi, Kamal; Pierce, Leland E.] Univ Michigan, Dept Elect Engn & Comp Sci, Radiat Lab, Ann Arbor, MI 48109 USA.
RP Brown, CG (reprint author), Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
EM brown207@llnl.gov; saraband@umich.edu; lep@umich.edu
FU NASA [NAG5-8930]; U.S. Department of Energy by the Lawrence Livermore
National Laboratory [DE-AC52-07NA27344. UCRL-JRNL-229808]
FX Most of the work for this paper was performed at the University of
Michigan under NASA Grant NAG5-8930, or otherwise outside of the
Lawrence Livermore National Laboratory, and published under the auspices
of the U.S. Department of Energy by the Lawrence Livermore National
Laboratory under Contract DE-AC52-07NA27344. UCRL-JRNL-229808.
NR 45
TC 16
Z9 17
U1 2
U2 9
PU IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
PI PISCATAWAY
PA 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA
SN 0196-2892
J9 IEEE T GEOSCI REMOTE
JI IEEE Trans. Geosci. Remote Sensing
PD MAR
PY 2010
VL 48
IS 3
BP 1105
EP 1118
DI 10.1109/TGRS.2009.2031635
PN 1
PG 14
WC Geochemistry & Geophysics; Engineering, Electrical & Electronic; Remote
Sensing; Imaging Science & Photographic Technology
SC Geochemistry & Geophysics; Engineering; Remote Sensing; Imaging Science
& Photographic Technology
GA 559BL
UT WOS:000274794600010
ER
PT J
AU Klepper, CC
Carlson, EP
Moschella, JJ
Hazelton, RC
Keitz, MD
Gardner, WL
AF Klepper, C. Christopher
Carlson, Eric P.
Moschella, John J.
Hazelton, Robert C.
Keitz, Michael D.
Gardner, Walter L.
TI A Fast Exhaust-Gas Analyzer for the ITER Fusion Experiment Divertor
SO IEEE TRANSACTIONS ON PLASMA SCIENCE
LA English
DT Article; Proceedings Paper
CT 23rd IEEE/NPSS Symposium on Fusion Engineering
CY MAY 31-JUN 05, 2009
CL San Diego, CA
SP IEEE, NPSS
DE Divertor; helium exhaust; helium removal; ITER; residual gas analysis
ID TRITIUM CONCENTRATION MEASUREMENTS; PENNING GAUGE; DISCHARGE
AB This paper presents a first demonstration of a radio-frequency (RF)-excited optical gas analyzer (RF-OGA) designed to quantitatively measure minority species inside the neutralization region of the ITER fusion experiment divertor. The sensor head, which creates its own plasma excitation and plasma light emission, is designed to operate in a strong magnetic field, and the RF coupling leads to bright light emission. It also allows for operation at low voltages, avoiding the radiation-enhanced breakdowns expected when high voltages are present in the ITER environment. Furthermore, the preferred sensor head features full isolation of the metal RF electrodes from the induced plasma. This "electrodeless" operation will permit long operation without frequent maintenance. The testing of a first experimental RF-OGA with an electrodeless design in a strong (similar to 2-T) magnetic field showed a mostly linear response of the He I-6678 angstrom line emission to the He concentration in a hydrogen background, which would produce a He concentration measurement accurate to within 2% of the helium-to-hydrogen ratio.
C1 [Klepper, C. Christopher; Gardner, Walter L.] Oak Ridge Natl Lab, Div Fus Energy, Oak Ridge, TN 37831 USA.
[Klepper, C. Christopher; Carlson, Eric P.; Moschella, John J.; Hazelton, Robert C.; Keitz, Michael D.] HY Tech Res Corp, Radford, VA 24141 USA.
[Gardner, Walter L.] Oak Ridge Natl Lab, US ITER Project Off, Oak Ridge, TN 37831 USA.
RP Klepper, CC (reprint author), Oak Ridge Natl Lab, Div Fus Energy, Oak Ridge, TN 37831 USA.
EM kleppercc@ornl.gov; ecarlson@hytechresearch.com;
moschella@hytechresearch.com; bhazelton@hytechresearch.com;
mkeitz@hytechresearch.com; gardnerwl@ornl.gov
NR 6
TC 3
Z9 3
U1 1
U2 4
PU IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
PI PISCATAWAY
PA 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA
SN 0093-3813
J9 IEEE T PLASMA SCI
JI IEEE Trans. Plasma Sci.
PD MAR
PY 2010
VL 38
IS 3
BP 315
EP 319
DI 10.1109/TPS.2009.2037742
PN 1
PG 5
WC Physics, Fluids & Plasmas
SC Physics
GA 566KK
UT WOS:000275368900017
ER
PT J
AU Neilson, GH
Gruber, CO
Harris, JH
Rej, DJ
Simmons, RT
Strykowsky, RL
AF Neilson, G. H.
Gruber, C. O.
Harris, J. H.
Rej, D. J.
Simmons, R. T.
Strykowsky, R. L.
TI Lessons Learned in Risk Management on NCSX
SO IEEE TRANSACTIONS ON PLASMA SCIENCE
LA English
DT Article; Proceedings Paper
CT 23rd IEEE/NPSS Symposium on Fusion Engineering
CY MAY 31-JUN 05, 2009
CL San Diego, CA
SP IEEE, NPSS
DE Management; National Compact Stellarator Experiment (NCSX); risk;
stellarator
ID MAGNETIC-FIELD; CONSTRUCTION; DESIGN; PHYSICS
AB The National Compact Stellarator Experiment (NCSX) was designed to test physics principles of an innovative stellarator design developed by Princeton Plasma Physics Laboratory and Oak Ridge National Laboratory. Construction of some of the major components and subassemblies was completed, but the estimated cost and schedule for completing the project grew as the technical requirements and risks became better understood, leading to its cancellation in 2008. The project's risks stemmed from its technical challenges, primarily the complex component geometries and tight tolerances that were required. The initial baseline, which was established in 2004, was supported by a risk management plan and risk-based contingencies, both of which proved to be inadequate. Technical successes were achieved in the construction of challenging components and subassemblies, but cost and schedule growth was experienced. As part of an effort to improve project performance, a new risk management program was devised and implemented in 2007-2008. It led to a better understanding of project risks, a sounder basis for contingency estimates, and improved management tools. Although the risks were ultimately unacceptable to the sponsor, valuable lessons in risk management were learned through the experiences with the NCSX project.
C1 [Neilson, G. H.; Rej, D. J.; Simmons, R. T.; Strykowsky, R. L.] Princeton Plasma Phys Lab, Princeton, NJ 08543 USA.
[Harris, J. H.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
RP Neilson, GH (reprint author), Princeton Plasma Phys Lab, POB 451, Princeton, NJ 08543 USA.
EM hneilson@pppl.gov; costconsultant@ymail.com; harrisjh@ornl.gov;
drej@lanl.gov; rsimmons@pppl.gov; rstrykowsky@pppl.gov
NR 13
TC 2
Z9 2
U1 0
U2 2
PU IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
PI PISCATAWAY
PA 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA
SN 0093-3813
J9 IEEE T PLASMA SCI
JI IEEE Trans. Plasma Sci.
PD MAR
PY 2010
VL 38
IS 3
BP 320
EP 327
DI 10.1109/TPS.2009.2037889
PN 1
PG 8
WC Physics, Fluids & Plasmas
SC Physics
GA 566KK
UT WOS:000275368900018
ER
PT J
AU Leuer, JA
Eidietis, NW
Ferron, JR
Humphreys, DA
Hyatt, AW
Jackson, GL
Johnson, RD
Penaflor, BG
Piglowski, DA
Walker, ML
Welander, AS
Yoon, SW
Hahn, SH
Oh, YK
Xiao, BJ
Wang, HZ
Yuan, QP
Mueller, D
AF Leuer, J. A.
Eidietis, N. W.
Ferron, J. R.
Humphreys, D. A.
Hyatt, A. W.
Jackson, G. L.
Johnson, R. D.
Penaflor, B. G.
Piglowski, D. A.
Walker, M. L.
Welander, A. S.
Yoon, S. W.
Hahn, S. H.
Oh, Y. K.
Xiao, B. J.
Wang, H. Z.
Yuan, Q. P.
Mueller, D.
TI Plasma Startup Design of Fully Superconducting Tokamaks EAST and KSTAR
With Implications for ITER
SO IEEE TRANSACTIONS ON PLASMA SCIENCE
LA English
DT Article; Proceedings Paper
CT 23rd IEEE/NPSS Symposium on Fusion Engineering
CY MAY 31-JUN 05, 2009
CL San Diego, CA
SP IEEE, NPSS
DE Breakdown; DIII-D; Experimental Advanced Superconducting Tokamak (EAST);
first plasma; fusion; International Thermonuclear Experimental Reactor
(ITER); Korean Superconducting Tokamak Advanced Research (KSTAR); plasma
initiation; tokamak
ID DIII-D; DOUBLET-III
AB Recent commissioning of two major fully superconducting (SC)-shaped tokamaks, Experimental Advanced Superconducting Tokamak (EAST) and Korean Superconducting Tokamak Advanced Research (KSTAR), represents a significant advance in magnetic fusion research. The key to commissioning success in these complex and unique tokamaks was as follows: 1) use of a robust, flexible plasma control system (PCS) based on the validated DIII-D design; 2) use of the TokSys design and modeling environment, which is tightly coupled with the DIII-D PCS architecture for first-plasma scenario development and plasma diagnosis; and 3) collaborations with experienced internationally recognized teams of tokamak operations and control experts. We provide an overview of the generic modeling environment and plasma control tools developed and validated within the DIII-D experimental program and applied through an international collaborative program to successfully address the unique constraints associated with the startup of these next-generation tokamaks. The unique characteristics of each tokamak and the machine constraints that must be included in device modeling and simulation, such as SC coil current slew rate limits and the presence of nonlinear magnetic materials, are discussed, along with commissioning and initial operational results. Lessons learned from the startup experience in these devices are summarized, with special emphasis on ramifications for International Thermonuclear Experimental Reactor (ITER).
C1 [Leuer, J. A.; Eidietis, N. W.; Ferron, J. R.; Humphreys, D. A.; Hyatt, A. W.; Jackson, G. L.; Johnson, R. D.; Penaflor, B. G.; Piglowski, D. A.; Walker, M. L.; Welander, A. S.] Gen Atom Co, San Diego, CA 92186 USA.
[Yoon, S. W.; Hahn, S. H.; Oh, Y. K.] Natl Fus Res Inst, Taejon 305333, South Korea.
[Xiao, B. J.; Wang, H. Z.; Yuan, Q. P.] Chinese Acad Sci, Inst Plasma Phys, Hefei 230031, Peoples R China.
[Mueller, D.] Princeton Plasma Phys Lab, Princeton, NJ 08543 USA.
RP Leuer, JA (reprint author), Gen Atom Co, San Diego, CA 92186 USA.
EM leuer@fusion.gat.com; eidietis@fusion.gat.com; ferron@fusion.gat.com;
humphreys@fusion.gat.com; hyatt@fusion.gat.com; jackson@fusion.gat.com;
johnsonb@fusion.gat.com; penaflor@fusion.gat.com;
piglowski@fusion.gat.com; walker@fusion.gat.com;
welander@fusion.gat.com; swyoon@nfri.re.kr; hahn76@nfri.re.kr;
ykoh@nfri.re.kr; bjxiao@ipp.ac.cn; hzwang@ipp.ac.cn; qpyuan@ipp.ac.cn;
mueller@pppl.gov
RI Xiao, Bingjia/A-1681-2017;
OI Xiao, Bingjia/0000-0001-8692-2636; Walker, Michael/0000-0002-4341-994X
NR 22
TC 7
Z9 8
U1 1
U2 7
PU IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
PI PISCATAWAY
PA 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA
SN 0093-3813
J9 IEEE T PLASMA SCI
JI IEEE Trans. Plasma Sci.
PD MAR
PY 2010
VL 38
IS 3
BP 333
EP 340
DI 10.1109/TPS.2009.2037890
PN 1
PG 8
WC Physics, Fluids & Plasmas
SC Physics
GA 566KK
UT WOS:000275368900020
ER
PT J
AU Mueller, D
Bell, MG
Bell, R
LeBlanc, BP
Roquemore, AL
Raman, R
Jarboe, TR
Nelson, BA
Sabbagh, SA
Soukanovskii, V
AF Mueller, Dennis
Bell, Michael G.
Bell, Ronald
LeBlanc, Benoit P.
Roquemore, Alvin L.
Raman, Roger
Jarboe, Thomas R.
Nelson, Brian A.
Sabbagh, Steven A.
Soukanovskii, Vlad
TI Ramp-Up of CHI-Initiated Plasmas on NSTX
SO IEEE TRANSACTIONS ON PLASMA SCIENCE
LA English
DT Article; Proceedings Paper
CT 23rd IEEE/NPSS Symposium on Fusion Engineering
CY MAY 31-JUN 05, 2009
CL San Diego, CA
SP IEEE, NPSS
DE Coaxial helicity injection (CHI); current drive; spherical torus (ST);
start-up
ID COAXIAL HELICITY INJECTION; START-UP; TOKAMAK; SUSTAINMENT
AB Ongoing experiments on the National Spherical Torus Experiment have demonstrated ohmic transformer flux savings by initiating the discharge with transient coaxial helicity injection (CHI). The combined use of discharge cleaning of the CHI electrodes and use of lithium evaporation, along with the use of poloidal field coils, to produce a buffer flux that prevents arcs at the top of the device has been shown to reduce the radiation from low-Z impurities. Without such impurity reduction, CHI-initiated discharges could not have their plasma current increased by ohmic ramp-up; however, the CHI-initiated discharges with reduced low-Z radiation can be ramped up by induction and exhibit higher plasma current than discharges without the benefit of CHI initiation.
C1 [Mueller, Dennis; Bell, Michael G.; Bell, Ronald; LeBlanc, Benoit P.; Roquemore, Alvin L.] Princeton Plasma Phys Lab, Princeton, NJ 08543 USA.
[Raman, Roger; Jarboe, Thomas R.; Nelson, Brian A.] Univ Washington, Seattle, WA 98195 USA.
[Sabbagh, Steven A.] Columbia Univ, New York, NY 10027 USA.
[Soukanovskii, Vlad] Lawrence Livermore Natl Lab, Livermore, CA 94551 USA.
RP Mueller, D (reprint author), Princeton Plasma Phys Lab, POB 451, Princeton, NJ 08543 USA.
EM dmueller@pppl.gov; mbell@pppl.gov; rbell@pppl.gov; leblanc@pppl.gov;
lroquemore@pppl.gov; raman@pppl.gov; jarboe@aa.washington.edu;
nelson@aa.washington.edu; sabbagh@pppl.go; vlad@pppl.gov
RI Sabbagh, Steven/C-7142-2011
NR 15
TC 3
Z9 3
U1 1
U2 1
PU IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
PI PISCATAWAY
PA 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA
SN 0093-3813
J9 IEEE T PLASMA SCI
JI IEEE Trans. Plasma Sci.
PD MAR
PY 2010
VL 38
IS 3
BP 371
EP 374
DI 10.1109/TPS.2009.2038474
PN 1
PG 4
WC Physics, Fluids & Plasmas
SC Physics
GA 566KK
UT WOS:000275368900026
ER
PT J
AU Khater, H
Epperson, P
Thacker, R
Beale, R
Kohut, T
Brereton, S
AF Khater, Hesham
Epperson, Patrick
Thacker, Rick
Beale, Richard
Kohut, Tom
Brereton, Sandra
TI Impact of Target-Material Activation on Personnel Exposure and
Radioactive Contamination in the National Ignition Facility
SO IEEE TRANSACTIONS ON PLASMA SCIENCE
LA English
DT Article; Proceedings Paper
CT 23rd IEEE/NPSS Symposium on Fusion Engineering
CY MAY 31-JUN 05, 2009
CL San Diego, CA
SP IEEE, NPSS
DE ICF; National Ignition Facility (NIF); target-material activation
AB Detailed activation analyses are performed for the different materials under consideration for use in the target capsules and hohlraums during the ignition campaign of the National Ignition Facility (NIF). Results of the target-material activation are additionally used to estimate the levels of contamination within the NIF Target Chamber (TC) and the workplace controls that are necessary for safe operation. The analysis examined the impact of using Be-Cu and Ge-doped hydrocarbon capsules on the external dose received by workers during maintenance activities. Five days following a 20-MJ shot, dose rates inside the TC due to the two proposed capsule materials are small (similar to 0.01 mu Sv/h). Gold and depleted uranium (DU) are considered as potential hohlraum materials. Following a shot, gold will be deposited on the TC first wall. On the other hand, while noble-gas precursors from the DU are expected to stay in the TC, most of the noble gases are pumped out of the chamber and end up on the cryopumps. The dose rates inside the TC due to activated gold or DU, at five days following a 20-MJ shot, are about 10 mu Sv/h. Dose rates in the vicinity of the cryopumps (containing noble "fission" gases) drop off to about 10 mu Sv/h during the first 12 h following the shot. Contamination from activation of NIF targets will result in levels in the NIF TC above U. S. Department of Energy surface contamination limits. Objects removed from the TC will need to be managed as radioactive material. However, the results suggest that airborne contamination from resuspension of surface contamination will not be significant and is at levels that can be readily managed by negative ventilation when accessing the TC attachments.
C1 [Khater, Hesham; Epperson, Patrick; Thacker, Rick; Beale, Richard; Kohut, Tom; Brereton, Sandra] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
RP Khater, H (reprint author), Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
EM khater1@llnl.gov; epperson1@llnl.gov; thacker3@llnl.gov;
beale2@llnl.gov; kohut2@llnl.gov; brereton1@llnl.gov
NR 9
TC 0
Z9 0
U1 0
U2 4
PU IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
PI PISCATAWAY
PA 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA
SN 0093-3813
J9 IEEE T PLASMA SCI
JI IEEE Trans. Plasma Sci.
PD MAR
PY 2010
VL 38
IS 3
BP 383
EP 387
DI 10.1109/TPS.2009.2038475
PN 1
PG 5
WC Physics, Fluids & Plasmas
SC Physics
GA 566KK
UT WOS:000275368900028
ER
PT J
AU Combs, SK
Meitner, SJ
Baylor, LR
Caughman, JBO
Commaux, N
Fehling, DT
Foust, CR
Jernigan, TC
McGill, JM
Parks, PB
Rasmussen, DA
AF Combs, Stephen Kirk
Meitner, Steven J.
Baylor, Larry R.
Caughman, John B. O.
Commaux, Nicolas
Fehling, Dan T.
Foust, Charles R.
Jernigan, Tom C.
McGill, James M.
Parks, Paul B.
Rasmussen, Dave A.
TI Alternative Techniques for Injecting Massive Quantities of Gas for
Plasma-Disruption Mitigation
SO IEEE TRANSACTIONS ON PLASMA SCIENCE
LA English
DT Article; Proceedings Paper
CT 23rd IEEE/NPSS Symposium on Fusion Engineering
CY MAY 31-JUN 05, 2009
CL San Diego, CA
SP IEEE, NPSS
DE Disruption; gas injection; massive pellet; mitigation; plasma; rupture
disk
ID PELLET INJECTION
AB Injection of massive quantities of noble gases or D-2 has proven to be effective at mitigating some of the deleterious effects of disruptions in tokamaks. Two alternative methods that might offer some advantages over the present technique for massive gas injection are "shattering" massive pellets and employing close-coupled rupture disks. Laboratory testing has been carried out to evaluate their feasibility. For the study of massive pellets, a pipe-gun pellet injector cooled with a cryogenic refrigerator was fitted with a relatively large barrel (16.5-mm bore), and D-2 and Ne pellets were made and were accelerated to speeds of similar to 600 and 300 m/s, respectively. Based on the successful proof-of-principle testing with the injector and a special double-impact target to shatter pellets, a similar system has been prepared and installed on DIII-D, with preliminary experiments already carried out. To study the applicability of rupture disks for disruption mitigation, a simple test apparatus was assembled in the laboratory. Commercially available rupture disks of 1-in nominal diameter were tested at conditions relevant for the application on tokamaks, including tests with Ar and He gases and rupture pressures of similar to 54 bar. Some technical and practical issues of implementing this technique on a tokamak are discussed.
C1 [Combs, Stephen Kirk; Meitner, Steven J.; Baylor, Larry R.; Caughman, John B. O.; Commaux, Nicolas; Fehling, Dan T.; Foust, Charles R.; Jernigan, Tom C.; McGill, James M.; Rasmussen, Dave A.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
[Parks, Paul B.] Gen Atom Co, San Diego, CA 92186 USA.
RP Combs, SK (reprint author), Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
EM combssk@ornl.gov; meitnersj@ornl.gov; baylorlr@ornl.gov;
caughmanjb@ornl.gov; commaux@fusion.gat.com; fehlingdt@ornl.gov;
foustcr@ornl.gov; jernigantc@ornl.gov; mcgilljm@ornl.gov;
parks@fusion.gat.com; rasmussenda@ornl.gov
RI Caughman, John/R-4889-2016
OI Caughman, John/0000-0002-0609-1164
NR 13
TC 12
Z9 12
U1 0
U2 4
PU IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
PI PISCATAWAY
PA 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA
SN 0093-3813
J9 IEEE T PLASMA SCI
JI IEEE Trans. Plasma Sci.
PD MAR
PY 2010
VL 38
IS 3
BP 400
EP 405
DI 10.1109/TPS.2009.2038781
PN 1
PG 6
WC Physics, Fluids & Plasmas
SC Physics
GA 566KK
UT WOS:000275368900031
ER
PT J
AU Baylor, LR
Jernigan, TC
Combs, SK
Meitner, SJ
Caughman, JB
Commaux, N
Rasmussen, DA
Parks, PB
Glugla, M
Maruyama, S
Pearce, RJH
Lehnen, M
AF Baylor, L. R.
Jernigan, T. C.
Combs, S. K.
Meitner, S. J.
Caughman, J. B.
Commaux, N.
Rasmussen, D. A.
Parks, P. B.
Glugla, M.
Maruyama, S.
Pearce, R. J. H.
Lehnen, M.
TI Disruption-Mitigation-Technology Concepts and Implications for ITER
SO IEEE TRANSACTIONS ON PLASMA SCIENCE
LA English
DT Article; Proceedings Paper
CT 23rd IEEE/NPSS Symposium on Fusion Engineering
CY MAY 31-JUN 05, 2009
CL San Diego, CA
SP IEEE, NPSS
DE Disruption; ITER; pellet
ID PELLET INJECTION; DIII-D; SYSTEMS; VALVE; JET
AB Disruptions on ITER present challenges to handle the intense heat flux, the large forces from halo currents, and the potential first wall damage from energetic runaway electrons. Injecting large quantities of material into the plasma during the disruption can reduce the plasma energy and increase its resistivity to mitigate these effects. Assessments of the amount of various mixtures and quantities of the material required have been made to provide collision mitigation of runaway-electron conversion, which is the most difficult challenge. The quantities of the material required (similar to 0.5 MPa . m(3) for deuterium or helium gas) are large enough to have implications on the design and operation of the vacuum system and tokamak exhaust processing system.
C1 [Baylor, L. R.; Jernigan, T. C.; Combs, S. K.; Meitner, S. J.; Caughman, J. B.; Commaux, N.; Rasmussen, D. A.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
[Parks, P. B.] Gen Atom Co, San Diego, CA 92186 USA.
[Glugla, M.; Maruyama, S.; Pearce, R. J. H.] ITER Org, F-13067 St Paul Les Durance, France.
[Lehnen, M.] Forschungszentrum Julich, D-52425 Julich, Germany.
RP Baylor, LR (reprint author), Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
EM baylorlr@ornl.gov; jernigantc@ornl.gov; combssk@ornl.gov;
parks@fusion.gat.com
RI Caughman, John/R-4889-2016
OI Caughman, John/0000-0002-0609-1164
NR 21
TC 7
Z9 7
U1 0
U2 2
PU IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
PI PISCATAWAY
PA 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA
SN 0093-3813
J9 IEEE T PLASMA SCI
JI IEEE Trans. Plasma Sci.
PD MAR
PY 2010
VL 38
IS 3
BP 419
EP 424
DI 10.1109/TPS.2009.2039496
PN 1
PG 6
WC Physics, Fluids & Plasmas
SC Physics
GA 566KK
UT WOS:000275368900034
ER
PT J
AU Gottumukkala, NR
Nassar, R
Paun, M
Leangsuksun, CB
Scott, SL
AF Gottumukkala, Narasimha Raju
Nassar, Raja
Paun, Mihaela
Leangsuksun, Chokchai Box
Scott, Stephen L.
TI Reliability of a System of k Nodes for High Performance Computing
Applications
SO IEEE TRANSACTIONS ON RELIABILITY
LA English
DT Article
DE System reliability; system time to failure; Weibull distribution
AB Reliability estimation of High Performance Computing (HPC) systems enables resource allocation, and fault tolerance frameworks to minimize the performance loss due to unexpected failures. Recent studies have shown that compute nodes in HPC systems follow a time varying failure rate distribution such as Weibull, instead of the exponential distribution. In this paper, we propose a model for the Time to Failure (TTF) distribution of a system of k s-independent nodes when individual nodes exhibit time varying failure rates. We also present the system reliability, failure rates, Mean Time to Failure (MTTF), and derivations of the proposed system TTF model. The model is validated using observed data on time to failure.
C1 [Gottumukkala, Narasimha Raju; Nassar, Raja; Paun, Mihaela; Leangsuksun, Chokchai Box] Louisiana Tech Univ, Coll Engn & Sci, Ruston, LA 71270 USA.
[Gottumukkala, Narasimha Raju] Univ Louisiana Lafayette, Ctr Business & Informat Technol, Lafayette, LA 70504 USA.
[Paun, Mihaela] Spiru Haret Univ, Fac Finance & Banks, Bucharest 030045, Romania.
[Scott, Stephen L.] Oak Ridge Natl Lab, Div Math & Comp Sci, Oak Ridge, TN 37831 USA.
RP Paun, M (reprint author), Louisiana Tech Univ, Coll Engn & Sci, Ruston, LA 71270 USA.
EM raju@louisiana.edu; nassar@latech.edu; mpaun@latech.edu; box@latech.edu;
scottsl@ornl.gov
RI Paun, Mihaela/C-3539-2011
OI Paun, Mihaela/0000-0002-3342-9140
FU National University Research Council [CNCSIS PNII RP5]; Sciences Office,
Office of Advanced Scientific Computing Research, Office of Science,
U.S. Department of Energy [DE-AC05-00OR22725, DE-FG02-08ER25836];
National Science Foundation [CNS-0834483]
FX Manuscript received March 21, 2008; revised January 18, 2009 and May 01,
2009; accepted May 20, 2009. First published December 04, 2009; current
version published March 03, 2010. Research supported by the National
Science Foundation Grant CNS-0834483. Research supported by the
Department of Energy Grant DE-FG02-08ER25836. Research supported by the
National University Research Council Grant CNCSIS PNII RP5. Research
supported by the Mathematics, Information and Computational Sciences
Office, Office of Advanced Scientific Computing Research, Office of
Science, U.S. Department of Energy, under contract No. DE-AC05-00OR22725
with UT-Battelle, LLC. Associate Editor H. Li.
NR 14
TC 13
Z9 15
U1 0
U2 5
PU IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
PI PISCATAWAY
PA 445 HOES LANE, PISCATAWAY, NJ 08855-4141 USA
SN 0018-9529
J9 IEEE T RELIAB
JI IEEE Trans. Reliab.
PD MAR
PY 2010
VL 59
IS 1
BP 162
EP 169
DI 10.1109/TR.2009.2034291
PG 8
WC Computer Science, Hardware & Architecture; Computer Science, Software
Engineering; Engineering, Electrical & Electronic
SC Computer Science; Engineering
GA 608XA
UT WOS:000278618100017
ER
PT J
AU Bremer, PT
Weber, GH
Pascucci, V
Day, M
Bell, JB
AF Bremer, Peer-Timo
Weber, Gunther H.
Pascucci, Valerio
Day, Marc
Bell, John B.
TI Analyzing and Tracking Burning Structures in Lean Premixed Hydrogen
Flames
SO IEEE TRANSACTIONS ON VISUALIZATION AND COMPUTER GRAPHICS
LA English
DT Article
DE Visualization; data analysis; topological data analysis; Morse complex;
Reeb graph; feature detection; feature tracking; combustion simulations;
burning regions
ID 3-DIMENSIONAL SCALAR FUNCTIONS; MORSE-SMALE COMPLEXES;
NUMERICAL-SIMULATION; CONSTRUCTION; FEATURES
AB This paper presents topology-based methods to robustly extract, analyze, and track features defined as subsets of isosurfaces. First, we demonstrate how features identified by thresholding isosurfaces can be defined in terms of the Morse complex. Second, we present a specialized hierarchy that encodes the feature segmentation independent of the threshold while still providing a flexible multiresolution representation. Third, for a given parameter selection, we create detailed tracking graphs representing the complete evolution of all features in a combustion simulation over several hundred time steps. Finally, we discuss a user interface that correlates the tracking information with interactive rendering of the segmented isosurfaces enabling an in-depth analysis of the temporal behavior. We demonstrate our approach by analyzing three numerical simulations of lean hydrogen flames subject to different levels of turbulence. Due to their unstable nature, lean flames burn in cells separated by locally extinguished regions. The number, area, and evolution over time of these cells provide important insights into the impact of turbulence on the combustion process. Utilizing the hierarchy, we can perform an extensive parameter study without reprocessing the data for each set of parameters. The resulting statistics enable scientists to select appropriate parameters and provide insight into the sensitivity of the results with respect to the choice of parameters. Our method allows for the first time to quantitatively correlate the turbulence of the burning process with the distribution of burning regions, properly segmented and selected. In particular, our analysis shows that counterintuitively stronger turbulence leads to larger cell structures, which burn more intensely than expected. This behavior suggests that flames could be stabilized under much leaner conditions than previously anticipated.
C1 [Bremer, Peer-Timo] Lawrence Livermore Natl Lab, Ctr Appl Sci Comp, Livermore, CA 94550 USA.
[Weber, Gunther H.; Day, Marc; Bell, John B.] Lawrence Berkeley Natl Lab, Berkeley, CA 94720 USA.
[Weber, Gunther H.] Univ Calif Davis, Dept Comp Sci, Inst Data Anal & Visualizat, Davis, CA 95616 USA.
[Pascucci, Valerio] Univ Utah, Sci Comp & Imaging Inst, Salt Lake City, UT 84112 USA.
RP Bremer, PT (reprint author), Lawrence Livermore Natl Lab, Ctr Appl Sci Comp, L-422,7000 East Ave, Livermore, CA 94550 USA.
EM bremer5@llnl.gov; ghweber@lbl.gov; pascucci@sci.utah.edu; MSDay@lbl.gov;
JBBell@lbl.gov
OI Weber, Gunther/0000-0002-1794-1398
FU US Department of Energy ( DOE) by the Lawrence Livermore National
Laboratory [DE-AC52-07NA27344, LLNL-JRNL-412904L, DE-AC02-05CH11231]
FX This work was performed under the auspices of the US Department of
Energy ( DOE) by the Lawrence Livermore National Laboratory under
Contract Nos. DE-AC52-07NA27344, LLNL-JRNL-412904L. This work was
supported by the Director, Office of Advanced Scientific Computing
Research, Office of Science, of the DOE under Contract No.
DE-AC02-05CH11231 through the Scientific Discovery through Advanced
Computing (SciDAC) program's Visualization and Analytics Center for
Enabling Technologies (VACET); the SciDAC Program of the DOE Office of
Mathematics, Information, and Computational Sciences under the DOE
Contract No. DE-AC02-05CH11231. Computational resources have been made
available on the Fraklin machine at NERSC as part of an INCITE award and
on the Columbia machine at NASA as part of an National Leadership Class
System allocation; and the US National Science Foundation (NSF) through
the Topology-based Methods for Analysis and Visualization of Noisy Data
project. This research used resources of the National Energy Research
Scientific Computing Center, which is supported by the Office of Science
of the US DOE under Contract No. DE-AC02-05CH11231.
NR 37
TC 32
Z9 32
U1 0
U2 15
PU IEEE COMPUTER SOC
PI LOS ALAMITOS
PA 10662 LOS VAQUEROS CIRCLE, PO BOX 3014, LOS ALAMITOS, CA 90720-1314 USA
SN 1077-2626
EI 1941-0506
J9 IEEE T VIS COMPUT GR
JI IEEE Trans. Vis. Comput. Graph.
PD MAR-APR
PY 2010
VL 16
IS 2
BP 248
EP 260
DI 10.1109/TVCG.2009.69
PG 13
WC Computer Science, Software Engineering
SC Computer Science
GA 541EL
UT WOS:000273396600007
PM 20075485
ER
PT J
AU Fiehn, O
Park, JJ
Lee, DY
AF Fiehn, Oliver
Park, Jeong-Jin
Lee, Do Yup
TI Activation of Metabolic Networks in Chlamydomonas Reinhardtu in Response
to Environmental Cues
SO IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL
LA English
DT Meeting Abstract
C1 [Fiehn, Oliver] UC Davis, UC Davis Genome Ctr, Davis, CA 95616 USA.
[Park, Jeong-Jin] Michigan State Univ, GLBRC, E Lansing, MI 48824 USA.
[Lee, Do Yup] LBNL, Berkeley, CA 94704 USA.
NR 0
TC 0
Z9 0
U1 0
U2 4
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1071-2690
J9 IN VITRO CELL DEV-AN
JI In Vitro Cell. Dev. Biol.-Anim.
PD SPR
PY 2010
VL 46
SU S
BP S24
EP S25
PG 2
WC Cell Biology; Developmental Biology
SC Cell Biology; Developmental Biology
GA 695JX
UT WOS:000285367500055
ER
PT J
AU Fu, CX
Mielenz, J
Xiao, XR
Xi, YJ
Hamilton, C
Ge, YX
Chen, F
Bouton, J
Dixon, R
Wang, ZY
AF Fu Chunxiang
Mielenz, Jonathan
Xiao Xirong
Xi Yajun
Hamilton, Choo
Ge Yaxin
Chen Fang
Bouton, Joseph
Dixon, Richard
Wang Zeng-Yu
TI Genetic Modification of Switchgrass for Improved Biofuel Production
SO IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL
LA English
DT Meeting Abstract
C1 [Fu Chunxiang; Xiao Xirong; Xi Yajun; Ge Yaxin; Bouton, Joseph; Wang Zeng-Yu] Samuel Roberts Noble Fdn Inc, Forage Improvement Div, Ardmore, OK 73401 USA.
[Mielenz, Jonathan; Hamilton, Choo] Oak Ridge Natl Lab, Div Life Sci, Oak Ridge, TN 37831 USA.
[Chen Fang; Dixon, Richard] Samuel Roberts Noble Fdn Inc, Div Plant Biol, Ardmore, OK 73401 USA.
NR 0
TC 0
Z9 0
U1 1
U2 4
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1071-2690
J9 IN VITRO CELL DEV-AN
JI In Vitro Cell. Dev. Biol.-Anim.
PD SPR
PY 2010
VL 46
SU S
BP S26
EP S27
PG 2
WC Cell Biology; Developmental Biology
SC Cell Biology; Developmental Biology
GA 695JX
UT WOS:000285367500060
ER
PT J
AU Jesus, E
Howe, A
Chain, P
Liang, C
Tiedje, J
AF Jesus, Ederson
Howe, Adina
Chain, Patrick
Liang Chao
Tiedje, James
TI To What Extent do Soil Communities Respond to Plants Metagenomic
Analyses
SO IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL
LA English
DT Meeting Abstract
C1 [Jesus, Ederson; Liang Chao] Great Lakes Bioenergy Res Ctr, Madison, WI USA.
[Howe, Adina; Tiedje, James] Michigan State Univ, Great Lakes Bioenergy Res Ctr, E Lansing, MI 48824 USA.
[Tiedje, James] Michigan State Univ, Ctr Microbial Ecol, E Lansing, MI 48824 USA.
[Chain, Patrick] Los Alamos Natl Lab, Los Alamos, NM USA.
RI chain, patrick/B-9777-2013
NR 0
TC 0
Z9 0
U1 0
U2 5
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1071-2690
J9 IN VITRO CELL DEV-AN
JI In Vitro Cell. Dev. Biol.-Anim.
PD SPR
PY 2010
VL 46
SU S
BP S77
EP S78
PG 2
WC Cell Biology; Developmental Biology
SC Cell Biology; Developmental Biology
GA 695JX
UT WOS:000285367500172
ER
PT J
AU Keasling, J
AF Keasling, Jay
TI Engineering Microorganisms with Plant-derived Genes to Produce Drugs and
Fuels
SO IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL
LA English
DT Meeting Abstract
C1 [Keasling, Jay] Univ Calif Berkeley, Lawrence Berkeley Lab, Joint BioEnergy Inst, Emeryville, CA 94608 USA.
RI Keasling, Jay/J-9162-2012
OI Keasling, Jay/0000-0003-4170-6088
NR 0
TC 0
Z9 0
U1 0
U2 4
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1071-2690
J9 IN VITRO CELL DEV-AN
JI In Vitro Cell. Dev. Biol.-Anim.
PD SPR
PY 2010
VL 46
SU S
BP S38
EP S39
PG 2
WC Cell Biology; Developmental Biology
SC Cell Biology; Developmental Biology
GA 695JX
UT WOS:000285367500086
ER
PT J
AU Mann, D
Abercrombie, L
Burris, J
Halter, M
Hawkins, J
King, Z
LaFayette, P
Mazarei, M
Percifield, R
Poovaiah, C
Reeve, E
Rudis, M
Willis, J
Wuddineh, W
Bennetzen, J
Parrott, W
Stewart, N
Keller, M
AF Mann, Dave
Abercrombie, Laura
Burris, Jason
Halter, Mat
Hawkins, Jennifer
King, Zach
LaFayette, Pete
Mazarei, Mitra
Percifield, Ryan
Poovaiah, Charleson
Reeve, Ellen
Rudis, Mary
Willis, Jonathan
Wuddineh, Wegi
Bennetzen, Jeff
Parrott, Wayne
Stewart, Neal
Keller, Martin
TI Switchgrass (Panicum virgatum) Biotechnology and Transformation for
Altered Cell Wall Biosynthesis
SO IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL
LA English
DT Meeting Abstract
C1 [Mann, Dave; Abercrombie, Laura; Burris, Jason; Halter, Mat; Mazarei, Mitra; Poovaiah, Charleson; Reeve, Ellen; Rudis, Mary; Willis, Jonathan; Wuddineh, Wegi; Stewart, Neal] Univ Tennessee, Knoxville, TN 37865 USA.
[Hawkins, Jennifer; King, Zach; LaFayette, Pete; Percifield, Ryan; Bennetzen, Jeff; Parrott, Wayne] Univ Georgia, Athens, GA 30602 USA.
[Keller, Martin] Oak Ridge Natl Lab, Oak Ridge, TN USA.
RI Keller, Martin/C-4416-2012
NR 0
TC 0
Z9 0
U1 0
U2 2
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1071-2690
J9 IN VITRO CELL DEV-AN
JI In Vitro Cell. Dev. Biol.-Anim.
PD SPR
PY 2010
VL 46
SU S
BP S193
EP S193
PG 1
WC Cell Biology; Developmental Biology
SC Cell Biology; Developmental Biology
GA 695JX
UT WOS:000285367500433
ER
PT J
AU Mohnen, D
Biswal, A
Hao, ZY
Sholes, T
Gelineo-Albersheim, I
Hunt, K
Darvill, A
Hahn, M
Kong, YZ
Zhou, GK
Avci, U
Adams, M
Kataeva, I
Yang, SJ
Xu, Y
Yin, YB
Chen, HL
DiFazio, S
Slavov, G
Davis, M
Sykes, R
Decker, S
Selig, M
Tucker, M
Himmel, M
Studer, M
DeMartini, J
Wyman, C
Rokhsar, D
Goodstein, D
Schwartz, W
Shu, SQ
Schmutz, J
Lynd, L
Nelson, R
Dixon, R
Hinchee, M
Rottmann, W
Winkeler, K
Chang, SJ
Gilna, P
Davison, B
Yin, TM
Ranjan, P
Abraham, P
Hettich, R
Tuskan, G
AF Mohnen, Debra
Biswal, Ajaya
Hao Zhangying
Sholes, Tipton
Gelineo-Albersheim, Ivana
Hunt, Kimberly
Darvill, Alan
Hahn, Michael
Kong Yingzhen
Zhou Gongke
Avci, Utku
Adams, Michael
Kataeva, Irina
Yang Sung-Jae
Xu Ying
Yin Yanbin
Chen Huiling
DiFazio, Stephen
Slavov, Gancho
Davis, Mark
Sykes, Robert
Decker, Steve
Selig, Mike
Tucker, Melvin
Himmel, Mike
Studer, Michael
DeMartini, Jaclyn
Wyman, Charles
Rokhsar, Dan
Goodstein, David
Schwartz, Wendy
Shu Sheng-quiang
Schmutz, Jeremy
Lynd, Lee
Nelson, Rick
Dixon, Richard
Hinchee, Maud
Rottmann, William
Winkeler, Kim
Chang Shujun
Gilna, Paul
Davison, Brian
Yin Tongming
Ranjan, Priya
Abraham, Paul
Hettich, Robert
Tuskan, Gerald
TI The Bioenergy Science Center (BESC) and Overcoming Recalcitrance of
Populus to Biofuel Production
SO IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL
LA English
DT Meeting Abstract
C1 [Mohnen, Debra] Univ Georgia, Complex Carbohydrate Res Ctr, BioEnergy Sci Ctr, Athens, GA 30602 USA.
[DiFazio, Stephen; Slavov, Gancho] W Virginia Univ, Morgantown, WV 26506 USA.
[Davis, Mark; Sykes, Robert; Decker, Steve; Selig, Mike; Tucker, Melvin; Himmel, Mike] Natl Renewable Energy Lab, Golden, CO USA.
[Studer, Michael; DeMartini, Jaclyn; Wyman, Charles] Univ Calif Riverside, Riverside, CA 92521 USA.
[Schmutz, Jeremy] Alpha Hudson, Huntsville, AL USA.
[Nelson, Rick; Dixon, Richard] Samuel Roberts Noble Fdn Inc, Ardmore, OK USA.
[Gilna, Paul; Davison, Brian; Yin Tongming; Ranjan, Priya; Abraham, Paul; Hettich, Robert; Tuskan, Gerald] Oak Ridge Natl Lab, Oak Ridge, TN USA.
RI Tuskan, Gerald/A-6225-2011; Davison, Brian/D-7617-2013; Gilna,
Paul/I-3608-2016; Hettich, Robert/N-1458-2016
OI Tuskan, Gerald/0000-0003-0106-1289; Davison, Brian/0000-0002-7408-3609;
Gilna, Paul/0000-0002-6542-0191; Hettich, Robert/0000-0001-7708-786X
NR 0
TC 0
Z9 0
U1 0
U2 5
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1071-2690
J9 IN VITRO CELL DEV-AN
JI In Vitro Cell. Dev. Biol.-Anim.
PD SPR
PY 2010
VL 46
SU S
BP S48
EP S48
PG 1
WC Cell Biology; Developmental Biology
SC Cell Biology; Developmental Biology
GA 695JX
UT WOS:000285367500107
ER
PT J
AU Ramanna, H
Doeppke, C
Hisano, S
Decker, S
Selig, M
Jackson, L
Biswal, A
Gelineo-Albersheim, I
Hunt, K
Tschaplinski, T
Mohnen, D
Chen, F
Davis, M
Nelson, R
AF Ramanna, Hema
Doeppke, Crissa
Hisano, Sakae
Decker, Steve
Selig, Michael
Jackson, Lisa
Biswal, Ajaya
Gelineo-Albersheim, Ivana
Hunt, Kimberly
Tschaplinski, Timothy
Mohnen, Debra
Chen Fang
Davis, Mark
Nelson, Richard
TI Use of a Model Monocotyledon Species, Setaria italica (Foxtail Millet),
and Virus-Induced Gene Silencing to Evaluate the Recalcitrance Potential
of Target Genes for Biofuel Production
SO IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL
LA English
DT Meeting Abstract
C1 [Nelson, Richard] Samuel Roberts Noble Fdn Inc, Div Plant Biol, Ardmore, OK 73401 USA.
[Doeppke, Crissa; Decker, Steve; Selig, Michael; Davis, Mark] Natl Renewable Energy Lab, Golden, CO 80401 USA.
[Biswal, Ajaya; Gelineo-Albersheim, Ivana; Hunt, Kimberly; Mohnen, Debra] Univ Georgia, Complex Carbohydrate Res Ctr, Athens, GA 30602 USA.
[Tschaplinski, Timothy] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
NR 0
TC 0
Z9 0
U1 0
U2 1
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1071-2690
J9 IN VITRO CELL DEV-AN
JI In Vitro Cell. Dev. Biol.-Anim.
PD SPR
PY 2010
VL 46
SU S
BP S145
EP S146
PG 2
WC Cell Biology; Developmental Biology
SC Cell Biology; Developmental Biology
GA 695JX
UT WOS:000285367500324
ER
PT J
AU Sandhu, S
Barb, J
Gracom, K
Sykes, R
Moyers, B
Davis, M
Reiseberg, L
Marek, L
Burke, J
Knapp, S
AF Sandhu, Sukhpreeti
Barb, Jessica
Gracom, Kristen
Sykes, Robert
Moyers, Brook
Davis, Mark
Reiseberg, Loren
Marek, Laura
Burke, John
Knapp, Steven
TI Genetic Mechanism of Wood Production in Silverleaf Sunflower
SO IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL
LA English
DT Meeting Abstract
C1 [Sandhu, Sukhpreeti; Barb, Jessica; Knapp, Steven] Univ Georgia, Ctr Appl Genet Technol, Athens, GA 30602 USA.
[Gracom, Kristen; Sykes, Robert; Davis, Mark] Natl Renewable Energy Lab, Golden, CO USA.
[Moyers, Brook; Reiseberg, Loren] Univ British Columbia, Dept Biol, Vancouver, BC V5Z 1M9, Canada.
[Marek, Laura] N Cent Reg Plant Intro Stn, Ames, IA USA.
[Burke, John] Univ Georgia, Dept Plant Biol, Athens, GA 30602 USA.
RI Moyers, Brook/E-1516-2012
NR 0
TC 0
Z9 0
U1 0
U2 1
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1071-2690
J9 IN VITRO CELL DEV-AN
JI In Vitro Cell. Dev. Biol.-Anim.
PD SPR
PY 2010
VL 46
SU S
BP S159
EP S159
PG 1
WC Cell Biology; Developmental Biology
SC Cell Biology; Developmental Biology
GA 695JX
UT WOS:000285367500356
ER
PT J
AU Thomashow, M
Thomashow, M
AF Thomashow, Mike
Thomashow, Michael
TI Plant Cold Acclimation Identifying Gene Regulons Involved in Freezing
Tolerance
SO IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL
LA English
DT Meeting Abstract
C1 [Thomashow, Mike; Thomashow, Michael] Michigan State Univ, MSU DOE Plant Res Lab, E Lansing, MI 48824 USA.
NR 0
TC 0
Z9 0
U1 1
U2 5
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1071-2690
J9 IN VITRO CELL DEV-AN
JI In Vitro Cell. Dev. Biol.-Anim.
PD SPR
PY 2010
VL 46
SU S
BP S78
EP S79
PG 2
WC Cell Biology; Developmental Biology
SC Cell Biology; Developmental Biology
GA 695JX
UT WOS:000285367500174
ER
PT J
AU Prinz, M
Kuepper, K
Taubitz, C
Raekers, M
Khanra, S
Biswas, B
Weyhermuller, T
Uhlarz, M
Wosnitza, J
Schnack, J
Postnikov, AV
Schroder, C
George, SJ
Neumann, M
Chaudhuri, P
AF Prinz, Manuel
Kuepper, Karsten
Taubitz, Christian
Raekers, Michael
Khanra, Sumit
Biswas, Biplab
Weyhermueller, Thomas
Uhlarz, Marc
Wosnitza, Joachim
Schnack, Juergen
Postnikov, Andrei V.
Schroeder, Christian
George, Simon J.
Neumann, Manfred
Chaudhuri, Phalguni
TI A Star-Shaped Heteronuclear (CrMn3II)-Mn-III Species and Its Precise
Electronic and Magnetic Structure: Spin Frustration Studied by X-Ray
Spectroscopic, Magnetic, and Theoretical Methods
SO INORGANIC CHEMISTRY
LA English
DT Article
ID SINGLE-MOLECULE MAGNET; MN-II ION; CIRCULAR-DICHROISM; ABSORPTION;
COMPLEX; NANOMAGNETS; ANISOTROPY; CLUSTERS; LIGANDS; SYSTEMS
AB Molecular magnets incorporate transition-metal ions with organic groups providing a bridge to mediate magnetic exchange interactions between the ions. Among them are star-shaped molecules in which antiferromagnetic couplings between the central and peripheral atoms are predominantly present. Those configurations lead to an appreciable spin moment in the nonfrustrated ground state. In spite of its topologically simple magnetic structure, the [(CrMn3II)-Mn-III(PyA)(6)Cl-3] (CrMn3) molecule, in which PyA represents the monoanion of syn-pyridine-2-aldoxime, exhibits nontrivial magnetic properties, which emerge from the combined action of single-ion anisotropy and frustration. In the present work, we elucidate the underlying electronic and magnetic properties of the heteronuclear, spin-frustrated CrMn3 molecule by applying X-ray magnetic circular dichroism (XMCD), as well as magnetization measurements in high magnetic fields, density functional theory, and ligand-field multiplet calculations. Quantum-model calculations based on a Heisenberg Hamiltonian augmented with local anisotropic terms enable us not only to improve the accuracy of the exchange interactions but also to determine the dominant local anisotropies. A discussion of the various spin Hamiltonian parameters not only leads to a validation of our element selective transition metal L edge XMCD spin moments at a magnetic field of 5 T and a temperature of 5 K but also allows us to monitor an interesting effect of anisotropy and frustration of the manganese and chromium ions.
C1 [Prinz, Manuel; Taubitz, Christian; Raekers, Michael; Neumann, Manfred] Univ Osnabruck, Dept Phys, D-49069 Osnabruck, Germany.
[Kuepper, Karsten] Forschungszentrum Dresden Rossendorf, Inst Ionenstrahlphys & Mat Forsch, D-01314 Dresden, Germany.
[Khanra, Sumit; Biswas, Biplab; Weyhermueller, Thomas; Chaudhuri, Phalguni] Max Planck Inst Bioanorgan Chem, D-45470 Mulheim, Germany.
[Schnack, Juergen] Univ Bielefeld, Fak Phys, D-33501 Bielefeld, Germany.
[Postnikov, Andrei V.] Paul Verlaine Univ, Lab Phys Milieux Denses, Inst Jean Barriol, F-57078 Metz, France.
[Schroeder, Christian] Univ Appl Sci Bielefeld, Dept Engn Sci & Math, D-33602 Bielefeld, Germany.
[George, Simon J.] Univ Calif Berkeley, Lawrence Berkeley Lab, Adv Biol & Environm Xray Facil, Berkeley, CA 94720 USA.
RP Neumann, M (reprint author), Univ Osnabruck, Dept Phys, Barbarastr 7, D-49069 Osnabruck, Germany.
EM mneumann@uos.de; chaudh@mpi-muelheim.mpg.de
RI Schnack, Jurgen/A-4079-2008; Weyhermuller, Thomas/G-6730-2012; Kupper,
Karsten/G-1397-2016
OI Schnack, Jurgen/0000-0003-0702-2723; Weyhermuller,
Thomas/0000-0002-0399-7999;
FU Graduate College; U.S. Department of Energy [DE-AC03-76SF00098]; German
Research Council (DFG) [FOR 945]
FX E. Arenholz and J. D. Denlinger are acknowledged for excellent technical
support. We would like to thank Joris van Slageren for discussing
anisotropy issues with us and for drawing our attention to recent
publications on Mn(II) anisotropies. Financial support by the Graduate
College and the PhD program (Lower Saxony) is gratefully acknowledged.
A.V.P. acknowledges the use of computing resources of the PMMS of the
Paul Verlaine University. Part of the work was performed at the Advanced
Light Source (A.L.S.), which is supported by the U.S. Department of
Energy under Contract No. DE-AC03-76SF00098.; Financial Support from the
German Research Council (DFG) in the priority program "Molecular
Magnetism" as well as through the research group FOR 945 is also
thankfully acknowledged.
NR 74
TC 29
Z9 29
U1 3
U2 26
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 0020-1669
EI 1520-510X
J9 INORG CHEM
JI Inorg. Chem.
PD MAR 1
PY 2010
VL 49
IS 5
BP 2093
EP 2102
DI 10.1021/ic9012119
PG 10
WC Chemistry, Inorganic & Nuclear
SC Chemistry
GA 556XI
UT WOS:000274626200014
PM 20108916
ER
PT J
AU Trovitch, RJ
Guo, N
Janicke, MT
Li, HB
Marshall, CL
Miller, JT
Sattelberger, AP
John, KD
Baker, RT
AF Trovitch, Ryan J.
Guo, Neng
Janicke, Michael T.
Li, Hongbo
Marshall, Christopher L.
Miller, Jeffrey T.
Sattelberger, Alfred P.
John, Kevin D.
Baker, R. Thomas
TI Spectroscopic Characterization of Alumina-Supported Bis(allyl)iridium
Complexes: Site-Isolation, Reactivity, and Decomposition Studies
SO INORGANIC CHEMISTRY
LA English
DT Article
ID SURFACE ORGANOMETALLIC CHEMISTRY; XPCP PINCER COMPLEXES; TRANSFER
DEHYDROGENATION; ALKANE DEHYDROGENATION; OLEFIN METATHESIS; IRIDIUM
COMPLEXES; MESOPOROUS SILICA; ENANTIOSELECTIVE HYDROGENATION;
POLYMERIZATION CATALYSTS; HETEROGENEOUS CATALYSTS
AB The covalent attachment of tris(allyl)iridium to partially dehydroxylated gamma-alumina is found to proceed via surface hydroxyl group protonation of one allyl ligand to form an immobilized bis(allyl)iridium moiety, (=AlO)Ir(allyl)(2), as characterized by CP-MAS (13)C NMR, inductively coupled plasma-mass spectrometry, and Ir L(3) edge X-ray absorption spectroscopy. Extended X-ray absorption fine-structure (EXAFS) measurements taken on unsupported Ir(allyl)(3) and several associated tertiary phosphine addition complexes suggest that the eta(3)-allyl ligands generally account for an Ir-C coordination number of 2 rather than 3, with an average Ir-C distance of 2.16 angstrom. Using this knowledge, combined EXAFS and X-ray absorption near-edge structure studies reveal that a small amount of Ir(0) is also formed upon reaction of Ir(allyl)(3) with the surface. It was found that the addition of either 2,6-dimethylphenyl isocyanide or carbon monoxide to the supported complex allows spectroscopic identification of the supported bis(allyl)iridium complexes, (=AlO)Ir(allyl)(2)(CNAr) [Ar=2,6-(CH(3))(2)C(6)H(4)] and (=AlO)Ir(allyl)(2)(CO)(2), respectively. Although samples of the supported bis(allyl)iridium complex are active for the dehydrogenation of cyclohexane to benzene at temperatures between 180 and 220 degrees C, in situ temperature-programmed reaction XAFS and continuous-flow reactor studies suggest that Ir(0) nanoparticles, rather than a well-defined Ir(3+) complex, are responsible for the observed activity.
C1 [Sattelberger, Alfred P.] Argonne Natl Lab, Energy Sci & Engn Directorate, Argonne, IL 60439 USA.
[Trovitch, Ryan J.; Janicke, Michael T.; Li, Hongbo; John, Kevin D.; Baker, R. Thomas] Los Alamos Natl Lab, Div Chem, Los Alamos, NM 87545 USA.
[Guo, Neng; Marshall, Christopher L.; Miller, Jeffrey T.] Argonne Natl Lab, Chem Sci & Engn Div, Argonne, IL 60439 USA.
[Baker, R. Thomas] Univ Ottawa, Ctr Catalysis Res & Innovat, Ottawa, ON K1N 6N5, Canada.
[Baker, R. Thomas] Univ Ottawa, Dept Chem, Ottawa, ON K1N 6N5, Canada.
RP Sattelberger, AP (reprint author), Argonne Natl Lab, Energy Sci & Engn Directorate, 9700 S Cass Ave, Argonne, IL 60439 USA.
EM asattelberger@anl.gov; kjohn@lanl.gov; rbaker@uottawa.ca
RI Guo, Neng/A-3223-2013; ID, MRCAT/G-7586-2011; Marshall,
Christopher/D-1493-2015;
OI Marshall, Christopher/0000-0002-1285-7648; Janicke,
Michael/0000-0002-3139-2882; John, Kevin/0000-0002-6181-9330
FU Office of Basic Energy Sciences of the U.S. Department of Energy
[DE-AC02-06CH11357, DE-AC5206NA25396]; Department of Energy; MRCAT
member institutions; National Science Foundation Division of Materials
Research
FX We thank the Office of Basic Energy Sciences, Division of Chemical
Sciences, Geosciences, and Biosciences, for financial Support through
the Catalysis Science Program. Use of the Advanced Photon Source was
also supported by the Office of Basic Energy Sciences of the U.S.
Department of Energy under Contract DE-AC02-06CH11357. MRCAT (Sector 10)
operations are supported by the Department of Energy and the MRCAT
member institutions. The collection of XAFS data was also carried out at
the XOR Beamlines (Sector 9), which are supported in part by the Office
of Basic Energy Sciences of the U.S. Department of Energy and by the
National Science Foundation Division of Materials Research. We thank
Drs. Jeremy Kropf and Trudy Bolin for assistance with the collection of
XAFS measurements and Brandy Duran for conducting ICP-MS experiments. We
are also grateful to Drs. Worajit Setthapun and Weiling Deng for helpful
discussions involving the continuous flow reactor studies. LANL is
operated by Los Alamos National Security, LLC, for the National Nuclear
Security Administration of the U.S. Department of Energy under contract
DE-AC5206NA25396.
NR 67
TC 10
Z9 10
U1 3
U2 21
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 0020-1669
J9 INORG CHEM
JI Inorg. Chem.
PD MAR 1
PY 2010
VL 49
IS 5
BP 2247
EP 2258
DI 10.1021/ic9021036
PG 12
WC Chemistry, Inorganic & Nuclear
SC Chemistry
GA 556XI
UT WOS:000274626200030
PM 20112918
ER
PT J
AU Escuer, A
Esteban, J
Aliaga-Alcalde, N
Font-Bardia, M
Calvet, T
Roubeau, O
Teat, SJ
AF Escuer, Albert
Esteban, Jordi
Aliaga-Alcalde, Nuria
Font-Bardia, Merce
Calvet, Teresa
Roubeau, Olivier
Teat, Simon J.
TI First Structural and Magnetic Studies of Ni Clusters Containing
2,6-Diacetylpyridine-dioxime as a Ligand
SO INORGANIC CHEMISTRY
LA English
DT Article
ID MANGANESE CARBOXYLATE CHEMISTRY; 2-PYRIDYL KETONE OXIME;
CRYSTAL-STRUCTURE; X-RAY; MOLECULAR-STRUCTURE; OXIDATION-STATES;
INORGANIC ANION; PYRIDYL OXIMES; COMPLEXES; DIOXIME
AB In the present work, coordination possibilities of the system dapdoH(2)/Ni(2+), being dapdoH(2)=2,6-diacetylpyridine dioxime, have been explored, offering as a result a number of unprecedented clusters with a variety of topologies and magnetic behaviors. Depending on the precursors and reaction conditions, several compounds named [Ni(2)(dapdO)(2)] (1), [Ni(3)(OH)(BzO)(3)(dapdo)(dapdoH(2))(H(2)O)]center dot 1.25H(2)O (2), [Ni(3)(AcO)(4)(dapdoH)(2)(H(2)O)(2)]center dot H(2)O (3), and [Ni(4)(ACO)(3)(dapdo)(dapdoH)(2)(H(2)O)(3)]center dot(AcO)center dot 3H(2)O (4) were achieved and structurally well-characterized. Dc magnetic measurements were carried out in the 2-300 K range revealing antiferromagnetic interactions for (2-4) compounds and diamagnetic response for the square planar coordinated complex (1).
C1 [Escuer, Albert; Esteban, Jordi] Univ Barcelona IN2UB, Dept Quim, Barcelona 08028, Spain.
[Escuer, Albert; Esteban, Jordi] Univ Barcelona IN2UB, Inst Nanociencia & Nanotecnol, Barcelona 08028, Spain.
[Aliaga-Alcalde, Nuria] Univ Barcelona, ICREA, E-08028 Barcelona, Spain.
[Aliaga-Alcalde, Nuria] Univ Barcelona, Dept Quim Inorgan, E-08028 Barcelona, Spain.
[Font-Bardia, Merce; Calvet, Teresa] Univ Barcelona, Dept Mineral & Crystalog, E-08028 Barcelona, Spain.
[Roubeau, Olivier] Univ Zaragoza, CSIC, Inst Ciencia Mat Aragon, E-50009 Zaragoza, Spain.
[Teat, Simon J.] Univ Calif Berkeley, Lawrence Berkeley Lab, Adv Light Source, Berkeley, CA 94720 USA.
RP Escuer, A (reprint author), Univ Barcelona IN2UB, Dept Quim, Marti I Franques 1-11, Barcelona 08028, Spain.
EM albert.escuer@ub.edu
RI Aliaga-Alcalde, Nuria/H-5886-2011; Escuer, Albert/L-4706-2014; Calvet,
Teresa/M-3836-2014; Roubeau, Olivier/A-6839-2010
OI Aliaga-Alcalde, Nuria/0000-0003-1080-3862; Escuer,
Albert/0000-0002-6274-6866; Calvet, Teresa/0000-0002-4058-7171; Roubeau,
Olivier/0000-0003-2095-5843
FU CICYT [CTQ2009-07264]; U.S. Department of Energy [DE-AC02-05CH11231]
FX This work was supported by the CICYT Projects CTQ2009-07264. We
acknowledge provision of time at the Advanced Light Source, which Is by
the Director, Office of Science, Office of Basic Energy Sciences of the
U.S. Department of Energy under Contract DE-AC02-05CH11231.
NR 48
TC 17
Z9 17
U1 0
U2 13
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 0020-1669
J9 INORG CHEM
JI Inorg. Chem.
PD MAR 1
PY 2010
VL 49
IS 5
BP 2259
EP 2266
DI 10.1021/ic9020965
PG 8
WC Chemistry, Inorganic & Nuclear
SC Chemistry
GA 556XI
UT WOS:000274626200031
PM 20102165
ER
PT J
AU Bugaris, DE
Copping, R
Tyliszczak, T
Shuh, DK
Ibers, JA
AF Bugaris, Daniel E.
Copping, Roy
Tyliszczak, Tolek
Shuh, David K.
Ibers, James A.
TI La2U2Se9: An Ordered Lanthanide/Actinide Chalcogenide with a Novel
Structure Type
SO INORGANIC CHEMISTRY
LA English
DT Article
ID TEMPERATURE SPECIFIC-HEAT; TERNARY URANIUM CHALCOGENIDES; INFINITE
ANIONIC CHAINS; X-RAY MICROSCOPY; CRYSTAL-STRUCTURE;
MAGNETIC-PROPERTIES; OPTICAL-PROPERTIES; MIXED URANIUM; SULFIDE; SE
AB The compound La2U2Se9 was obtained in high yield from the stoichiometric reaction of the elements in an Sb2Se3 flux at 1123 K. The compound, which crystallizes in a new structure type in space group Pmma of the orthorhombic system, has a three-dimensional structure with alternating U/Se and La/Se layers attached via three independent, infinite polyselenide chains. The U atom has a monocapped square antiprismatic coordination of Se atoms, whereas one La atom is bicapped square prismatic and the other La atom is trigonal prismatic. La2U2Se9 displays an antiferromagnetic transition at T-N = 5 K; above 50 K, the paramagnetic behavior can be fit to the Curie-Weiss law, yielding a mu(eff) of 3.10(1) mu(B)/U. The low-temperature specific heat of La2U2Se9 exhibits no anomalous behavior near the Neel temperature that might indicate long-range magnetic ordering or a phase transition. X-ray absorption near-edge structure (XANES) spectra have confirmed the assignment of formal oxidation states of +III for lanthanum and +IV for uranium in La2U2Se9.
C1 [Bugaris, Daniel E.; Ibers, James A.] Northwestern Univ, Dept Chem, Evanston, IL 60208 USA.
[Copping, Roy; Shuh, David K.] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Chem Sci, Berkeley, CA 94720 USA.
[Tyliszczak, Tolek] Univ Calif Berkeley, Lawrence Berkeley Lab, Adv Light Source, Berkeley, CA 94720 USA.
RP Ibers, JA (reprint author), Northwestern Univ, Dept Chem, 2145 Sheridan Rd, Evanston, IL 60208 USA.
EM ibers@chem.northwestern.edu
FU U.S. Department of Energy [ER-15522, DE-AC02-05CH 11231]; National
Science Foundation [DMR05-20513]; Laboratory Directed Research and
Development Program
FX This research (D.E.B., J.A.I.) was supported by the U.S. Department of
Energy, Basic Energy Sciences, Chemical Sciences, Biosciences, and
Geosciences Division and Division of Materials Sciences and Engineering
Grant ER-15522. Magnetism and specific heat were measured at the
Northwestern University Materials Research Science and Engineering
Center, Magnet and Low Temperature Facility, supported by the National
Science Foundation (DMR05-20513). Parts of this work (T.T., D.K.S.) and
thle ALS were supported by the Director, Office of Science, Office of
Basic Energy Sciences and by the Division of Chemical Sciences,
Geosciences, and Biosciences of the U.S. Department of Energy at LBNL
under Contract No. DE-AC02-05CH 11231. R.C. was supported by the
Laboratory Directed Research and Development Program at LBNL.
NR 79
TC 18
Z9 18
U1 0
U2 20
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 0020-1669
J9 INORG CHEM
JI Inorg. Chem.
PD MAR 1
PY 2010
VL 49
IS 5
BP 2568
EP 2575
DI 10.1021/ic902503n
PG 8
WC Chemistry, Inorganic & Nuclear
SC Chemistry
GA 556XI
UT WOS:000274626200066
PM 20136071
ER
PT J
AU Einstein, DR
Del Pin, F
Jiao, XM
Kuprat, AP
Carson, JP
Kunzelman, KS
Cochran, RP
Guccione, JM
Ratcliffe, MB
AF Einstein, Daniel R.
Del Pin, Facundo
Jiao, Xiangmin
Kuprat, Andrew P.
Carson, James P.
Kunzelman, Karyn S.
Cochran, Richard P.
Guccione, Julius M.
Ratcliffe, Mark B.
TI Fluid-structure interactions of the mitral valve and left heart:
Comprehensive strategies, past, present and future
SO INTERNATIONAL JOURNAL FOR NUMERICAL METHODS IN BIOMEDICAL ENGINEERING
LA English
DT Article
DE biofluid-structure interactions; ischemic mitral regurgitation;
imaging-based finite element models
ID FINITE-ELEMENT-METHOD; LEFT-VENTRICULAR WALL; IN-VITRO QUANTIFICATION;
AORTIC-VALVE; PAPILLARY-MUSCLE; SHEAR-STRESS; ENDOTHELIAL-CELLS;
COMPUTATIONAL ANALYSIS; MYOCARDIAL-INFARCTION; INCOMPRESSIBLE FLOWS
AB The remodeling that occurs after a posterolateral myocardial infarction can alter mitral valve function by creating conformational abnormalities in the mitral annulus and in the posteromedial papillary muscle, leading to mitral regurgitation (MR). It is generally assumed that this remodeling is caused by a volume load and is mediated by an increase in diastolic wall stress. Thus, MR can be both the cause and effect of an abnormal cardiac stress environment. Computational modeling of ischemic MR and its surgical correction is attractive because it enables an examination of whether a given intervention addresses the correction of regurgitation (fluid-flow) at the cost of abnormal tissue stress. This is significant because the negative effects of an increased wall stress due to the intervention will only be evident over time. However, a meaningful fluid structure interaction (FSI) model of the left heart is not trivial; it requires a careful characterization of the in vivo cardiac geometry, the tissue parameterization through inverse analysis, a robust coupled solver that handles collapsing Lagrangian interfaces, the automatic grid-generation algorithms that are capable of accurately discretizing the cardiac geometry, the innovations in image analysis, the competent and efficient constitutive models and an understanding of the spatial organization of tissue microstructure. In this paper, we profile our work toward a comprehensive FSI model of the left heart by reviewing our early work, presenting our current work and laying out our future work in four broad categories: data collection, geometry, FSI and validation. Copyright (C) 2009 John Wiley & Sons, Ltd.
C1 [Einstein, Daniel R.; Kuprat, Andrew P.; Carson, James P.] Pacific NW Natl Lab, Richland, WA 99352 USA.
[Del Pin, Facundo] Livermore Software Technol Corp, Livermore, CA USA.
[Jiao, Xiangmin] SUNY Stony Brook, Dept Appl Math & Stat, Stony Brook, NY 11794 USA.
[Kunzelman, Karyn S.] Univ Maine, Dept Mech Engn, Orono, ME 04469 USA.
[Cochran, Richard P.] Cent Maine Heart & Vasc Inst, Lewiston, ME USA.
[Guccione, Julius M.; Ratcliffe, Mark B.] San Francisco VA Med Ctr, Dept Surg, San Francisco, CA USA.
RP Einstein, DR (reprint author), Pacific NW Natl Lab, Richland, WA 99352 USA.
EM daniel.einstein@pnl.gov
OI Kuprat, Andrew/0000-0003-4159-918X; Jiao, Xiangmin/0000-0002-7111-9813
FU National Heart and Blood Institute [5R01HL077921-03, 1R01HL084431-01A1,
1RO1-HL073598-01A]
FX Contract/grant sponsor: National Heart and Blood Institute;
contract/grant numbers: 5R01HL077921-03, 1R01HL084431-01A1,
1RO1-HL073598-01A
NR 120
TC 34
Z9 35
U1 2
U2 15
PU JOHN WILEY & SONS LTD
PI CHICHESTER
PA THE ATRIUM, SOUTHERN GATE, CHICHESTER PO19 8SQ, W SUSSEX, ENGLAND
SN 2040-7939
J9 INT J NUMER METH BIO
JI Int. J. Numer. Meth. Biomed.
PD MAR-APR
PY 2010
VL 26
IS 3-4
SI SI
BP 348
EP 380
DI 10.1002/cnm.1280
PG 33
WC Engineering, Biomedical; Mathematical & Computational Biology;
Mathematics, Interdisciplinary Applications
SC Engineering; Mathematical & Computational Biology; Mathematics
GA 586HR
UT WOS:000276897700007
PM 20454531
ER
PT J
AU Jantzen, CM
Brown, KG
Pickett, JB
AF Jantzen, Carol M.
Brown, Kevin G.
Pickett, John B.
TI Durable Glass for Thousands of Years
SO INTERNATIONAL JOURNAL OF APPLIED GLASS SCIENCE
LA English
DT Article
ID NUCLEAR-WASTE GLASS; SPINEL-NEPHELINE LIQUIDUS; AQUEOUS-SOLUTIONS;
DISSOLUTION KINETICS; CHEMICAL DURABILITY; ALUMINOSILICATE DISSOLUTION;
RADIOACTIVE-WASTE; ROCK INTERACTIONS; VITREOUS SILICA; SURFACE-LAYERS
AB The durability of natural glasses on geological time scales and ancient glasses for thousands of years is well documented. The necessity to predict the durability of high-level nuclear waste (HLW) glasses on extended time scales has led to various thermodynamic and kinetic approaches. Advances in the measurement of medium-range order in glasses has led to the understanding that the molecular structure of a glass, and thus the glass composition, controls the glass durability by establishing the distribution of ion exchange sites, hydrolysis sites, and the access of water to those sites. During the early stages of glass dissolution, a "gel" layer resembling a membrane forms through which ions exchange between the glass and the leachant. The hydrated gel layer exhibits acid/base properties, which are manifested as the pH dependence of the thickness and nature of the gel layer. The gel layer ages into clay or zeolite minerals by Ostwald ripening. Zeolite mineral assemblages (higher pH and Al3+ rich glasses) may cause the dissolution rate to increase, which is undesirable for long-term performance of glass in the environment. Thermodynamic and structural approaches to the prediction of glass durability are compared versus Ostwald ripening.
C1 [Jantzen, Carol M.; Brown, Kevin G.; Pickett, John B.] Savannah River Nucl Solut, Savannah River Natl Lab, Aiken, SC 29808 USA.
RP Jantzen, CM (reprint author), Savannah River Nucl Solut, Savannah River Natl Lab, Aiken, SC 29808 USA.
EM carol.jantzen@srnl.doe.gov; pickettjohn@bellsouth.net
FU Department of Energy [EM-50]; Savannah River DWPF; Tank Focus Area
(TFA); U.S. Department of Energy [DE-AC09-96SR18500]; Savannah River
Technology Center (SRTC) [DE-AC09-96SR18500]; Savannah River National
Laboratory [DE-AC09-08SR22470]
FX This research was sponsored by the Department of Energy (EM-50), and the
Savannah River DWPF, and the Tank Focus Area (TFA), in connection with
work carries out under Contract No. DE-AC09-96SR18500 with the U.S.
Department of Energy. Funding for the external publication was provided
by the 2002 Savannah River Technology Center (SRTC) sabbatical program
under contract no. DE-AC09-96SR18500 and the Savannah River National
Laboratory under contract no. DE-AC09-08SR22470. The authors would also
like to acknowledge the helpful suggestions of Dr. Wayne Burnham of the
University of Arizona and discussions with Dr. Gordon E. Brown of the
Stanford University about quasicrystalline melt theory and modeling.
NR 154
TC 51
Z9 51
U1 3
U2 31
PU WILEY PERIODICALS, INC
PI SAN FRANCISCO
PA ONE MONTGOMERY ST, SUITE 1200, SAN FRANCISCO, CA 94104 USA
SN 2041-1286
J9 INT J APPL GLASS SCI
JI Int. J. Appl. Glass Sci.
PD MAR
PY 2010
VL 1
IS 1
SI SI
BP 38
EP 62
DI 10.1111/j.2041-1294.2010.00007.x
PG 25
WC Materials Science, Ceramics
SC Materials Science
GA V26BH
UT WOS:000208520600006
ER
PT J
AU Salem, J
Tandon, R
AF Salem, J.
Tandon, R.
TI Test method variability in slow crack growth properties of sealing
glasses
SO INTERNATIONAL JOURNAL OF FATIGUE
LA English
DT Article
DE Glass; Ceramics; Crack growth; Fracture toughness; Connectors
AB The crack growth properties of several sealing glasses were measured by using constant stress rate testing in similar to 2% and 95% RH (relative humidity). Crack growth parameters measured in high humidity are systematically smaller (n and B) than those measured in low humidity, and crack velocities for dry environments are similar to 100x lower than for wet environments. The crack velocity is very sensitivity to small changes in RH at low RH. Biaxial and uniaxial stress states produced similar parameters. Confidence intervals on crack growth parameters that were estimated from propagation of errors solutions were comparable to those from Monte Carlo simulation. Use of scratch-like and indentation flaws produced similar crack growth parameters when residual stresses were considered. Published by Elsevier Ltd.
C1 [Salem, J.] NASA Glenn Res Ctr, Cleveland, OH USA.
[Tandon, R.] Sandia Natl Labs, Albuquerque, NM 87185 USA.
RP Salem, J (reprint author), NASA Glenn Res Ctr, Cleveland, OH USA.
EM jonathan.a.salem@nasa.gov
NR 10
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U1 0
U2 3
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 0142-1123
J9 INT J FATIGUE
JI Int. J. Fatigue
PD MAR
PY 2010
VL 32
IS 3
BP 557
EP 564
DI 10.1016/j.ijfatigue.2009.07.018
PG 8
WC Engineering, Mechanical; Materials Science, Multidisciplinary
SC Engineering; Materials Science
GA 606YS
UT WOS:000278465700011
ER
PT J
AU Chen, W
Boehlert, CJ
Payzant, EA
Howe, JY
AF Chen, W.
Boehlert, C. J.
Payzant, E. A.
Howe, J. Y.
TI The effect of processing on the 455 degrees C tensile and fatigue
behavior of boron-modified Ti-6Al-4V
SO INTERNATIONAL JOURNAL OF FATIGUE
LA English
DT Article
DE Fatigue; Microstructure; Titanium; Boron; Tension
ID TRANSFORMATION SUPERPLASTICITY; MECHANICAL-PROPERTIES; MATRIX
COMPOSITES; TI COMPOSITES; MICROSTRUCTURE; TEXTURE; ALLOY; DEFORMATION;
EVOLUTION; WORKING
AB This work investigated the effect of nominal boron (B) additions of 0.1 wt.% and 1.0 wt.% on the elevated-temperature (455 degrees C) fatigue deformation behavior of Ti-6Al-4V (wt.%) for maximum applied stresses between 250 and 550 MPa (R = 0.1, 5 Hz). The alloys were evaluated in the as-cast condition as well as the cast-and-extruded condition. Boron additions resulted in a dramatic refinement of the as-cast grain size, and larger boron additions resulted in larger titanium-boride (TiB) phase volume percents. For the as-cast alloys, the B-containing alloys exhibited longer average fatigue lives than those for Ti-6Al-4V, which was suggested to be related to their increased strength and stiffness due to the addition of the strong and stiff TiB phase. The longest average fatigue lives were exhibited by the Ti-6Al-4V-0.1B alloy, which also exhibited the greatest elongation-to-failure value. The extrusions, which were performed in the beta-phase field, resulted in a significantly smaller grain size, a smaller alpha-colony size, and finer alpha-lath width compared to that for the as-cast B-modified alloys. The TiB whiskers were aligned in the extrusion direction and the alpha-phase was also strongly textured such that the basal plane was predominately oriented perpendicular to the extrusion axis. Together these microstructural features were responsible for the significantly higher 455 degrees C yield strength, ultimate tensile strength, and fatigue strength exhibited by the cast-and-extruded alloys compared with the as-cast alloys. In the extruded condition, B-addition did not improve the tensile or fatigue strength. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Chen, W.; Boehlert, C. J.] Michigan State Univ, Dept Chem Engn & Mat Sci, E Lansing, MI 48824 USA.
[Payzant, E. A.; Howe, J. Y.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
RP Chen, W (reprint author), Michigan State Univ, Dept Chem Engn & Mat Sci, 2527 Engn Bldg, E Lansing, MI 48824 USA.
EM chenwe11@egr.msu.edu
RI Payzant, Edward/B-5449-2009; Chen, Wei/C-1110-2011
OI Payzant, Edward/0000-0002-3447-2060;
FU Division of Scientific User Facilities, Office of Basic Energy Sciences,
Office of Science, US Department of Energy
FX The authors are grateful to Dr. S. Tamirisakandala (FMW Composites,
Inc.) and Dr. D.B. Miracle (Air Force Research Laboratory) for donating
the material used in this study as well as their helpful technical
support and guidance. The authors are also grateful to Dr. Stuart Wright
of EDAX-TSL, Inc. for technical assistance with the EBSD acquisition and
analysis. Some of this research work was performed at the ORNL SHaRE
User Facility which is supported by the Division of Scientific User
Facilities, Office of Basic Energy Sciences, Office of Science, US
Department of Energy. In particular Mr. Larry Walker and Ms. Kathy
Thomas are acknowledged for their technical assistance with the
microprobe data collection and TEM sample preparation, respectively, and
Dr. Edward Kenik is acknowledged for both technical assistance with the
SEM and helpful suggestions with respect to revising the manuscript. The
authors are also grateful to Mr. Jerome Lebouef, Mr. Derek Miller, and
Mr. Bryan Kuhr of Michigan State University for their technical
assistance.
NR 36
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PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 0142-1123
J9 INT J FATIGUE
JI Int. J. Fatigue
PD MAR
PY 2010
VL 32
IS 3
BP 627
EP 638
DI 10.1016/j.ijfatigue.2009.04.013
PG 12
WC Engineering, Mechanical; Materials Science, Multidisciplinary
SC Engineering; Materials Science
GA 606YS
UT WOS:000278465700020
ER
PT J
AU Vogler, T
Ravi-Chandar, K
AF Vogler, Tracy
Ravi-Chandar, Krishnaswamy
TI Special Issue: IUTAM Symposium on Dynamic Fracture and Fragmentation
(PART I/II) Preface
SO INTERNATIONAL JOURNAL OF FRACTURE
LA English
DT Editorial Material
C1 [Ravi-Chandar, Krishnaswamy] Univ Texas Austin, Dept Aerosp Engn & Engn Mech, Austin, TX 78712 USA.
[Vogler, Tracy] Sandia Natl Labs, Livermore, CA USA.
RP Ravi-Chandar, K (reprint author), Univ Texas Austin, Dept Aerosp Engn & Engn Mech, Austin, TX 78712 USA.
EM tjvogle@sandia.gov; kravi@mail.utexas.edu
RI Ravi-Chandar, Krishnaswamy/D-9246-2011
NR 0
TC 0
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U1 0
U2 2
PU SPRINGER
PI DORDRECHT
PA VAN GODEWIJCKSTRAAT 30, 3311 GZ DORDRECHT, NETHERLANDS
SN 0376-9429
J9 INT J FRACTURE
JI Int. J. Fract.
PD MAR
PY 2010
VL 162
IS 1-2
SI SI
BP 1
EP 1
DI 10.1007/s10704-010-9509-2
PG 1
WC Materials Science, Multidisciplinary; Mechanics
SC Materials Science; Mechanics
GA 612JG
UT WOS:000278893300001
ER
PT J
AU Silling, S
Weckner, O
Askari, E
Bobaru, F
AF Silling, S. A.
Weckner, O.
Askari, E.
Bobaru, F.
TI Crack nucleation in a peridynamic solid
SO INTERNATIONAL JOURNAL OF FRACTURE
LA English
DT Article; Proceedings Paper
CT IUTAM Symposium on Dynamic Fracture and Fragmentation
CY MAR 08-12, 2009
CL Univ Texas, Austin, TX
SP IUTAM
HO Univ Texas
DE Crack nucleation; Material stability; Peridynamic; Elasticity
ID LONG-RANGE FORCES; STRAIN LOCALIZATION; ELASTOSTATICS; DEFORMATION;
PROPAGATION; ELLIPTICITY; CONTINUUM; MECHANICS; BAR
AB A condition for the emergence of a discontinuity in an elastic peridynamic body is proposed, resulting in a material stability condition for crack nucleation. The condition is derived by determining whether a small discontinuity in displacement, superposed on a possibly large deformation, grows over time. Stability is shown to be determined by the sign of the eigenvalues of a tensor field that depends only on the linearized material properties. This condition for nucleation of a discontinuity in displacement can be interpreted in terms of the dynamic stability of plane waves with very short wavelength. A numerical example illustrates that cracks in a peridynamic body form spontaneously as the body is loaded.
C1 [Silling, S. A.] Sandia Natl Labs, Albuquerque, NM 87185 USA.
[Weckner, O.; Askari, E.] Boeing Co, Seattle, WA 98124 USA.
[Bobaru, F.] Univ Nebraska, Lincoln, NE USA.
RP Silling, S (reprint author), Sandia Natl Labs, POB 5800, Albuquerque, NM 87185 USA.
EM sasilli@sandia.gov
RI Bobaru, Florin/J-2167-2012
OI Bobaru, Florin/0000-0002-9954-6489
NR 27
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U1 3
U2 23
PU SPRINGER
PI DORDRECHT
PA VAN GODEWIJCKSTRAAT 30, 3311 GZ DORDRECHT, NETHERLANDS
SN 0376-9429
J9 INT J FRACTURE
JI Int. J. Fract.
PD MAR
PY 2010
VL 162
IS 1-2
SI SI
BP 219
EP 227
DI 10.1007/s10704-010-9447-z
PG 9
WC Materials Science, Multidisciplinary; Mechanics
SC Materials Science; Mechanics
GA 612JG
UT WOS:000278893300017
ER
PT J
AU Dooley, JJ
Benson, S
Karimjee, A
Rubin, ES
AF Dooley, James J.
Benson, Sally
Karimjee, Anhar
Rubin, Edward S.
TI Special Issue: The Ninth International Conference on Greenhouse Gas
Control Technologies
SO INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL
LA English
DT Editorial Material
C1 [Benson, Sally] Stanford Univ, Global Climate & Energy Project, Stanford, CA 94305 USA.
[Rubin, Edward S.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
RP Dooley, JJ (reprint author), Pacific NW Natl Lab, 5825 Univ Res Court,Suite 3500, College Pk, MD 20740 USA.
EM jj.dooley@pnl.gov
RI Rubin, Edward/D-7629-2013;
OI Dooley, James/0000-0002-2824-4344
NR 0
TC 0
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U1 0
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PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1750-5836
J9 INT J GREENH GAS CON
JI Int. J. Greenh. Gas Control
PD MAR
PY 2010
VL 4
IS 2
SI SI
BP 111
EP 111
DI 10.1016/j.ijggc.2009.12.002
PG 1
WC GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY; Energy & Fuels; Engineering,
Environmental
SC Science & Technology - Other Topics; Energy & Fuels; Engineering
GA 570WB
UT WOS:000275707900001
ER
PT J
AU Klara, JM
Plunkett, JE
AF Klara, Julianne M.
Plunkett, John E.
TI The potential of advanced technologies to reduce carbon capture costs in
future IGCC power plants
SO INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL
LA English
DT Article; Proceedings Paper
CT 9th International Conference on Greenhouse Gas Control Technologies
CY NOV 16-20, 2008
CL Washington, DC
DE Carbon capture; Sequestration; Integrated gasification combined cycle
(IGCC); Carbon dioxide (CO(2)); Carbon capture and sequestration (CCS);
Advanced technologies
AB Over the next two decades, our nation will need to add a substantial amount of new power generation capacity. The possibility of more stringent environmental regulations for greenhouse gas emissions in the utility sector has provided a window of opportunity for integrated gasification combined cycles (IGCCs) equipped with carbon capture and sequestration (CCS) to participate significantly in this expansion. This paper analyzes several advanced technologies under development in the Department of Energy (DOE) research and development (R&D) portfolio that have the potential to improve process efficiency. reduce capital and operating expense, and increase plant availability resulting in a significant reduction in the cost of electricity for plants that capture carbon. Published by Elsevier Ltd
C1 [Klara, Julianne M.] US DOE, Natl Energy Technol Lab, Pittsburgh, PA 15236 USA.
[Plunkett, John E.] Noblis, Falls Church, VA 22042 USA.
RP Klara, JM (reprint author), US DOE, Natl Energy Technol Lab, 626 Cochrans Mill Rd, Pittsburgh, PA 15236 USA.
RI daorui, han/G-3767-2011
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PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1750-5836
J9 INT J GREENH GAS CON
JI Int. J. Greenh. Gas Control
PD MAR
PY 2010
VL 4
IS 2
SI SI
BP 112
EP 118
DI 10.1016/j.ijggc.2009.10.006
PG 7
WC GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY; Energy & Fuels; Engineering,
Environmental
SC Science & Technology - Other Topics; Energy & Fuels; Engineering
GA 570WB
UT WOS:000275707900002
ER
PT J
AU Crow, W
Carey, JW
Gasda, S
Williams, DB
Celia, M
AF Crow, Walter
Carey, J. William
Gasda, Sarah
Williams, D. Brian
Celia, Michael
TI Wellbore integrity analysis of a natural CO2 producer
SO INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL
LA English
DT Article; Proceedings Paper
CT 9th International Conference on Greenhouse Gas Control Technologies
CY NOV 16-20, 2008
CL Washington, DC
DE CO2 storage; Well integrity; Cement barrier; Cement capillary pressure;
Effective permeability; Vertical interference test; Cement mineralogy
ID LEAKY WELLS; PRESSURE; CEMENT; MODEL
AB Long-term integrity Of existing wells in a CO2-rich environment is essential for ensuring that geological sequestration Of CO2 will be an effective technology for mitigating greenhouse gas-induced climate change The potential for wellbore leakage depends in part on the quality of the original construction as well as geochemical and geomechanical stresses that occur over its life-cycle Field data are essential for assessing the integrated effect of these factors and their impact on wellbore integrity, defined as the maintenance of isolation between subsurface intervals. In this report, we investigate a 30-year-old well from a natural CO2 production reservoir using a suite of downhole and laboratory tests to characterize isolation performance
These tests included mineralogical and hydrological characterization of 10 core samples of casing/cement/formation, wireline surveys to evaluate well conditions, fluid samples and an in situ permeability test We find evidence for CO2 migration in the occurrence of carbonated cement and calculate that the effective permeability of an 11'-region of the wellbore barrier system was between 0 5 and 1 milliDarcy Despite these observations, we find that the amount of fluid migration along the wellbore was probably small because of several factors the amount of carbonation decreased with distance from the reservoir, cement permeability was low (0 3-30 microDarcy), the cement-casing and cement-formation interfaces were tight, the casing was not corroded, fluid samples lacked CO2, and the pressure gradient between reservoir and caprock was maintained We conclude that the barrier system has ultimately performed well over the last 3 decades. These results will be used as part of a broader effort to develop a long-term predictive Simulation tool to assess wellbore integrity performance In CO2 storage sites (C) 2009 Elsevier Ltd All rights reserved
C1 [Crow, Walter; Williams, D. Brian] BP Alternat Energy, Storage CO2, Houston, TX 77079 USA.
[Carey, J. William] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
[Gasda, Sarah] Univ N Carolina, Chapel Hill, NC USA.
[Celia, Michael] Princeton Univ, Princeton, NJ 08544 USA.
RP Crow, W (reprint author), BP Alternat Energy, Storage CO2, 501 Westlake Pk Blvd, Houston, TX 77079 USA.
RI Carey, James/B-4421-2011
NR 23
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PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1750-5836
J9 INT J GREENH GAS CON
JI Int. J. Greenh. Gas Control
PD MAR
PY 2010
VL 4
IS 2
SI SI
BP 186
EP 197
DI 10.1016/j.ijggc.2009.10.010
PG 12
WC GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY; Energy & Fuels; Engineering,
Environmental
SC Science & Technology - Other Topics; Energy & Fuels; Engineering
GA 570WB
UT WOS:000275707900013
ER
PT J
AU Rutqvist, J
Vasco, DW
Myer, L
AF Rutqvist, Jonny
Vasco, Donald W.
Myer, Larry
TI Coupled reservoir-geomechanical analysis of CO2 injection and ground
deformations at In Salah, Algeria
SO INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL
LA English
DT Article; Proceedings Paper
CT 9th International Conference on Greenhouse Gas Control Technologies
CY NOV 16-20, 2008
CL Washington, DC
DE Geological CO2 sequestration; In Salah; Geomechanics; Ground surface
deformations; Modeling; InSAR
ID FLUID-FLOW
AB In Salah Gas Project in Algeria has been injecting 0 5-1 million tonnes CO2 per year over the past 5 years into a water-filled strata at a depth of about 1800-1900 m. Unlike Most CO2 storage sites, the permeability of the storage formation is relatively low and comparatively thin with a thickness of about 20 in To ensure adequate CO2 flow-rates across the low-permeability sand-face, the In Salah Gas Project decided to use long-reach (about 1-1 5 kill) horizontal injection wells In an ongoing research project we use field data and Coupled reservoir-geomechanical numerical modeling to assess the effectiveness of this approach and to investigate monitoring techniques to evaluate the performance Of a CO2 injection operation in relatively low-permeability formations. Among the field data used are ground surface deformations evaluated from recently acquired satellite-based inferrometry (InSAR) The InSAR data shows a surface uplift Oil the order of 5 mm per year above active CO2 injection wells and the uplift pattern extends several kill from the injection wells In this paper We use the observed Surface uplift to constrain our coupled reservoir-geomechanical model and conduct sensitivity studies to investigate potential causes and mechanisms of the observed uplift The results of our analysis indicate that most of the observed uplift magnitude call be explained by pressure-induced, poro-elastic expansion of the 20-m-thick injection zone, but there could also be a significant contribution from pressure-induced deformations within a 100-m-thick zone of shaly sands immediately above the injection zone Published by Elsevier Ltd
C1 [Rutqvist, Jonny; Vasco, Donald W.; Myer, Larry] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Earth Sci, Berkeley, CA 94720 USA.
RP Rutqvist, J (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, Div Earth Sci, 1 Cyclotron Rd,MS 90-1116, Berkeley, CA 94720 USA.
RI Rutqvist, Jonny/F-4957-2015; Vasco, Donald/I-3167-2016; Vasco,
Donald/G-3696-2015
OI Rutqvist, Jonny/0000-0002-7949-9785; Vasco, Donald/0000-0003-1210-8628;
Vasco, Donald/0000-0003-1210-8628
NR 19
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PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1750-5836
J9 INT J GREENH GAS CON
JI Int. J. Greenh. Gas Control
PD MAR
PY 2010
VL 4
IS 2
SI SI
BP 225
EP 230
DI 10.1016/j.ijggc.2009.10.017
PG 6
WC GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY; Energy & Fuels; Engineering,
Environmental
SC Science & Technology - Other Topics; Energy & Fuels; Engineering
GA 570WB
UT WOS:000275707900017
ER
PT J
AU Schaef, HT
McGrail, BP
Owen, AT
AF Schaef, H. T.
McGrail, B. P.
Owen, A. T.
TI Carbonate mineralization of volcanic province basalts
SO INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL
LA English
DT Article; Proceedings Paper
CT 9th International Conference on Greenhouse Gas Control Technologies
CY NOV 16-20, 2008
CL Washington, DC
DE Geologic sequestration; Mineralization; Carbonate precipitation
ID DISSOLUTION RATES; GEOLOGICAL SEQUESTRATION; GLASS DISSOLUTION; CO2
SEQUESTRATION; DIOXIDE; PH; WATER; GAS; CONSEQUENCES; 25-DEGREES-C
AB Flood basalts are receiving increasing attention as possible host formations for geologic sequestration of anthropogenic CO2, with studies underway in the United States, India, Iceland. and Canada Basalts from the United States, India, and South Africa were reacted with aqueous dissolved CO2 and aqueous dissolved CO2-H2S Mixtures under supercritical CO2 (scCO(2)) conditions to study the geochemical reactions resulting from injection Of CO2 in such formations Despite the basalt samples having similar bulk chemical composition, mineralogy and dissolution kinetics, long-term static experiments show significant differences in rates of mineralization as well as compositions and morphologies of precipitates that form when the basalts are reacted with CO2 and CO2-H2S mixtures in water For example, basalt from the Newark Basin in the United States was by far the most reactive of any basalt tested to date Reacted grains from the Newark Basin basalt appeared severely weathered and contained extensive carbonate precipitates with significant Fe content In comparison, the post-reacted samples associated with the Columbia River basalts from the United States contained calcite grains with classic "dogtooth spar" morphology and trace cation Substitution (Mg and Mn) Carbonation of the other basalts produced precipitates with compositions that varied chemically throughout the entire testing period The Karoo basalt from South Africa appeared the least reactive, with very limited mineralization occurring during the testing With CO2-saturated water Compositional differences in the precipitates suggest changes in fluid chemistry unique to the dissolution behavior of each basalt sample reacted with CO2-saturated water. No convincing correlations were identified between basalt reactivity and differences in bulk composition, mineralogy, glassy mesostasis quantity or composition Moreover, the relative reactivity of different basalt samples was unexpectedly different in the experiments conducted with aqueous dissolved CO2-H2S mixtures versus those with CO2 only For example, the Karoo basalt was highly reactive in the presence of aqueous dissolved CO2-H2S. as evident by nodules of carbonate coating the basalt grains after 181 days of resting. However, the most reactive basalt in CO2-H2O, Newark Basin, formed only iron sulfide coatings in tests with a CO2-H2S mixture, which inhibited carbonate mineralization (C) 2009 Elsevier Ltd. All rights reserved
C1 [Schaef, H. T.; McGrail, B. P.; Owen, A. T.] Pacific NW Natl Lab, Appl Geol & Geochem Dept, Richland, WA 99352 USA.
RP Schaef, HT (reprint author), Pacific NW Natl Lab, Appl Geol & Geochem Dept, POB 999,902 Battelle Blvd, Richland, WA 99352 USA.
NR 46
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PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1750-5836
EI 1878-0148
J9 INT J GREENH GAS CON
JI Int. J. Greenh. Gas Control
PD MAR
PY 2010
VL 4
IS 2
SI SI
BP 249
EP 261
DI 10.1016/j.ijggc.2009.10.009
PG 13
WC GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY; Energy & Fuels; Engineering,
Environmental
SC Science & Technology - Other Topics; Energy & Fuels; Engineering
GA 570WB
UT WOS:000275707900020
ER
PT J
AU Carey, JW
Svec, R
Grigg, R
Zhang, JS
Crow, W
AF Carey, J. William
Svec, Robert
Grigg, Reid
Zhang, Jinsuo
Crow, Walter
TI Experimental investigation of wellbore integrity and CO2-brine flow
along the casing-cement microannulus
SO INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL
LA English
DT Article; Proceedings Paper
CT 9th International Conference on Greenhouse Gas Control Technologies
CY NOV 16-20, 2008
CL Washington, DC
DE Carbon sequestration; Portland cement; Corrosion; Casing; Carbonation
ID GEOLOGIC SEQUESTRATION CONDITIONS; CARBON-DIOXIDE CORROSION; CO2; STEEL;
OIL; MODEL
AB Wellbore integrity is one of the key performance criteria in the geological storage of CO2. It is significant in any proposed storage site but may be critical to the suitability of depleted oil and gas reservoirs that may have 10's to 1 000's of abandoned wells Much previous work has focused on Portland cement which is the primary material used to seal wellbore systems This work has emphasized the potential dissolution of Portland cement. However, an increasing number of field studies (e g., Carey et al., 2007), experimental studies (e.g, Kutchko et al.. 2006) and theoretical considerations indicate that the most significant leakage mechanism is likely to be flow Of CO2 along the casing-cement microannulus, cement-cement fractures, or the cement-caprock interface. In this Study, we investigate the casing-cement microannulus through core-flood experiments The experiments were conducted on a synthetic wellbore system consisting of a 5-cm diameter sample of cement that was cured with an embedded rectangular length of steel casing that had grooves to accommodate fluid flow The experiments were conducted at 40 degrees C and 14 MPa pore pressure for 394 h. During the experiment, 6.2 1 of a 50 50 mixture of supercritical CO2 and 30,000 ppm NaCl-rich brine flowed through 10-cm of limestone before flowing through the 6-cm length cement-casing wellbore system Approximately 59,000 pore volumes of fluid moved through the casing-cement grooves Scanning electron microscopy revealed that the CO2-brine mixture impacted both the casing and the cement. The Portland cement was carbonated to depths of 50-250 mu m by a diffusion-dominated process. There was very little evidence for mass loss or erosion of the Portland cement. By contrast, the steel casing reacted to form abundant precipitates of mixed calcium and iron carbonate that lined the channels and in one case almost completely filled a channel The depth of steel corroded was estimated at 25- 30 mu m and was similar in value to results obtained with a simplified corrosion model The experimental results were applied to field observations of carbonated wellbore cement by Carey etal. (2007) and Crow etal. (2009) to show that carbonation of the field samples was not accompanied by significant CO2-brine flow at the casing-cement interface The sensitivity of standard-grade steel casing to corrosion suggests that relatively straight-forward wireline logging of external casing corrosion Could be used as a useful indicator of flow behind casing. These experiments also reinforce other studies that indicate rates of Portland cement deterioration are slow, even in the high-flux CO2-brine experiments reported here. (C) 2009 Elsevier Ltd. All rights reserved
C1 [Carey, J. William; Zhang, Jinsuo] Los Alamos Natl Lab, Div Earth & Environm Sci, Los Alamos, NM 87545 USA.
[Svec, Robert; Grigg, Reid] New Mexico Inst Min & Technol, Socorro, NM 87801 USA.
[Crow, Walter] BP Alternat Energy, Houston, TX 77002 USA.
RP Carey, JW (reprint author), Los Alamos Natl Lab, Div Earth & Environm Sci, MS D462,SM-30 Bikini Atoll Rd, Los Alamos, NM 87545 USA.
RI Carey, James/B-4421-2011; Zhang, Jinsuo/H-4717-2012
OI Zhang, Jinsuo/0000-0002-3412-7769
NR 19
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PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1750-5836
J9 INT J GREENH GAS CON
JI Int. J. Greenh. Gas Control
PD MAR
PY 2010
VL 4
IS 2
SI SI
BP 272
EP 282
DI 10.1016/j.ijggc.2009.09.018
PG 11
WC GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY; Energy & Fuels; Engineering,
Environmental
SC Science & Technology - Other Topics; Energy & Fuels; Engineering
GA 570WB
UT WOS:000275707900022
ER
PT J
AU Wise, M
Kyle, GP
Dooley, JJ
Kim, SH
AF Wise, Marshall
Kyle, G. Page
Dooley, James J.
Kim, Son H.
TI The impact of electric passenger transport technology under an
economy-wide climate policy in the United States: Carbon dioxide
emissions, coal use, and carbon dioxide capture and storage
SO INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL
LA English
DT Article; Proceedings Paper
CT 9th International Conference on Greenhouse Gas Control Technologies
CY NOV 16-20, 2008
CL Washington, DC
DE Plug-in hybrid electric vehicles; Climate change; Carbon dioxide capture
and storage
AB Plug-in hybrid electric vehicles (PHEVs) have the potential to be an economic means of reducing direct (or tailpipe) carbon dioxide (CO(2)) emissions from the transportation sector However, without a Climate policy that places a limit on CO(2) emissions from the electric generation sector, the net impact of widespread deployment of PFIEVs on overall US CO(2) emissions is not as clear. A comprehensive analysis must consider jointly the transportation and electricity sectors. along with feedbacks to the rest of the energy system. In this paper, we use the Pacific Northwest National Laboratory's MiniCAM model to perform an integrated economic analysis of the penetration of PFIEVs and the resulting impact oil total U.S. CO(2) emissions. In MiniCAM, the deployment of PHEVs(or any technology) is determined based on its relative economics compared to all other methods of providing fuels and energy carriers to serve passenger transportation demands Under the assumptions used in this analysis where PHEVs obtain 50-60% of the market for passenger automobiles and light-duty trucks, the ability to deploy PHEVs under the two climate policies modelled here results in over 400 million tons (MT) CO(2). per year of additional cost-effective emissions reductions from the U S economy by 2050 In addition to investments in nuclear and renewables, one of the key technology options for mitigating emissions in the electric sector is CO(2) capture and storage (CCS) The additional demand for geologic CO(2) storage created by the introduction of the PFIEVs is relatively modest approximately equal to the cumulative geologic CO(2) storage demanded by two to three large 1000 megawatt (MW) coal-fired power plants using CCS over a 50-year period The introduction of PHEVs into the U.S transportation sector. coupled with climate policies such as those examined here, could also reduce U.S demand for oil by 20-30% by 2050 compared to today's levels (C) 2009 Elsevier Ltd. All rights reserved
C1 [Wise, Marshall; Kyle, G. Page; Dooley, James J.; Kim, Son H.] Pacific NW Natl Lab, Joint Global Change Res Inst, College Pk, MD 20740 USA.
RP Wise, M (reprint author), Pacific NW Natl Lab, Joint Global Change Res Inst, 5825 Univ Res Court,Suite 3500, College Pk, MD 20740 USA.
OI Dooley, James/0000-0002-2824-4344
NR 14
TC 13
Z9 14
U1 3
U2 16
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1750-5836
J9 INT J GREENH GAS CON
JI Int. J. Greenh. Gas Control
PD MAR
PY 2010
VL 4
IS 2
SI SI
BP 301
EP 308
DI 10.1016/j.ijggc.2009.09.003
PG 8
WC GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY; Energy & Fuels; Engineering,
Environmental
SC Science & Technology - Other Topics; Energy & Fuels; Engineering
GA 570WB
UT WOS:000275707900025
ER
PT J
AU Dooley, JJ
Trabucchi, C
Patton, L
AF Dooley, James J.
Trabucchi, Chiara
Patton, Lindene
TI Design considerations for financing a national trust to advance the
deployment of geologic CO2 storage and motivate best practices
SO INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL
LA English
DT Article; Proceedings Paper
CT 9th International Conference on Greenhouse Gas Control Technologies
CY NOV 16-20, 2008
CL Washington, DC
DE Carbon dioxide capture and storage; Long-term CO2 storage integrity;
Liability risk management; Financial responsibility; Tipping fee; Trust
fund
AB This paper explores how the widely held public policy view of the evolution of the risk profile associated with geologic carbon dioxide (CO2) storage profoundly influences the public policy dialogue about how to best address the long-term risk profile for geologic storage. Evidence emerging from research and pilot scale field demonstrations Of CO2 storage demonstrates that, with proper site characterization and sound operating practices. retention of stored CO2 Will increase with time thus invalidating the premise of an ever growing risk The authors focus on key Issues of fit, interplay, and scalability associated with the ability of a trust fund funded by a hypothetical $1 per tonCO(2) tipping fee for each ton of CO2 stored in the United States under WRE450 and WRE550 climate policies to manage such risks in an economically efficient and environmentally effective manner. The authors conclude there is no intrinsic value - in terms of risk management or risk reduction - in creating a trust fund predicated solely on collecting a universally applied tipping fee that does not take into account site-specific risk profiles if left to grow unchecked. a trust fund that is predicated on a constant stream of payments unrelated to each contributing site's risk profile could result in the accumulation of hundreds of billions to more than a trillion dollars contributing to significant opportunity Cost of capital Further. rather than mitigating the financial consequences of long-term CCS risks. this analysis suggests a blanket $1 per tonCO(2) tipping fee, if combined with a concomitant limitation of liability may increase the probability and frequency of long-term risk by eliminating financial incentives for sound operating behavior and site selection criteria-contribute to moral hazard At a minimum, effective use of a trust fund requires (1) strong oversight regarding site selection and fund management, and (2) a clear process by which the fund is periodically Valued and funds collected are mapped to the risk profile of the pool of covered CCS sites. Without appropriate checks and balances. there is no a prion reason to believe that the amount of funds held in trust will map to the actual amount of funds needed to address long-term care expenses and delimited compensatory damages For this reason, the authors conclude that financing a trust fund or other risk management instrument should be based on a site delimited estimate of potential future expected financial consequences rather than oil the random adoption of a fixed funding stream, e g, a blanket $1 per ton. because it "sounds" reasonable (C) 2009 Elsevier Ltd All rights reserved
C1 [Dooley, James J.] Pacific NW Natl Lab, Joint Global Change Res Inst, College Pk, MD 20740 USA.
[Trabucchi, Chiara] Ind Econ Inc, Cambridge, MA 02140 USA.
[Patton, Lindene] Zurich Financial Serv, CH-8022 Zurich, Switzerland.
RP Dooley, JJ (reprint author), Pacific NW Natl Lab, Joint Global Change Res Inst, 5825 Univ Res Court, College Pk, MD 20740 USA.
OI Dooley, James/0000-0002-2824-4344
NR 24
TC 7
Z9 7
U1 0
U2 4
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1750-5836
J9 INT J GREENH GAS CON
JI Int. J. Greenh. Gas Control
PD MAR
PY 2010
VL 4
IS 2
SI SI
BP 381
EP 387
DI 10.1016/j.ijggc.2009.09.009
PG 7
WC GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY; Energy & Fuels; Engineering,
Environmental
SC Science & Technology - Other Topics; Energy & Fuels; Engineering
GA 570WB
UT WOS:000275707900033
ER
PT J
AU Malone, EL
Dooley, JJ
Bradbury, JA
AF Malone, Elizabeth L.
Dooley, James J.
Bradbury, Judith A.
TI Moving from misinformation derived from public attitude surveys on
carbon dioxide capture and storage towards realistic stakeholder
involvement
SO INTERNATIONAL JOURNAL OF GREENHOUSE GAS CONTROL
LA English
DT Article; Proceedings Paper
CT 9th International Conference on Greenhouse Gas Control Technologies
CY NOV 16-20, 2008
CL Washington, DC
DE Stakeholder involvement; Public involvement; Carbon dioxide capture and
storage; CCS; Surveys
ID GLOBAL CLIMATE-CHANGE; PEOPLE KNOW; ENERGY
AB Stakeholder involvement (SI) can include many activities, from providing information oil a website to one-on-one conversations with people confronting an Issue in their community For carbon dioxide capture and storage (CCS). there are now quite a few surveys of public attitudes towards CCS that are being used to inform the design of SI efforts These surveys, focused on the nascent commercial deployment of CCS technologies, have demonstrated that the general Public has little knowledge about CCS-yet the surveys go on to collect what are known as "pseudo opinions" or "non-attitudes" of respondents who know little or nothing about CCS Beyond establishing the lack of knowleclge about CCS, the results of these surveys should not be relied upon by the larger CCS community and public and private decision makers to inform the critical task of implementing and executing SI activities The paper discusses the issues involved in providing information as part of the survey, maintaining that Such information is never unbiased and thus tends to produce pseudo opinions that reflect the pollster's or researcher's bias Other content and methodological issues are discussed. leading to the conclusion that most of the Survey results should be used neither as a gauge of public attitudes nor as ail indication of public acceptance Then the framing of SI in CCS is examined, including the assumptions that clear stakeholder acceptance is a realistic goal and that the public has a decisive say in choosing the energy technologies of the present and the future. Finally, a broader suite of SI activities is recommended as more suited to realistic and contextual goals (C) 2009 Elsevier Ltd All rights reserved.
C1 [Malone, Elizabeth L.; Dooley, James J.] Pacific NW Natl Lab, Joint Global Change Res Inst, College Pk, MD 20740 USA.
[Bradbury, Judith A.] Pacific NW Natl Lab, Richland, WA 99352 USA.
RP Malone, EL (reprint author), Pacific NW Natl Lab, Joint Global Change Res Inst, 5825 Univ Res Court,Suite 3500, College Pk, MD 20740 USA.
OI Dooley, James/0000-0002-2824-4344
NR 44
TC 49
Z9 49
U1 1
U2 13
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1750-5836
J9 INT J GREENH GAS CON
JI Int. J. Greenh. Gas Control
PD MAR
PY 2010
VL 4
IS 2
SI SI
BP 419
EP 425
DI 10.1016/j.ijggc.2009.09.004
PG 7
WC GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY; Energy & Fuels; Engineering,
Environmental
SC Science & Technology - Other Topics; Energy & Fuels; Engineering
GA 570WB
UT WOS:000275707900037
ER
PT J
AU Ferrandon, MS
Lewis, MA
Alvarez, F
Shafirovich, E
AF Ferrandon, Magali S.
Lewis, Michele A.
Alvarez, Francisco
Shafirovich, Evgeny
TI Hydrolysis of CuCl2 in the Cu-Cl thermochemical cycle for hydrogen
production: Experimental studies using a spray reactor with an
ultrasonic atomizer
SO INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
LA English
DT Article
DE Thermochemical cycle; Cu-Cl cycle; Hydrogen production; Hydrolysis;
Spray reactor
ID TECHNOLOGIES
AB The Cu-Cl thermochemical cycle is being developed as a hydrogen production method Prior proof-of-concept experimental work has shown that the chemistry is viable while preliminary modeling has shown that the efficiency and cost of hydrogen production have the potential to meet DOE's targets However, the mechanisms of CuCl2 hydrolysis, an important step in the Cu-Cl cycle, are not fully understood Although the stoichiometry of the hydrolysis reaction, 2CuCl(2) + H2O <-> Cu2OCl2 + 2HCl, indicates a necessary steam-to-CuCl2 molar ratio of 0.5, a ratio as high as 23 has been typically required to obtain near 100% conversion of the CuCl2 to the desired products at atmospheric pressure it is highly desirable to conduct this reaction with less excess steam to improve the process efficiency Per Le Chatelier's Principle and according to the available equilibrium-based model, the needed amount of steam can be decreased by conducting the hydrolysis reaction at a reduced pressure In the present work, the experimental setup was modified to allow CuCl2 hydrolysis in the pressure range of 0 4-1 atm Chemical and XRD analyses of the product compositions revealed the optimal steam-to-CuCl2 molar ratio to be 20-23 at 1 atm pressure. The experiments at 0 4 atm and 0 7 atm showed that it is possible to lower the steam-to-CuCl2 molar ratio to 15, while still obtaining good yields of the desired products An important effect of running the reaction at reduced pressure is the significant decrease of CuCl concentration in the solid products, which was not predicted by prior modeling Possible explanations based on kinetics and residence times are suggested Published by Elsevier Ltd on behalf of Professor T. Nejat Veziroglu
C1 [Ferrandon, Magali S.; Lewis, Michele A.] Argonne Natl Lab, Chem Sci & Engn Div, Argonne, IL 60439 USA.
[Alvarez, Francisco; Shafirovich, Evgeny] Univ Texas El Paso, Dept Mech Engn, El Paso, TX 79968 USA.
RP Ferrandon, MS (reprint author), Argonne Natl Lab, Chem Sci & Engn Div, 9700 S Cass Ave, Argonne, IL 60439 USA.
FU U.S Department of Energy's Office of Nuclear Energy Science and
Technology; University Research Institute; University of Texas at El
Paso
FX This work was supported by the Nuclear Hydrogen Initiative Program of
the U.S Department of Energy's Office of Nuclear Energy Science and
Technology Special thanks to Bob Evans from the National Renewable
Energy Laboratory for his advice on the ultrasonic nozzle and Donald
Graczyk from the Analytical Chemistry Laboratory at ANL The research was
performed, in part, at Argonne National Laboratory as a research
participant in the FaST Program The program is administered by Argonne's
Division of Educational Programs with funding provided by the U S
Department of Energy and the National Science Foundation Evgeny
Shafirovich was also supported by the University Research Institute and
the University of Texas at El Paso
NR 17
TC 19
Z9 19
U1 0
U2 7
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0360-3199
J9 INT J HYDROGEN ENERG
JI Int. J. Hydrog. Energy
PD MAR
PY 2010
VL 35
IS 5
BP 1895
EP 1904
DI 10.1016/j.ijhydene.2009.12.034
PG 10
WC Chemistry, Physical; Electrochemistry; Energy & Fuels
SC Chemistry; Electrochemistry; Energy & Fuels
GA 569QD
UT WOS:000275612000007
ER
PT J
AU Salazar-Villalpando, MD
Berry, DA
Cugini, A
AF Salazar-Villalpando, Maria D.
Berry, David A.
Cugini, Anthony
TI Role of lattice oxygen in the partial oxidation of methane over
Rh/zirconia-doped ceria. Isotopic studies
SO INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
LA English
DT Article
DE Partial oxidation of methane; Oxygen isotopic exchange; Doped cena;
Lattice oxygen; Rhodium
ID CATALYTIC PARTIAL OXIDATION; STRUCTURAL-PROPERTIES; SYNTHESIS GAS; NI
CATALYSTS; SYNGAS; CEO2; ACTIVATION; EXCHANGE; MOBILITY; STORAGE
AB Isotopic tracer and nuclear reaction analysis (NRA) are used to probe the identity of oxygen for CO formation during the catalytic partial oxidation (CPOX) of methane to synthesis gas on (18)O(2) labeled Rh (1 wt %)/(Ce(0 56)Zr(0 44))O(2-x) Results reveal that methane is selectively oxidized by lattice oxygen ions from the catalyst to form carbon monoxide. (18)O(2) isotopic exchange experiments, as a function of temperature in the 0-850 degrees C range, were performed on Rh (1 wt %)/(Ce(0 56)Zr(0 44))O(2-x), and (Ce(0 56)Zr(0 44))O(2-x) It was observed that the presence of rhodium considerably accelerates the oxygen exchange with the support, the maximal exchange rates could be observed at lower temperatures, 250 degrees C This may be due to oxygen spillover from the metal particles to the oxide Comparing results from the isotopic exchange experiments on Rh/gamma-alumina and Rh (1 wt %)/(Ce(0 56)Zr(0 44))O(2-x) It was revealed that oxygen conducting materials have a much higher oxygen storage capacity and isotopic exchange rate than non-oxygen conducting materials Published by Elsevier Ltd on behalf of Professor T. Nejat Veziroglu
C1 [Salazar-Villalpando, Maria D.; Berry, David A.; Cugini, Anthony] US DOE, Natl Energy Technol Lab, Morgantown, WV 26507 USA.
RP Salazar-Villalpando, MD (reprint author), US DOE, Natl Energy Technol Lab, Morgantown, WV 26507 USA.
NR 30
TC 19
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U1 2
U2 17
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0360-3199
J9 INT J HYDROGEN ENERG
JI Int. J. Hydrog. Energy
PD MAR
PY 2010
VL 35
IS 5
BP 1998
EP 2003
DI 10.1016/j.ijhydene.2009.12.023
PG 6
WC Chemistry, Physical; Electrochemistry; Energy & Fuels
SC Chemistry; Electrochemistry; Energy & Fuels
GA 569QD
UT WOS:000275612000017
ER
PT J
AU Papadias, DD
Lee, SHD
Ferrandon, M
Ahmed, S
AF Papadias, Dennis D.
Lee, Sheldon H. D.
Ferrandon, Magali
Ahmed, Shabbir
TI An analytical and experimental investigation of high-pressure catalytic
steam reforming of ethanol in a hydrogen selective membrane reactor
SO INTERNATIONAL JOURNAL OF HYDROGEN ENERGY
LA English
DT Article
DE Ethanol steam reforming; High-pressure reforming; Hydrogen membrane
reactor; Hydrogen from biofuels
ID MC FUEL-CELL; NOBLE-METAL CATALYSTS; WATER-GAS SHIFT; H-2 PRODUCTION;
NI/MGO CATALYSTS; LOW-TEMPERATURE; RH CATALYSTS; CO CATALYSTS;
BIO-ETHANOL; NI
AB The objective of this work was to explore the benefits of high-pressure steam reforming of ethanol for the production of hydrogen needed to refuel the high-pressure tanks of fuel cell (polymer electrolyte) vehicles This paper reports on the potential efficiency benefits and challenges of pressurized reforming and options for dealing with the challenges, it reports the results from experiments in a micro-reactor, followed by a modeling study of the reactor to project the dependence of the hydrogen yields on process parameters The experiments were conducted in the range of approximately 7-70 atm, 600-750 degrees C, steam-to-carbon molar ratios of 3-12, and gas hourly space velocities of 8500-83,000 per hour By placing a hydrogen-transporting palladium-alloy membrane within the catalyst zone, this study quantified the beneficial effect of hydrogen extraction from the reforming zone. The model was used to explore the parameter space to define the reactor and conditions that would be needed to approach the efficiency targets for distributed hydrogen production plants The results indicate that the tested catalyst was sufficiently active, and the hydrogen yield achieved with the experimental membrane reactor was limited by the low hydrogen flux of the tested membrane The reactor model predicts that a membrane with at least 20 times higher flux than currently evaluated would be sufficient to generate hydrogen yields to match efficiency targets of 72%. (C) 2009 Professor T Nejat Veziroglu Published by Elsevier Ltd All rights reserved
C1 [Papadias, Dennis D.; Lee, Sheldon H. D.; Ferrandon, Magali; Ahmed, Shabbir] Argonne Natl Lab, Chem Sci & Engn Div, Argonne, IL 60439 USA.
RP Papadias, DD (reprint author), Argonne Natl Lab, Chem Sci & Engn Div, 9700 S Cass Ave, Argonne, IL 60439 USA.
FU U S Department of Energy; UChicago Argonne, LLC [DE-AC-02-06CH11357]
FX This work was supported by the U S Department of Energy's Hydrogen, Fuel
Cells and Infrastructure Technologies Program. Argonne National
Laboratory is managed for the U S Department of Energy by UChicago
Argonne, LLC, under contract DE-AC-02-06CH11357.
NR 41
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U1 0
U2 7
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0360-3199
J9 INT J HYDROGEN ENERG
JI Int. J. Hydrog. Energy
PD MAR
PY 2010
VL 35
IS 5
BP 2004
EP 2017
DI 10.1016/j.ijhydene.2009.12.042
PG 14
WC Chemistry, Physical; Electrochemistry; Energy & Fuels
SC Chemistry; Electrochemistry; Energy & Fuels
GA 569QD
UT WOS:000275612000018
ER
PT J
AU Carrillo, AC
Thissen, J
Olivas, J
Pitz, K
El Sheikh, M
Harrel, B
Hall, S
Rasmussen, M
Tammero, LB
Lenhoff, R
Arani, PN
AF Carrillo, A. C.
Thissen, J.
Olivas, J.
Pitz, K.
El Sheikh, M.
Harrel, B.
Hall, S.
Rasmussen, M.
Tammero, L. Bentley
Lenhoff, R.
Arani, P. Naraghi
TI Multiplexed diagnostic assays for detection of high consequence foreign
and emerging animal disease
SO INTERNATIONAL JOURNAL OF INFECTIOUS DISEASES
LA English
DT Meeting Abstract
C1 [Carrillo, A. C.; Thissen, J.; Olivas, J.; Pitz, K.; El Sheikh, M.; Harrel, B.; Hall, S.; Tammero, L. Bentley; Lenhoff, R.; Arani, P. Naraghi] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Rasmussen, M.] USDA ARS, Plum Isl Anim Dis Ctr, Greenport, NY 11944 USA.
NR 0
TC 0
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U1 0
U2 0
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1201-9712
J9 INT J INFECT DIS
JI Int. J. Infect. Dis.
PD MAR
PY 2010
VL 14
SU 1
BP E373
EP E374
DI 10.1016/j.ijid.2010.02.451
PG 2
WC Infectious Diseases
SC Infectious Diseases
GA 578MQ
UT WOS:000276298201411
ER
PT J
AU Hara, C
Hiddessen, A
Gardner, S
Bailey, C
AF Hara, C.
Hiddessen, A.
Gardner, S.
Bailey, C.
TI Short primers for amplification of diverse virus strains
SO INTERNATIONAL JOURNAL OF INFECTIOUS DISEASES
LA English
DT Meeting Abstract
C1 [Hara, C.; Gardner, S.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Hiddessen, A.] QuantaLife, Pleasanton, CA USA.
[Bailey, C.] Lawrence Livermore Natl Lab, Pleasanton, CA USA.
NR 0
TC 0
Z9 0
U1 0
U2 3
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1201-9712
J9 INT J INFECT DIS
JI Int. J. Infect. Dis.
PD MAR
PY 2010
VL 14
SU 1
BP E368
EP E368
DI 10.1016/j.ijid.2010.02.440
PG 1
WC Infectious Diseases
SC Infectious Diseases
GA 578MQ
UT WOS:000276298201400
ER
PT J
AU Naraghi-Arani, P
Bavari, S
Gardner, S
Jaing, C
Thissen, J
AF Naraghi-Arani, P.
Bavari, S.
Gardner, S.
Jaing, C.
Thissen, J.
TI Identification of novel microRNA biomarkers of viral infection
SO INTERNATIONAL JOURNAL OF INFECTIOUS DISEASES
LA English
DT Meeting Abstract
C1 [Naraghi-Arani, P.; Gardner, S.; Jaing, C.; Thissen, J.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Bavari, S.] USA, Med Res Inst Infect Dis, Frederick, MD USA.
NR 0
TC 0
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U1 1
U2 1
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1201-9712
J9 INT J INFECT DIS
JI Int. J. Infect. Dis.
PD MAR
PY 2010
VL 14
SU 1
BP E364
EP E364
DI 10.1016/j.ijid.2010.02.431
PG 1
WC Infectious Diseases
SC Infectious Diseases
GA 578MQ
UT WOS:000276298201391
ER
PT J
AU Pitz, K
Carrillo, AC
Thissen, J
Olivas, J
Harrel, B
Hall, S
El Sheikh, M
Lenhoff, R
Naraghi-Arani, P
AF Pitz, K.
Carrillo, A. C.
Thissen, J.
Olivas, J.
Harrel, B.
Hall, S.
El Sheikh, M.
Lenhoff, R.
Naraghi-Arani, P.
TI Navigating Dante's inferno: Creation of signatures for the rapid
detection of heamorraghic fever agents
SO INTERNATIONAL JOURNAL OF INFECTIOUS DISEASES
LA English
DT Meeting Abstract
C1 [Pitz, K.; Carrillo, A. C.; Thissen, J.; Olivas, J.; Harrel, B.; Hall, S.; El Sheikh, M.; Lenhoff, R.; Naraghi-Arani, P.] Lawrence Livermore Natl Lab, Livermore, CA USA.
NR 0
TC 0
Z9 0
U1 0
U2 1
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1201-9712
J9 INT J INFECT DIS
JI Int. J. Infect. Dis.
PD MAR
PY 2010
VL 14
SU 1
BP E361
EP E361
DI 10.1016/j.ijid.2010.02.424
PG 1
WC Infectious Diseases
SC Infectious Diseases
GA 578MQ
UT WOS:000276298201384
ER
PT J
AU Thissen, J
Gardner, S
McLoughlin, K
Slezak, T
Jaing, C
AF Thissen, J.
Gardner, S.
McLoughlin, K.
Slezak, T.
Jaing, C.
TI Rapid analysis of known and unknown pathogens using a pan-microbial
detection microarray
SO INTERNATIONAL JOURNAL OF INFECTIOUS DISEASES
LA English
DT Meeting Abstract
C1 [Thissen, J.; Gardner, S.; McLoughlin, K.; Slezak, T.; Jaing, C.] Lawrence Livermore Natl Lab, Livermore, CA USA.
NR 0
TC 0
Z9 0
U1 0
U2 1
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1201-9712
J9 INT J INFECT DIS
JI Int. J. Infect. Dis.
PD MAR
PY 2010
VL 14
SU 1
BP E272
EP E272
DI 10.1016/j.ijid.2010.02.2092
PG 1
WC Infectious Diseases
SC Infectious Diseases
GA 578MQ
UT WOS:000276298201181
ER
PT J
AU Levitas, VI
Lee, DW
Preston, DL
AF Levitas, Valery I.
Lee, Dong-Wook
Preston, Dean L.
TI Interface propagation and microstructure evolution in phase field models
of stress-induced martensitic phase transformations
SO INTERNATIONAL JOURNAL OF PLASTICITY
LA English
DT Article
DE Martensitic phase transformation; Phase field approach; Interface
velocity; Athermal threshold; Microstructure evolution
ID SHAPE-MEMORY ALLOYS; CONTINUUM THERMOMECHANICAL THEORY; STABLE
INTERMEDIATE STATE; GINZBURG-LANDAU THEORY; CU-AL-NI; ELASTOPLASTIC
MATERIALS; PSEUDOELASTIC BEHAVIOR; INELASTIC MATERIAL;
STRUCTURAL-CHANGES; TRANSITIONS
AB Analytical solutions for diffuse interface propagation are found for two recently developed Landau potentials that account for the phenomenology of stress-induced martensitic phase transformations. The solutions include the interface profile and velocity as a function of temperature and stress tensor. An instability in the interface propagation near lattice instability conditions is studied numerically. The effect of material inertia is approximately included. Two methods for introducing an athermal interface friction in phase field models are discussed. In the first method an analytic expression defines the location of the diffuse interface, and the rate of change of the order parameters is required to vanish if the driving force is below a threshold. As an alternative and more physical approach, we demonstrate that the introduction of spatially oscillatory stress fields due to crystal defects and the Peierls barrier, or to a jump in chemical energy, reproduces the effect of an athermal threshold. Finite element simulations of microstructure evolution with and without an athermal threshold are performed. In the presence of spatially oscillatory fields the evolution self-arrests in realistic stationary microstructures, thus the system does not converge to an unphysical single-phase final state, and rate-independent temperature- and stress-induced phase transformation hysteresis are exhibited. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Levitas, Valery I.] Iowa State Univ, Dept Mech Engn, Ames, IA 50011 USA.
[Levitas, Valery I.] Iowa State Univ, Dept Aerosp Engn, Ames, IA 50011 USA.
[Levitas, Valery I.] Iowa State Univ, Dept Mat Sci & Engn, Ames, IA 50011 USA.
[Lee, Dong-Wook] Purdue Univ, Sch Mech Engn, W Lafayette, IN 47907 USA.
[Lee, Dong-Wook] Texas Tech Univ, Dept Mech Engn, Lubbock, TX 79409 USA.
[Preston, Dean L.] Los Alamos Natl Lab, Div Phys, Los Alamos, NM 87545 USA.
RP Levitas, VI (reprint author), Iowa State Univ, Dept Mech Engn, Ames, IA 50011 USA.
EM vlevitas@iastate.edu
RI Lee, Dong-Wook /D-2630-2011
FU Los Alamos National Laboratory, NSF [CBET-0755236]; ARO
[W911NF-09-1-0001]; DTRA [HDTRA1-09-1-0034]; Iowa State University;
Texas Tech University
FX The support of Los Alamos National Laboratory, NSF (CBET-0755236), ARO
(W911NF-09-1-0001), DTRA (HDTRA1-09-1-0034), Iowa State University, and
Texas Tech University are gratefully acknowledged. We thank Dr. A.
Idesman for assistance with the FEAP code.
NR 65
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U1 1
U2 45
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0749-6419
J9 INT J PLASTICITY
JI Int. J. Plast.
PD MAR
PY 2010
VL 26
IS 3
BP 395
EP 422
DI 10.1016/j.ijplas.2009.08.003
PG 28
WC Engineering, Mechanical; Materials Science, Multidisciplinary; Mechanics
SC Engineering; Materials Science; Mechanics
GA 573DY
UT WOS:000275889800004
ER
PT J
AU Man, CS
Gao, X
Godefroy, S
Kenik, EA
AF Man, Chi-Sing
Gao, Xiang
Godefroy, Scott
Kenik, Edward A.
TI Estimating geometric dislocation densities in polycrystalline materials
from orientation imaging microscopy
SO INTERNATIONAL JOURNAL OF PLASTICITY
LA English
DT Article
DE Dislocations; Texture; Crystal plasticity; Polycrystalline material;
Electron microscopy
ID ELECTRON BACKSCATTER DIFFRACTION; GRAIN SUBDIVISION; ALUMINUM BICRYSTAL;
DEFORMED ALUMINUM; LATTICE CURVATURE; DEFORMATION; STRAINS
AB Herein we consider polycrystalline materials which can be taken as statistically homogeneous and whose grains carry no or negligible elastic strains. Our objective is to obtain, from orientation imaging microscopy (OIM), estimates of ensemble averages of geometrically necessary dislocation (GND) densities for specific texture components of the polycrystal in question. Let (G) over bar be the GND tensor in the current configuration and parallel to(G) over bar parallel to be its Euclidean norm. Let rho(alpha) denote the density of geometrically necessary dislocations of type alpha and rho((m))(alpha) the lower-bound estimate of rho(alpha) as obtained from L(2) minimization. We present algorithms by which the ensemble averages , <|rho((m))(alpha)|(2)> and two upper bounds of <|rho((m))(alpha)|>. over specific texture components can be evaluated from ON scans of three mutually-orthogonal planar cross-sections of the polycrystalline material. Within the present context, the algorithms for recovery of the aforementioned quantities from ON scans are general: they are formulated for arbitrary lattice orientations in grains of any crystal symmetry: there is no a priori restriction that the gradient of lattice orientation in the direction perpendicular to an ON scan plane be zero or be otherwise ascertained by another method. The algorithms including their mathematical basis, which accounts for the non-Euclidean nature of the space of crystal orientations, are described in detail. ON measurements were conducted on samples of a continuous-cast AA5754 aluminum hot band to generate data for trying out the algorithms. The results of the computations are presented. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Man, Chi-Sing; Gao, Xiang; Godefroy, Scott] Univ Kentucky, Dept Math, Lexington, KY 40506 USA.
[Kenik, Edward A.] Oak Ridge Natl Lab, Div Met & Ceram, Oak Ridge, TN 37831 USA.
RP Man, CS (reprint author), Univ Kentucky, Dept Math, Lexington, KY 40506 USA.
EM MCLXYH@ms.uky.edu
RI Man, Chi-Sing/E-4794-2011
OI Man, Chi-Sing/0000-0001-9166-2832
FU US National Science Foundation [DMS-0406004]; US Air Force Office of
Scientific Research [FA 9550-04-1-0457]; Kentucky Science and
Engineering Foundation with the Kentucky Science and Technology
Corporation [KSEF-148-502-05-128]; Division of Scientific User
Facilities, Office of Basic Energy Sciences, U.S. Department of Energy
FX We are thankful to Drs. Gene E. Ice and Oleg M. Barabash for guiding us
through the recent literature on the polychromatic X-ray
microdiffraction technique in 3D X-ray microscopy for experimental
characterization of geometrically necessary dislocations. The research
reported here was supported in part by a grant from the US National
Science Foundation (No. DMS-0406004), a DEPSCoR grant from the US Air
Force Office of Scientific Research (No. FA 9550-04-1-0457), and a grant
from the Kentucky Science and Engineering Foundation as per Grant
Agreement #KSEF-148-502-05-128 with the Kentucky Science and Technology
Corporation. Research at the Oak Ridge National Laboratory ShaRE User
Facility was sponsored by the Division of Scientific User Facilities,
Office of Basic Energy Sciences, U.S. Department of Energy.
NR 28
TC 9
Z9 9
U1 1
U2 8
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0749-6419
J9 INT J PLASTICITY
JI Int. J. Plast.
PD MAR
PY 2010
VL 26
IS 3
BP 423
EP 440
DI 10.1016/j.ijplas.2009.08.002
PG 18
WC Engineering, Mechanical; Materials Science, Multidisciplinary; Mechanics
SC Engineering; Materials Science; Mechanics
GA 573DY
UT WOS:000275889800005
ER
PT J
AU Roig, AI
Hight, SK
Minna, JD
Shay, JW
Rusek, A
Story, MD
AF Roig, Andres I.
Hight, Suzie K.
Minna, John D.
Shay, Jerry W.
Rusek, Adam
Story, Michael D.
TI DNA damage intensity in fibroblasts in a 3-dimensional collagen matrix
correlates with the Bragg curve energy distribution of a high LET
particle
SO INTERNATIONAL JOURNAL OF RADIATION BIOLOGY
LA English
DT Article
DE heavy ton irradiation; DNA damage; DNA double-strand break repair; 3-D
tissue equivalents
ID DOUBLE-STRAND BREAKS; HISTONE H2AX PHOSPHORYLATION; SPACE RADIATION;
HEAVY-IONS; IONIZING-RADIATION; HUMAN-LYMPHOCYTES; AUTOPHOSPHORYLATION;
EXPLORATION; PROTECTION; INDUCTION
AB Purpose The DNA double-strand break (DSB) damage response induced by high energy charged particles on lung fibroblast cells embedded in a 3-dimensional (3-D) collagen tissue equivalents was investigated using antibodies to the DNA damage response proteins gamma-histone 2AX (gamma-H2AX) and phosphorylated DNA-PKcs (p-DNA-PKcs)
Materials and methods 3-D tissue equivalents were irradiated in positions across the linear distribution of the Bragg curve profiles of 307 7 MeV/nucleon, 556 9 MeV/nucleon, or 967 0 MeV/nucleon (56)Fe ions at a dose of 0 30 Gy.
Results: Patterns of discrete DNA damage streaks across nuclei or saturated nuclear damage were observed, with saturated nuclear damage being more predominant as samples were positioned closer to the physical Bragg peak Quantification of the DNA damage signal intensities at cacti distance for cacti of the examined energies revealed a biological Bragg curve profile with a pattern of DNA damage intensity similar to the physical Bragg curve for the particular energy, Deconvolution microscopy of nuclei with streaked or saturated nuclear damage pattern revealed more details of the damage, with evidence of double-strand breaks radially distributed from the main particle track as well as multiple discrete tracks within saturated damage nuclei
Conclusions These 3-D culture systems can be used as a biological substrate to better understand the interaction of heavy charged particles of different energies with tissue and could serve as a basis to model space-radiation-induced cancer initiation and progression.
C1 [Roig, Andres I.; Hight, Suzie K.; Shay, Jerry W.] Univ Texas SW Med Ctr Dallas, Dept Cell Biol, Dallas, TX 75390 USA.
[Roig, Andres I.; Minna, John D.] Univ Texas SW Med Ctr Dallas, Dept Internal Med, Dallas, TX 75390 USA.
[Minna, John D.] Univ Texas SW Med Ctr Dallas, Hamon Ctr Therapeut Oncol Res, Dallas, TX 75390 USA.
[Story, Michael D.] Univ Texas SW Med Ctr Dallas, Div Mol Radiat Biol, Dept Radiat Oncol, Dallas, TX 75390 USA.
[Rusek, Adam] Brookhaven Natl Lab, Upton, NY 11973 USA.
RP Roig, AI (reprint author), Univ Texas SW Med Ctr Dallas, Dept Cell Biol, 5323 Harry Hines Blvd, Dallas, TX 75390 USA.
RI Shay, Jerry/F-7878-2011
FU Office of Science (BER), U.S. Department of Energy [DE-AI02-05ER64048];
NASA [NNJ05HD36G NSCOR]
FX This research was supported by the Office of Science (BER), U.S.
Department of Energy, Grant No DE-AI02-05ER64048 and NASA, NNJ05HD36G
NSCOR. We wish to thank the NSRL physics support team for assistance in
the design and execution of the irradiation logistics and Oliver Delgado
for transporting and setting up the tissue equivalents for irradiation.
NR 39
TC 8
Z9 10
U1 1
U2 5
PU TAYLOR & FRANCIS LTD
PI ABINGDON
PA 4 PARK SQUARE, MILTON PARK, ABINGDON OX14 4RN, OXON, ENGLAND
SN 0955-3002
J9 INT J RADIAT BIOL
JI Int. J. Radiat. Biol.
PD MAR
PY 2010
VL 86
IS 3
BP 194
EP 204
DI 10.3109/00553000903418603
PG 11
WC Biology; Nuclear Science & Technology; Radiology, Nuclear Medicine &
Medical Imaging
SC Life Sciences & Biomedicine - Other Topics; Nuclear Science &
Technology; Radiology, Nuclear Medicine & Medical Imaging
GA 572FI
UT WOS:000275812500003
PM 20201648
ER
PT J
AU Amaladass, E
Ludescher, B
Schutz, G
Tyliszczak, T
Lee, MS
Eimuller, T
AF Amaladass, E.
Ludescher, B.
Schuetz, G.
Tyliszczak, T.
Lee, M. -S.
Eimueller, T.
TI Nanospheres generate out-of-plane magnetization
SO JOURNAL OF APPLIED PHYSICS
LA English
DT Article
ID ANODIC ALUMINA; NANOSTRUCTURES; CONFIGURATIONS; ARRAYS
AB Large arrays of ordered magnetic nanostructures have been fabricated by sputter depositing Fe/Gd multilayers on an array of self-assembled nanospheres. On a planar substrate the system shows an in-plane magnetization whereas a spin reorientation transition (SRT) to out-of-plane orientation occurs on the spherules. This SRT cannot only be explained by the reduction in the shape anisotropy due to patterning of the extended film into nanometer sized islands. In fact, more important is the curved surface of the film on the nanocaps. Micromagnetic simulations of various geometries reveal that the crescent shape of the magnetic film on the spheres is ideal to get small values of the shape anisotropy for all diameters of the spheres, ranging from 1 mu m down to 20 nm. The observed SRT enables a simple and cost effective bottom-up approach to produce patterned perpendicular magnetic nanostructures, having a high potential for magnetic data storage and spintronic applications. (C) 2010 American Institute of Physics. [doi: 10.1063/1.3327797]
C1 [Lee, M. -S.; Eimueller, T.] Ruhr Univ Bochum, Jr Res Grp Magnet Microscopy, D-44780 Bochum, Germany.
[Amaladass, E.; Ludescher, B.; Schuetz, G.] Max Planck Inst Met Res, D-70569 Stuttgart, Germany.
[Tyliszczak, T.] LBNL, ALS, Berkeley, CA 94720 USA.
[Eimueller, T.] Univ Appl Sci, Hsch Kempten, D-87435 Kempten, Germany.
RP Eimuller, T (reprint author), Ruhr Univ Bochum, Jr Res Grp Magnet Microscopy, D-44780 Bochum, Germany.
EM thomas.eimueller@fh-kempten.de
FU Deutsche Forschungsgemeinschaft [SFB491-N1]; Landesstiftung
Baden-Wurttemberg; Director, Office of Science; Office of Basic Energy
Sciences of the U.S. Department of Energy [DE-AC02-05CH11231]
FX We gratefully acknowledge financial support by the Deutsche
Forschungsgemeinschaft via Project No. SFB491-N1, and by the
Landesstiftung Baden-Wurttemberg. The Advanced Light Source is supported
by the Director, Office of Science, and Office of Basic Energy Sciences
of the U.S. Department of Energy under Contract No. DE-AC02-05CH11231.
NR 22
TC 10
Z9 10
U1 0
U2 3
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 0021-8979
J9 J APPL PHYS
JI J. Appl. Phys.
PD MAR 1
PY 2010
VL 107
IS 5
AR 053911
DI 10.1063/1.3327797
PG 4
WC Physics, Applied
SC Physics
GA 570FK
UT WOS:000275657500081
ER
PT J
AU Fleming, RM
Seager, CH
Bielejec, E
Vizkelethy, G
Lang, DV
Campbell, JM
AF Fleming, R. M.
Seager, C. H.
Bielejec, E.
Vizkelethy, G.
Lang, D. V.
Campbell, J. M.
TI Defect annealing in neutron and ion damaged silicon: Influence of defect
clusters and doping
SO JOURNAL OF APPLIED PHYSICS
LA English
DT Article
ID DIVACANCY; IRRADIATION
AB We have explored defect annealing in radiation damaged silicon in a regime characterized by defect clusters and higher doping. Several types of pnp and npn Si bipolar transistors have been irradiated with ions and neutrons, then isochronally annealed from 300 to 600 K to study the evolution of deep level transient spectroscopy (DLTS) defect signatures. Variations in these data with radiation environment, Fermi level, annealing temperature, and doping density have been used to separate the contributions of three dominant defects to the DLTS defect spectra. We find that the normal Si divacancy and a divacancy like defect with similar properties make similar contributions to a DLTS peak normally associated with transitions from the single minus charge state of the divacancy. However the latter defect is clearly associated with the presence of defect clusters. The vacancy-donor center can also contribute to this high temperature DLTS signature, and its relative importance can be quantitatively assessed by varying doping density and the bias applied to the sample p/n junctions during annealing, and also by the observation that another, donor-related defect grows in as this center anneals. The ratio of vacancy-donor and vacancy-oxygen pairs appears to accurately follow that seen in earlier studies of gamma-irradiated Si. Discussions are presented concerning the effects of defect clustering on the structure, appearance, and evolution of the defects we have identified. (C) 2010 American Institute of Physics. [doi:10.1063/1.3309215]
C1 [Fleming, R. M.; Seager, C. H.; Bielejec, E.; Vizkelethy, G.; Lang, D. V.; Campbell, J. M.] Sandia Natl Labs, Albuquerque, NM 87185 USA.
RP Fleming, RM (reprint author), Sandia Natl Labs, POB 5800, Albuquerque, NM 87185 USA.
EM rmflemi@sandia.gov
RI Fleming, Robert/B-1248-2008
FU Department of Energy [DE-AC04094AL85000]
FX We thank Kyle McDonald, Don King, Normand Modine, Sam Myers, Peter
Schultz, Bill Wampler, and Alan Wright for stimulating discussions.
Sandia National Laboratories is a multiprogram laboratory operated by
Sandia Corporation, a Lockheed Martin Company, for the Department of
Energy under Contract No. DE-AC04094AL85000.
NR 24
TC 8
Z9 8
U1 0
U2 15
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 0021-8979
J9 J APPL PHYS
JI J. Appl. Phys.
PD MAR 1
PY 2010
VL 107
IS 5
AR 053712
DI 10.1063/1.3309215
PG 9
WC Physics, Applied
SC Physics
GA 570FK
UT WOS:000275657500064
ER
PT J
AU Hopkins, PE
Barnat, EV
Cruz-Campa, JL
Grubbs, RK
Okandan, M
Nielson, GN
AF Hopkins, Patrick E.
Barnat, Edward V.
Cruz-Campa, Jose L.
Grubbs, Robert K.
Okandan, Murat
Nielson, Gregory N.
TI Excitation rate dependence of Auger recombination in silicon
SO JOURNAL OF APPLIED PHYSICS
LA English
DT Article
ID ULTRAFAST CARRIER; DYNAMICS; SURFACE; PULSES; THERMALIZATION;
GENERATION; PLASMAS; FILMS; SI
AB This work reports on measurements of the Auger recombination coefficients in silicon wafers with pump-probe thermoreflectance techniques operating at two different excitation rates: 250 kHz (low repetition rate) and 80 MHz (high repetition rate). The different excitation frequencies give rise to different thermoreflectance signals in the Si samples, which is ascribed to the excited number density in the conduction band. In the low repetition rate case, the excited carriers recombine via Auger processes before the next pump excitation is absorbed. However, in the high repetition rate case, the rate in which the pump excitations are absorbed at the sample surface is higher than the Auger recombination rate, indicating that the excited carrier densities in the high repetition rate experiments are much higher than in the low repetition rate measurements even though the pump fluences are comparable. This is ascribed to pulse accumulation in the high repetition rate measurements, and is quantified with rate equation and thermoreflectance models fit to the experimental data. Comparing the data taken at the two different excitation modulations gives insight into the excited carrier density when recombination rate are on the same order as excitation frequencies. (C) 2010 American Institute of Physics. [doi:10.1063/1.3309759]
C1 [Hopkins, Patrick E.; Barnat, Edward V.; Cruz-Campa, Jose L.; Grubbs, Robert K.; Okandan, Murat; Nielson, Gregory N.] Sandia Natl Labs, Albuquerque, NM 87123 USA.
RP Hopkins, PE (reprint author), Sandia Natl Labs, Albuquerque, NM 87123 USA.
EM pehopki@sandia.gov
FU Sandia National Laboratories; United States Department of Energy
[DE-AC04-94AL85000]
FX P. E. H. is grateful for funding from the LDRD program office through
the Sandia National Laboratories Harry S. Truman Fellowship. Sandia is a
multiprogram laboratory operated by Sandia Corporation, a
Lockheed-Martin Co., for the United States Department of Energy's
National Nuclear Security Administration under Contract No.
DE-AC04-94AL85000.
NR 27
TC 4
Z9 4
U1 0
U2 10
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 0021-8979
J9 J APPL PHYS
JI J. Appl. Phys.
PD MAR 1
PY 2010
VL 107
IS 5
AR 053713
DI 10.1063/1.3309759
PG 6
WC Physics, Applied
SC Physics
GA 570FK
UT WOS:000275657500065
ER
PT J
AU Huang, ML
Du, YZ
McQueeney, RJ
Lograsso, TA
AF Huang, Mianliang
Du, Yingzhou
McQueeney, Robert J.
Lograsso, Thomas A.
TI Effect of carbon addition on the single crystalline magnetostriction of
Fe-X (X=Al and Ga) alloys
SO JOURNAL OF APPLIED PHYSICS
LA English
DT Article
ID IRON-ALUMINUM ALLOYS; MAGNETIC-PROPERTIES; PHASE-EQUILIBRIA; RICH
PORTION; ALPHA-IRON; AL ALLOYS; SYSTEM; MAGNETOELASTICITY;
TRANSFORMATIONS; STABILITY
AB The effect of carbon addition on the magnetostriction of Fe-Ga and Fe-Al alloys was investigated and is summarized in this study. It was found that the addition of carbon generally increased the magnetostriction over binary alloys of Fe-Ga and Fe-Al systems. The formation of carbide in the Fe-Ga-C alloys with a composition near D0(3) phase region decreased the magnetostriction drastically. Fe-Al-C and Fe-Ga-C alloys responded differently to thermal treatments; the magnetostriction in the quenched Fe-Al-C alloys is equal to or slightly lower than that of the slow cooled as is observed in binary Fe-Al alloy; in contrast, the magnetostriction is generally higher in quenched Fe-Ga-C alloys than slow cooled condition, consistent with the behavior of binary alloys of Fe-Ga. A significant increase in magnetostriction between 25% and 165% depending on the phase region in Fe-Ga-C alloys by quenching was observed in the A2+D0(3) two-phase region and D0(3) single phase region. (C) 2010 American Institute of Physics. [doi: 10.1063/1.3311884]
C1 [Huang, Mianliang; Lograsso, Thomas A.] Iowa State Univ, Inst Phys Res & Technol, Ames, IA 50011 USA.
[Du, Yingzhou; McQueeney, Robert J.] Iowa State Univ, Dept Phys & Astron, Ames, IA 50011 USA.
RP Huang, ML (reprint author), Iowa State Univ, Inst Phys Res & Technol, Ames, IA 50011 USA.
EM mhuang@ameslab.gov
RI McQueeney, Robert/A-2864-2016
OI McQueeney, Robert/0000-0003-0718-5602
FU Office of Naval Research under ONR MURI [N000140610530]; U.S. Department
of Energy [DE-AC02-07CH11358]
FX This work was supported by the Office of Naval Research under ONR MURI
Contract No. N000140610530. The research was performed at the Ames
Laboratory. Ames Laboratory is operated for the U.S. Department of
Energy by Iowa State University under Contract No. DE-AC02-07CH11358.
NR 29
TC 10
Z9 10
U1 0
U2 6
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 0021-8979
J9 J APPL PHYS
JI J. Appl. Phys.
PD MAR 1
PY 2010
VL 107
IS 5
AR 053520
DI 10.1063/1.3311884
PG 6
WC Physics, Applied
SC Physics
GA 570FK
UT WOS:000275657500044
ER
PT J
AU Kim, Y
Park, M
Buhlmann, S
Hong, S
Kim, YK
Ko, H
Kim, J
No, K
AF Kim, Yunseok
Park, Moonkyu
Buehlmann, Simon
Hong, Seungbum
Kim, Yong Kwan
Ko, Hyoungsoo
Kim, Jiyoon
No, Kwangsoo
TI Effect of local surface potential distribution on its relaxation in
polycrystalline ferroelectric films
SO JOURNAL OF APPLIED PHYSICS
LA English
DT Article
ID THIN-FILMS; PROBE MICROSCOPY; FORCE MICROSCOPY; CHARGE
AB We have studied the effect of local surface potential distribution on its relaxation in the polycrystalline ferroelectric thin films. A lower surface potential region, i.e., potential pit, is generated near a grain boundary. The deep potential pit has a faster relaxation than the area far away from the potential pit due to the acceleration of the screen charge draining near the grain boundary and the domains formed by applying higher voltage have a faster relaxation due to the larger gradient of screen charge distribution. In addition, the surface potential and its relaxation depend on the sign of applying voltage. The result shows that the surface potential distribution may influence significantly to the reliability of bit signal on the memory devices. (C) 2010 American Institute of Physics. [doi:10.1063/1.3290953]
C1 [Kim, Yunseok; Park, Moonkyu; Kim, Jiyoon; No, Kwangsoo] Korea Adv Inst Sci & Technol, Dept Mat Sci & Engn, Taejon 305701, South Korea.
[Buehlmann, Simon; Kim, Yong Kwan; Ko, Hyoungsoo] Samsung Adv Inst Technol, Semicond Device Lab, Yongin 446712, South Korea.
[Hong, Seungbum] Argonne Natl Lab, Div Mat Sci, Argonne, IL 60439 USA.
[Buehlmann, Simon] Imperial Coll London, Kensington SW7 2AZ, England.
RP Kim, Y (reprint author), Max Planck Inst Microstruct Phys, D-06120 Halle, Saale, Germany.
EM ykim@mpi-halle.mpg.de
RI Buehlmann, Simon/B-4838-2010; No, Kwangsoo/G-4891-2010; No,
Kwangsoo/C-1983-2011; Hong, Seungbum/B-7708-2009
OI Hong, Seungbum/0000-0002-2667-1983
FU Samsung Electronics; Korean government (MEST) [2009-0052806]; UChicago
Argonne, LLC, Operator of Argonne National Laboratory ("Argonne").
Argonne, a U.S. DOE Office of Science Laboratory [DE-AC02-06CH11357]
FX The authors would like to thank Dr. Seung-Hyun Kim from Inostek Inc. for
preparing the ferroelectric thin films. This work was supported by the
Samsung Electronics and the Korea Science and Engineering Foundation
(KOSEF) grant funded by the Korean government (MEST) (Grant No.
2009-0052806). The submitted manuscript has been in part created by
UChicago Argonne, LLC, Operator of Argonne National Laboratory
("Argonne"). Argonne, a U.S. DOE Office of Science Laboratory, is
operated under Contract No. DE-AC02-06CH11357.
NR 17
TC 13
Z9 13
U1 1
U2 5
PU AMER INST PHYSICS
PI MELVILLE
PA 1305 WALT WHITMAN RD, STE 300, MELVILLE, NY 11747-4501 USA
SN 0021-8979
EI 1089-7550
J9 J APPL PHYS
JI J. Appl. Phys.
PD MAR 1
PY 2010
VL 107
IS 5
AR 054103
DI 10.1063/1.3290953
PG 5
WC Physics, Applied
SC Physics
GA 570FK
UT WOS:000275657500090
ER
PT J
AU Loui, A
Elhadj, S
Sirbuly, DJ
McCall, SK
Hart, BR
Ratto, TV
AF Loui, A.
Elhadj, S.
Sirbuly, D. J.
McCall, S. K.
Hart, B. R.
Ratto, T. V.
TI An analytic model of thermal drift in piezoresistive microcantilever
sensors
SO JOURNAL OF APPLIED PHYSICS
LA English
DT Article
ID POLYMER-FILMS; THIN-FILMS; SILICON; VAPOR; CONDUCTIVITY; TEMPERATURE;
PLATFORM; AIR; TECHNOLOGY; EQUATIONS
AB A closed-form semiempirical model has been developed to understand the physical origins of thermal drift in piezoresistive microcantilever sensors. The two-component model describes both the effects of temperature-related bending and heat dissipation on the piezoresistance. The temperature-related bending component is based on the Euler-Bernoulli theory of elastic deformation applied to a multilayer cantilever. The heat dissipation component is based on energy conservation per unit time for a piezoresistive cantilever in a Wheatstone bridge circuit, representing a balance between electrical power input and heat dissipation into the environment. Conduction and convection are found to be the primary mechanisms of heat transfer, and the dependence of these effects on the thermal conductivity, temperature, and flow rate of the gaseous environment is described. The thermal boundary layer value that defines the length scale of the heat dissipation phenomenon is treated as an empirical fitting parameter. Using the model, it is found that the cantilever heat dissipation is unaffected by the presence of a thin polymer coating; therefore, the residual thermal drift in the differential response of a coated and uncoated cantilever is the result of nonidentical temperature-related bending. Differential response data show that residual drift is eliminated under isothermal laboratory conditions but not the unregulated and variable conditions that exist in the outdoor environment (i.e., the field). The two-component model is then validated by simulating the thermal drifts of an uncoated and a coated piezoresistive cantilever under field conditions over a 24 h period using only meteorological data as input variables. (C) 2010 American Institute of Physics. [doi: 10.1063/1.3326972]
C1 [Loui, A.; Elhadj, S.; Sirbuly, D. J.; McCall, S. K.; Hart, B. R.; Ratto, T. V.] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
RP Loui, A (reprint author), Lawrence Livermore Natl Lab, 7000 East Ave, Livermore, CA 94550 USA.
EM loui2@llnl.gov
RI McCall, Scott/G-1733-2014
OI McCall, Scott/0000-0002-7979-4944
FU U.S. Department of Energy by Lawrence Livermore National Laboratory
[DE-AC52-07NA27344]
FX This work was performed under the auspices of the U.S. Department of
Energy by Lawrence Livermore National Laboratory under Contract No.
DE-AC52-07NA27344. The authors would like to thank J. L. Herberg for
contributions to this work.
NR 41
TC 10
Z9 11
U1 1
U2 11
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 0021-8979
J9 J APPL PHYS
JI J. Appl. Phys.
PD MAR 1
PY 2010
VL 107
IS 5
AR 054508
DI 10.1063/1.3326972
PG 13
WC Physics, Applied
SC Physics
GA 570FK
UT WOS:000275657500124
ER
PT J
AU Luo, SN
Germann, TC
Tonks, DL
AF Luo, Sheng-Nian
Germann, Timothy C.
Tonks, Davis L.
TI The effect of vacancies on dynamic response of single crystal Cu to
shock waves
SO JOURNAL OF APPLIED PHYSICS
LA English
DT Article
ID MOLECULAR-DYNAMICS
AB Using molecular dynamics (MD) simulations, we investigate the effect of vacancies on the dynamic response of single crystal Cu to [100] shock loading, including plasticity and spallation, for an initial vacancy concentration (c(v)) ranging from 0% to 2%. A fixed impact velocity is adopted, for which plasticity and spall do not occur in the defect-free Cu during compression or tension. We show that shear flow strength (compressional or tensile ) and spall strength decrease with increasing c(v). At the MD scales, the vacancy effect becomes pronounced for c(v) > 0.25%, where heterogeneous nucleation of plasticity prevails. Tensile plasticity may play a key role in inducing local heating and the power-law reduction in spall strength. Void nucleation occurs preferentially at highly sheared (plastically deformed) sites. (C) 2010 American Institute of Physics. [doi: 10.1063/1.3326941]
C1 [Luo, Sheng-Nian; Germann, Timothy C.; Tonks, Davis L.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Luo, SN (reprint author), Los Alamos Natl Lab, POB 1663, Los Alamos, NM 87545 USA.
EM sluo@lanl.gov
RI Luo, Sheng-Nian /D-2257-2010;
OI Luo, Sheng-Nian /0000-0002-7538-0541; Germann,
Timothy/0000-0002-6813-238X
FU U.S. Department of Energy [DE-AC52-06NA25396]
FX We gratefully acknowledge the support of the U.S. Department of Energy
through the LANL/LDRD Program for this work. LANL is operated by Los
Alamos National Security, LLC for the U.S. Department of Energy under
Contract No. DE-AC52-06NA25396.
NR 19
TC 16
Z9 17
U1 2
U2 12
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 0021-8979
J9 J APPL PHYS
JI J. Appl. Phys.
PD MAR 1
PY 2010
VL 107
IS 5
AR 056102
DI 10.1063/1.3326941
PG 3
WC Physics, Applied
SC Physics
GA 570FK
UT WOS:000275657500149
ER
PT J
AU Martin, IT
Teplin, CW
Doyle, JR
Branz, HM
Stradins, P
AF Martin, Ina T.
Teplin, Charles W.
Doyle, James R.
Branz, Howard M.
Stradins, Paul
TI Physics and chemistry of hot-wire chemical vapor deposition from silane:
Measuring and modeling the silicon epitaxy deposition rate
SO JOURNAL OF APPLIED PHYSICS
LA English
DT Article
ID HYDROGENATED AMORPHOUS-SILICON; SURFACE REACTIVITY; LOW-TEMPERATURE;
THIN-FILMS; PLASMA DEPOSITION; SOLAR-CELLS; SI-H; QUALITY;
MICROCRYSTALLINE; RADICALS
AB We measure and successfully model the deposition rate (R) of epitaxial Si by hot-wire chemical vapor deposition (HWCVD) onto (100) silicon over a wide range of growth conditions. A deposition rate model based on the fundamentals of gas-filament and gas-substrate interactions is presented; the results are consistent with the observed dependences of R on gas pressure, flow, and filament area. Gas-phase measurements of silane depletion allow calculation of the average radical sticking coefficient from the film deposition rate. Our findings indicate that the epitaxial deposition rate can be increased sufficiently to enable an economical epitaxial film-silicon photovoltaic technology on low-cost foreign substrates. The model can be simply adapted to apply to the HWCVD of amorphous, nanocrystalline, and polycrystalline Si. (C) 2010 American Institute of Physics. [doi: 10.1063/1.3298455]
C1 [Martin, Ina T.; Teplin, Charles W.; Branz, Howard M.; Stradins, Paul] Natl Renewable Energy Lab, Natl Ctr Photovolta, Golden, CO 80401 USA.
[Doyle, James R.] Macalester Coll, Dept Phys & Astron, St Paul, MN 55105 USA.
RP Martin, IT (reprint author), Natl Renewable Energy Lab, Natl Ctr Photovolta, Golden, CO 80401 USA.
EM ina.martin@nrel.gov
RI Martin, Ina/J-9484-2012
FU U.S. Department of Energy [DE-AC36-08GO28308]
FX The authors are grateful to many NREL colleagues, including Maxim Shub
for help with the HWCVD system. This work was supported by the U.S.
Department of Energy under Contract No. DE-AC36-08GO28308.
NR 38
TC 6
Z9 6
U1 1
U2 18
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 0021-8979
J9 J APPL PHYS
JI J. Appl. Phys.
PD MAR 1
PY 2010
VL 107
IS 5
AR 054906
DI 10.1063/1.3298455
PG 9
WC Physics, Applied
SC Physics
GA 570FK
UT WOS:000275657500145
ER
PT J
AU Yang, L
Peng, SM
Long, XG
Gao, F
Heinisch, HL
Kurtz, RJ
Zu, XT
AF Yang, L.
Peng, S. M.
Long, X. G.
Gao, F.
Heinisch, H. L.
Kurtz, R. J.
Zu, X. T.
TI Ab initio study of intrinsic, H, and He point defects in hcp-Er
SO JOURNAL OF APPLIED PHYSICS
LA English
DT Article
ID AUGMENTED-WAVE METHOD; ALPHA-SCDX SYSTEMS; ELASTIC-CONSTANTS;
TRANSITION-METALS; ERBIUM-HYDRIDE; HELIUM RELEASE; PRESSURE; FILMS;
TRITIDE
AB Ab initio calculations based on density functional theory have been performed to determine the properties of self-interstitial atoms (SIAs), vacancies, and single H and He atoms in hcp-Er. The results show that the most stable configuration for a SIA is a basal octahedral configuration, while the octahedral (O), basal split, and crowdion (C) interstitial configurations are less stable, followed by the split < 0001 > dumbbell and tetrahedral configurations. For both H and He defects, the formation energy of an interstitial atom is less than that of a substitutional atom in hcp-Er. Furthermore, the tetrahedral interstitial position is more stable than an octahedral position for both He and H interstitials. The hybridization of the He and H defects with Er atoms has been used to explain the relative stabilities of these defects in hcp-Er. (C) 2010 American Institute of Physics. [doi: 10.1063/1.3309834]
C1 [Yang, L.; Zu, X. T.] Univ Elect Sci & Technol China, Dept Appl Phys, Chengdu 610054, Peoples R China.
[Peng, S. M.; Long, X. G.] China Acad Engn Phys, Inst Nucl Phys & Chem, Mianyang 621900, Peoples R China.
[Gao, F.; Heinisch, H. L.; Kurtz, R. J.] Pacific NW Natl Lab, Richland, WA 99352 USA.
RP Yang, L (reprint author), Univ Elect Sci & Technol China, Dept Appl Phys, Chengdu 610054, Peoples R China.
EM yanglildk@uestc.edu.cn; xiaotaozu@yahoo.com
RI Gao, Fei/H-3045-2012
FU National Natural Science Foundation of China-NSAF [10976007]; U.S.
Department of Energy, Office of Fusion Energy Science [DE-AC06-76RLO
1830]
FX L. Yang and X. T. Zu are grateful for the support by the National
Natural Science Foundation of China-NSAF (Grant No. 10976007). F. Gao,
H. L. Heinisch, and R. J. Kurtz are grateful for the support by the U.S.
Department of Energy, Office of Fusion Energy Science, under Contract
No. DE-AC06-76RLO 1830.
NR 28
TC 16
Z9 16
U1 2
U2 8
PU AMER INST PHYSICS
PI MELVILLE
PA 1305 WALT WHITMAN RD, STE 300, MELVILLE, NY 11747-4501 USA
SN 0021-8979
EI 1089-7550
J9 J APPL PHYS
JI J. Appl. Phys.
PD MAR 1
PY 2010
VL 107
IS 5
AR 054903
DI 10.1063/1.3309834
PG 7
WC Physics, Applied
SC Physics
GA 570FK
UT WOS:000275657500142
ER
PT J
AU Yang, RQ
Tian, ZB
Cai, ZH
Klem, JF
Johnson, MB
Liu, HC
AF Yang, Rui Q.
Tian, Zhaobing
Cai, Zhihua
Klem, J. F.
Johnson, Matthew B.
Liu, H. C.
TI Interband-cascade infrared photodetectors with superlattice absorbers
SO JOURNAL OF APPLIED PHYSICS
LA English
DT Article
ID PHOTOCONDUCTIVE GAIN; DETECTORS
AB Interband-cascade infrared photodetectors (ICIPs), composed of discrete superlattice absorbers, are demonstrated at temperatures up to 350 K with a cutoff wavelength near 5 mu m at 80 K to beyond 7 mu m above room temperature. The peak responsivity exceeds 200 mA/W, higher than the values reported from early interband cascade laser structures, suggesting a significantly enhanced quantum efficiency of the superlattice absorbers. A theoretical model, originally developed for quantum well infrared photodetectors (QWIPs), is applied to ICIPs to analyze their device performance. The Johnson-limited and background-limited detectivities are extracted and indicate that background-limited performance temperatures for two ICIP structures are 126 and 105 K at 5 mu m. It is expected that optimized ICIPs will provide improved performance by combining the advantages of conventional photodiodes and the discrete nature of QWIPs and IC lasers. (C) 2010 American Institute of Physics. [doi: 10.1063/1.3327415]
C1 [Yang, Rui Q.; Tian, Zhaobing; Cai, Zhihua] Univ Oklahoma, Sch Elect & Comp Engn, Norman, OK 73019 USA.
[Klem, J. F.] Sandia Natl Labs, Albuquerque, NM 87185 USA.
[Johnson, Matthew B.] Univ Oklahoma, Dept Phys & Astron, Norman, OK 73019 USA.
[Liu, H. C.] Natl Res Council Canada, Inst Microstruct Sci, Ottawa, ON K1A 0R6, Canada.
RP Yang, RQ (reprint author), Univ Oklahoma, Sch Elect & Comp Engn, Norman, OK 73019 USA.
EM rui.q.yang@ou.edu
RI Tian, Zhaobing/C-9705-2011; Cai, Zhihua/P-1316-2015
FU NSF [0838439]; AFOSR [FA9550-09-1-0288]; C-SPIN; Oklahoma/Arkansas MRSEC
[DMR-0520550]; United States Department of Energy's National Nuclear
Security Administration [DE-AC04-94AL85000]
FX We thank Edward Aifer for useful discussions. This work is supported in
part by a new faculty start-up fund at OU, by NSF (Award No. 0838439),
by AFOSR (Award No. FA9550-09-1-0288), and by C-SPIN, the
Oklahoma/Arkansas MRSEC (Grant No. DMR-0520550). Sandia is a
multiprogram laboratory operated by Sandia Corporation, a Lockheed
Martin Co., for the United States Department of Energy's National
Nuclear Security Administration under Contract No. DE-AC04-94AL85000.
NR 21
TC 35
Z9 36
U1 0
U2 20
PU AMER INST PHYSICS
PI MELVILLE
PA 1305 WALT WHITMAN RD, STE 300, MELVILLE, NY 11747-4501 USA
SN 0021-8979
EI 1089-7550
J9 J APPL PHYS
JI J. Appl. Phys.
PD MAR 1
PY 2010
VL 107
IS 5
AR 054514
DI 10.1063/1.3327415
PG 6
WC Physics, Applied
SC Physics
GA 570FK
UT WOS:000275657500130
ER
PT J
AU Awano, N
Rajagopal, V
Arbing, M
Patel, S
Hunt, J
Inouye, M
Phadtare, S
AF Awano, Naoki
Rajagopal, Vaishnavi
Arbing, Mark
Patel, Smita
Hunt, John
Inouye, Masayori
Phadtare, Sangita
TI Escherichia coli RNase R Has Dual Activities, Helicase and RNase
SO JOURNAL OF BACTERIOLOGY
LA English
DT Article
ID POLYNUCLEOTIDE PHOSPHORYLASE MUTANTS; ACID MELTING ACTIVITY;
INITIATION-FACTOR IF1; YEAST EXOSOME CORE; RIBONUCLEASE-II; SHOCK
PROTEIN; CSPA FAMILY; TRANSCRIPTION ANTITERMINATION; QUALITY-CONTROL;
RIBOSOMAL-RNA
AB In Escherichia coli, the cold shock response occurs when there is a temperature downshift from 37 degrees C to 15 degrees C, and this response is characterized by induction of several cold shock proteins, including the DEAD-box helicase CsdA, during the acclimation phase. CsdA is involved in a variety of cellular processes. Our previous studies showed that the helicase activity of CsdA is critical for its function in cold shock acclimation of cells and that the only proteins that were able to complement its function were another helicase, RhlE, an RNA chaperone, CspA, and a cold-inducible exoribonuclease, RNase R. Interestingly, other major 3'-to-5' processing exoribonucleases of E. coli, such as polynucleotide phosphorylase and RNase II, cannot complement the cold shock function of CsdA. Here we carried out a domain analysis of RNase R and showed that this protein has two distinct activities, RNase and helicase, which are independent of each other and are due to different domains. Mutant RNase R proteins that lack the RNase activity but exhibit the helicase activity were able to complement the cold shock function of CsdA, suggesting that only the helicase activity of RNase R is essential for complementation of the cold shock function of CsdA. We also observed that in vivo deletion of the two cold shock domains resulted in a loss of the ability of RNase R to complement the cold shock function of CsdA. We further demonstrated that RNase R exhibits helicase activity in vitro independent of its RNase activity. Our results shed light on the unique properties of RNase R and how it is distinct from other exoribonucleases in E. coli.
C1 [Awano, Naoki; Inouye, Masayori; Phadtare, Sangita] UMDNJ, CABM, Robert Wood Johnson Med Sch, Dept Biochem, Piscataway, NJ 08854 USA.
[Arbing, Mark; Hunt, John] Columbia Univ, Dept Biol Sci, Fairchild Ctr, New York, NY 10027 USA.
[Arbing, Mark] Univ Calif Los Angeles, Inst Genom & Prote, UCLA DOE, Los Angeles, CA 90095 USA.
[Rajagopal, Vaishnavi] Johns Hopkins Univ, Sch Med, Dept Biophys & Biophys Chem, Baltimore, MD 21205 USA.
RP Phadtare, S (reprint author), UMDNJ, CABM, Robert Wood Johnson Med Sch, Dept Biochem, 679 Hoes Lane, Piscataway, NJ 08854 USA.
EM phadtasa@umdnj.edu
RI Rajagopal, Vaishnavi/E-5272-2012
FU NIGMS NIH HHS [R01 GM055310]
NR 62
TC 30
Z9 33
U1 2
U2 3
PU AMER SOC MICROBIOLOGY
PI WASHINGTON
PA 1752 N ST NW, WASHINGTON, DC 20036-2904 USA
SN 0021-9193
J9 J BACTERIOL
JI J. Bacteriol.
PD MAR
PY 2010
VL 192
IS 5
BP 1344
EP 1352
DI 10.1128/JB.01368-09
PG 9
WC Microbiology
SC Microbiology
GA 554DP
UT WOS:000274416000019
PM 20023028
ER
PT J
AU Byrne-Bailey, KG
Weber, KA
Chair, AH
Bose, S
Knox, T
Spanbauer, TL
Chertkov, O
Coates, JD
AF Byrne-Bailey, Kathryne G.
Weber, Karrie A.
Chair, Antinea H.
Bose, Saumyaditya
Knox, Traci
Spanbauer, Trisha L.
Chertkov, Olga
Coates, John D.
TI Completed Genome Sequence of the Anaerobic Iron-Oxidizing Bacterium
Acidovorax ebreus Strain TPSY
SO JOURNAL OF BACTERIOLOGY
LA English
DT Article
ID PROVIDES ACQUIRED-RESISTANCE; FERROUS IRON; TOOL; BIOOXIDATION; SYSTEM;
IDENTIFICATION; FE(II); CRISPR
AB Acidovorax ebreus strain TPSY is the first anaerobic nitrate-dependent Fe(II) oxidizer for which there is a completed genome sequence. Preliminary protein annotation revealed an organism optimized for survival in a complex environmental system. Here, we briefly report the completed and annotated genome sequence of strain TPSY.
C1 [Byrne-Bailey, Kathryne G.; Weber, Karrie A.; Chair, Antinea H.; Bose, Saumyaditya; Knox, Traci; Coates, John D.] Univ Calif Berkeley, Dept Plant & Microbiol, Berkeley, CA 94720 USA.
[Chertkov, Olga] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
[Weber, Karrie A.; Spanbauer, Trisha L.] Univ Nebraska, Sch Biol Sci, Lincoln, NE 68588 USA.
RP Coates, JD (reprint author), Univ Calif Berkeley, Dept Plant & Microbiol, Berkeley, CA 94720 USA.
EM jdcoates@berkeley.edu
FU Office of Science (BER), U.S. Department of Energy [DE-FG02-07ER64390];
University of Nebraska, Lincoln; University of California Lawrence
Berkeley National Laboratory [DE-AC02-05CH11231]; Lawrence Livermore
National Laboratory [DE-AC52-07NA27344]; Los Alamos National Laboratory
[DE AC02-06NA25396]
FX This research was supported by Office of Science (BER), U.S. Department
of Energy, grant DE-FG02-07ER64390 to J.D.C. at UCB and by the Nebraska
Tobacco Settlement Biomedical Research Development Fund to K. A. W. at
the University of Nebraska, Lincoln.; The sequencing work on behalf of
J.D.C. was performed through the Community Sequencing Project 2008 for
the JGI under the auspices of the U.S. Department of Energy Office of
Science, Biological and Environmental Research Program, and by the
University of California Lawrence Berkeley National Laboratory under
contract DE-AC02-05CH11231, Lawrence Livermore National Laboratory under
contract DE-AC52-07NA27344, and Los Alamos National Laboratory under
contract DE AC02-06NA25396.
NR 22
TC 35
Z9 35
U1 1
U2 29
PU AMER SOC MICROBIOLOGY
PI WASHINGTON
PA 1752 N ST NW, WASHINGTON, DC 20036-2904 USA
SN 0021-9193
J9 J BACTERIOL
JI J. Bacteriol.
PD MAR
PY 2010
VL 192
IS 5
BP 1475
EP 1476
DI 10.1128/JB.01449-09
PG 2
WC Microbiology
SC Microbiology
GA 554DP
UT WOS:000274416000038
PM 20023012
ER
PT J
AU Luchko, T
Gusarov, S
Roe, DR
Simmerling, C
Case, DA
Tuszynski, J
Kovalenko, A
AF Luchko, Tyler
Gusarov, Sergey
Roe, Daniel R.
Simmerling, Carlos
Case, David A.
Tuszynski, Jack
Kovalenko, Andriy
TI Three-Dimensional Molecular Theory of Solvation Coupled with Molecular
Dynamics in Amber
SO JOURNAL OF CHEMICAL THEORY AND COMPUTATION
LA English
DT Article
ID DENSITY-FUNCTIONAL THEORY; INTERACTION SITE MODEL; INTEGRAL-EQUATION
THEORY; NONUNIFORM POLYATOMIC SYSTEMS; HELICAL ROSETTE NANOTUBES;
AMBIENT AQUEOUS-SOLUTION; ALCOHOL-WATER MIXTURES; HYDRATION FREE-ENERGY;
CHARGE FORCE-FIELD; RISM THEORY
AB We present the three-dimensional molecular theory of solvation (also known as 3D-RISM) coupled with molecular dynamics (MD) simulation by contracting solvent degrees of freedom, accelerated by extrapolating solvent-induced forces and applying them in large multiple time steps (up to 20 fs) to enable simulation of large biomolecules. The method has been implemented in the Amber molecular modeling package and is illustrated here on alanine-dipeptide and protein-G.
C1 [Luchko, Tyler; Gusarov, Sergey; Kovalenko, Andriy] Natl Inst Nanotechnol, Edmonton, AB T6G 2M9, Canada.
[Luchko, Tyler; Tuszynski, Jack] Univ Alberta, Dept Phys, Edmonton, AB T6G 2G7, Canada.
[Luchko, Tyler; Kovalenko, Andriy] Univ Alberta, Dept Mech Engn, Edmonton, AB T6G 2G8, Canada.
[Roe, Daniel R.] NIST, Gaithersburg, MD 20899 USA.
[Simmerling, Carlos] SUNY Stony Brook, Dept Chem, Grad Program Biochem and Struct Biol, Stony Brook, NY 11794 USA.
[Simmerling, Carlos] SUNY Stony Brook, Struct Biol Ctr, Stony Brook, NY 11794 USA.
[Simmerling, Carlos] Brookhaven Natl Lab, Computat Sci Ctr, Upton, NY 11973 USA.
[Case, David A.] Rutgers State Univ, BioMaPS Inst, Piscataway, NJ 08854 USA.
[Case, David A.] Rutgers State Univ, Dept Chem & Chem Biol, Piscataway, NJ 08854 USA.
[Tuszynski, Jack] Univ Alberta, Dept Oncol, Edmonton, AB T6G 2G8, Canada.
RP Kovalenko, A (reprint author), Natl Inst Nanotechnol, 11421 Saskatchewan Dr, Edmonton, AB T6G 2M9, Canada.
EM andriy.kovalenko@nrc-cnrc.gc.ca
RI Gusarov, Sergey/L-4236-2014;
OI Gusarov, Sergey/0000-0003-2033-705X
FU Natural Sciences and Engineering Research Council (NSERC) of Canada;
National Research Council (NRC) of Canada; University of Alberta
FX This work was supported by the Natural Sciences and Engineering Research
Council (NSERC) of Canada and the National Research Council (NRC) of
Canada. All calculations were performed on the HPC cluster of the Center
of Excellence in Integrated Nanotools (CEIN) at the University of
Alberta. T.L. acknowledges financial support from the NSERC, NRC, and
University of Alberta.
NR 72
TC 100
Z9 100
U1 4
U2 32
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 1549-9618
J9 J CHEM THEORY COMPUT
JI J. Chem. Theory Comput.
PD MAR
PY 2010
VL 6
IS 3
BP 607
EP 624
DI 10.1021/ct900460m
PG 18
WC Chemistry, Physical; Physics, Atomic, Molecular & Chemical
SC Chemistry; Physics
GA 564CL
UT WOS:000275189400003
PM 20440377
ER
PT J
AU Asadchev, A
Allada, V
Felder, J
Bode, BM
Gordon, MS
Windus, TL
AF Asadchev, Andrey
Allada, Veerendra
Felder, Jacob
Bode, Brett M.
Gordon, Mark S.
Windus, Theresa L.
TI Uncontracted Rys Quadrature Implementation of up to G Functions on
Graphical Processing Units
SO JOURNAL OF CHEMICAL THEORY AND COMPUTATION
LA English
DT Article
ID 2-ELECTRON INTEGRAL EVALUATION; ELECTRON REPULSION INTEGRALS; CARTESIAN
GAUSSIAN FUNCTIONS; QUANTUM-CHEMISTRY; RECURRENCE RELATIONS; COMPUTATION
AB An implementation is presented of an uncontracted Rys quadrature algorithm for electron repulsion integrals, including up to g functions on graphical processing units (GPUs). The general GPU programming model, the challenges associated with implementing the Rys quadrature on these highly parallel emerging architectures, and a new approach to implementing the quadrature are outlined. The performance of the implementation is evaluated for single and double precision on two different types of GPU devices. The performance obtained is on par with the matrix-vector routine from the CUDA basic linear algebra subroutines (CUBLAS) library.
C1 [Asadchev, Andrey; Felder, Jacob; Gordon, Mark S.; Windus, Theresa L.] Iowa State Univ, Dept Chem, Ames, IA 50011 USA.
[Asadchev, Andrey; Felder, Jacob; Gordon, Mark S.; Windus, Theresa L.] Iowa State Univ, Dept Elect & Comp Engn, Ames, IA 50011 USA.
Ames Lab, Ames, IA 50011 USA.
RP Gordon, MS (reprint author), Iowa State Univ, Dept Chem, Ames, IA 50011 USA.
EM mark@si.msg.chem.iastate.edu
OI Bode, Brett/0000-0002-4202-1024
FU Iowa State University of Science and Technology [DE-AC02-07CH11358];
United States Department of Energy; National Science Foundation PetaApps
FX This work has been accomplished by Iowa State University of Science and
Technology under contract no, DE-AC02-07CH11358 with the United States
Department of Energy and under an National Science Foundation PetaApps
grant. The GPU cluster was provided by a DURIP grant from the Department
of Defense, with matching funds from the Iowa State University Frances
M. Craig Professorship to M.S.G. and the NVIDIA Corporation. M.S.G.
gratefully acknowledges an IBM Faculty Fellowship award. The authors
have benefitted from many helpful discussions with Professor Todd
Martinez and his students.
NR 25
TC 47
Z9 47
U1 1
U2 25
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 1549-9618
J9 J CHEM THEORY COMPUT
JI J. Chem. Theory Comput.
PD MAR
PY 2010
VL 6
IS 3
BP 696
EP 704
DI 10.1021/ct9005079
PG 9
WC Chemistry, Physical; Physics, Atomic, Molecular & Chemical
SC Chemistry; Physics
GA 564CL
UT WOS:000275189400009
PM 26613300
ER
PT J
AU Vazquez-Mayagoitia, A
Sherrill, CD
Apra, E
Sumpter, BG
AF Vazquez-Mayagoitia, Alvaro
Sherrill, C. David
Apra, Edoardo
Sumpter, Bobby G.
TI An Assessment of Density Functional Methods for Potential Energy Curves
of Nonbonded Interactions: The XYG3 and B97-D Approximations
SO JOURNAL OF CHEMICAL THEORY AND COMPUTATION
LA English
DT Article
ID VAN-DER-WAALS; EXCHANGE-CORRELATION FUNCTIONALS; SELF-INTERACTION
CORRECTION; PI-PI INTERACTIONS; THERMOCHEMICAL KINETICS; NONCOVALENT
INTERACTIONS; DISPERSION CORRECTIONS; ACCURATE DESCRIPTIONS;
ELECTRON-AFFINITIES; PERTURBATION-THEORY
AB A recently proposed double-hybrid functional called XYG3 and a semilocal GGA functional (B97-D) with a semiempirical correction for van der Waals interactions have been applied to study the potential energy curves along the dissociation coordinates of weakly bound pairs of molecules governed by London dispersion and induced dipole forces. Molecules treated in this work were the parallel sandwich, T-shaped, and parallel-displaced benzene dimer, (C6H6)(2); hydrogen sulfide and benzene, H2S center dot C6H6; methane and benzene, CH4 center dot C6H6; the methane dimer, (CH4)(2); and the pyridine dimer, (C5H5N)(2). We compared the potential energy curves of these functionals with previously published benchmarks at the coupled cluster singles, doubles, and perturbative triplets [CCSD(T)] complete-basis-set limit. Both functionals, XYG3 and B97-D, exhibited very good performance, reproducing accurate energies for equilibrium distances and a smooth behavior along the dissociation coordinate. Overall, we found an agreement within a few tenths of one kcal mol(-1) with the CCSD(T) results across the potential energy curves.
C1 [Sherrill, C. David] Georgia Inst Technol, Sch Chem & Biochem, Ctr Computat Mol Sci & Technol, Atlanta, GA 30332 USA.
[Sherrill, C. David] Georgia Inst Technol, Coll Chem, Atlanta, GA 30332 USA.
[Vazquez-Mayagoitia, Alvaro] Univ Tennessee, Dept Chem, Knoxville, TN 37996 USA.
[Apra, Edoardo; Sumpter, Bobby G.] Oak Ridge Natl Lab, Div Math & Comp Sci, Oak Ridge, TN 37831 USA.
[Apra, Edoardo; Sumpter, Bobby G.] Oak Ridge Natl Lab, Ctr Nanophase Mat Sci, Oak Ridge, TN 37831 USA.
RP Sherrill, CD (reprint author), Georgia Inst Technol, Sch Chem & Biochem, Ctr Computat Mol Sci & Technol, Atlanta, GA 30332 USA.
EM sherrill@gatech.edu
RI Apra, Edoardo/F-2135-2010; Sumpter, Bobby/C-9459-2013;
Vazquez-Mayagoitia, Alvaro/A-9755-2010;
OI Apra, Edoardo/0000-0001-5955-0734; Sumpter, Bobby/0000-0001-6341-0355;
Sherrill, David/0000-0002-5570-7666
NR 71
TC 59
Z9 60
U1 1
U2 19
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 1549-9618
EI 1549-9626
J9 J CHEM THEORY COMPUT
JI J. Chem. Theory Comput.
PD MAR
PY 2010
VL 6
IS 3
BP 727
EP 734
DI 10.1021/ct900551z
PG 8
WC Chemistry, Physical; Physics, Atomic, Molecular & Chemical
SC Chemistry; Physics
GA 564CL
UT WOS:000275189400012
PM 26613303
ER
PT J
AU Yu, HB
Whitfield, TW
Harder, E
Lamoureux, G
Vorobyov, I
Anisimov, VM
MacKerell, AD
Roux, B
AF Yu, Haibo
Whitfield, Troy W.
Harder, Edward
Lamoureux, Guillaume
Vorobyov, Igor
Anisimov, Victor M.
MacKerell, Alexander D., Jr.
Roux, Benoit
TI Simulating Monovalent and Divalent Ions in Aqueous Solution Using a
Drude Polarizable Force Field
SO JOURNAL OF CHEMICAL THEORY AND COMPUTATION
LA English
DT Article
ID MOLECULAR-DYNAMICS SIMULATIONS; WATER INTERACTION POTENTIALS;
FREE-ENERGY PERTURBATION; MANY-BODY POLARIZATION; ALKALI-METAL IONS;
GIBBS FREE-ENERGY; AB-INITIO; COMPUTER-SIMULATIONS; EQUILIBRIA
DETERMINATIONS; DIELECTRIC-PROPERTIES
AB An accurate representation of ion solvation in aqueous solution is critical for meaningful computer simulations of a broad range of physical and biological processes. Polarizable models based on classical Drude oscillators are introduced and parametrized for a large set of monatomic ions including cations of the alkali metals (Li+, Na+, K+, Rb+, and Cs+) and alkaline earth elements (Mg2+, Ca2+, Sr2+, and Ba2+) along with Zn2+ and halide anions (F-, Cl-, Br-, and I-). The models are parametrized, in conjunction with the polarizable SWM4-NDP water model [Lamoureux et al. Chem. Phys. Lett, 2006, 418, 245], to be consistent with a wide assortment of experimentally measured aqueous bulk thermodynamic properties and the energetics of small ion-water clusters. Structural and dynamic properties of the resulting ion models in aqueous solutions at infinite dilution are presented.
C1 [Yu, Haibo; Harder, Edward; Roux, Benoit] Univ Chicago, Dept Biochem & Mol Biol, Chicago, IL 60637 USA.
[Whitfield, Troy W.; Roux, Benoit] Argonne Natl Lab, Biosci Div, Argonne, IL 60649 USA.
[Lamoureux, Guillaume] Concordia Univ, Dept Chem & Biochem, Montreal, PQ H4B 1R6, Canada.
[Vorobyov, Igor; Anisimov, Victor M.; MacKerell, Alexander D., Jr.] Univ Maryland, Sch Pharm, Dept Pharmaceut Sci, Baltimore, MD 21201 USA.
RP Roux, B (reprint author), Univ Chicago, Dept Biochem & Mol Biol, 929 E 57th St, Chicago, IL 60637 USA.
EM roux@uchicago.edu
RI Yu, Haibo/B-9750-2008; Lamoureux, Guillaume/K-4038-2013; Vorobyov,
Igor/N-2309-2014;
OI Yu, Haibo/0000-0002-1099-2803; Vorobyov, Igor/0000-0002-4767-5297;
MacKerell, Alex/0000-0001-8287-6804
FU Joint Theory Institute of the University of Chicago and Argonne
Laboratory; NIH [GM072558, GM051501]
FX H.Y. is supported by a postdoctoral fellowship from the Joint Theory
Institute of the University of Chicago and Argonne Laboratory. This work
was funded in part by NIH grants GM072558 and GM051501.
NR 97
TC 179
Z9 180
U1 19
U2 108
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 1549-9618
EI 1549-9626
J9 J CHEM THEORY COMPUT
JI J. Chem. Theory Comput.
PD MAR
PY 2010
VL 6
IS 3
BP 774
EP 786
DI 10.1021/ct900576a
PG 13
WC Chemistry, Physical; Physics, Atomic, Molecular & Chemical
SC Chemistry; Physics
GA 564CL
UT WOS:000275189400017
PM 20300554
ER
PT J
AU Lee, HKH
Taddy, M
Gray, GA
AF Lee, Herbert K. H.
Taddy, Matthew
Gray, Genetha A.
TI Selection of a Representative Sample
SO JOURNAL OF CLASSIFICATION
LA English
DT Article
DE Bayesian statistics; Clustering; Mixture model; Data reduction
ID DENSITY-ESTIMATION; CALIBRATION
AB Sometimes a larger dataset needs to be reduced to just a few points, and it is desirable that these points be representative of the whole dataset. If the future uses of these points are not fully specified in advance, standard decision-theoretic approaches will not work. We present here methodology for choosing a small representative sample based on a mixture modeling approach.
C1 [Lee, Herbert K. H.] Univ Calif Santa Cruz, Baskin Sch Engn, Dept Appl Math & Stat, Santa Cruz, CA 95064 USA.
[Taddy, Matthew] Univ Chicago, Chicago, IL 60637 USA.
[Gray, Genetha A.] Sandia Natl Labs, Livermore, CA 94550 USA.
RP Lee, HKH (reprint author), Univ Calif Santa Cruz, Baskin Sch Engn, Dept Appl Math & Stat, 1156 High St, Santa Cruz, CA 95064 USA.
EM herbie@soe.ucsc.edu
FU Sandia grant [673400]
FX H. K. H. Lee is Professor, Department of Applied Mathematics and
Statistics, University of California, Santa Cruz, CA; M. Taddy is
Assistant Professor, Booth School of Business, University of Chicago; G.
A. Gray is Technical Staff Member, Sandia National Laboratories,
Livermore, CA. This work was partially supported by Sandia grant 673400.
The authors would like to thank the editor and two reviewers for their
helpful suggestions that have improved this paper.
NR 20
TC 2
Z9 2
U1 0
U2 2
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 0176-4268
J9 J CLASSIF
JI J. Classif.
PD MAR
PY 2010
VL 27
IS 1
BP 41
EP 53
DI 10.1007/s00357-010-9044-x
PG 13
WC Mathematics, Interdisciplinary Applications; Psychology, Mathematical
SC Mathematics; Psychology
GA 601VX
UT WOS:000278094600003
ER
PT J
AU Zhang, GJ
Vogelmann, AM
Jensen, MP
Collins, WD
Luke, EP
AF Zhang, Guang J.
Vogelmann, Andrew M.
Jensen, Michael P.
Collins, William D.
Luke, Edward P.
TI Relating Satellite-Observed Cloud Properties from MODIS to
Meteorological Conditions for Marine Boundary Layer Clouds
SO JOURNAL OF CLIMATE
LA English
DT Article
ID GENERAL-CIRCULATION MODELS; SEA-SURFACE TEMPERATURE;
PHYSICAL-PROPERTIES; SEASONAL-VARIATIONS; NORTHEAST PACIFIC; STRATUS
CLOUDS; STRATOCUMULUS; VARIABILITY; AEROSOL; DRIZZLE
AB This study examines 6 yr of cloud properties observed by the Moderate Resolution Imaging Spectroradiometer (MODIS) on board the NASA Terra satellite in five prominent marine boundary layer (MBL) cloud regions (California, Peru, Canary, Angola, and Australia) and investigates their relationships with near-surface meteorological parameters obtained from NCEP reanalyses. About 62 000 independent scenes are used to examine the instantaneous relationships between cloud properties and meteorological parameters that may be used for global climate model (GCM) diagnostics and parameterization. Cloud liquid water path (LWP) generally increases with lower-tropospheric stability (LTS) and lifting condensation level (LCL), whereas cloud drizzle frequency is favored by weak LTS and negligible cold air advection. Cloud fraction (CF) depends strongly on variations in LTS, and to a lesser extent on surface air temperature advection and LCL, although the relationships vary from region to region. The authors propose capturing the effects of these three parameters on CF via their linear combination in terms of a single parameter, the effective lower-tropospheric stability (eLTS). Results indicate that eLTS offers a marked improvement over LTS alone in explaining the median CF variations within the different study regions. A parameterization of CF in terms of eLTS is provided, which produces results that are improved over those of Klein and Hartmann's LTS-only parameterization. However, the new parameterization may not predict the observed variability correctly, and the authors propose a method that might address this shortcoming via a statistical approach.
C1 [Zhang, Guang J.] Univ Calif San Diego, Scripps Inst Oceanog, La Jolla, CA 92093 USA.
[Vogelmann, Andrew M.; Jensen, Michael P.; Luke, Edward P.] Brookhaven Natl Lab, Upton, NY 11973 USA.
[Collins, William D.] Univ Calif Berkeley, Dept Earth & Planetary Sci, Berkeley, CA 94720 USA.
[Collins, William D.] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Earth Sci, Berkeley, CA 94720 USA.
RP Zhang, GJ (reprint author), Univ Calif San Diego, Scripps Inst Oceanog, La Jolla, CA 92093 USA.
EM gzhang@ucsd.edu
RI Collins, William/J-3147-2014; Vogelmann, Andrew/M-8779-2014
OI Collins, William/0000-0002-4463-9848; Vogelmann,
Andrew/0000-0003-1918-5423
FU GWEC [NASA NAG5-11716]; Office of Science Biological and Environmental
Research Program (BER), U. S. Department of Energy [DE-FG02-09ER64736,
DE-AC02-05CH11231]; NSF [ATM-0832915]; Brookhaven National Laboratory
FX This work was supported by GWEC Grant NASA NAG5-11716, the Office of
Science Biological and Environmental Research Program (BER), U. S.
Department of Energy Grant DE-FG02-09ER64736, the NSF Grant ATM-0832915,
and the Brookhaven National Laboratory. Collins's work was supported by
the Director, Office of Science of the U. S. Department of Energy under
Contract DE-AC02-05CH11231.
NR 33
TC 9
Z9 9
U1 0
U2 5
PU AMER METEOROLOGICAL SOC
PI BOSTON
PA 45 BEACON ST, BOSTON, MA 02108-3693 USA
SN 0894-8755
EI 1520-0442
J9 J CLIMATE
JI J. Clim.
PD MAR
PY 2010
VL 23
IS 6
BP 1374
EP 1391
DI 10.1175/2009JCLI2897.1
PG 18
WC Meteorology & Atmospheric Sciences
SC Meteorology & Atmospheric Sciences
GA 572KH
UT WOS:000275830100007
ER
PT J
AU Wang, M
Revil, A
AF Wang, Moran
Revil, Andre
TI Electrochemical charge of silica surfaces at high ionic strength in
narrow channels
SO JOURNAL OF COLLOID AND INTERFACE SCIENCE
LA English
DT Article
DE Electrical triple-layer; Electrochemical charge; Charge regulation; High
ionic strength
ID 4-LAYER COMPLEXATION MODEL; PRESSURE-DRIVEN TRANSPORT; OXIDE-WATER
INTERFACE; NANOFLUIDIC CHANNELS; ELECTROLYTE/OXIDE INTERFACE;
ELECTROKINETIC TRANSPORT; ENERGY-CONVERSION; QUARTZ FLOTATION;
POROUS-MEDIA; LAYER MODEL
AB We present a theoretical framework to calculate the electrochemical charge on silica surfaces in contact with high-ionic-strength solutions in narrow channels. Analytical results indicate that the contribution of the adsorbed metal cations to the total surface charge is not negligible when the salinity is larger than 1 mM. The electrical triple-layer model is proved much better than other models for high ionic strength, The charge regulation caused by the double-layer overlap in narrow channels will reduce the surface charge density but increase the zeta potential on silica surfaces. Published by Elsevier Inc.
C1 [Wang, Moran] Los Alamos Natl Lab, Computat Earth Sci Grp EES 16, Div Earth & Environm Sci, Los Alamos, NM 87545 USA.
[Wang, Moran] Los Alamos Natl Lab, Ctr Nonlinear Studies, Div Theoret, Los Alamos, NM 87545 USA.
[Revil, Andre] Colorado Sch Mines, Dept Geophys, Golden, CO 80401 USA.
[Revil, Andre] Univ Savoie, Equipe Volcan, CNRS, LGIT,UMR 5559, F-73376 Le Bourget Du Lac, France.
RP Wang, M (reprint author), Los Alamos Natl Lab, Computat Earth Sci Grp EES 16, Div Earth & Environm Sci, Los Alamos, NM 87545 USA.
EM mwang@lanl.gov
RI Wang, Moran/A-1150-2010
FU LANL [20080727PRD2]
FX This work is supported by LANL's LDRD Project 20080727PRD2, through the
J.R. Oppenheimer Fellowship awarded to M.W. The authors thank Dr. Q.
Kang, Dr. M. Bazant and Dr. L. Chen for helpful discussions.
NR 40
TC 55
Z9 56
U1 3
U2 41
PU ACADEMIC PRESS INC ELSEVIER SCIENCE
PI SAN DIEGO
PA 525 B ST, STE 1900, SAN DIEGO, CA 92101-4495 USA
SN 0021-9797
J9 J COLLOID INTERF SCI
JI J. Colloid Interface Sci.
PD MAR 1
PY 2010
VL 343
IS 1
BP 381
EP 386
DI 10.1016/j.jcis.2009.11.039
PG 6
WC Chemistry, Physical
SC Chemistry
GA 555XB
UT WOS:000274548900053
PM 20035946
ER
PT J
AU Ramanathan, A
Agarwal, PK
Kurnikova, M
Langmead, CJ
AF Ramanathan, Arvind
Agarwal, Pratul K.
Kurnikova, Maria
Langmead, Christopher J.
TI An Online Approach for Mining Collective Behaviors from Molecular
Dynamics Simulations
SO JOURNAL OF COMPUTATIONAL BIOLOGY
LA English
DT Article
DE biochemical networks; computational molecular biology; machine learning;
protein folding; proteins
ID PROTEIN DYNAMICS; CYCLOPHILIN-A; BARNASE; CATALYSIS; MOTIONS;
ISOMERIZATION; ALGORITHMS; STABILITY; NMR
AB Collective behavior involving distally separate regions in a protein is known to widely affect its function. In this article, we present an online approach to study and characterize collective behavior in proteins as molecular dynamics (MD) simulations progress. Our representation of MD simulations as a stream of continuously evolving data allows us to succinctly capture spatial and temporal dependencies that may exist and analyze them efficiently using data mining techniques. By using tensor analysis we identify (a) collective motions (i.e., dynamic couplings) and (b) time-points during the simulation where the collective motions suddenly change. We demonstrate the applicability of this method on two different protein simulations for barnase and cyclophilin A. We characterize the collective motions in these proteins using our method and analyze sudden changes in these motions. Taken together, our results indicate that tensor analysis is well suited to extracting information from MD trajectories in an online fashion.
C1 [Langmead, Christopher J.] Carnegie Mellon Univ, Dept Comp Sci, Pittsburgh, PA 15213 USA.
[Ramanathan, Arvind; Langmead, Christopher J.] Carnegie Mellon Univ, Lane Ctr Computat Biol, Pittsburgh, PA 15213 USA.
[Kurnikova, Maria] Carnegie Mellon Univ, Dept Chem, Pittsburgh, PA 15213 USA.
[Agarwal, Pratul K.] Oak Ridge Natl Lab, Computat Biol Inst, Oak Ridge, TN USA.
[Agarwal, Pratul K.] Oak Ridge Natl Lab, Comp Sci & Math Div, Oak Ridge, TN USA.
RP Langmead, CJ (reprint author), Carnegie Mellon Univ, Dept Comp Sci, 5000 Forbes Ave, Pittsburgh, PA 15213 USA.
EM cjl@cs.cmu.edu
RI Ramanathan, Arvind/E-5388-2010
FU U.S. Department of Energy (DOE); Microsoft Research; Oak Ridge National
Laboratory
FX We thank Christos Faloutsos and Jimeng Sun from the Computer Science
Department at Carnegie Mellon for introducing us to dynamic tensor
analysis (DTA) and providing us with the implementation of DTA. We thank
Tatyana Mamonova from the Kurnikova group for providing us access to
molecular dynamics simulations of barnase. We also thank Hetunandan
Kamisetty from the Langmead Laboratory for constructive discussions. We
thank the anonymous reviewers for their valuable comments. This work was
supported in part by U.S. Department of Energy (DOE) Career Award and a
grant from Microsoft Research to C.J.L. Pratul K. Agarwal would like to
acknowledge the financial support from the Laboratory Directed Research
and Development Program of Oak Ridge National Laboratory, managed by
UT-Battelle, LLC for the DOE.
NR 44
TC 9
Z9 9
U1 0
U2 10
PU MARY ANN LIEBERT INC
PI NEW ROCHELLE
PA 140 HUGUENOT STREET, 3RD FL, NEW ROCHELLE, NY 10801 USA
SN 1066-5277
J9 J COMPUT BIOL
JI J. Comput. Biol.
PD MAR
PY 2010
VL 17
IS 3
BP 309
EP 324
DI 10.1089/cmb.2009.0167
PG 16
WC Biochemical Research Methods; Biotechnology & Applied Microbiology;
Computer Science, Interdisciplinary Applications; Mathematical &
Computational Biology; Statistics & Probability
SC Biochemistry & Molecular Biology; Biotechnology & Applied Microbiology;
Computer Science; Mathematical & Computational Biology; Mathematics
GA 617HM
UT WOS:000279271600008
PM 20377447
ER
PT J
AU Li, H
Fedorov, DG
Nagata, T
Kitaura, K
Jensen, JH
Gordon, MS
AF Li, Hui
Fedorov, Dmitri G.
Nagata, Takeshi
Kitaura, Kazuo
Jensen, Jan H.
Gordon, Mark S.
TI Energy Gradients in Combined Fragment Molecular Orbital and Polarizable
Continuum Model (FMO/PCM) Calculation
SO JOURNAL OF COMPUTATIONAL CHEMISTRY
LA English
DT Article
DE fragment molecular orbital; polarizable continuum model; geometry
optimization; polyalanine; Trp-cage miniprotein; solution structure
ID DENSITY-FUNCTIONAL THEORY; QUANTUM-CHEMICAL CALCULATION;
ELECTRONIC-STRUCTURE; ELONGATION METHOD; METHOD FMO; GEOMETRY
OPTIMIZATIONS; THEORETICAL SYNTHESIS; LARGE SYSTEMS; WAVE-FUNCTION;
PROTEIN
AB The analytic energy gradients for the combined fragment molecular orbital and polarizable continuum model (FMO/PCM) method are derived and implemented. Applications of FMO/PCM geometry optimization to polyalanine show that the structures obtained with the FMO/PCM method are very close to those obtained with the corresponding full ab initio PCM methods. FMO/PCM (RHF/6-31G* level) is used to optimize the solution structure of the 304-atom Trp-cage miniprotein and the result is in agreement with NMR experiments. The key factors determining the relative stability of the alpha-helix, beta-turn and the extended form in solution are elucidated for polyalanine. (C) 2009 Wiley Periodicals, Inc. J Comput Chem 31: 778-790, 2010
C1 [Li, Hui] Univ Nebraska, Dept Chem, Lincoln, NE 68588 USA.
[Fedorov, Dmitri G.; Nagata, Takeshi; Kitaura, Kazuo] Natl Inst Adv Ind Sci & Technol, Tsukuba, Ibaraki 3058568, Japan.
[Kitaura, Kazuo] Kyoto Univ, Grad Sch Pharmaceut Sci, Sakyo Ku, Kyoto 6068501, Japan.
[Jensen, Jan H.] Univ Copenhagen, Dept Chem, DK-2100 Copenhagen, Denmark.
[Gordon, Mark S.] Iowa State Univ, Ames Lab, US DOE, Ames, IA 50011 USA.
[Gordon, Mark S.] Iowa State Univ, Dept Chem, Ames, IA 50011 USA.
RP Li, H (reprint author), Univ Nebraska, Dept Chem, Lincoln, NE 68588 USA.
EM hli4@unl.edu; d.g.fedorov@aist.go.jp
RI Jensen, Jan/G-4338-2010
OI Jensen, Jan/0000-0002-1465-1010
FU University of Nebraska-Lincoln; JSPS; Next Generation SuperComputing
Project; MEXT, Japan; Danish Research Agency; USA National Science
Foundation
FX Contract/grant sponsors: University of Nebraska-Lincoln, JSPS, Next
Generation SuperComputing Project, Nanoscience Program (MEXT, Japan),
Danish Research Agency; USA National Science Foundation Petascale
Applications grant
NR 77
TC 30
Z9 30
U1 0
U2 5
PU WILEY-BLACKWELL
PI HOBOKEN
PA 111 RIVER ST, HOBOKEN 07030-5774, NJ USA
SN 0192-8651
J9 J COMPUT CHEM
JI J. Comput. Chem.
PD MAR
PY 2010
VL 31
IS 4
BP 778
EP 790
DI 10.1002/jcc.21363
PG 13
WC Chemistry, Multidisciplinary
SC Chemistry
GA 560SG
UT WOS:000274922000010
PM 19569184
ER
PT J
AU Liska, R
Shashkov, M
Vachal, P
Wendroff, B
AF Liska, Richard
Shashkov, Mikhail
Vachal, Pavel
Wendroff, Burton
TI Optimization-based synchronized flux-corrected conservative
interpolation (remapping) of mass and momentum for arbitrary
Lagrangian-Eulerian methods
SO JOURNAL OF COMPUTATIONAL PHYSICS
LA English
DT Article
DE FCT; Flux-corrected remapping; ALE
ID FINITE-ELEMENT-METHOD; OF-COMPUTATIONAL-PHYSICS; UNSTRUCTURED GRIDS;
COMPUTING-METHOD; FLOW SPEEDS; ALE METHOD; ADVECTION; TRANSPORT;
HYDROCODES; EFFICIENT
AB A new optimization-based synchronized flux-corrected conservative interpolation (remapping) of mass and momentum for arbitrary Lagrangian-Eulerian hydro methods is described. Fluxes of conserved variables - mass and momentum - are limited in a synchronous way to preserve local bounds of primitive variables - density and velocity. Published by Elsevier Inc.
C1 [Shashkov, Mikhail; Wendroff, Burton] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
[Liska, Richard; Vachal, Pavel] Czech Tech Univ, Fac Nucl Sci & Phys Engn, CR-11519 Prague 1, Czech Republic.
RP Shashkov, M (reprint author), Los Alamos Natl Lab, Div Theoret, MS B284, Los Alamos, NM 87545 USA.
EM liska@siduri.fjfi.cvut.cz; shashkov@lanl.gov;
vachal@galileo.fjfi.cvut.cz; bbw@lanl.gov
RI Vachal, Pavel/G-2131-2011; Liska, Richard/C-3142-2009;
OI Liska, Richard/0000-0002-6149-0440; Vachal, Pavel/0000-0002-6668-9045
FU US Department of Energy [DE-AC52-06NA25396]; Laboratory Directed
Research and Development program (LDRD) at the Los Alamos National
Laboratory; Czech Ministry of Education [MSM 6840770022, MSM 6840770010,
LC528]
FX This work was performed under the auspices of the National Nuclear
Security Administration of the US Department of Energy at Los Alamos
National Laboratory under Contract DE-AC52-06NA25396. The authors
acknowledge the partial support of the DOE Advance Simulation and
Computing (ASC) Program and the DOE Office of Science ASCR Program, and
the Laboratory Directed Research and Development program (LDRD) at the
Los Alamos National Laboratory. The first and the third author have been
supported in part by the Czech Ministry of Education grants MSM
6840770022, MSM 6840770010 and LC528.; The authors thank P.
Smolarkiewicz, D. Kuzmin, C. Schar, B. Kashiwa, T. Ringler, J. Shadid,
L. Margolin and B. Rider for fruitful discussions and constructive
comments.
NR 30
TC 22
Z9 22
U1 0
U2 3
PU ACADEMIC PRESS INC ELSEVIER SCIENCE
PI SAN DIEGO
PA 525 B ST, STE 1900, SAN DIEGO, CA 92101-4495 USA
SN 0021-9991
J9 J COMPUT PHYS
JI J. Comput. Phys.
PD MAR 1
PY 2010
VL 229
IS 5
BP 1467
EP 1497
DI 10.1016/j.jcp.2009.10.039
PG 31
WC Computer Science, Interdisciplinary Applications; Physics, Mathematical
SC Computer Science; Physics
GA 552QY
UT WOS:000274309700005
ER
PT J
AU Wang, P
AF Wang, Ping
TI Modeling material responses by arbitrary Lagrangian Eulerian formulation
and adaptive mesh refinement method
SO JOURNAL OF COMPUTATIONAL PHYSICS
LA English
DT Article
DE Arbitrary Lagrangian Eulerian; Adaptive mesh refinement; Elastic-plastic
flow; Fragmentation; Johnson-Cook failure model
ID HYPERBOLIC CONSERVATION-LAWS; EQUATIONS; SCHEME; RING
AB In this paper we report an efficient numerical method combining a staggered arbitrary Lagrangian Eulerian (ALE) formulation with the adaptive mesh refinement (AMR) method for materials modeling including elastic-plastic flows, material failure, and fragmentation predictions. Unlike traditional AMR applied on fixed domains, our investigation focuses on the application to moving and deforming meshes resulting from Lagrangian motion. We give details of this numerical method with a capability to simulate elastic-plastic flows and predict material failure and fragmentation, and our main focus of this paper is to create an efficient method which combines ALE and AMR methods to simulate the dynamics of material responses with deformation and failure mechanisms. The interlevel operators and boundary conditions for these problems in AMR meshes have been investigated, and error indicators to locate material deformation and failure regions are studied. The method has been applied on several test problems, and the solutions of the problems obtained with the ALE-AMR method are reported. Parallel performance and software design for the ALE-AMR method are also discussed. (C) 2009 Elsevier Inc. All rights reserved.
C1 Lawrence Livermore Natl Lab, Livermore, CA 94551 USA.
RP Wang, P (reprint author), Lawrence Livermore Natl Lab, POB 808,L-039, Livermore, CA 94551 USA.
EM wang32@llnl.gov
FU US Department of Energy [DE-AC52-07NA27344]
FX This work is performed under the auspices of the US Department of Energy
by Lawrence Livermore National Laboratory under Contract
DE-AC52-07NA27344. The author wishes to acknowledge Dr. Robert Anderson
for his support for this work, and the author benefits a lot from his
early research work on ALE-AMR for gas dynamics. The author likes to
thank Dr. Rich Becker for suggesting the ring problem and Dr. Alice
Koniges for stimulating discussions for possible future applications.
The author also likes to acknowledge the SAMRAI group of the Center for
Applied Scientific Computing (CASC), the ALE-AMR group of CASC, and
ALE3D group at LLNL for their support for this work.
NR 21
TC 4
Z9 4
U1 0
U2 5
PU ACADEMIC PRESS INC ELSEVIER SCIENCE
PI SAN DIEGO
PA 525 B ST, STE 1900, SAN DIEGO, CA 92101-4495 USA
SN 0021-9991
EI 1090-2716
J9 J COMPUT PHYS
JI J. Comput. Phys.
PD MAR 1
PY 2010
VL 229
IS 5
BP 1573
EP 1599
DI 10.1016/j.jcp.2009.10.045
PG 27
WC Computer Science, Interdisciplinary Applications; Physics, Mathematical
SC Computer Science; Physics
GA 552QY
UT WOS:000274309700010
ER
PT J
AU Luu, T
Brooks, ED
Szoke, A
AF Luu, Thomas
Brooks, Eugene D., III
Szoke, Abraham
TI Generalized reference fields and source interpolation for the difference
formulation of radiation transport
SO JOURNAL OF COMPUTATIONAL PHYSICS
LA English
DT Article
DE Difference formulation; Radiation transport; Implicit Monte Carlo
ID MONTE-CARLO METHOD; TRANSFER EQUATIONS; DISCRETIZATION
AB In the difference formulation for the transport of thermally emitted photons the photon intensity is defined relative to a reference field, the black body at the local material temperature. This choice of reference field combines the separate emission and absorption terms that nearly cancel, thereby removing the dominant cause of noise in the Monte Carlo solution of thick systems, but introduces time and space derivative source terms that cannot be determined until the end of the time step. The space derivative source term can also lead to noise induced crashes under certain conditions where the real physical photon intensity differs strongly from a black body at the local material temperature.
In this paper, we consider a difference formulation relative to the material temperature at the beginning of the time step, or in cases where an alternative temperature better describes the radiation field, that temperature. The result is a method where iterative solution of the material energy equation is efficient and noise induced Crashes are avoided. We couple our generalized reference field scheme with an ad hoc interpolation of the space derivative source, resulting in an algorithm that produces the correct flux between zones as the physical system approaches the thick limit. (C) 2009 Elsevier Inc. All rights reserved.
C1 [Luu, Thomas; Brooks, Eugene D., III; Szoke, Abraham] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
RP Brooks, ED (reprint author), Lawrence Livermore Natl Lab, POB 808, Livermore, CA 94550 USA.
EM brooks3@llnl.gov
FU US Department of Energy by Lawrence Livermore National Laboratory
[DE-AC52-07NA27344]
FX This work performed under the auspices of the US Department of Energy by
Lawrence Livermore National Laboratory under Contract DE-AC52-07NA27344.
NR 16
TC 0
Z9 0
U1 0
U2 1
PU ACADEMIC PRESS INC ELSEVIER SCIENCE
PI SAN DIEGO
PA 525 B ST, STE 1900, SAN DIEGO, CA 92101-4495 USA
SN 0021-9991
J9 J COMPUT PHYS
JI J. Comput. Phys.
PD MAR 1
PY 2010
VL 229
IS 5
BP 1626
EP 1642
DI 10.1016/j.jcp.2009.10.049
PG 17
WC Computer Science, Interdisciplinary Applications; Physics, Mathematical
SC Computer Science; Physics
GA 552QY
UT WOS:000274309700013
ER
PT J
AU Istok, JD
Park, M
Michalsen, M
Spain, AM
Krumholz, LR
Liu, C
McKinley, J
Long, P
Roden, E
Peacock, AD
Baldwin, B
AF Istok, J. D.
Park, M.
Michalsen, M.
Spain, A. M.
Krumholz, L. R.
Liu, C.
McKinley, J.
Long, P.
Roden, E.
Peacock, A. D.
Baldwin, B.
TI A thermodynamically-based model for predicting microbial growth and
community composition coupled to system geochemistry: Application to
uranium bioreduction
SO JOURNAL OF CONTAMINANT HYDROLOGY
LA English
DT Article
DE Biogeochemistry; Uranium; Bioreduction; Thermodynamics; Modeling
ID METAL-REDUCING BACTERIUM; IN-SITU BIOSTIMULATION; CONTAMINATED AQUIFER;
BIOMASS YIELDS; POROUS-MEDIA; REDUCTION; GROUNDWATER; OXIDE; FE(III);
IRON
AB 'Bioimmobilization' of redox-sensitive heavy metals and radionuclides is being investigated as a way to remediate contaminated groundwater and sediments. In one approach, growth-limiting substrates are added to the subsurface to stimulate the activity of targeted groups of indigenous microorganisms and create conditions favorable for the microbially-mediated reductive precipitation ('bioreduction') of targeted contaminants. We present a theoretical framework for modeling this process that modifies conventional geochemical reaction path modeling to include thermodynamic descriptions for microbial growth and may be called biogeochemical reaction path modeling. In this approach, the actual microbial community is represented by a synthetic microbial community consisting of a collection of microbial groups; each with a unique growth equation that couples a specific pair of energy yielding redox reactions. The growth equations and their computed standard-state free energy yields are appended to the thermodynamic database used in conventional geochemical reaction path modeling, providing a direct coupling between chemical species participating in both microbial growth and geochemical reactions. To compute the biogeochemical reaction paths, growth substrates are reacted incrementally with the defined geochemical environment and the coupled equations are solved simultaneously to predict reaction paths that display changing microbial biomass, community composition (i.e. the fraction of total biomass in each microbial group), and the aqueous and mineral composition of the system, including aqueous speciation and oxidation state of the targeted contaminants. The approach, with growth equations derived from the literature using well-known bioenergetics principles, was used to predict the results of a laboratory microcosm experiment and an in situ field experiment that investigated the bioreduction of uranium. Predicted effects of ethanol or acetate addition on uranium concentration and speciation, major ion geochemistry, mineralogy, microbial biomass and community composition were in qualitative agreement with experimental observations although the available data precluded rigorous model testing. While originally developed for use in better understanding of bioimmobilization of heavy metals and radionuclides, the modeling approach is potentially useful for exploring the coupling of microbial growth and geochemical reactions in a variety of other basic and applied biotechnology research settings. (C) 2009 Elsevier B.V. All rights reserved.
C1 [Istok, J. D.; Park, M.; Michalsen, M.] Oregon State Univ, Dept Civil Engn, Corvallis, OR 97331 USA.
[Spain, A. M.; Krumholz, L. R.] Univ Oklahoma, Dept Bot & Microbiol, Norman, OK 73019 USA.
[Liu, C.; McKinley, J.; Long, P.] Pacific NW Natl Lab, Richland, WA 99352 USA.
[Roden, E.] Univ Wisconsin, Dept Geol & Geophys, Madison, WI 53706 USA.
[Peacock, A. D.; Baldwin, B.] Univ Tennessee, Ctr Biomarker Anal, Knoxville, TN 37996 USA.
RP Istok, JD (reprint author), Oregon State Univ, Dept Civil Engn, Corvallis, OR 97331 USA.
EM jack.istok@orst.edu
RI Liu, Chongxuan/C-5580-2009
FU DOE Office of Science, Office of Biological and Environmental Research
[FG03-02ER63443, DE-FC02-96ER62278, FG02-00ER62986, DE-FG02-06ER64184,
DE-FG04-ER64172]
FX This research was supported by Grants FG03-02ER63443, DE-FC02-96ER62278,
FG02-00ER62986 (subcontract FSU F48792), DE-FG02-06ER64184, and
DE-FG04-ER64172 from the DOE Office of Science, Office of Biological and
Environmental Research, Environmental Remediation Sciences Program.
Additional support was provided by Integrative Graduate Education and
Research Traineeship (IGERT) grant from the National Science Foundation.
The authors would like to thank R.T. Anderson and three anonymous
reviewers for their constructive comments.
NR 58
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U2 19
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0169-7722
J9 J CONTAM HYDROL
JI J. Contam. Hydrol.
PD MAR 1
PY 2010
VL 112
IS 1-4
SI SI
BP 1
EP 14
DI 10.1016/j.jconhyd.2009.07.004
PG 14
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 571EY
UT WOS:000275735600001
PM 19683832
ER
PT J
AU Molins, S
Mayer, KU
Amos, RT
Bekins, BA
AF Molins, S.
Mayer, K. U.
Amos, R. T.
Bekins, B. A.
TI Vadose zone attenuation of organic compounds at a crude oil spill site -
Interactions between biogeochemical reactions and multicomponent gas
transport
SO JOURNAL OF CONTAMINANT HYDROLOGY
LA English
DT Article
DE Reactive transport modeling; Vadose zone; Natural attenuation; Organic
contaminants; Multicomponent gas transport
ID UNSATURATED ZONE; NATURAL ATTENUATION; GRAVEL AQUIFER; SHALLOW SAND;
POROUS-MEDIA; METHANE OXIDATION; VAPOR TRANSPORT; COVER SOILS;
BIODEGRADATION; MODEL
AB Contaminant attenuation processes in the vadose zone of a crude oil spill site near Bemidji, MN have been simulated with a reactive transport model that includes multicomponent gas transport, solute transport, and the most relevant biogeochemical reactions. Dissolution and volatilization of oil components, their aerobic and anaerobic degradation coupled with sequential electron acceptor consumption, ingress of atmospheric O(2), and the release of CH(4) and CO(2) from the smear zone generated by the floating oil were considered. The focus of the simulations was to assess the dynamics between biodegradation and gas transport processes in the vadose zone, to evaluate the rates and contributions of different electron accepting processes towards vadose zone natural attenuation, and to provide an estimate of the historical mass loss. Concentration distributions of reactive (O(2), CH(4), and CO(2)) and non-reactive (Ar and N(2)) gases served as key constraints for the model calibration. Simulation results confirm that as of 2007, the main degradation pathway can be attributed to methanogenic degradation of organic compounds in the smear zone and the vadose zone resulting in a contaminant plume dominated by high CH(4) concentrations. In accordance with field observations, zones of volatilization and CH generation are correlated to slightly elevated total gas pressures and low partial pressures of N(2) and Ar, while zones of aerobic CH(4) oxidation are characterized by slightly reduced gas pressures and elevated concentrations of N(2) and Ar. Diffusion is the most significant transport mechanism for gases in the vadose zone: however, the simulations also indicate that, despite very small pressure gradients, advection contributes up to 15% towards the net flux of CH(4), and to a more limited extent to O(2) ingress. Model calibration strongly suggests that transfer of biogenically generated gases from the smear zone provides a major control on vadose zone gas distributions and vadose zone carbon balance. Overall, the model was successful in capturing the complex interactions between biogeochemical reactions and multicomponent gas transport processes. However, despite employing a process-based modeling approach, honoring observed parameter ranges, and generally obtaining good agreement between field observations and model simulations, accurate quantification of natural attenuation rates remains difficult. The modeling results are affected by uncertainties regarding gas phase saturations, tortuosities, and the magnitude of CH(4) and CO(2) flux from the smear zone. These findings highlight the need to better delineate gas fluxes at the model boundaries, which will help constrain contaminant degradation rates, and ultimately source zone longevity. (C) 2009 Elsevier B.V. All rights reserved.
C1 [Molins, S.; Mayer, K. U.] Univ British Columbia, Dept Earth & Ocean Sci, Vancouver, BC V6T 1Z4, Canada.
[Amos, R. T.] Univ Waterloo, Dept Earth Sci, Waterloo, ON N2L 3G1, Canada.
[Bekins, B. A.] US Geol Survey, Menlo Pk, CA 94025 USA.
RP Molins, S (reprint author), Lawrence Berkeley Natl Lab, 1 Cyclotron Rd MS 90R1116, Berkeley, CA 94720 USA.
EM smolins@lbl.gov
RI Molins, Sergi/A-9097-2012;
OI Molins, Sergi/0000-0001-7675-3218; Mayer, K. Ulrich/0000-0002-4168-781X
FU NSERC (Natural Sciences and Engineering Research Council of Canada); K.
Ulrich Mayer and a University Graduate Fellowship; Canada Foundation for
Innovation; Alberta Innovation and Science; British Columbia Advanced
Education
FX Funding for this research was provided through an NSERC (Natural
Sciences and Engineering Research Council of Canada) discovery grant
held by K. Ulrich Mayer and a University Graduate Fellowship awarded to
S. Molins. This research has been enabled by the use of WestGrid
computing resources, which are funded in part by the Canada Foundation
for Innovation, Alberta Innovation and Science, British Columbia
Advanced Education, and the participating research institutions.
WestGrid equipment is provided by IBM, Hewlett Packard and SGI. The
authors would like to thank Geoff Delin (USGS, Lakewood, CO) and Chris
Green (USGS, Menlo Park, CA) for thoughtful and constructive reviews of
an earlier version of this manuscript.
NR 55
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PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0169-7722
J9 J CONTAM HYDROL
JI J. Contam. Hydrol.
PD MAR 1
PY 2010
VL 112
IS 1-4
SI SI
BP 15
EP 29
DI 10.1016/j.jconhyd.2009.09.002
PG 15
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 571EY
UT WOS:000275735600002
PM 19853961
ER
PT J
AU Zhao, J
Fang, YL
Scheibe, TD
Lovley, DR
Mahadevan, R
AF Zhao, Jiao
Fang, Yilin
Scheibe, Timothy D.
Lovley, Derek R.
Mahadevan, R.
TI Modeling and sensitivity analysis of electron capacitance for Geobacter
in sedimentary environments
SO JOURNAL OF CONTAMINANT HYDROLOGY
LA English
DT Article
DE Geobacter; Bioremediation; Electron capacitors; Uranium; Fe(III)
reduction; Global sensitivity analysis
ID C-TYPE CYTOCHROMES; URANIUM-CONTAMINATED AQUIFER; CRYSTALLINE IRON(III)
OXIDES; INSOLUBLE FE(III) OXIDE; IN-SITU BIOSTIMULATION; MICROBIAL
REDUCTION; SYSTEMS-BIOLOGY; DESULFOVIBRIO-VULGARIS; DISSIMILATORY
FE(III); COMMUNITY STRUCTURE
AB In situ stimulation of the metabolic activity of Geobacter species through acetate amendment has been shown to be a promising bioremediation strategy to reduce and immobilize hexavalent uranium [U(VI)] as insoluble U(IV). Although Geobacter species are reducing U(VI), they primarily grow via Fe(III) reduction. Unfortunately, the biogeochemistry and the physiology of simultaneous reduction of multiple metals are still poorly understood. A detailed model is therefore required to better understand the pathways leading to U(VI) and Fe(III) reduction by Geobacter species. Based on recent experimental evidence of temporary electron capacitors in Geobacter we propose a novel kinetic model that physically distinguishes planktonic cells into electron-loaded and -unloaded states. Incorporation of an electron load-unload cycle into the model provides insight into U(VI) reduction efficiency, and elucidates the relationship between U(VI)- and Fe(III)-reducing activity and further explains the correlation of high U(VI) removal with high fractions of planktonic cells in subsurface environments. Global sensitivity analysis was used to determine the level of importance of geochemical and microbial processes controlling Geobacter growth and U(VI) reduction, suggesting that the electron load-unload cycle and the resulting repartition of the microbes between aqueous and attached phases are critical for U(VI) reduction. As compared with conventional Monod modeling approaches without inclusion of the electron capacitance, the new model attempts to incorporate a novel cellular mechanism that has a significant impact on the outcome of in situ bioremediation. (C) 2009 Elsevier B.V. All rights reserved.
C1 [Zhao, Jiao; Mahadevan, R.] Univ Toronto, Dept Chem Engn & Appl Chem, Toronto, ON M5S 3E5, Canada.
[Fang, Yilin; Scheibe, Timothy D.] Pacific NW Natl Lab, Richland, WA 99352 USA.
[Lovley, Derek R.] Univ Massachusetts, Dept Microbiol, Amherst, MA 01003 USA.
[Mahadevan, R.] Univ Toronto, Inst Biomat & Biomed Engn, Toronto, ON M5S 3G9, Canada.
RP Mahadevan, R (reprint author), Univ Toronto, Dept Chem Engn & Appl Chem, 200 Coll St, Toronto, ON M5S 3E5, Canada.
EM krishna.mahadevan@utoronto.ca
RI Scheibe, Timothy/A-8788-2008; Mahadevan, Radhakrishnan/A-8502-2008;
Fang, Yilin/J-5137-2015
OI Scheibe, Timothy/0000-0002-8864-5772; Mahadevan,
Radhakrishnan/0000-0002-1270-9063;
FU Office of Science (BER), U.S. Department of Energy [DE-FG02-07ER64367,
DE-FC02-02ER63446]
FX This research was supported by the Office of Science (BER), U.S.
Department of Energy from grant DE-FG02-07ER64367 and from the
Environmental Remediation Sciences Program under Cooperative Agreement
(DE-FC02-02ER63446).
NR 63
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U1 1
U2 20
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0169-7722
EI 1873-6009
J9 J CONTAM HYDROL
JI J. Contam. Hydrol.
PD MAR 1
PY 2010
VL 112
IS 1-4
SI SI
BP 30
EP 44
DI 10.1016/j.jconhyd.2009.10.002
PG 15
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 571EY
UT WOS:000275735600003
PM 19892431
ER
PT J
AU Li, L
Steefel, CI
Kowalsky, MB
Englert, A
Hubbard, SS
AF Li, Li
Steefel, Carl I.
Kowalsky, Michael B.
Englert, Andreas
Hubbard, Susan S.
TI Effects of physical and geochemical heterogeneities on mineral
transformation and biomass accumulation during biostimulation
experiments at Rifle, Colorado
SO JOURNAL OF CONTAMINANT HYDROLOGY
LA English
DT Article
DE Uranium bioremediation; Heterogeneity; Mineral transformation; Biomass
accumulation; Reactive transport modeling; Biogeochemical process
ID POROUS-MEDIA; MICROBIAL REDUCTION; GEOBACTER-SULFURREDUCENS;
CONTAMINATED AQUIFER; REACTION-RATES; URANIUM BIOREMEDIATION; SULFATE
REDUCTION; BIOFILM GROWTH; TRANSPORT; GROUNDWATER
AB Electron donor amendment for bioremediation often results in precipitation of secondary minerals and the growth of biomass, both of which can potentially change flow paths and the efficacy of bioremediation. Quantitative estimation of precipitate and biomass distribution has remained challenging, partly due to the intrinsic heterogeneities of natural porous media and the scarcity of field data. In this work, we examine the effects of physical and geochemical heterogeneities on the spatial distributions of mineral precipitates and biomass accumulated during a biostimulation field experiment near Rifle, Colorado. Field bromide breakthrough data were used to infer a heterogeneous distribution of hydraulic conductivity through inverse transport modeling, while the solid phase Fe(III) content was determined by assuming a negative correlation with hydraulic conductivity. Validated by field aqueous geochemical data, reactive transport modeling was used to explicitly keep track of the growth of the biomass and to estimate the spatial distribution of precipitates and biomass. The results show that the maximum mineral precipitation and biomass accumulation occurs in the vicinity of the injection wells, occupying up to 5.4vol.% of the pore space, and is dominated by reaction products of sulfate reduction. Accumulation near the injection wells is not strongly affected by heterogeneities present in the system due to the ubiquitous presence of sulfate in the groundwater. However, accumulation in the down-gradient regions is dominated by the iron-reducing reaction products, whose spatial patterns are strongly controlled by both physical and geochemical heterogeneities. Heterogeneities can lead to localized large accumulation of mineral precipitates and biomass, increasing the possibility of pore clogging. Although ignoring the heterogeneities of the system can lead to adequate prediction of the average behavior of sulfate-reducing related products, it can also lead to an overestimation of the overall accumulation of iron-reducing bacteria, as well as the rate and extent of iron reduction. Surprisingly, the model predicts that the total amount of uranium being reduced in the heterogeneous 2D system was similar to that in the 1D homogeneous system, suggesting that the overall uranium bioremediation efficacy may not be significantly affected by the heterogeneities of Fe(III) content in the down-gradient regions. Rather, the characteristics close to the vicinity of the injection wells might be crucial in determining the overall efficacy of uranium bioremediation. These findings have important implications not only for uranium bioremediation at the Rifle site and for bioremediation of other redox sensitive contaminants at sites with similar characteristics, but also for the development of optimal amendment delivery strategies in other settings. (C) 2009 Elsevier B.V. All rights reserved.
C1 [Li, Li; Steefel, Carl I.; Kowalsky, Michael B.; Englert, Andreas; Hubbard, Susan S.] Lawrence Berkeley Natl Lab, Div Earth Sci, Berkeley, CA 94720 USA.
RP Li, L (reprint author), Penn State Univ, Dept Energy & Mineral Engn, University Pk, PA 16802 USA.
EM lili@eme.psu.edu
RI Steefel, Carl/B-7758-2010; Hubbard, Susan/E-9508-2010; Li,
Li/A-6077-2008
OI Li, Li/0000-0002-1641-3710
FU U.S. Department of Energy [DE-AC0205CH11231]
FX Funding for this study was provided by the U.S. Department of Energy,
Biological and Environmental Research Program Contract DE-AC0205CH11231
to the LBNL Sustainable Systems Scientific Focus Area. We acknowledge
Phil Long (PNNL) and the Rifle lFRC research team for facilitating
collaboration and access to Rifle datasets. We thank Li Yang of Lawrence
Berkeley Laboratory for carrying out the hydroxylamine extractions used
in Table 2. We also acknowledge Dr. Albert J. Valocchi and two anonymous
reviewers for their constructive comments that have improved this paper.
NR 75
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U1 3
U2 42
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0169-7722
J9 J CONTAM HYDROL
JI J. Contam. Hydrol.
PD MAR 1
PY 2010
VL 112
IS 1-4
SI SI
BP 45
EP 63
DI 10.1016/j.jconhyd.2009.10.006
PG 19
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 571EY
UT WOS:000275735600004
PM 20036028
ER
PT J
AU Gu, CH
Riley, WJ
AF Gu, Chuanhui
Riley, William J.
TI Combined effects of short term rainfall patterns and soil texture on
soil nitrogen cycling - A modeling analysis
SO JOURNAL OF CONTAMINANT HYDROLOGY
LA English
DT Article
DE GHG emission; Vadoze zone; Biogeochemistry; Climate change; N cycle;
Nitrate leaching
ID WATER; OXIDE; PRECIPITATION; EMISSIONS; CARBON; N2O; DENITRIFICATION;
GRASSLAND; TRANSPORT; TRANSFORMATIONS
AB Precipitation variability and magnitude are expected to change in many parts of the world over the 21st century. We examined the potential effects of intra-annual rainfall patterns on soil nitrogen (N) transport and transformation in the unsaturated soil zone using a deterministic dynamic modeling approach. The model (TOUGHREACT-N), which has been tested and applied in several experimental and observational systems, mechanistically accounts for microbial activity, soil moisture dynamics that respond to precipitation variability, and gaseous and aqueous tracer transport in the soil. Here, we further tested and calibrated the model against data from a precipitation variability experiment in a tropical system in Costa Rica. The model was then used to simulate responses of soil moisture, microbial dynamics, N leaching, and N trace-gas emissions to changes in rainfall patterns; the effect of soil texture was also examined. The temporal variability of nitrate leaching and NO, NH(3), and N(2)O effluxes were significantly influenced by rainfall dynamics. Soil texture combined with rainfall dynamics altered soil moisture dynamics, and consequently regulated soil N responses to precipitation changes. The clay loam soil more effectively buffered water stress during relatively long intervals between precipitation events, particularly after a large rainfall event. Subsequent soil N aqueous and gaseous losses showed either increases or decreases in response to increasing precipitation variability due to complex soil moisture dynamics. For a high rainfall scenario, high precipitation variability resulted in as high as 2.4-, 2.4-, 1.2, and 13-fold increases in NH(3), NO, N(2)O and NO(3)(-) fluxes, respectively, in clay loam soil. In sandy loam soil, however, NO and N(2)O fluxes decreased by 15% and 28%, respectively, in response to high precipitation variability. Our results demonstrate that soil N cycling responses to increasing precipitation variability depends on precipitation amount and soil texture, and that accurate prediction of future N cycling and gas effluxes requires models with relatively sophisticated representation of the relevant processes. (C) 2009 Elsevier B.V. All rights reserved.
C1 [Gu, Chuanhui] Univ Calif Berkeley, Berkeley Water Ctr, Berkeley, CA 94720 USA.
[Riley, William J.] Lawrence Berkeley Natl Lab, Div Earth Sci, Berkeley, CA USA.
RP Gu, CH (reprint author), Appalachian State Univ, Dept Geol, Boone, NC 28608 USA.
EM cg8k@virginia.edu
RI Riley, William/D-3345-2015; Gu, Chuanhui/D-1781-2017
OI Riley, William/0000-0002-4615-2304; Gu, Chuanhui/0000-0003-3445-648X
NR 44
TC 26
Z9 27
U1 5
U2 47
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0169-7722
J9 J CONTAM HYDROL
JI J. Contam. Hydrol.
PD MAR 1
PY 2010
VL 112
IS 1-4
SI SI
BP 141
EP 154
DI 10.1016/j.jconhyd.2009.12.003
PG 14
WC Environmental Sciences; Geosciences, Multidisciplinary; Water Resources
SC Environmental Sciences & Ecology; Geology; Water Resources
GA 571EY
UT WOS:000275735600011
PM 20116129
ER
PT J
AU Freivogel, B
AF Freivogel, Ben
TI Anthropic explanation of the dark matter abundance
SO JOURNAL OF COSMOLOGY AND ASTROPARTICLE PHYSICS
LA English
DT Article
DE axions; dark matter theory; initial conditions and eternal universe
ID COSMOLOGICAL CONSTANT; STATIONARY UNIVERSE; AXION COSMOLOGY; INVISIBLE
AXION
AB I use Bousso's causal diamond measure to make a statistical prediction for the dark matter abundance, assuming an axion with a large decay constant f(alpha) >> 10(12) GeV. Using a crude approximation for observer formation, the prediction agrees well with observation: 30% of observers form in regions with less dark matter than we observe, while 70% of observers form in regions with more dark matter. Large values of the dark matter ratio are disfavored by an elementary effect: increasing the amount of dark matter while holding fixed the baryon to photon ratio decreases the number of baryons inside one horizon volume. Thus the prediction is rather insensitive to assumptions about observer formation in universes with much more dark matter than our own. The key assumption is that the number of observers per baryon is roughly independent of the dark matter ratio for ratios near the observed value.
C1 [Freivogel, Ben] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
[Freivogel, Ben] Univ Calif Berkeley, Ctr Theoret Phys, Berkeley, CA 94720 USA.
[Freivogel, Ben] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
RP Freivogel, B (reprint author), Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
EM freivogel@berkeley.edu
FU Berkeley Center for Theoretical Physics; NSF CAREER [0349351]; DOE
[DE-AC02-05CH11231]
FX I would like to thank Raphael Bousso, Simeon Hellerman, Ann Nelson,
Stefan Leichenauer, Leonard Susskind, and especially Jens Niemeyer for
helpful discussions. This work was supported by the Berkeley Center for
Theoretical Physics, by NSF CAREER grant 0349351, and by DOE grant
DE-AC02-05CH11231.
NR 33
TC 15
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U1 0
U2 0
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1475-7516
J9 J COSMOL ASTROPART P
JI J. Cosmol. Astropart. Phys.
PD MAR
PY 2010
IS 3
AR 021
DI 10.1088/1475-7516/2010/03/021
PG 10
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 575XG
UT WOS:000276103000013
ER
PT J
AU Allerman, AA
Crawford, MH
Miller, MA
Lee, SR
AF Allerman, A. A.
Crawford, M. H.
Miller, M. A.
Lee, S. R.
TI Growth and characterization of Mg-doped AlGaN-AlN short-period
superlattices for deep-UV optoelectronic devices
SO JOURNAL OF CRYSTAL GROWTH
LA English
DT Article
DE Metalorganic chemical vapor deposition; Superlattices; Nitrides;
Semiconducting aluminum compounds; AlGaN
ID LIGHT-EMITTING-DIODES
AB We report the growth and characterization of Mg-doped, short-period superlattices (Mg-SPSLs) consisting of AlN and Al(0.23)Ga(0.77)N epilayers grown by metal-organic vapor phase epitaxy. Superlattices with periods ranging from 10 to 25 angstrom and with an average Al composition of 0.42-0.74 were investigated. Optical transmission measurements showed that these structures have optical transparencies similar to random-alloy Al(x)Ga(1-x)N epilayers of the same average composition. X-ray diffraction (XRD) measurements confirmed that the period and average Al composition of the superlattices were in agreement with targeted values. Additionally. Mg doping of SPSL structures degraded or eliminated satellite peaks that were otherwise observed in the XRD scans of undoped or Si-doped SPSL structures, suggesting that the presence of Mg during growth alters the interfaces of the epilayers. P-type doping typically produced lateral resistivities of less than 10 ohm cm, and notably, a p-type resistivity of 6 ohm cm was measured in a Mg-SPSL structure with an average Al composition of 0.74. Analysis of temperature dependent resistivity showed an activation energy of 29 meV for a Mg-SPSL with an average composition of 0.62 and 18 meV for a Mg-SPSL with a composition of 0.49. The combined optical and electrical characteristics of these p-SPSLs suggest they could be potential candidates for wide bandgap p-type cladding layers in deep-UV laser diode structures. (C) 2010 Elsevier B.V. All rights reserved.
C1 [Allerman, A. A.; Crawford, M. H.; Miller, M. A.; Lee, S. R.] Sandia Natl Labs, Albuquerque, NM 87185 USA.
RP Allerman, AA (reprint author), Sandia Natl Labs, POB 5800,M-S1086, Albuquerque, NM 87185 USA.
EM aaaller@sandia.gov
NR 15
TC 15
Z9 15
U1 4
U2 37
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0022-0248
J9 J CRYST GROWTH
JI J. Cryst. Growth
PD MAR 1
PY 2010
VL 312
IS 6
BP 756
EP 761
DI 10.1016/j.jcrysgro.2009.12.047
PG 6
WC Crystallography; Materials Science, Multidisciplinary; Physics, Applied
SC Crystallography; Materials Science; Physics
GA 574SD
UT WOS:000276012400003
ER
PT J
AU Kim, KH
Gul, R
Carcelen, V
Bolotinkov, AE
Carmarda, GS
Yang, G
Hossain, A
Cui, Y
James, RB
Hong, J
Kim, SU
AF Kim, K. H.
Gul, R.
Carcelen, V.
Bolotinkov, A. E.
Carmarda, G. S.
Yang, G.
Hossain, A.
Cui, Y.
James, R. B.
Hong, J.
Kim, S. U.
TI Defect levels and thermomigration of Te precipitates in CdZnTe:Pb
SO JOURNAL OF CRYSTAL GROWTH
LA English
DT Article
DE Doping; Point defects; Bridgman technique; Cadmium compounds;
Semiconducting II-VI materials
ID CDTE; DETECTORS; IRRADIATION; CRYSTALS
AB Semi-insulating Cd(0.9)Zn(0.1)Te:Pb crystals were grown by the vertical Bridgman method. Measurements of the current deep level transient spectroscopy (I-DLTS) revealed three trap levels in this material. Unlike other compensating dopants, CdZnTe:Pb samples do not show any Cd-vacancies defects and A-center levels. We subjected them to temperature-gradient annealing in Cd overpressure at 490-717 degrees C, and recorded an exponential relationship between the annihilation time of Te precipitates and the annealing temperature. The energy resolution of an annealed CdZnTe:Pb detector, tested using a (137)Cs radioactive source, gave an energy resolution of 2.5%. (C) 2009 Elsevier B.V. All rights reserved.
C1 [Kim, K. H.; Gul, R.; Carcelen, V.; Bolotinkov, A. E.; Carmarda, G. S.; Yang, G.; Hossain, A.; Cui, Y.; James, R. B.] Brookhaven Natl Lab, Upton, NY 11973 USA.
[Hong, J.; Kim, S. U.] Korea Univ, Dept Phys, Chungnam 339800, South Korea.
[Carcelen, V.] Univ Autonoma Madrid, Dept Mat, E-28049 Madrid, Spain.
RP Kim, KH (reprint author), Brookhaven Natl Lab, Upton, NY 11973 USA.
EM khkim@bnl.gov
RI Yang, Ge/G-1354-2011; Carcelen, Veronica /B-3750-2017
FU U.S. Department of Energy, Office of Nonproliferation Research and
Development [NA-22]; U.S. Department of Energy [DE-AC02-98CH1-886]
FX This work was supported by the U.S. Department of Energy, Office of
Nonproliferation Research and Development, NA-22. The manuscript has
been authored by Brookhaven Science Associates, LLC under Contract no.
DE-AC02-98CH1-886 with the U.S. Department of Energy.
NR 8
TC 11
Z9 11
U1 2
U2 9
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0022-0248
J9 J CRYST GROWTH
JI J. Cryst. Growth
PD MAR 1
PY 2010
VL 312
IS 6
BP 781
EP 784
DI 10.1016/j.jcrysgro.2009.11.069
PG 4
WC Crystallography; Materials Science, Multidisciplinary; Physics, Applied
SC Crystallography; Materials Science; Physics
GA 574SD
UT WOS:000276012400007
ER
PT J
AU Silling, SA
AF Silling, S. A.
TI Linearized Theory of Peridynamic States
SO JOURNAL OF ELASTICITY
LA English
DT Article
DE Peridynamics; Linearization; Elasticity; Continuum mechanics; Nonlocal;
Constitutive modeling
ID LONG-RANGE FORCES; ELASTICITY THEORY; CONVERGENCE; EQUATION; BAR
AB A state-based peridynamic material model describes internal forces acting on a point in terms of the collective deformation of all the material within a neighborhood of the point. In this paper, the response of a state-based peridynamic material is investigated for a small deformation superposed on a large deformation. The appropriate notion of a small deformation restricts the relative displacement between points, but it does not involve the deformation gradient (which would be undefined on a crack). The material properties that govern the linearized material response are expressed in terms of a new quantity called the modulus state. This determines the force in each bond resulting from an incremental deformation of itself or of other bonds. Conditions are derived for a linearized material model to be elastic, objective, and to satisfy balance of angular momentum. If the material is elastic, then the modulus state is obtainable from the second Fr,chet derivative of the strain energy density function. The equation of equilibrium with a linearized material model is a linear Fredholm integral equation of the second kind. An analogue of Poincar,'s theorem is proved that applies to the infinite dimensional space of all peridynamic vector states, providing a condition similar to irrotationality in vector calculus.
C1 Sandia Natl Labs, Multiscale Dynam Mat Modeling Dept, Albuquerque, NM 87185 USA.
RP Silling, SA (reprint author), Sandia Natl Labs, Multiscale Dynam Mat Modeling Dept, POB 5800, Albuquerque, NM 87185 USA.
EM sasilli@sandia.gov
FU Laboratory Directed Research and Development (LDRD) project at Sandia
National Laboratories; United States Department of Energy's National
Nuclear Security Administration [DE-AC04-94AL85000]
FX The author gratefully acknowledges helpful discussions with Drs. Abe
Askari, Florin Bobaru, Richard Lehoucq, Robert Lipton, Michael Parks,
and Olaf Weckner. This work was supported through a Laboratory Directed
Research and Development (LDRD) project at Sandia National Laboratories.
Sandia is a multiprogram laboratory operated by Sandia Corporation, a
Lockheed Martin Company, for the United States Department of Energy's
National Nuclear Security Administration under contract
DE-AC04-94AL85000.
NR 16
TC 48
Z9 50
U1 3
U2 20
PU SPRINGER
PI DORDRECHT
PA VAN GODEWIJCKSTRAAT 30, 3311 GZ DORDRECHT, NETHERLANDS
SN 0374-3535
J9 J ELASTICITY
JI J. Elast.
PD MAR
PY 2010
VL 99
IS 1
BP 85
EP 111
DI 10.1007/s10659-009-9234-0
PG 27
WC Engineering, Multidisciplinary; Materials Science, Multidisciplinary;
Mechanics
SC Engineering; Materials Science; Mechanics
GA 551ZB
UT WOS:000274251600005
ER
PT J
AU Smalley, JF
AF Smalley, John F.
TI Kinetics of interfacial ion-transfer reactions studied using the
indirect laser-induced temperature jump technique: Theory
SO JOURNAL OF ELECTROANALYTICAL CHEMISTRY
LA English
DT Article
DE Interfacial ion-transfer kinetics; Adsorption/desorption; Coulostatic
temperature perturbation; Indirect laser-induced temperature jump
technique
ID SINGLE-CRYSTAL; ELECTRON-TRANSFER; ANION-ADSORPTION; GOLD; PT(111); UPD
AB For fast, interfacial ion-transfer(adsorption/desorption) reactions, I demonstrate the development of a relationship describing the time dependence of the open-circuit potential change (Delta V(oc)(t)) initiated by the coulostatic temperature perturbation associated with the indirect laser-induced temperature jump (ILIT) technique. The form of this relationship is exactly the same as the one developed for interfacial electron-transfer (ET) reactions of solution-dissolved redox couples. However, the definitions of the parameters associated with this relationship (e.g., the measured rate constant (k(m,a/d)) and the mass-transfer parameter (P(75,a/d)))are unique to and are functions of the chemical kinetic and (some of) the thermodynamic properties of the adsorption/desorption reactions. An additional analysis of the time dependence of the ILIT-induced open-circuit potential change (AV,,,,(t)) effected by the ET reaction of a reversibly adsorbed redox couple (where only the adsorbed redox species undergo the ET reaction) also results in a relationship that is the same as that developed for solution-dissolved redox couples, but the definitions of k(m,et) and P(75,et) are. again, different for the reversibly adsorbed redox moieties. The analyses associated with these developments are relevant to possible studies (using ILIT or other coulostatic perturbation techniques) of the adsorption/desorption reactions pertinent to many technologically important electrochemical processes. (C) 2010 Elsevier B.V. All rights reserved.
C1 Brookhaven Natl Lab, Dept Chem, Upton, NY 11973 USA.
RP Smalley, JF (reprint author), Brookhaven Natl Lab, Dept Chem, Upton, NY 11973 USA.
EM smalley@bnl.gov
NR 25
TC 2
Z9 2
U1 3
U2 11
PU ELSEVIER SCIENCE SA
PI LAUSANNE
PA PO BOX 564, 1001 LAUSANNE, SWITZERLAND
SN 1572-6657
J9 J ELECTROANAL CHEM
JI J. Electroanal. Chem.
PD MAR 1
PY 2010
VL 640
IS 1-2
BP 68
EP 74
DI 10.1016/j.jelechem.2010.01.003
PG 7
WC Chemistry, Analytical; Electrochemistry
SC Chemistry; Electrochemistry
GA 571QC
UT WOS:000275768500010
ER
PT J
AU Bluhm, H
AF Bluhm, Hendrik
TI Photoelectron spectroscopy of surfaces under humid conditions
SO JOURNAL OF ELECTRON SPECTROSCOPY AND RELATED PHENOMENA
LA English
DT Article
DE X-ray photoelectron spectroscopy; Water adsorption; Environmental
science
ID NEAR-AMBIENT CONDITIONS; IONIZATION CROSS-SECTIONS; ATOMIC-FORCE
MICROSCOPY; LIQUID-VAPOR INTERFACE; SOLID POTASSIUM-IODIDE; METAL-OXIDE
SURFACES; GAS SHIFT REACTION; WATER-ADSORPTION; DISSOCIATIVE ADSORPTION;
ELECTRON-SPECTROSCOPY
AB The interaction of water with surfaces plays a major role in many processes in the environment, atmosphere and technology. Weathering of rocks, adhesion between surfaces, and ionic conductance along surfaces are among many phenomena that are governed by the adsorption of molecularly thin water layers under ambient humidities. The properties of these thin water films, in particular their thickness, structure and hydrogen-bonding to the substrate as well as within the water film are up to now not very well understood. Ambient pressure photoelectron spectroscopy (APXPS) is a promising technique for the investigation of the properties of thin water films. In this article we will discuss the basics of APXPS as well as the particular challenges that are posed by investigations in water vapor at Torr pressures. We will also show examples of the application of APXPS to the study of water films on metals and oxides. Published by Elsevier B.V.
C1 Lawrence Berkeley Natl Lab, Div Chem Sci, Berkeley, CA 94720 USA.
RP Bluhm, H (reprint author), Lawrence Berkeley Natl Lab, Div Chem Sci, Berkeley, CA 94720 USA.
EM HBluhm@lbl.gov
FU Office of Science, Office of Basic Energy Sciences, Division of Chemical
Sciences, Geosciences of the U.S. Department of Energy at the Lawrence
Berkeley National Laboratory [DE-AC02-05CH11231]; Department of Energy,
Office of Science, Biological and Environmental Research, Environmental
Remediation Sciences Division in the Department of Energy
FX A large part of this work was performed in the framework of the Stanford
Environmental Molecular Science Institute. The contributions in
particular of D.E. Starr, J.T. Newberg, E.R. Mysak, G. Ketteler, K.R.
Wilson, E.K. Wong, T. Tyliszczak, Ch.D. Weis, A. Verdaguer, X. Deng, T.
Herranz-Cruz, S. Porsgaard, E.L.D. Hebenstreit, D.F. Ogletree, S.
Yamamoto, K. Andersson, H. Ogasawara, S. Kaya, T. Kendelewicz, L.G.M.
Pettersson, M. Salmeron, G.E. Brown, Jr., and A. Nilsson are gratefully
acknowledged. This research, the ALS, and the ALS-MES beamline 11.0.2
are supported by the Director, Office of Science, Office of Basic Energy
Sciences, Division of Chemical Sciences, Geosciences of the U.S.
Department of Energy at the Lawrence Berkeley National Laboratory under
Contract No. DE-AC02-05CH11231. We also acknowledge support by the
Department of Energy, Office of Science, Biological and Environmental
Research, Environmental Remediation Sciences Division in the Department
of Energy, for support of the Stanford Environmental Molecular Science
Institute.
NR 115
TC 71
Z9 72
U1 7
U2 72
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0368-2048
J9 J ELECTRON SPECTROSC
JI J. Electron Spectrosc. Relat. Phenom.
PD MAR
PY 2010
VL 177
IS 2-3
SI SI
BP 71
EP 84
DI 10.1016/j.elspec.2009.08.006
PG 14
WC Spectroscopy
SC Spectroscopy
GA 599YB
UT WOS:000277949100003
ER
PT J
AU Guo, JH
Luo, Y
AF Guo, Jinghua
Luo, Yi
TI Molecular structure in water and solutions studied by
photon-in/photon-out soft X-ray spectroscopy
SO JOURNAL OF ELECTRON SPECTROSCOPY AND RELATED PHENOMENA
LA English
DT Article
DE Water; Electronic structure; Hydrogen bonding; Soft X-ray absorption
spectroscopy; Soft X-ray emission spectroscopy; Ion solvation
ID HYDROGEN-BOND NETWORK; ABSORPTION FINE-STRUCTURE; CORE-HOLE STATES;
LIQUID WATER; EMISSION-SPECTROSCOPY; ELECTRONIC-STRUCTURE; FLUORESCENCE
SPECTROSCOPY; AQUEOUS-SOLUTIONS; HIGH-RESOLUTION; EXCITATION
AB We demonstrate how X-ray emission spectroscopy can be used to elucidate the molecular structure of liquid water, liquid methanol, methanol-water mixtures, as well as cation-water solutions, and to reveal the influence of the intermolecular interaction on the local electronic structure of water molecules. By comparing X-ray emission spectra of the water molecule and liquid water, a strong involvement of the total-symmetric valence-orbital is found in the hydrogen bonding. The local electronic structure of water molecules under different broken hydrogen bonding situations can be separately determined. We find that molecules in the pure liquid methanol in a confined sample cell predominantly persist as hydrogen-bonded chains and rings with six and/or eight molecules of equal abundance. For water methanol solutions the evidence of incomplete mixing is observed at the microscopic level, which provides a new explanation for a smaller entropy increase in the solution due to water molecules bridging methanol chains to form rings. Further, the influences of cations on the water molecular structure have been studied by the X-ray absorption and emission spectra. (C) 2010 Elsevier B.V. All rights reserved.
C1 [Guo, Jinghua] Lawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USA.
[Luo, Yi] AlbaNova Univ Ctr, Royal Inst Technol, SE-10691 Stockholm, Sweden.
RP Guo, JH (reprint author), Lawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USA.
EM jguo@lbl.gov
RI Luo, Yi/B-1449-2009
OI Luo, Yi/0000-0003-0007-0394
FU office of Science, Basic Energy Sciences, and the Department of Energy
[DE-AC02-05CH11231]
FX Authors would like to acknowledge the major contributions from a number
of collaborators on this topics over the years, to name a few: A.
Augustsson, S. Kashtanov, J. Nordgren, H. Agren, C.-J. Englund, J.-E.
Rubensson, L-C. Duda, S. Butorin, K. O. Kvashnina, D. Shuh, C.L. Dong,
J.W. Chiou, C.L. Chang, etc. The ALS work is supported by the office of
Science, Basic Energy Sciences, and the Department of Energy under
contract DE-AC02-05CH11231 at Lawrence Berkeley National Laboratory.
NR 62
TC 16
Z9 16
U1 0
U2 13
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0368-2048
EI 1873-2526
J9 J ELECTRON SPECTROSC
JI J. Electron Spectrosc. Relat. Phenom.
PD MAR
PY 2010
VL 177
IS 2-3
SI SI
BP 181
EP 191
DI 10.1016/j.elspec.2010.02.011
PG 11
WC Spectroscopy
SC Spectroscopy
GA 599YB
UT WOS:000277949100010
ER
PT J
AU Weinhardt, L
Fuchs, O
Blum, M
Bar, M
Weigand, M
Denlinger, JD
Zubavichus, Y
Zharnikov, M
Grunze, M
Heske, C
Umbach, E
AF Weinhardt, L.
Fuchs, O.
Blum, M.
Baer, M.
Weigand, M.
Denlinger, J. D.
Zubavichus, Y.
Zharnikov, M.
Grunze, M.
Heske, C.
Umbach, E.
TI Resonant X-ray emission spectroscopy of liquid water: Novel
instrumentation, high resolution, and the "map" approach
SO JOURNAL OF ELECTRON SPECTROSCOPY AND RELATED PHENOMENA
LA English
DT Article
DE Water; X-ray emission; High resolution; Hydrogen bonds; X-ray
absorption; Liquids
ID ABSORPTION SPECTROSCOPY
AB Techniques to study the electronic structure of liquids are rare. Most recently, resonant X-ray emission spectroscopy (XES) has been shown to be an extremely versatile spectroscopy to study both occupied and unoccupied electronic states for liquids in thermodynamic equilibrium. However, XES requires high-brilliance soft X-ray synchrotron radiation and poses significant technical challenges to maintain a liquid sample in an ultra-high vacuum environment. Our group has therefore developed and constructed a novel experimental setup for the study of liquids, with the long-term goal of investigating the electronic structure of biological systems in aqueous environments. We have developed a flow-through liquid cell in which the liquid is separated from vacuum by a thin Si3N4 or SiC window and which allows a precise control of temperature. This approach has significant advantages compared to static liquids cells used in the past. Furthermore, we have designed a dedicated high-transmission, high-resolution soft X-ray spectrometer. The high transmission makes it possible to measure complete resonant XES "maps" in less than an hour, giving unprecedented detailed insight into the electronic structure of the investigated sample. Using this new equipment we have investigated the electronic structure of liquid water. Furthermore, our XES spectra and maps give information about ultra-fast dissociation on the timescale of the O 1s core hole lifetime, which is strongly affected by the initial state hydrogen bonding configuration. (C) 2009 Elsevier B.V. All rights reserved.
C1 [Weinhardt, L.; Baer, M.; Heske, C.] Univ Nevada, Dept Chem, Las Vegas, NV 89154 USA.
[Fuchs, O.; Blum, M.; Weigand, M.; Umbach, E.] Univ Wurzburg, D-97074 Wurzburg, Germany.
[Denlinger, J. D.] Lawrence Berkeley Natl Lab, Adv Light Source, Berkeley, CA 94720 USA.
[Zubavichus, Y.; Zharnikov, M.; Grunze, M.] Heidelberg Univ, Angewandte Phys Chem, D-69120 Heidelberg, Germany.
RP Weinhardt, L (reprint author), Univ Nevada, Dept Chem, Las Vegas, NV 89154 USA.
EM lothar.weinhardt@physik.uni-wuerzburg.de; heske@unlv.nevada.edu
RI Weinhardt, Lothar/G-1689-2013; Grunze, Michael/H-1600-2013; Zubavichus,
Yan/A-3418-2014
OI Zubavichus, Yan/0000-0003-2266-8944
FU German BMBF [05 KS4WWA/6, 05 KS4VHA/4]; Office of Naval Research; DFG;
U.S. Department of Energy [DE-AC02-05CH11231]
FX We are grateful to the ALS staff, in particular W.L. Yang, for technical
support. This work was supported by the German BMBF (projects No. 05
KS4VVWA/6 and 05 KS4VHA/4), the Office of Naval Research (M.G.), and the
DFG Emmy Noether program (M. Bar). The ALS is supported by the Office of
Basic Energy Sciences of the U.S. Department of Energy under Contract
No. DE-AC02-05CH11231.
NR 36
TC 22
Z9 22
U1 0
U2 22
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0368-2048
EI 1873-2526
J9 J ELECTRON SPECTROSC
JI J. Electron Spectrosc. Relat. Phenom.
PD MAR
PY 2010
VL 177
IS 2-3
SI SI
BP 206
EP 211
DI 10.1016/j.elspec.2009.02.014
PG 6
WC Spectroscopy
SC Spectroscopy
GA 599YB
UT WOS:000277949100012
ER
PT J
AU Voss, LF
Reinhardt, CE
Graff, RT
Conway, AM
Nikolic, RJ
Deo, N
Cheung, CL
AF Voss, L. F.
Reinhardt, C. E.
Graff, R. T.
Conway, A. M.
Nikolic, R. J.
Deo, N.
Cheung, C. L.
TI Etching of (10)Boron with SF6-based Electron Cyclotron Resonance Plasmas
for Pillar-Structured Thermal Neutron Detectors
SO JOURNAL OF ELECTRONIC MATERIALS
LA English
DT Article
DE Etch; plasma; boron; radiation; neutron; detector
ID GLOW-DISCHARGE; FILMS
AB Isotopically enriched (10)boron for use in pillar-structured neutron detectors was successfully etched in an electron cyclotron resonance (ECR) plasma using SF6-based plasmas. The effects of radio frequency (RF) power, ECR power, gas flow rate, H-2 and O-2 incorporation into the plasma, and gas mixture ratios were examined. Etch rates up to approximately 1.35 mu m/min were realized. In addition, etch morphology was examined, and the final shape of (10)boron-coated pillars could be controlled through the etch gas mixture utilized. Selectivity to the underlying Si structure was apparent from scanning electron microscopy (SEM) micrographs of completed etches.
C1 [Voss, L. F.; Reinhardt, C. E.; Graff, R. T.; Conway, A. M.; Nikolic, R. J.] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
[Deo, N.; Cheung, C. L.] Univ Nebraska, Dept Chem, Lincoln, NE 68588 USA.
[Deo, N.; Cheung, C. L.] Univ Nebraska, Nebraska Ctr Mat & Nanosci, Lincoln, NE USA.
RP Voss, LF (reprint author), Lawrence Livermore Natl Lab, 7000 East Ave, Livermore, CA 94550 USA.
EM voss5@llnl.gov
RI Voss, Lars/C-3623-2009; Cheung, Chin Li/B-8270-2013
FU Lawrence Livermore National Laboratory [DE-AC52-07NA27344,
LLNL-JRNL-420151]
FX This work was performed under the auspices of the U. S. Department of
Energy by Lawrence Livermore National Laboratory under contract
DE-AC52-07NA27344, LLNL-JRNL-420151.
NR 15
TC 7
Z9 7
U1 1
U2 4
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 0361-5235
J9 J ELECTRON MATER
JI J. Electron. Mater.
PD MAR
PY 2010
VL 39
IS 3
BP 263
EP 267
DI 10.1007/s11664-009-1068-9
PG 5
WC Engineering, Electrical & Electronic; Materials Science,
Multidisciplinary; Physics, Applied
SC Engineering; Materials Science; Physics
GA 561AQ
UT WOS:000274947700001
ER
PT J
AU Elmer, JW
Specht, ED
Kumar, M
AF Elmer, John W.
Specht, Eliot D.
Kumar, Mukul
TI Microstructure and In Situ Observations of Undercooling for Nucleation
of beta-Sn Relevant to Lead-Free Solder Alloys
SO JOURNAL OF ELECTRONIC MATERIALS
LA English
DT Article
DE In situ x-ray diffraction; solidification; nucleation; undercooling;
twinning; grain boundaries; tin; lead-free solders; cooling rate;
microstructure; wetting
ID X-RAY-DIFFRACTION; JOINTS; CU; PHASE; TIN; SOLIDIFICATION; EXPANSION
AB Difficult nucleation of beta-Sn during solidification of tin and tin-based lead-free solder alloys can result in high degrees of undercooling of the liquid prior to solidification. The undercooling can produce solder joints with large grains, anisotropic behavior, and undesirable mechanical properties. This paper describes our examination of the amount of undercooling of tin on both graphite (non-wetting) and copper (wetting) surfaces using in situ x-ray diffraction. The microstructure was further characterized by optical microscopy, scanning electron microscopy, and electron backscattering diffraction imaging microscopy. Undercoolings as high as 61A degrees C were observed for Sn solidified on graphite, while lower undercoolings, up to 30A degrees C, were observed for Sn solidified on copper. The microstructure of the high purity Sn sample solidified on graphite showed very few grains in the cross-section, while the commercially pure Sn sample solidified with only one grain and was twinned. Tin solidified on copper contained significant amounts of copper in the tin, intermetallic phase formation at the interface, and a eutectic microstructure.
C1 [Elmer, John W.; Kumar, Mukul] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
[Specht, Eliot D.] Oak Ridge Natl Lab, Oak Ridge, TN USA.
RP Elmer, JW (reprint author), Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
EM elmer1@llnl.gov
RI Specht, Eliot/A-5654-2009
OI Specht, Eliot/0000-0002-3191-2163
FU U. S. Department of Energy [DE-AC52-07NA27344]; Oak Ridge National
Laboratory [DE-AC05-00OR22725]; Department of Energy (DOE), Office of
Basic Energy Sciences, Division of Materials Science and Engineering; U.
S. DOE, Basic Energy Sciences, Office of Science [W-31-109-ENG-38]
FX The authors would like to thank Mr. Jackson Go of the Lawrence Livermore
National Laboratory (LLNL) for performing the optical metallography, Mr.
Edwin Sedillo of LLNL for performing the SEM and EBSD characterization,
Mr. Mike Santella of Oak Ridge National Laboratory (ORNL) for assisting
with the x-ray diffraction analysis software, and Jenia Karapetrova of
the APS for assisting with the synchrotron beam-line setup and
operation. This work was performed under the auspices of the U. S.
Department of Energy by Lawrence Livermore National Laboratory under
contract DE-AC52-07NA27344 and by Oak Ridge National Laboratory under
contract DE-AC05-00OR22725. Much of this work was supported by the
Department of Energy (DOE), Office of Basic Energy Sciences, Division of
Materials Science and Engineering. In situ experiments were performed on
34-BM-C at the APS, which is supported by the U. S. DOE, Basic Energy
Sciences, Office of Science under contract no. W-31-109-ENG-38.
NR 25
TC 17
Z9 17
U1 1
U2 12
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 0361-5235
J9 J ELECTRON MATER
JI J. Electron. Mater.
PD MAR
PY 2010
VL 39
IS 3
BP 273
EP 282
DI 10.1007/s11664-010-1080-0
PG 10
WC Engineering, Electrical & Electronic; Materials Science,
Multidisciplinary; Physics, Applied
SC Engineering; Materials Science; Physics
GA 561AQ
UT WOS:000274947700003
ER
PT J
AU Cho, HJ
Luck, R
Chamra, LM
AF Cho, Heejin
Luck, Rogelio
Chamra, Louay M.
TI Supervisory Feed-Forward Control for Real-Time Topping Cycle CHP
Operation
SO JOURNAL OF ENERGY RESOURCES TECHNOLOGY-TRANSACTIONS OF THE ASME
LA English
DT Article
DE cogeneration; feedforward; power generation control; power generation
dispatch; power generation economics; thermal energy storage; weather
forecasting
ID POWER ECONOMIC-DISPATCH; OPTIMAL SCHEDULING CONTROL; COMBINED HEAT;
COGENERATION SYSTEMS; COST PENALTIES; OPTIMIZATION; ALGORITHM;
TRIGENERATION; BUILDINGS; DESIGN
AB This paper presents an energy dispatch algorithm for real-time topping cycle cooling, heating, and power (CHP) operation for buildings with the objective of minimizing the operational cost, primary energy consumption (PEC), or carbon dioxide emission (CDE). The algorithm features a supervisory feed-forward control for real-time CHP operation using short-term weather forecasting. The advantages of the proposed control scheme for CHP operation are (a) relatively simple and efficient implementation allowing realistic real-time operation, (b) optimized CHP operation with respect to operational cost, PEC, or CDE, and (c) increased site-energy consumption resulting in less dependence on the electric grid. In the feed-forward portion of the control scheme, short-term electric, cooling, and heating loads are predicted using the U.S. Department of Energy benchmark small office building model. The results are encouraging regarding the potential saving of operational cost, PEC, and CDE from using the control system for a CHP system with electric and thermal energy storages.
C1 [Cho, Heejin] Pacific NW Natl Lab, Richland, WA 99352 USA.
[Luck, Rogelio; Chamra, Louay M.] Mississippi State Univ, Dept Mech Engn, Mississippi State, MS 39762 USA.
RP Cho, HJ (reprint author), Pacific NW Natl Lab, 902 Battelle Blvd,POB 999,MSIN K5-16, Richland, WA 99352 USA.
EM heejin.cho@pnl.gov
OI Cho, Heejin/0000-0003-2789-510X
NR 44
TC 7
Z9 7
U1 0
U2 4
PU ASME
PI NEW YORK
PA TWO PARK AVE, NEW YORK, NY 10016-5990 USA
SN 0195-0738
J9 J ENERG RESOUR-ASME
JI J. Energy Resour. Technol.-Trans. ASME
PD MAR
PY 2010
VL 132
IS 1
AR 012401
DI 10.1115/1.4000920
PG 12
WC Energy & Fuels
SC Energy & Fuels
GA 575OR
UT WOS:000276077300005
ER
PT J
AU Oh, CH
Kim, ES
Patterson, M
AF Oh, Chang H.
Kim, Eung S.
Patterson, Mike
TI Design Option of Heat Exchanger for the Next Generation Nuclear Plant
SO JOURNAL OF ENGINEERING FOR GAS TURBINES AND POWER-TRANSACTIONS OF THE
ASME
LA English
DT Article
AB The next generation nuclear plant (NGNP), a very high temperature gas-cooled reactor (VHTR) concept, will provide the first demonstration of a closed-loop Brayton cycle at a commercial scale, producing a few hundred megawatts of power in the form of electricity and hydrogen. The power conversion unit for the NGNP will take advantage of the significantly higher reactor outlet temperatures of the VHTRs to provide higher efficiencies than can be achieved with the current generation of light water reactors. Besides demonstrating a system design that can be used directly for subsequent commercial deployment, the NGNP will demonstrate key technology elements that can be used in subsequent advanced power conversion systems for other Generation IV reactors. In anticipation of the design, development, and procurement of an advanced power conversion system for the NGNP, the system integration of the NGNP and hydrogen plant was initiated to identify the important design and technology options that must be considered in evaluating the performance of the proposed NGNP. As part of the system integration of the VHTRs and the hydrogen production plant, the intermediate heat exchanger is used to transfer the process heat from VHTRs to the hydrogen plant. Therefore, the design and configuration of the intermediate heat exchanger are very important. This paper describes analyses of one stage versus two-stage heat exchanger design configurations and simple stress analyses of a printed circuit heat exchanger (PCHE), helical-coil heat exchanger, and shell-and-tube heat exchanger. [DOI: 10.1115/1.3126780]
C1 [Oh, Chang H.; Kim, Eung S.; Patterson, Mike] Idaho Natl Lab, Idaho Falls, ID 83415 USA.
RP Oh, CH (reprint author), Idaho Natl Lab, POB 1625, Idaho Falls, ID 83415 USA.
OI Patterson, Michael/0000-0002-8698-3284
FU U.S. Department of Energy [DE-AC07-99ID13727]
FX This work was supported through the U.S. Department of Energy's
NGNP-Engineering Program under DOE Idaho Operations Office Contract No.
DE-AC07-99ID13727.
NR 15
TC 13
Z9 13
U1 0
U2 15
PU ASME-AMER SOC MECHANICAL ENG
PI NEW YORK
PA THREE PARK AVE, NEW YORK, NY 10016-5990 USA
SN 0742-4795
J9 J ENG GAS TURB POWER
JI J. Eng. Gas. Turbines Power-Trans. ASME
PD MAR
PY 2010
VL 132
IS 3
AR 032903
DI 10.1115/1.3126780
PG 9
WC Engineering, Mechanical
SC Engineering
GA 527TA
UT WOS:000272388200020
ER
PT J
AU Barbieri, E
Attarzadeh, F
Pascali, R
Shireen, W
Fitzgibbon, W
AF Barbieri, Enrique
Attarzadeh, Farrokh
Pascali, Raresh
Shireen, Wajiha
Fitzgibbon, William
TI On BSE and BSET for the Engineering Profession
SO JOURNAL OF ENGINEERING TECHNOLOGY
LA English
DT Article
AB An educational model for ABET-accredited baccalaureate programs in Engineering (E) and in Engineering Technology (ET) is proposed whereby all students inclined to pursue an engineering career would first complete two years of a 4-year ET program. By the end of the sophomore year, those students interested and skilled enough to follow a more theoretical or conceive-and-design side of an engineering career would go on to complete a degree in perhaps two to four additional years in a department that offered E degrees. The 4-year option would satisfy the Department of Education definition of a 6-year first professional degree. On the other hand, those students interested and skilled enough to follow a more applied or implement-and-operate side of an engineering career would opt to complete a degree in two additional years in a department that offered ET degrees. The model offers clearly defined options to students interested in an industry-based engineering profession two to four years after graduation where conceive-, design-, implement- and operate-tasks are assigned. If adopted, the model will result in several benefits including: (1) improved program marketing; (2) increased enrollment and retention rates; and (3) improved human and facility resource utilization at both undergraduate and graduate E and ET education.
C1 [Barbieri, Enrique] Tulane Univ, Fac Elect Engn, New Orleans, LA 70118 USA.
[Barbieri, Enrique] Univ Houston, Dept Engn Technol, Houston, TX 77004 USA.
[Pascali, Raresh] Texas A&M Univ, Texas Maritime Acad, Marine Engn Technol Dept, Galveston, TX USA.
[Fitzgibbon, William] Univ Houston, Fac Senate, Houston, TX 77004 USA.
[Fitzgibbon, William] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Fitzgibbon, William] Univ Bordeaux 1, F-33405 Talence, France.
[Fitzgibbon, William] Univ Bordeaux 2, F-33076 Bordeaux, France.
[Fitzgibbon, William] Argonne Natl Lab, Argonne, IL 60439 USA.
RP Barbieri, E (reprint author), Tulane Univ, Fac Elect Engn, New Orleans, LA 70118 USA.
NR 13
TC 5
Z9 5
U1 1
U2 6
PU AMER SOC ENGINEERING EDUCATION
PI WASHINGTON
PA 1818 N ST, N W, STE 600, WASHINGTON, DC 20036 USA
SN 0747-9964
J9 J ENG TECHNOL
JI J. Eng. Technol.
PD SPR
PY 2010
VL 27
IS 1
BP 42
EP 46
PG 5
WC Engineering, Multidisciplinary
SC Engineering
GA 610ZX
UT WOS:000278781200006
ER
PT J
AU Yoon, SS
Figueroa, V
Brown, AL
Blanchat, TK
AF Yoon, Sam S.
Figueroa, Victor
Brown, Alexander L.
Blanchat, Thomas K.
TI Experiments and Modeling of Large-scale Benchmark Enclosure Fire
Suppression
SO JOURNAL OF FIRE SCIENCES
LA English
DT Article
DE fire suppression model; water mist; compartment fire
ID LIQUID POOL FIRES; WATER MIST SUPPRESSION; SPRAY; EXTINCTION; SYSTEMS;
DROPS; JET
AB This article presents a series of experiments on benchmark fire suppression. The experiments were performed in a controlled environment, utilizing a cylindrical object or calorimeter centered above a 2 m diameter pan filled with kerosene-based hydrocarbon fuel, JP8. The experimental setup and procedure for gathering data on water suppression performance are presented. The characteristics of the nozzles used in the experiments are presented as well. The experimental results provide the boundary condition and temporal data necessary for validation of the fire suppression models used. The article also includes simulation results on the fire suppression experimental tests. The suppression simulations were carried out using a numerical model based on a Temporally Filtered Navier-Stokes (TFNS) formulation coupled with a Lagrangian model for droplets, which includes detailed descriptions of the interaction between the water droplets and the fire plume. The results from both experiments and simulations suggest that the criterion for complete suppression depends on a combination of factors including the mass flow rate (or nozzle diameter), nozzle operating pressure, and calorimeter presence. A critical regime which distinguished the regions of suppression and no-suppression in the domain of the mass flow rate versus operating pressure is found.
C1 [Yoon, Sam S.] Korea Univ, Seoul 136713, South Korea.
[Figueroa, Victor; Brown, Alexander L.; Blanchat, Thomas K.] Sandia Natl Labs, Fire & Aerosol Sci Dept, Albuquerque, NM 87185 USA.
RP Yoon, SS (reprint author), Korea Univ, Anam Dong 5 Ga, Seoul 136713, South Korea.
EM skyoon@korea.ac.kr
FU Department of Defense (DTRA); Sandia Corporation; Lockheed Martin
Company; United States Department of Energy [DE-AC04-94AL85000];
Ministry of Education, Science and Technology [2009-0063169]; KRF
[2008-313-D00135]
FX This study was sponsored in part by the Department of Defense (DTRA) and
was performed at Sandia National Laboratories. Sandia is a multiprogram
laboratory operated by Sandia Corporation, a Lockheed Martin Company,
for the United States Department of Energy under Contract No.
DE-AC04-94AL85000. Sam Yoon acknowledges that part of this research was
supported by Basic Science Research Program through the National
Research Foundation of Korea (NRF) funded by the Ministry of Education,
Science and Technology (2009-0063169) and KRF 2008-313-D00135.
NR 37
TC 1
Z9 1
U1 3
U2 6
PU SAGE PUBLICATIONS LTD
PI LONDON
PA 1 OLIVERS YARD, 55 CITY ROAD, LONDON EC1Y 1SP, ENGLAND
SN 0734-9041
J9 J FIRE SCI
JI J. Fire Sci.
PD MAR
PY 2010
VL 28
IS 2
BP 109
EP 139
DI 10.1177/0734904109104503
PG 31
WC Engineering, Multidisciplinary; Materials Science, Multidisciplinary
SC Engineering; Materials Science
GA 563YX
UT WOS:000275178400001
ER
PT J
AU Antoine, KM
Mortazavi, S
Miller, AD
Miller, LM
AF Antoine, Kimone M.
Mortazavi, Shirin
Miller, Angela D.
Miller, Lisa M.
TI Chemical Differences Are Observed in Children's Versus Adults' Latent
Fingerprints as a Function of Time
SO JOURNAL OF FORENSIC SCIENCES
LA English
DT Article
DE forensic science; latent fingerprints; chemical composition; children;
Fourier transform infrared microscopy; hierarchical cluster analysis;
wax esters; cholesteryl esters; squalene; cholesterol; free fatty acids
ID SEBACEOUS GLAND; YOUNG-CHILDREN; FATTY-ACIDS; WAX ESTERS; GC-MS;
RESIDUE; LIPIDS; COMPONENTS; SPECTRA; SURFACE
AB The identification of aged latent fingerprints is often difficult, especially for those of children. To understand this phenomenon, the chemical composition of children's versus adults' latent fingerprints was examined over time using Fourier transform infrared microscopy. Hierarchical cluster analysis revealed that children's and adults' prints were distinguishable for up to 4 weeks after deposition, based on differences in sebum composition. Specifically, adults had a higher lipid content than children, but both decreased over time, attributable to the volatility of free fatty acids. The aliphatic CH(3), aliphatic CH(2), and carbonyl ester compositions changed differently in adults versus children over time, consistent with higher cholesterol and cholesteryl esters in children's prints and wax esters and glycerides in adults' prints. Thus, fingerprint composition changes with time differently in children versus adults, making it a sensitive metric to estimate the age of an individual, especially when the age of the print is known.
C1 [Antoine, Kimone M.; Mortazavi, Shirin; Miller, Lisa M.] Brookhaven Natl Lab, Natl Synchrotron Light Source, Upton, NY 11973 USA.
[Antoine, Kimone M.] CUNY John Jay Coll Criminal Justice, New York, NY 10019 USA.
[Miller, Angela D.] Natl Univ, San Diego, CA USA.
RP Miller, LM (reprint author), Brookhaven Natl Lab, Natl Synchrotron Light Source, 75 Brookhaven Ave, Upton, NY 11973 USA.
EM lmiller@bnl.gov
NR 33
TC 36
Z9 36
U1 5
U2 29
PU WILEY-BLACKWELL PUBLISHING, INC
PI MALDEN
PA COMMERCE PLACE, 350 MAIN ST, MALDEN 02148, MA USA
SN 0022-1198
J9 J FORENSIC SCI
JI J. Forensic Sci.
PD MAR
PY 2010
VL 55
IS 2
BP 513
EP 518
DI 10.1111/j.1556-4029.2009.01262.x
PG 6
WC Medicine, Legal
SC Legal Medicine
GA 563AV
UT WOS:000275098700034
PM 20070471
ER
PT J
AU Barreiro, JG
Catalan, JRM
Prior, D
Wenk, HR
Vogel, S
Garcia, FD
Arenas, R
Martinez, SS
Lonardelli, I
AF Gomez Barreiro, J.
Martinez Catalan, J. R.
Prior, D.
Wenk, H. -R.
Vogel, S.
Diaz Garcia, F.
Arenas, R.
Sanchez Martinez, S.
Lonardelli, I.
TI Fabric Development in a Middle Devonian Intraoceanic Subduction Regime:
The Careon Ophiolite (Northwest Spain)
SO JOURNAL OF GEOLOGY
LA English
DT Review
ID ELECTRON BACKSCATTER DIFFRACTION; DISSOLUTION-PRECIPITATION CREEP;
DEFORMED PLAGIOCLASE FELDSPARS; SHAPE PREFERRED ORIENTATIONS; TOF
NEUTRON-DIFFRACTION; IN-HORNBLENDE BAROMETER; RYOKE METAMORPHIC BELT;
DUCTILE SHEAR ZONE; OMAN OPHIOLITE; HIGH-TEMPERATURE
AB A Middle Devonian suprasubduction zone ophiolite, the Careon Unit (northwest Spain), displays amphibolite-facies ductile deformation fabrics related to the onset of the Rheic Ocean closure. Two different fabrics, an early high-T foliation and a subsequent lower-T foliation, each of which characterized by distinct deformation mechanisms, have been identified in two distinct crustal-scale shear zones of the same ophiolitic thrust sheet. Combined quantitative texture analysis by electron backscattered diffraction and time-of-flight neutron diffraction, were carried out on the shear zones and correlated with micro-and macrostructural data. The results indicate that the regional lineation and shear zone kinematics (east-west, top-to-the-east) represent fabrics developed essentially during the intraoceanic subduction of the Rheic Ocean, and their orientation may be considered a reference vector for convergence models in this part of the Variscan belt.
C1 [Gomez Barreiro, J.; Arenas, R.; Sanchez Martinez, S.] Univ Complutense, CSIC, Inst Geol Econ, Dept Petrol & Geoquim, E-28040 Madrid, Spain.
[Martinez Catalan, J. R.] Univ Salamanca, Dept Geol, E-37008 Salamanca, Spain.
[Prior, D.] Univ Liverpool, Dept Earth Sci, Liverpool L69 3BX, Merseyside, England.
[Wenk, H. -R.] Univ Calif Berkeley, Dept Earth & Planetary Sci, Berkeley, CA 94720 USA.
[Vogel, S.] Los Alamos Natl Lab, Los Alamos Neutron Sci Ctr, Los Alamos, NM 87545 USA.
[Diaz Garcia, F.] Univ Oviedo, Dept Geol, E-33005 Oviedo, Spain.
[Lonardelli, I.] Univ Trent, I-38050 Trento, Italy.
RP Barreiro, JG (reprint author), Univ Complutense, CSIC, Inst Geol Econ, Dept Petrol & Geoquim, E-28040 Madrid, Spain.
EM jugb@usal.es
RI Gomez Barreiro, Juan/A-1661-2011; Lujan Center, LANL/G-4896-2012;
Sanchez Martinez, Sonia/E-1395-2015;
OI Gomez Barreiro, Juan/0000-0002-5031-3115; Sanchez Martinez,
Sonia/0000-0003-0826-5313; Vogel, Sven C./0000-0003-2049-0361
FU National Science Foundation; U.S. Department of Energy; Spanish Ministry
of Science and Innovation [CGL2007-65338-CO2-01, 02/BTE]; Spanish
Ministerio de Educacion y Ciencia [MEC] [EX-2005-0490]
FX We acknowledge support from the National Science Foundation, the U.S.
Department of Energy, and research projects CGL2007-65338-CO2-01 and
02/BTE of the Direccion General de Programas y Transferencia del
Conocimiento (Spanish Ministry of Science and Innovation). Access to the
Los Alamos Neutron Science Center (LANSCE) High-Pressure
Preferred-Orientation Diffractometer (HIPPO) to perform texture
measurements was invaluable. J. Gomez Barreiro was supported by
postdoctoral contracts (Spanish Ministerio de Educacion y Ciencia [MEC]
EX-2005-0490 and MEC-Juan de la Cierva). We are grateful to B. Murphy
and S. T. Johnston for thorough and constructive reviews and to D. B.
Rowley for the editorial work.
NR 152
TC 16
Z9 16
U1 1
U2 9
PU UNIV CHICAGO PRESS
PI CHICAGO
PA 1427 E 60TH ST, CHICAGO, IL 60637-2954 USA
SN 0022-1376
EI 1537-5269
J9 J GEOL
JI J. Geol.
PD MAR
PY 2010
VL 118
IS 2
BP 163
EP 186
DI 10.1086/649816
PG 24
WC Geology
SC Geology
GA 547VJ
UT WOS:000273917300004
ER
PT J
AU Schalk, CM
Luhring, TM
AF Schalk, Christopher M.
Luhring, Thomas M.
TI Vagility of Aquatic Salamanders: Implications for Wetland Connectivity
SO JOURNAL OF HERPETOLOGY
LA English
DT Article
ID SIREN-LACERTINA; COLONIZATION; AMPHIUMA
AB Research on landscape connectivity for amphibians that use isolated wetlands has focused on terrestrial and semiterrestrial species. Although aquatic species are commonly encountered in isolated wetlands, their dispersal capability and mode of dispersal has yet to be conclusively determined. For these salamander species, temporary waterways formed during heavy rains may provide transient dispersal opportunities among otherwise terrestrially isolated wetland patches and large contiguous sources (e.g., river swamps, lake systems). We assessed the vagility of two aquatic salamanders, the Greater Siren (Siren lacertina) and Two-Toed Amphiuma (Amphiuma means), under three simulated environmental conditions: terrestrial (damp but no standing water); shallow standing water (1 cm of water); and complete submergence (approximately 5 cm of water). Salamanders were placed inside a modified Living Stream container and stimulated into moving through each treatment. Both species demonstrated a trend toward exhaustion for all treatments and failed to move more than 8 m in the terrestrial or shallow water treatments. As expected, animals in the fully submerged treatment were able to disperse the farthest. Physical characteristics of salamanders did not affect vagility. To disperse, these species likely rely on the formation of aquatic corridors during flooding events. Therefore, successful dispersal among isolated wetlands depends on the ability of the surrounding landscape either to be periodically inundated with water or to form temporary waterways during heavy rains. Human activities that alter flooding events and watershed connectivity, such as flood control regimes and roads, may have important implications for wetland connectivity and, thus, metapopulation viability of aquatic salamanders.
C1 [Schalk, Christopher M.] SUNY Syracuse, Coll Environm Sci & Forestry, Div Environm Sci, Syracuse, NY 13210 USA.
[Schalk, Christopher M.; Luhring, Thomas M.] Savannah River Ecol Lab, Aiken, SC 29802 USA.
RP Luhring, TM (reprint author), Univ Missouri, Div Biol Sci, 105 Tucker Hall, Columbia, MO 65211 USA.
EM tmlhwb@mizzou.edu
RI Luhring, Thomas/A-9489-2012
OI Luhring, Thomas/0000-0001-7982-5862
FU U.S. Department of Energy [DE-FC09-07SR22506]; University of Georgia
Research Foundation; National Science Foundation
FX We thank J. W. Gibbons, J. P. Gibbs, D. A. Patrick, R. D. Semlitsch, B.
D. Todd, J. D. Willson, C. T. Winne, and two anonymous reviewers for
providing helpful comments on this manuscript. We thank B. D. Todd and
J. E. Earl for statistical analyses. Additional thanks goes to J.
Butler, B. R. Morris, M. Najarro, S. Poppy, L. Rodriguez-Matos, R.
Roman, L. Steadman, M. Tam, K. Wagner, and A. Willis for their help. All
procedures used in the study were approved by the University of Georgia
Animal Care and Use Committee and by the South Carolina Department of
Natural Resources Scientific Collection Permits. This research was
supported by the U.S. Department of Energy, Financial Assistance Award
DE-FC09-07SR22506, University of Georgia Research Foundation. CMS was
supported as an REU at SREL by the National Science Foundation.
NR 24
TC 9
Z9 10
U1 3
U2 21
PU SOC STUDY AMPHIBIANS REPTILES
PI ST LOUIS
PA C/O ROBERT D ALDRIDGE, ST LOUIS UNIV, DEPT BIOLOGY, 3507 LACLEDE, ST
LOUIS, MO 63103 USA
SN 0022-1511
J9 J HERPETOL
JI J. Herpetol.
PD MAR
PY 2010
VL 44
IS 1
BP 104
EP 109
PG 6
WC Zoology
SC Zoology
GA 567ZO
UT WOS:000275489700011
ER
PT J
AU Aaron, FD
Abramowicz, H
Abt, I
Adamczyk, L
Adamus, M
Martin, MA
Alexa, C
Andreev, V
Antonelli, S
Antonioli, P
Antonov, A
Antunovic, B
Arneodo, M
Aushev, V
Bachynska, O
Backovic, S
Baghdasaryan, A
Bamberger, A
Barakbaev, AN
Barbagli, G
Bari, G
Barreiro, F
Barrelet, E
Bartel, W
Bartsch, D
Basile, M
Begzsuren, K
Behnke, O
Behr, J
Behrens, U
Bellagamba, L
Belousov, A
Bertolin, A
Bhadra, S
Bindi, M
Bizot, JC
Blohm, C
Bold, T
Boos, EG
Borodin, M
Borras, K
Boscherini, D
Bot, D
Boudry, V
Boutle, SK
Bozovic-Jelisavcic, I
Bracinik, J
Brandt, G
Brinkmann, M
Brisson, V
Brock, I
Brownson, E
Brugnera, R
Brummer, N
Bruncko, D
Bruni, A
Bruni, G
Brzozowska, B
Bunyatyan, A
Buschhorn, G
Bussey, PJ
Butterworth, JM
Bylsma, B
Bystritskaya, L
Caldwell, A
Campbell, AJ
Avila, KBC
Capua, M
Carlin, R
Catterall, CD
Cerny, K
Cerny, V
Chekanov, S
Chekelian, V
Cholewa, A
Chwastowski, J
Ciborowski, J
Ciesielski, R
Cindolo, F
Contin, A
Contreras, JG
Cooper-Sarkar, AM
Coppola, N
Corradi, M
Corriveau, F
Costa, M
Coughlan, JA
Cozzika, G
Cvach, J
D'Agostini, G
Dainton, JB
Dal Corso, F
Daum, K
Deak, M
de Favereau, J
Delcourt, B
Del Degan, M
del Peso, J
Delvax, J
Dementiev, RK
De Pasquale, S
Derrick, M
Devenish, RCE
De Wolf, EA
Diaconu, C
Dobur, D
Dodonov, V
Dolgoshein, BA
Dossanov, A
Doyle, AT
Drugakov, V
Dubak, A
Durkin, LS
Dusini, S
Eckerlin, G
Efremenko, V
Egli, S
Eisenberg, Y
Eliseev, A
Elsen, E
Ermolov, PF
Eskreys, A
Falkiewicz, A
Fang, S
Favart, L
Fazio, S
Fedotov, A
Felst, R
Feltesse, J
Ferencei, J
Ferrando, J
Ferrero, MI
Figiel, J
Fischer, DJ
Fleischer, M
Fomenko, A
Forrest, M
Foster, B
Fourletov, S
Gabathuler, E
Galas, A
Gallo, E
Garfagnini, A
Gayler, J
Geiser, A
Ghazaryan, S
Gialas, I
Gladilin, LK
Gladkov, D
Glasman, C
Glazov, A
Glushkov, I
Goerlich, L
Gogitidze, N
Golubkov, YA
Gottlicher, P
Gouzevitch, M
Grab, C
Grabowska-Bold, I
Grebenyuk, J
Greenshaw, T
Gregor, I
Grell, BR
Grigorescu, G
Grindhammer, G
Grzelak, G
Gwenlan, C
Haas, T
Habib, S
Haidt, D
Hain, W
Hamatsu, R
Hart, JC
Hartmann, H
Hartner, G
Helebrant, C
Henderson, RCW
Hennekemper, E
Henschel, H
Herbst, M
Herrera, G
Hildebrandt, M
Hilger, E
Hiller, KH
Hochman, D
Hoffmann, D
Holm, U
Hori, R
Horisberger, R
Horton, K
Hreus, T
Huttmann, A
Iacobucci, G
Ibrahim, ZA
Iga, Y
Ingbir, R
Ishitsuka, M
Jacquet, M
Jakob, HP
Janssen, X
Januschek, F
Jimenez, M
Jones, TW
Jonsson, L
Jung, AW
Jung, H
Jungst, M
Kadenko, I
Kahle, B
Kamaluddin, B
Kananov, S
Kanno, T
Kapichine, M
Karshon, U
Karstens, F
Katkov, II
Katzy, J
Kaur, M
Kaur, P
Kenyon, IR
Keramidas, A
Khein, LA
Kiesling, C
Kim, JY
Kisielewska, D
Kitamura, S
Klanner, R
Klein, M
Klein, U
Kleinwort, C
Kluge, T
Knutsson, A
Koffeman, E
Kogler, R
Kollar, D
Kooijman, P
Korol, I
Korzhavina, IA
Kostka, P
Kotanski, A
Kotz, U
Kowalski, H
Kraemer, M
Krastev, K
Kretzschmar, J
Kropivnitskaya, A
Krueger, K
Kulinski, P
Kuprash, O
Kutak, K
Kuze, M
Kuzmin, VA
Landon, MPJ
Lange, W
Lastovicka-Medin, G
Laycock, P
Lebedev, A
Lee, A
Leibenguth, G
Lendermann, V
Levchenko, BB
Levonian, S
Levy, A
Li, G
Libov, V
Limentani, S
Ling, TY
Lipka, K
Liptaj, A
Lisovyi, M
List, B
List, J
Lobodzinska, E
Lohmann, W
Lohr, B
Lohrmann, E
Loizides, JH
Loktionova, N
Long, KR
Longhin, A
Lontkovskyi, D
Lopez-Fernandez, R
Lubimov, V
Lukasik, J
Lukina, OY
Luzniak, P
Maeda, J
Magill, S
Makankine, A
Makarenko, I
Malinovski, E
Malka, J
Mankel, R
Marage, P
Margotti, A
Marini, G
Marti, L
Martin, JF
Martyn, HU
Mastroberardino, A
Matsumoto, T
Mattingly, MCK
Maxfield, SJ
Mehta, A
Melzer-Pellmann, IA
Meyer, AB
Meyer, H
Meyer, H
Meyer, J
Miglioranzi, S
Mikocki, S
Milcewicz-Mika, I
Idris, FM
Monaco, V
Montanari, A
Moreau, F
Morozov, A
Morris, JD
Morris, JV
Mozer, MU
Mudrinic, M
Muller, K
Murin, P
Musgrave, B
Nagano, K
Namsoo, T
Nania, R
Naumann, T
Newman, PR
Nicholass, D
Niebuhr, C
Nigro, A
Nikiforov, A
Nikitin, D
Ning, Y
Noor, U
Notz, D
Nowak, G
Nowak, K
Nowak, RJ
Nozicka, M
Nuncio-Quiroz, AE
Oh, BY
Okazaki, N
Oliver, K
Olivier, B
Olkiewicz, K
Olsson, JE
Onishchuk, Y
Osman, S
Ota, O
Ozerov, D
Palichik, V
Panagoulias, I
Pandurovic, M
Papadopoulou, T
Papageorgiu, K
Parenti, A
Pascaud, C
Patel, GD
Paul, E
Pawlak, JM
Pawlik, B
Pejchal, O
Pelfer, PG
Pellegrino, A
Perez, E
Perlanski, W
Perrey, H
Petrukhin, A
Picuric, I
Piec, S
Piotrzkowski, K
Pitzl, D
Placakyte, R
Plucinski, P
Pokorny, B
Pokrovskiy, NS
Polifka, R
Polini, A
Povh, B
Proskuryakov, AS
Przybycien, M
Radescu, V
Rahmat, AJ
Raicevic, N
Raspiareza, A
Raval, A
Ravdandorj, T
Reimer, P
Reisert, B
Ren, Z
Repond, J
Ri, YD
Rizvi, E
Robertson, A
Robmann, P
Roland, B
Roloff, P
Ron, E
Roosen, R
Rostovtsev, A
Rotaru, M
Rubinsky, I
Tabasco, JER
Rurikova, Z
Rusakov, S
Ruspa, M
Sacchi, R
Salek, D
Salii, A
Samson, U
Sankey, DPC
Sartorelli, G
Sauter, M
Sauvan, E
Savin, AA
Saxon, DH
Schioppa, M
Schlenstedt, S
Schleper, P
Schmidke, WB
Schmitt, S
Schneekloth, U
Schoeffel, L
Schonberg, V
Schoning, A
Schorner-Sadenius, T
Schultz-Coulon, HC
Schwartz, J
Sciulli, F
Sefkow, F
Shaw-West, RN
Shcheglova, LM
Shehzadi, R
Shimizu, S
Shtarkov, LN
Shushkevich, S
Singh, I
Skillicorn, IO
Sloan, T
Slominski, W
Smiljanic, I
Smith, WH
Sola, V
Solano, A
Soloviev, Y
Son, D
Sopicki, P
Sorokin, I
Sosnovtsev, V
South, D
Spaskov, V
Specka, A
Spiridonov, A
Stadie, H
Stanco, L
Staykova, Z
Steder, M
Stella, B
Stern, A
Stewart, TP
Stifutkin, A
Stoicea, G
Stopa, P
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Viazlo, V.
Vinokurova, S.
Vlasov, N. N.
Volchinski, V.
Volynets, O.
von den Driesch, M.
Walczak, R.
Abdullah, W. A. T. Wan
Wegener, D.
Whitmore, J. J.
Whyte, J.
Wiggers, L.
Wing, M.
Wissing, Ch.
Wlasenko, M.
Wolf, G.
Wolfe, H.
Wrona, K.
Wuensch, E.
Yaguenes-Molina, A. G.
Yamada, S.
Yamazaki, Y.
Yoshida, R.
Youngman, C.
Zacek, J.
Zalesak, J.
Zarnecki, A. F.
Zawiejski, L.
Zenaiev, O.
Zeuner, W.
Zhang, Z.
Zhautykov, B. O.
Zhokin, A.
Zhou, C.
Zichichi, A.
Zimmermann, T.
Zohrabyan, H.
Zolko, M.
Zomer, F.
Zotkin, D. S.
Zus, R.
CA H1 Collaboration
ZEUS Collaboration
TI Events with an isolated lepton and missing transverse momentum and
measurement of W production at HERA
SO JOURNAL OF HIGH ENERGY PHYSICS
LA English
DT Article
DE Lepton-Nucleon Scattering
ID HIGH-ENERGY LEPTON; HADRON-COLLISIONS; BOSON PRODUCTION; EP COLLISIONS;
SEARCH; CALORIMETER
AB A search for events containing an isolated electron or muon and missing trans verse momentum produced in e(+/-)p collisions is performed with the H1 and ZEUS detectors at HERA. The data were taken in the period 1994-2007 and correspond to an integrated luminosity of 0.98 fb(-1). The observed event yields are in good overall agreement with the Standard Model prediction, which is dominated by single W production. In the e(+)p data, at large hadronic transverse momentum P-T(X) > 25GeV, a total of 23 events are observed compared to a prediction of 14.0 +/- 1.9. The total single W boson production cross section is measured as 1.06 +/- 0.16 (stat.) +/- 0.07 (sys.) pb, in agreement with an Standard Model (SM) expectation of 1.26 +/- 0.19 pb.
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[South, D.; Wegener, D.] TU Dortmund, Inst Phys, Dortmund, Germany.
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[Pelfer, P. G.] Univ Florence, Florence, Italy.
[Bamberger, A.; Dobur, D.; Karstens, F.; Vlasov, N. N.] Univ Freiburg, Fak Phys, D-7800 Freiburg, Germany.
[Cozzika, G.; Feltesse, J.; Perez, E.; Schoeffel, L.] CE Saclay, DSM Irfu, CEA, Gif Sur Yvette, France.
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[Bunyatyan, A.; Dodonov, V.; Povh, B.] Max Planck Inst Kernphys, D-69117 Heidelberg, Germany.
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[Ning, Y.; Ren, Z.; Sciulli, F.] Columbia Univ, Nevis Labs, New York, NY 10027 USA.
[Aushev, V.; Bachynska, O.; Borodin, M.; Kadenko, I.; Korol, Ie.; Kuprash, O.; Libov, V.; Lontkovskyi, D.; Makarenko, I.; Onishchuk, Yu.; Salii, A.; Sorokin, Iu.; Verbytskyi, A.; Viazlo, V.; Volynets, O.; Zenaiev, O.; Zolko, M.] Natl Acad Sci Ukraine, Inst Nucl Res, Kiev, Ukraine.
[Aushev, V.; Bachynska, O.; Borodin, M.; Kadenko, I.; Korol, Ie.; Kuprash, O.; Libov, V.; Lontkovskyi, D.; Makarenko, I.; Onishchuk, Yu.; Salii, A.; Sorokin, Iu.; Verbytskyi, A.; Viazlo, V.; Volynets, O.; Zenaiev, O.; Zolko, M.] Kiev Natl Univ, Kiev, Ukraine.
[Bruncko, D.; Cerny, V.; Ferencei, J.; Murin, P.; Tomasz, F.] Slovak Acad Sci, Inst Expt Phys, Kosice 04353, Slovakia.
[Ibrahim, Z. A.; Kamaluddin, B.; Idris, F. Mohamad; Abdullah, W. A. T. Wan] Univ Malaya, Kuala Lumpur 50603, Malaysia.
[Kim, J. Y.] Chonnam Natl Univ, Kwangju, South Korea.
[Henderson, R. C. W.; Sloan, T.] Univ Lancaster, Dept Phys, Lancaster, England.
[Dainton, J. B.; Gabathuler, E.; Greenshaw, T.; Klein, M.; Kluge, T.; Kretzschmar, J.; Laycock, P.; Maxfield, S. J.; Mehta, A.; Patel, G. D.; Rahmat, A. J.] Univ Liverpool, Dept Phys, Liverpool L69 3BX, Merseyside, England.
[Boutle, S. K.; Butterworth, J. M.; Jones, T. W.; Loizides, J. H.; Wing, M.] UCL, Dept Phys & Astron, London, England.
[Landon, M. P. J.; Rizvi, E.; Thompson, G.; Traynor, D.] Queen Mary Univ London, London E1 4NS, England.
[Long, K. R.; Tapper, A. D.] Univ London Imperial Coll Sci Technol & Med, High Energy Nucl Phys Grp, London, England.
[de Favereau, J.; Piotrzkowski, K.] Catholic Univ Louvain, Inst Phys Nucl, B-1348 Louvain, Belgium.
[Joensson, L.; Osman, S.] Lund Univ, Dept Phys, Lund, Sweden.
[Avila, K. B. Cantun; Contreras, J. G.; Tabasco, J. E. Ruiz] CINVESTAV, Dept Fis Aplicada, Merida, Yucatan, Mexico.
[Herrera, G.; Lopez-Fernandez, R.] CINVESTAV, Dept Fis, Mexico City 14000, DF, Mexico.
[Brownson, E.; Reeder, D. D.; Savin, A. A.; Smith, W. H.; Wolfe, H.] Univ Wisconsin, Dept Phys, Madison, WI 53706 USA.
[Barreiro, F.; del Peso, J.; Glasman, C.; Jimenez, M.; Ron, E.; Terron, J.; Uribe-Estrada, C.] Univ Autonoma Madrid, Dept Fis Teor, Madrid, Spain.
[Diaconu, C.; Hoffmann, D.; Sauvan, E.; Trinh, T. N.; Vallee, C.] Univ Aix Marseille 2, CNRS, CPPM, IN2P3, Marseille, France.
[Corriveau, F.; Schwartz, J.; Zhou, C.] McGill Univ, Dept Phys, Montreal, PQ H3A 2T8, Canada.
[Bystritskaya, L.; Efremenko, V.; Fedotov, A.; Kropivnitskaya, A.; Lubimov, V.; Ozerov, D.; Petrukhin, A.; Rostovtsev, A.; Spiridonov, A.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Andreev, V.; Belousov, A.; Eliseev, A.; Fomenko, A.; Gogitidze, N.; Lebedev, A.; Loktionova, N.; Malinovski, E.; Rusakov, S.; Shtarkov, L. N.; Soloviev, Y.; Vazdik, Y.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Antonov, A.; Dolgoshein, B. A.; Gladkov, D.; Sosnovtsev, V.; Stifutkin, A.; Suchkov, S.] Moscow Engn Phys Inst, Moscow 115409, Russia.
[Dementiev, R. K.; Ermolov, P. F.; Gladilin, L. K.; Golubkov, Yu. A.; Khein, L. A.; Korzhavina, I. A.; Kuzmin, V. A.; Levchenko, B. B.; Lukina, O. Yu.; Proskuryakov, A. S.; Shcheglova, L. M.; Zotkin, D. S.] Moscow MV Lomonosov State Univ, Inst Nucl Phys, Moscow, Russia.
[Abt, I.; Buschhorn, G.; Caldwell, A.; Chekelian, V.; Dossanov, A.; Grindhammer, G.; Kiesling, C.; Kogler, R.; Kollar, D.; Liptaj, A.; Olivier, B.; Raspiareza, A.; Reisert, B.; Schmidke, W. B.; Shushkevich, S.] Max Planck Inst Phys & Astrophys, D-80805 Munich, Germany.
[Bizot, J. C.; Brisson, V.; Delcourt, B.; Jacquet, M.; Li, G.; Pascaud, C.; Tran, T. H.; Zhang, Z.; Zomer, F.] Univ Paris 11, LAL, CNRS, IN2P3, Orsay, France.
[Cooper-Sarkar, A. M.; Devenish, R. C. E.; Ferrando, J.; Foster, B.; Gwenlan, C.; Horton, K.; Oliver, K.; Robertson, A.; Walczak, R.] Univ Oxford, Dept Phys, Oxford, England.
[Bertolin, A.; Brugnera, R.; Carlin, R.; Dal Corso, F.; Dusini, S.; Garfagnini, A.; Limentani, S.; Longhin, A.; Stanco, L.] Ist Nazl Fis Nucl, Padua, Italy.
[Brugnera, R.; Carlin, R.; Garfagnini, A.; Limentani, S.] Univ Padua, Dipartimento Fis, Padua, Italy.
[Boudry, V.; Moreau, F.; Specka, A.] Ecole Polytech, CNRS, LLR, IN2P3, F-91128 Palaiseau, France.
[Barrelet, E.] Univ Paris 06, CNRS, LPNHE, IN2P3, Paris, France.
[Barrelet, E.] Univ Paris 07, CNRS, LPNHE, IN2P3, Paris, France.
[Backovic, S.; Dubak, A.; Lastovicka-Medin, G.; Picuric, I.; Raicevic, N.] Univ Montenegro, Fac Sci, Podgorica, Montenegro.
[Cvach, J.; Reimer, P.; Zalesak, J.] Acad Sci Czech Republic, Inst Phys, Prague, Czech Republic.
[Cerny, K.; Pejchal, O.; Polifka, R.; Salek, D.; Valkarova, A.; Zacek, J.] Charles Univ Prague, Fac Math & Phys, Prague, Czech Republic.
[Eisenberg, Y.; Hochman, D.; Karshon, U.] Weizmann Inst Sci, Dept Particle Phys, IL-76100 Rehovot, Israel.
[Stella, B.] INFN Roma 3, Rome, Italy.
[Stella, B.] Univ Roma Tre, Dipartimento Fis, Rome, Italy.
[D'Agostini, G.; Marini, G.; Nigro, A.] Ist Nazl Fis Nucl, Rome, Italy.
[D'Agostini, G.; Marini, G.; Nigro, A.] Univ Roma La Sapienza, Dipartimento Fis, I-00185 Rome, Italy.
[Iga, Y.] Polytech Univ, Sagamihara, Kanagawa, Japan.
[Tsakov, I.] Bulgarian Acad Sci, Inst Nucl Res & Nucl Energy, Sofia, Bulgaria.
[Abramowicz, H.; Ingbir, R.; Kananov, S.; Levy, A.; Stern, A.] Tel Aviv Univ, Raymond & Beverly Sackler Fac Exact Sci, Sch Phys, IL-69978 Tel Aviv, Israel.
[Ishitsuka, M.; Kanno, T.; Kuze, M.; Maeda, J.] Tokyo Inst Technol, Dept Phys, Tokyo 152, Japan.
[Hori, R.; Okazaki, N.; Shimizu, S.] Univ Tokyo, Dept Phys, Tokyo 113, Japan.
[Hamatsu, R.; Kitamura, S.; Ota, O.; Ri, Y. D.] Tokyo Metropolitan Univ, Dept Phys, Tokyo, Japan.
[Arneodo, M.; Costa, M.; Ferrero, M. I.; Monaco, V.; Ruspa, M.; Sacchi, R.; Sola, V.; Solano, A.] Ist Nazl Fis Nucl, I-10125 Turin, Italy.
[Costa, M.; Ferrero, M. I.; Monaco, V.; Sacchi, R.; Sola, V.; Solano, A.] Univ Turin, Turin, Italy.
[Arneodo, M.; Ruspa, M.] Univ Piemonte Orientale, Novara, Italy.
[Fourletov, S.; Martin, J. F.; Stewart, T. P.] Univ Toronto, Dept Phys, Toronto, ON M5S 1A7, Canada.
[Matsumoto, T.; Nagano, K.; Tokushuku, K.; Yamada, S.; Yamazaki, Y.] Natl Lab High Energy Phys, KEK, Inst Particle & Nucl Studies, Tsukuba, Ibaraki 305, Japan.
[Begzsuren, K.; Tseepeldorj, B.] Mongolian Acad Sci, Inst Phys & Technol, Ulaanbaatar, Mongol Peo Rep.
[Oh, B. Y.; Raval, A.; Whitmore, J. J.] Penn State Univ, Dept Phys, University Pk, PA 16802 USA.
[Egli, S.; Hildebrandt, M.; Horisberger, R.] Paul Scherrer Inst, Villigen, Switzerland.
[Brzozowska, B.; Ciborowski, J.; Grzelak, G.; Kulinski, P.; Luzniak, P.; Malka, J.; Nowak, R. J.; Pawlak, J. M.; Perlanski, W.; Zarnecki, A. F.] Warsaw Univ, Inst Expt Phys, Warsaw, Poland.
[Adamus, M.; Plucinski, P.; Tymieniecka, T.] Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Daum, K.; Meyer, H.] Univ Wuppertal, Fachbereich C, Wuppertal, Germany.
[Baghdasaryan, A.; Bunyatyan, A.; Ghazaryan, S.; Volchinski, V.; Zohrabyan, H.] Yerevan Phys Inst, Yerevan 375036, Armenia.
[Tsurugai, T.] Meiji Gakuin Univ, Fac Gen Educ, Yokohama, Kanagawa, Japan.
[Bhadra, S.; Catterall, C. D.; Hartner, G.; Noor, U.; Whyte, J.] York Univ, Dept Phys, N York, ON M3J 1P3, Canada.
[Drugakov, V.; Glushkov, I.; Henschel, H.; Hiller, K. H.; Kostka, P.; Lange, W.; Lohmann, W.; Naumann, Th.; Piec, S.; Schlenstedt, S.] Deutsch Elektronen Synchrotron DESY, Zeuthen, Germany.
[Del Degan, M.; Grab, C.; Leibenguth, G.; Sauter, M.; Zimmermann, T.] ETH, Inst Teilchenphys, Zurich, Switzerland.
[Mueller, K.; Nowak, K.; Robmann, P.; Straumann, U.; Truoel, P.] Univ Zurich, Inst Phys, Zurich, Switzerland.
[Panagoulias, I.; Papadopoulou, Th.] Natl Tech Univ Athens, Dept Phys, GR-15773 Athens, Greece.
[Daum, K.] Univ Wuppertal, Rechenzentrum, Wuppertal, Germany.
[Hreus, T.; Murin, P.] Univ PJ Safarik, Kosice, Slovakia.
[Perez, E.] CERN, Geneva, Switzerland.
[Dubak, A.] Max Planck Inst Phys & Astrophys, D-80805 Munich, Germany.
[Cerny, V.] Comenius Univ, Bratislava, Slovakia.
[Feltesse, J.] DESY, Hamburg, Germany.
[Aaron, F. D.] Univ Bucharest, Fac Phys, Bucharest, Romania.
[Tseepeldorj, B.] Ulaanbaatar Univ, Ulaanbaatar, Mongol Peo Rep.
[Abramowicz, H.; Kaur, P.; Singh, I.] Max Planck Inst, Munich, Germany.
[Szuba, D.] INP, Krakow, Poland.
[Szuba, J.] AGH Univ Sci & Technol, FPACS, Krakow, Poland.
[Ciborowski, J.] Univ Lodz, PL-90131 Lodz, Poland.
[Tymieniecka, T.] Univ Podlasie, Siedlce, Poland.
RP Aaron, FD (reprint author), Natl Inst Phys & Nucl Engn NIPNE, Bucharest, Romania.
EM tobias.haas@desy.de
RI Proskuryakov, Alexander/J-6166-2012; Dementiev, Roman/K-7201-2012;
Janssen, Xavier/E-1915-2013; Reimer, Petr/G-5903-2014; Cvach,
Jaroslav/G-6269-2014; Zalesak, Jaroslav/G-5691-2014; Korzhavina,
Irina/D-6848-2012; Wiggers, Leo/B-5218-2015; Tassi, Enrico/K-3958-2015;
Suchkov, Sergey/M-6671-2015; Levonian, Sergey/M-8693-2015; Soloviev,
Yury/M-8788-2015; Andreev, Vladimir/M-8665-2015; IBRAHIM, ZAINOL
ABIDIN/C-1121-2010; Levchenko, B./D-9752-2012; Fazio, Salvatore
/G-5156-2010; Zus, Roxana/C-5170-2011; WAN ABDULLAH, WAN AHMAD
TAJUDDIN/B-5439-2010; Stoicea, Gabriel/B-6717-2011; Aaron, Francis
Dionisie/C-2320-2011; Alexa, Calin/F-6345-2010; Doyle,
Anthony/C-5889-2009; Ferrando, James/A-9192-2012; Rotaru,
Marina/A-3097-2011; Gladilin, Leonid/B-5226-2011; Fomenko,
Alexander/I-7900-2014; Lebedev, Andrey/M-9710-2015; Malinovski,
Evgenii/N-1034-2015; Gogitidze, Nelli/N-1224-2015; Eliseev,
Alexandr/N-2090-2015; Belousov, Anatoli/N-2102-2015; Vazdik,
Iakov/N-2624-2015; Ozerov, Dmitry/E-9139-2016; De Pasquale,
Salvatore/B-9165-2008; dusini, stefano/J-3686-2012; Kapishin,
Mikhail/H-5834-2013;
OI Zalesak, Jaroslav/0000-0002-4519-4705; Wiggers, Leo/0000-0003-1060-0520;
Soloviev, Yury/0000-0003-1136-2827; Stoicea,
Gabriel/0000-0002-7511-4614; Aaron, Francis
Dionisie/0000-0002-7342-829X; Doyle, Anthony/0000-0001-6322-6195;
Ferrando, James/0000-0002-1007-7816; Rotaru, Marina/0000-0003-3303-5683;
Gladilin, Leonid/0000-0001-9422-8636; De Pasquale,
Salvatore/0000-0001-9236-0748; dusini, stefano/0000-0002-1128-0664;
Kapishin, Mikhail/0000-0001-8473-4631; Arneodo,
Michele/0000-0002-7790-7132
NR 18
TC 4
Z9 4
U1 1
U2 17
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1029-8479
J9 J HIGH ENERGY PHYS
JI J. High Energy Phys.
PD MAR
PY 2010
IS 3
AR 035
DI 10.1007/JHEP03(2010)035
PG 19
WC Physics, Particles & Fields
SC Physics
GA 585BB
UT WOS:000276798202005
ER
PT J
AU Arkani-Hamed, N
Cachazo, F
Cheung, C
Kaplan, J
AF Arkani-Hamed, N.
Cachazo, F.
Cheung, C.
Kaplan, J.
TI The S-matrix in twistor space
SO JOURNAL OF HIGH ENERGY PHYSICS
LA English
DT Article
DE Supersymmetric gauge theory; Duality in Gauge Field Theories; Classical
Theories of Gravity
ID GAUGE-THEORY AMPLITUDES; YANG-MILLS THEORY; ONE-LOOP; N=8 SUPERGRAVITY;
ULTRAVIOLET DIVERGENCES; GRAVITY AMPLITUDES; STRING THEORIES; UNITARITY;
DIAGRAMS; ALGEBRA
AB The marvelous simplicity and remarkable hidden symmetries recently uncovered in (Super) Yang-Mills and (Super) Gravity scattering amplitudes strongly suggests the existence of a "weak-weak" dual formulation of these theories where these structures are made more manifest at the expense of manifest locality. In this note we suggest that in four dimensions, this dual description lives in (2,2) signature and is naturally formulated in twistor space. We begin at tree-level, by recasting the momentum-space BCFW recursion relation in a completely on-shell form that begs to be transformed into twistor space. Our transformation is strongly inspired by Witten's twistor string theory, but differs in treating twistor and dual twistor variables on a more equal footing; a related transcription of the BCFW formula using only twistor space variables has been carried out independently by Mason and Skinner. Using both twistor and dual twistor variables, the three and four-point amplitudes are strikingly simple-for Yang-Mills theories they are "1" or "-1". The BCFW computation of higher-order amplitudes can be represented by a simple set of diagrammatic rules, concretely realizing Penrose's program of relating "twistor diagrams" to scattering amplitudes. More specifically, we give a precise definition of the twistor diagram formalism developed over the past few years by Andrew Hodges. The "Hodges diagram" representation of the BCFW rules allows us to compute amplitudes and study their remarkable properties in twistor space. For instance the diagrams for Yang-Mills theory are topologically disks and not trees, and reveal striking connections between amplitudes that are not manifest in momentum space. Twistor space also suggests a new representation of the amplitudes directly in momentum space, that is naturally determined by the Hodges diagrams. The BCFW rules and Hodges diagrams also enable a systematic twistorial formulation of gravity. All tree amplitudes can be combined into an "S-Matrix" scattering functional which is the natural holographic observable in asymptotically flat space; the BCFW formula turns into a simple quadratic equation for this "S-Matrix" in twistor space, providing a holographic description of N = 4 SYM and N = 8 Supergravity at tree level. We move on to initiate the exploration of loop amplitudes in (2, 2) signature and twistor space, beginning with a discussion of their IR behavior. We find that the natural pole prescriptions needed for transformation to twistor space make the amplitudes perfectly well-defined objects, free of IR divergences. Indeed in momentum space, the loop amplitudes so regulated vanish for generic momenta, and transformed to twistor space, are even simpler than their tree-level counterparts: the full 4-pt one-loop amplitudes in N = 4 SYM are simply equal to "1" or "0"! This further supports the idea that there exists a sharply defined object corresponding to the S-Matrix in (2,2) signature, computed by a dual theory naturally living in twistor space.
C1 [Arkani-Hamed, N.] Inst Adv Study, Sch Nat Sci, Princeton, NJ 08540 USA.
[Cachazo, F.] Perimeter Inst Theoret Phys, Waterloo, ON N2J W29, Canada.
[Cheung, C.] Univ Calif Berkeley, Berkeley Ctr Theoret Phys, Berkeley, CA 94720 USA.
[Cheung, C.] Univ Calif Berkeley, Lawrence Berkeley Lab, Theoret Phys Grp, Berkeley, CA 94720 USA.
[Kaplan, J.] SLAC Natl Accelerator Lab, Theory Grp, Menlo Pk, CA 94025 USA.
RP Arkani-Hamed, N (reprint author), Inst Adv Study, Sch Nat Sci, Olden Lane, Princeton, NJ 08540 USA.
EM arkani@ias.edu; fcachazo@perimeterinstitute.ca;
clifford.cheung@berkeley.edu; jaredk@slac.stanford.edu
FU DOE [DE-FG02-91ER40654]; NSERC of Canada; MEDT of Ontario; NSF
FX We thank Fernando Alday, Ruth Britto, Henriette Elvang, and especially
Juan Maldacena and Edward Witten for many stimulating comments. We also
thank Andrew Hodges, Lionel Mason and David Skinner for several days of
extremely enjoyable and productive discussions of our related works in
progress. F.C. is also grateful to the Institute for Advanced Study for
hospitality during the origination of this work. N-A.H., C.-C. and J.K.
similarly thank the Perimeter Institute for its hospitality. N.A.-H. is
supported by the DOE under grant DE-FG02-91ER40654, F.C. was supported
in part by the NSERC of Canada and MEDT of Ontario, and J.K. is
supported by a Hertz foundation fellowship and an NSF fellowship.
NR 80
TC 54
Z9 54
U1 0
U2 1
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1029-8479
J9 J HIGH ENERGY PHYS
JI J. High Energy Phys.
PD MAR
PY 2010
IS 3
AR 110
DI 10.1007/JHEP03(2010)110
PG 48
WC Physics, Particles & Fields
SC Physics
GA 585BB
UT WOS:000276798206003
ER
PT J
AU Arkani-Hamed, N
Cachazo, F
Cheung, C
Kaplan, J
AF Arkani-Hamed, N.
Cachazo, F.
Cheung, C.
Kaplan, J.
TI A duality for the S matrix
SO JOURNAL OF HIGH ENERGY PHYSICS
LA English
DT Article
DE Supersymmetric gauge theory; Duality in Gauge Field Theories
ID SUPER-YANG-MILLS; GAUGE-THEORY AMPLITUDES; ONE-LOOP; ULTRAVIOLET
DIVERGENCES; SUPERGRAVITY THEORY; GRAVITY AMPLITUDES; COLLINEAR LIMITS;
CROSS-SECTIONS; QCD AMPLITUDES; ORDER
AB We propose a dual formulation for the S Matrix of N = 4 SYM. The dual provides a basis for the "leading singularities" of scattering amplitudes to all orders in perturbation theory, which are sharply defined, IR safe data that uniquely determine the full amplitudes at tree level and 1-loop, and are conjectured to do so at all loop orders. The scattering amplitude for n particles in the sector with k negative helicity gluons is associated with a simple integral over the space of k planes in n dimensions, with the action of parity and cyclic symmetries manifest. The residues of the integrand compute a basis for the leading singularities. A given leading singularity is associated with a particular choice of integration contour, which we explicitly identify at tree level and 1-loop for all NMHV amplitudes as well as the 8 particle (NMHV)-M-2 amplitude. We also identify a number of 2-loop leading singularities for up to 8 particles. There are a large number of relations among residues which follow from the multi-variable generalization of Cauchy's theorem known as the "global residue theorem". These relations imply highly non-trivial identities guaranteeing the equivalence of many different representations of the same amplitude. They also enforce the cancellation of non-local poles as well as consistent infrared structure at loop level. Our conjecture connects the physics of scattering amplitudes to a particular subvariety in a Grassmannian; space-time locality is reflected in the topological properties of this space.
C1 [Arkani-Hamed, N.] Inst Adv Study, Sch Nat Sci, Princeton, NJ 08540 USA.
[Cachazo, F.] Perimeter Inst Theoret Phys, Waterloo, ON N2J W29, Canada.
[Cheung, C.] Univ Calif Berkeley, Berkeley Ctr Theoret Phys, Berkeley, CA 94720 USA.
[Cheung, C.] Univ Calif Berkeley, Lawrence Berkeley Lab, Theoret Phys Grp, Berkeley, CA 94720 USA.
[Kaplan, J.] SLAC Natl Accelerator Lab, Theory Grp, Menlo Pk, CA 94025 USA.
RP Arkani-Hamed, N (reprint author), Inst Adv Study, Sch Nat Sci, Olden Lane, Princeton, NJ 08540 USA.
EM arkani@ias.edu; fcachazo@perimeterinstitute.ca;
clifford.cheung@berkeley.edu; jaredk@slac.stanford.edu
FU Research Science Institute of the Center for Excellence in Education;
DOE Office of Nuclear Physics [DE-FG02-94ER40818]
FX We acknowledge very helpful conversations with Ulrich Heinz, Harvey
Meyer, Tomoi Koide, Gunther Roland, Paul Romatschke, Huichao Song, Misha
Stephanov and Derek Teaney. NT is grateful to the Research Science
Institute of the Center for Excellence in Education for supporting his
research. This research was supported in part by the DOE Office of
Nuclear Physics under contract #DE-FG02-94ER40818.
NR 97
TC 144
Z9 144
U1 0
U2 2
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1029-8479
J9 J HIGH ENERGY PHYS
JI J. High Energy Phys.
PD MAR
PY 2010
IS 3
AR 020
DI 10.1007/JHEP03(2010)020
PG 70
WC Physics, Particles & Fields
SC Physics
GA 585BB
UT WOS:000276798201004
ER
PT J
AU Arkani-Hamed, N
Cachazo, F
Cheung, C
AF Arkani-Hamed, Nima
Cachazo, Freddy
Cheung, Clifford
TI The Grassmannian origin of dual superconformal invariance
SO JOURNAL OF HIGH ENERGY PHYSICS
LA English
DT Article
DE Supersymmetric gauge theory; Duality in Gauge Field Theories
AB A dual formulation of the S Matrix for N = 4 SYM has recently been presented, where all leading singularities of n-particle Nk-2MHV amplitudes are given as an integral over the Grassmannian G(k, n), with cyclic symmetry, parity and superconformal invariance manifest. In this short note we show that the dual superconformal invariance of this object is also manifest. The geometry naturally suggests a partial integration and simple change of variable to an integral over G(k - 2, n). This change of variable precisely corresponds to the mapping between usual momentum variables and the "momentum twistors" introduced by Hodges, and yields an elementary derivation of the momentum-twistor space formula very recently presented by Mason and Skinner, which is manifestly dual superconformal invariant. Thus the G(k, n) Grassmannian formulation allows a direct understanding of all the important symmetries of N = 4 SYM scattering amplitudes.
C1 [Arkani-Hamed, Nima] Inst Adv Study, Sch Nat Sci, Princeton, NJ 08540 USA.
[Cachazo, Freddy] Perimeter Inst Theoret Phys, Waterloo, ON N2J W29, Canada.
[Cheung, Clifford] Univ Calif Berkeley, Berkeley Ctr Theoret Phys, Berkeley, CA 94720 USA.
[Cheung, Clifford] Lawrence Berkeley Natl Lab, Theoret Phys Grp, Berkeley, CA 94720 USA.
RP Arkani-Hamed, N (reprint author), Inst Adv Study, Sch Nat Sci, Olden Lane, Princeton, NJ 08540 USA.
EM arkani@ias.edu; fcachazo@perimeterinstitute.ca;
clifford.cheung@berkeley.edu
FU DOE [DE-FG02-91ER40654]; NSERC of Canada; MEDT of Ontario
FX We thank Fernando Alday, Jacob Bourjaily, Jared Kaplan, Juan Maldacena,
Edward Witten and especially Andrew Hodges, Lionel Mason and David
Skinner for stimulating discussions. N.A.-H. is supported by the DOE
under grant DE-FG02-91ER40654, F. C. was supported in part by the NSERC
of Canada and MEDT of Ontario.
NR 8
TC 67
Z9 67
U1 0
U2 2
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1029-8479
J9 J HIGH ENERGY PHYS
JI J. High Energy Phys.
PD MAR
PY 2010
IS 3
AR 036
DI 10.1007/JHEP03(2010)036
PG 8
WC Physics, Particles & Fields
SC Physics
GA 585BB
UT WOS:000276798202006
ER
PT J
AU Bardakci, K
AF Bardakci, Korkut
TI More on the connection between planar field theory and string theory
SO JOURNAL OF HIGH ENERGY PHYSICS
LA English
DT Article
DE Bosonic Strings; 1/N Expansion
ID WORLDSHEET DESCRIPTION; DUAL AMPLITUDES; MODEL
AB We continue work on the connection between world sheet representation of the planar phi(3) field theory and string formation. The present article, like the earlier work, is based on the existence of a solitonic solution on the world sheet, and on the zero mode fluctuations around this solution. The main advance made in this paper is the removal of the cutoff and the transition to the continuum limit on the world sheet. The result is an action for the modes whose energies remain finite in this limit ( light modes). The expansion of this action about a dense background of graphs on the world sheet leads to the formation of a string.
C1 [Bardakci, Korkut] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
[Bardakci, Korkut] Univ Calif Berkeley, Theoret Phys Grp, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
RP Bardakci, K (reprint author), Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
EM kbardakci@lbl.gov
FU U.S. Department of Energy [DE-AC02-05CH11231]
FX This work was supported in part by the Director, Office of Science,
Office of High Energy Physics of the U.S. Department of Energy under the
Contract DE-AC02-05CH11231.
NR 15
TC 1
Z9 1
U1 0
U2 0
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1029-8479
J9 J HIGH ENERGY PHYS
JI J. High Energy Phys.
PD MAR
PY 2010
IS 3
AR 107
DI 10.1007/JHEP03(2010)107
PG 24
WC Physics, Particles & Fields
SC Physics
GA 585BB
UT WOS:000276798205020
ER
PT J
AU Cheung, C
AF Cheung, Clifford
TI On-shell recursion relations for generic theories
SO JOURNAL OF HIGH ENERGY PHYSICS
LA English
DT Article
DE Supersymmetric gauge theory; Gauge Symmetry; Field Theories in Higher
Dimensions; Classical Theories of Gravity
ID TREE AMPLITUDES; GRAVITY
AB We show that on-shell recursion relations hold for tree amplitudes in generic two derivative theories in an arbitrary number of dimensions with multiple particle species and diverse spins. For example, in a gauge theory coupled to scalars and fermions, any amplitude with at least one gluon obeys a recursion relation. In ( super) gravity coupled to scalars and fermions, the same holds for any amplitude with at least one graviton. This result pertains to a broad class of theories, including QCD, N = 4 SYM, and N = 8 supergravity.
C1 [Cheung, Clifford] Univ Calif Berkeley, Berkeley Ctr Theoret Phys, Berkeley, CA 94720 USA.
[Cheung, Clifford] LBNL, Theoret Phys Grp, Berkeley, CA 94720 USA.
RP Cheung, C (reprint author), Univ Calif Berkeley, Berkeley Ctr Theoret Phys, Berkeley, CA 94720 USA.
EM clifford.cheung@berkeley.edu
FU DOE [DE-FG02-91ER40654]
FX It is a pleasure to thank N. Arkani-Hamed, H. Elvang, D. Freedman, and
J. Kaplan for very helpful physics discussions and comments on the
manuscript. CC is supported in part by DOE grant DE-FG02-91ER40654.
NR 16
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J9 J HIGH ENERGY PHYS
JI J. High Energy Phys.
PD MAR
PY 2010
IS 3
AR 098
DI 10.1007/JHEP03(2010)098
PG 19
WC Physics, Particles & Fields
SC Physics
GA 585BB
UT WOS:000276798205011
ER
PT J
AU Cheung, C
Nomura, Y
Thaler, J
AF Cheung, Clifford
Nomura, Yasunori
Thaler, Jesse
TI Goldstini
SO JOURNAL OF HIGH ENERGY PHYSICS
LA English
DT Article
DE Supersymmetry Breaking; Supersymmetric Effective Theories; Supergravity
Models
ID SUPERSYMMETRY-BREAKING; SPLIT SUPERSYMMETRY; GRAVITINO; SUPERGRAVITY;
SIGNATURES; COLLIDERS; COSMOLOGY
AB Supersymmetric phenomenology has been largely bound to the hypothesis that supersymmetry breaking originates from a single source. In this paper, we relax this underlying assumption and consider a multiplicity of sectors which independently break supersymmetry, thus yielding a corresponding multiplicity of goldstini. While one linear combination of goldstini is eaten via the super-Higgs mechanism, the orthogonal combinations remain in the spectrum as physical degrees of freedom. Interestingly, supergravity effects induce a universal tree-level mass for the goldstini which is exactly twice the gravitino mass. Since visible sector fields can couple dominantly to the goldstini rather than the gravitino, this framework allows for substantial departures from conventional supersymmetric phenomenology. In fact, this even occurs when a conventional mediation scheme is augmented by additional supersymmetry breaking sectors which are fully sequestered. We discuss a number of striking collider signatures, including various novel decay modes for the lightest observable-sector supersymmetric particle, gravitinoless gauge-mediated spectra, and events with multiple displaced vertices. We also describe goldstini cosmology and the possibility of goldstini dark matter.
C1 [Cheung, Clifford; Nomura, Yasunori] Univ Calif Berkeley, Berkeley Ctr Theoret Phys, Berkeley, CA 94720 USA.
[Cheung, Clifford; Nomura, Yasunori] Univ Calif Berkeley, Lawrence Berkeley Lab, Theoret Phys Grp, Berkeley, CA 94720 USA.
[Thaler, Jesse] MIT, Ctr Theoret Phys, Cambridge, MA 02139 USA.
[Nomura, Yasunori] Univ Tokyo, Inst Phys & Math Universe, Kashiwa, Chiba 2778568, Japan.
RP Cheung, C (reprint author), Univ Calif Berkeley, Berkeley Ctr Theoret Phys, Berkeley, CA 94720 USA.
EM clifford.cheung@berkeley.edu; ynomura@lbl.gov; jthaler@mit.edu
OI Thaler, Jesse/0000-0002-2406-8160; Nomura, Yasunori/0000-0002-1497-1479
FU Office of Science, Office of High Energy and Nuclear Physics, of the US
Department of Energy [DE-AC02-05CH11231]; National Science Foundation
[PHY-0555661, PHY-0855653]; U.S. Department of Energy [DE-FG0205ER41360]
FX We thank N. Arkani-Hamed, A. Arvanitaki, N. Craig, S. Dimopoulos, D.
Freedman, M. Schmaltz, and D. Shih for interesting discussions. The work
of C. C. and Y.N. was supported in part by the Director, Office of
Science, Office of High Energy and Nuclear Physics, of the US Department
of Energy under Contract DE-AC02-05CH11231, and in part by the National
Science Foundation under grants PHY-0555661 and PHY-0855653. J.T. is
supported by the U. S. Department of Energy under cooperative research
agreement DE-FG0205ER41360.
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J9 J HIGH ENERGY PHYS
JI J. High Energy Phys.
PD MAR
PY 2010
IS 3
AR 073
DI 10.1007/JHEP03(2010)073
PG 27
WC Physics, Particles & Fields
SC Physics
GA 585BB
UT WOS:000276798204005
ER
PT J
AU Hall, LJ
Jedamzik, K
March-Russell, J
West, SM
AF Hall, Lawrence J.
Jedamzik, Karsten
March-Russell, John
West, Stephen M.
TI Freeze-in production of FIMP dark matter
SO JOURNAL OF HIGH ENERGY PHYSICS
LA English
DT Article
DE Cosmology of Theories beyond the SM; Beyond Standard Model
ID PROTON-DECAY; UNIFICATION; UNIVERSE; RAYS
AB We propose an alternate, calculable mechanism of dark matter genesis, "thermal freeze-in", involving a Feebly Interacting Massive Particle (FIMP) interacting so feebly with the thermal bath that it never attains thermal equilibrium. As with the conventional "thermal freeze-out" production mechanism, the relic abundance reflects a combination of initial thermal distributions together with particle masses and coupling that can be measured in the laboratory or astrophysically. The freeze-in yield is IR dominated by low temperatures near the FIMP mass and is independent of unknown UV physics, such as the reheat temperature after inflation. Moduli and modulinos of string theory compactifications that receive mass from weak-scale supersymmetry breaking provide implementations of the freeze-in mechanism, as do models that employ Dirac neutrino masses or GUT-scale-suppressed interactions. Experimental signals of freeze-in and FIMPs can be spectacular, including the production of new metastable coloured or charged particles at the LHC as well as the alteration of big bang nucleosynthesis.
C1 [Hall, Lawrence J.] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
[Hall, Lawrence J.] LBNL, Theoret Phys Grp, Berkeley, CA 94720 USA.
[Hall, Lawrence J.] Univ Tokyo, Inst Phys & Math Universe, Kashiwa, Chiba 2778568, Japan.
[Jedamzik, Karsten] Univ Montpellier 2, Lab Phys Theor & Astroparticules, CNRS, UMR5207, F-34095 Montpellier, France.
[March-Russell, John] Univ Oxford, Rudolf Peierls Ctr Theoret Phys, Oxford OX1 3NP, England.
[West, Stephen M.] Univ London, Egham TW20 0EX, Surrey, England.
[West, Stephen M.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
RP Hall, LJ (reprint author), Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
EM LJHall@lbl.gov; JEDAMZIK@lpta.univ-montp2.fr;
j.march-russell@physics.ox.ac.uk; Stephen.West@rhul.ac.uk
OI West, Stephen/0000-0002-1666-9417
FU European ERC [228169-BSMOXFORD]; EC [MRTN-CT-2004-503369]; EU
[MPRN-CT-2006-035863]; STFC (UK); Royal Society; Higher Education
Funding Council for England; National Science Foundation [PHY-0457315];
Office of Science, Office of High Energy and Nuclear Physics, of the US
Department of Energy [DE-AC02-05CH11231]
FX We thank Asimina Arvanitaki, Savas Dimopoulos, Sergei Dubovsky, Piyush
Kumar and Scott Watson for discussions. KJ, JMR, and SMW gratefully
thank the Berkeley Center for Theoretical Physics for their warm
hospitality during the course of this work. LH, KJ and SMW gratefully
acknowledge hospitality from the Dalitz Institute for Fundamental
Physics, Oxford University and for visitor support from the European ERC
Advanced Grant 228169-BSMOXFORD. JMR is partially supported by the EC
network 6th Framework Programme Research and Training Network Quest for
Unification (MRTN-CT-2004-503369), by the EU FP6 Marie Curie Research
and Training Network UniverseNet (MPRN-CT-2006-035863), by the STFC
(UK), and by a Royal Society Wolfson Award. SMW thanks the Higher
Education Funding Council for England and the STFC (UK), for financial
support under the SEPNet Initiative. The work of LH was supported in
part by the National Science Foundation under grant PHY-0457315 and in
part by the Director, Office of Science, Office of High Energy and
Nuclear Physics, of the US Department of Energy under Contract
DE-AC02-05CH11231.
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J9 J HIGH ENERGY PHYS
JI J. High Energy Phys.
PD MAR
PY 2010
IS 3
AR 080
DI 10.1007/JHEP03(2010)080
PG 33
WC Physics, Particles & Fields
SC Physics
GA 585BB
UT WOS:000276798204012
ER
PT J
AU Hall, LJ
Nomura, Y
AF Hall, Lawrence J.
Nomura, Yasunori
TI A finely-predicted Higgs boson mass from a finely-tuned weak scale
SO JOURNAL OF HIGH ENERGY PHYSICS
LA English
DT Article
DE Supersymmetry Breaking; Beyond Standard Model; Superstring Vacua
ID GAUGE COUPLING UNIFICATION; SUPERSYMMETRY BREAKING; COSMOLOGICAL
CONSTANT; SYMMETRY-BREAKING; STANDARD MODEL; UNIVERSE
AB If supersymmetry is broken directly to the Standard Model at energies not very far from the unified scale, the Higgs boson mass lies in the range (128 - 141) GeV. The end points of this range are tightly determined. Theories with the Higgs boson dominantly in a single supermultiplet predict a mass at the upper edge, (141 +/- 2) GeV, with the uncertainty dominated by the experimental errors on the top quark mass and the QCD coupling. This edge prediction is remarkably insensitive to the supersymmetry breaking scale and to supersymmetric threshold corrections so that, in a wide class of theories, the theoretical uncertainties are at the level of +/- 0.4 GeV. A reduction in the uncertainties from the top quark mass and QCD coupling to the level of +/- 0.3 GeV may be possible at future colliders, increasing the accuracy of the confrontation with theory from 1.4% to 0.4%. Verification of this prediction would provide strong evidence for supersymmetry, broken at a very high scale of approximate to 10(14 +/- 2) GeV, and also for a Higgs boson that is elementary up to this high scale, implying fine-tuning of the Higgs mass parameter by approximate to 20 - 28 orders of magnitude. Currently, the only known explanation for such fine-tuning is the multiverse.
C1 [Hall, Lawrence J.] Univ Calif Berkeley, Dept Phys, Berkeley Ctr Theoret Phys, Berkeley, CA 94720 USA.
Univ Calif Berkeley, Lawrence Berkeley Lab, Theoret Phys Grp, Berkeley, CA 94720 USA.
Univ Tokyo, Inst Phys & Math Universe, Kashiwa, Chiba 2778568, Japan.
RP Hall, LJ (reprint author), Univ Calif Berkeley, Dept Phys, Berkeley Ctr Theoret Phys, Berkeley, CA 94720 USA.
EM LJHall@lbl.gov; YNomura@lbl.gov
OI Nomura, Yasunori/0000-0002-1497-1479
FU Office of Science, Office of High Energy and Nuclear Physics, of the US
Department of Energy [DE-AC02-05CH11231]; National Science Foundation
[PHY-0457315, PHY-0555661, PHY-0855653]
FX We thank Gilly Elor and Piyush Kumar for useful discussions. This work
was supported in part by the Director, Office of Science, Office of High
Energy and Nuclear Physics, of the US Department of Energy under
Contract DE-AC02-05CH11231. The work of L. H. was supported in part by
the National Science Foundation under grant PHY-0457315, and that of
Y.N. under grants PHY-0555661 and PHY-0855653.
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J9 J HIGH ENERGY PHYS
JI J. High Energy Phys.
PD MAR
PY 2010
IS 3
AR 076
DI 10.1007/JHEP03(2010)076
PG 31
WC Physics, Particles & Fields
SC Physics
GA 585BB
UT WOS:000276798204008
ER
PT J
AU Aamodt, K
Abel, N
Abeysekara, U
Quintana, AA
Adamova, D
Aggarwal, M
Rinella, GA
Agocs, AG
Salazar, SA
Ahammed, Z
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Ahn, SU
Akimoto, R
Akindinov, A
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Fini, R
Fionda, FM
Fiore, EM
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Frankenfeld, U
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Gonzalez-Trueba, LH
Gonzalez-Zamora, P
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Hrivnacova, I
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Kryshen, E
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Luparello, G
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Montes, E
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Muller, H
Munhoz, MG
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Nania, R
Nappi, E
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Nayak, TK
Nazarenko, S
Nazarov, G
Nedosekin, A
Nendaz, F
Newby, J
Nianine, A
Nicassio, M
Nielsen, BS
Nikolaev, S
Nikolic, V
Nikulin, S
Nikulin, V
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CA ALICE Collaboration
TI Alignment of the ALICE Inner Tracking System with cosmic-ray tracks
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article; Proceedings Paper
CT 1st International Conference on Micro Pattern Gaseous Detectors
CY JUN 12-15, 2009
CL Kolympari, GREECE
DE Particle tracking detectors (Solid-state detectors); Detector alignment
and calibration methods (lasers, sources, particle-beams)
ID QUARK-GLUON PLASMA; COLLABORATION; PERSPECTIVE; PERFORMANCE; COLLISIONS;
DETECTORS
AB ALICE (A Large Ion Collider Experiment) is the LHC (Large Hadron Collider) experiment devoted to investigating the strongly interacting matter created in nucleus-nucleus collisions at the LHC energies. The ALICE ITS, Inner Tracking System, consists of six cylindrical layers of silicon detectors with three different technologies; in the outward direction: two layers of pixel detectors, two layers each of drift, and strip detectors. The number of parameters to be determined in the spatial alignment of the 2198 sensor modules of the ITS is about 13,000. The target alignment precision is well below 10 mu m in some cases (pixels). The sources of alignment information include survey measurements, and the reconstructed tracks from cosmic rays and from proton-proton collisions. The main track-based alignment method uses the Millepede global approach. An iterative local method was developed and used as well. We present the results obtained for the ITS alignment using about 10(5) charged tracks from cosmic rays that have been collected during summer 2008, with the ALICE solenoidal magnet switched off.
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[Chuman, F.; Hiei, A.; Horaguchi, T.; Iwasaki, T.; Maruyama, Y.; Mizoguchi, K.; Okada, Y.; Sugitate, T.; Torii, H.] Hiroshima Univ, Hiroshima, Japan.
[Don, D. M. M.; Madagodahettige-Don, D. M.; Pinsky, L.] Univ Houston, Houston, TX USA.
[Raniwala, R.; Raniwala, S.] Univ Rajasthan, Dept Phys, Jaipur 302004, Rajasthan, India.
[Bhasin, A.; Gupta, A.; Gupta, R.; Lal, C.; Mahajan, A.; Mangotra, L.; Potukuchi, B.; Sambyal, S.; Sharma, S.; Shigaki, K.; Singh, R.] Univ Jammu, Dept Phys, Jammu 180004, India.
[Aysto, J.; Bondila, M.; Diaz, R.; Kalliokoski, T.; Kim, D. J.; Malkiewicz, T.; Novitzky, N.; Oinonen, M.; Raiha, T. S.; Rak, J.; Rasanen, S. S.; Sarkamo, J.; Trzaska, W. H.] HIP, Jyvaskyla, Finland.
[Aysto, J.; Bondila, M.; Diaz, R.; Kalliokoski, T.; Kim, D. J.; Malkiewicz, T.; Novitzky, N.; Oinonen, M.; Raiha, T. S.; Rak, J.; Rasanen, S. S.; Sarkamo, J.; Trzaska, W. H.] Univ Jyvaskyla, Jyvaskyla, Finland.
[Ahn, S. U.; Baek, Y. W.; Jung, H.; Jung, W.; Kang, E.; Kim, D. S.; Kim, D. W.; Kim, H. N.; Kim, J. S.; Kim, M.; Kim, S. H.; Lee, K. S.; Lee, S. C.; Seo, J.] Kangnung Natl Univ, Kangnung, South Korea.
[Borshchov, V.; Listratenko, O.] Sci Res Technol Inst Instrument Engn, Kharkov, Ukraine.
[Borisov, A.; Grinyov, B.; Zinovjev, G.; Zynovyev, M.] Bogolyubov Inst Theoret Phys, Kiev, Ukraine.
[Hamblen, J.; Martashvili, I.; Read, K. F.] Univ Tennessee, Knoxville, TN USA.
[Bose, S.; Chattopadhyay, S.; Das, I.; Das, S.; Majumdar, A. K. Dutta; Pal, S.; Roy, P.; Sinha, T.] Saha Inst Nucl Phys, Kolkata, India.
[Ahammed, Z.; Chattopadhyay, S.; Dubey, A. K.; Majumdar, M. R. Dutta; Ganti, M. S.; Ghosh, P.; Khan, S. A.; Mohanty, B.; Mondal, M. M.; Muhuri, S.; Nayak, T. K.; Pal, S. K.; Prasad, S. K.; Saini, J.; Samanta, T.; Singaraju, R.; Singhal, V.; Sinha, B. C.; Tribedy, P.] Ctr Variable Energy Cyclotron, Kolkata, India.
[Krawutschke, T.] Fachhsch Koln, Cologne, Germany.
[Kravcakova, A.; Putis, M.; Urban, J.; Vrlakova, J.] Safarik Univ, Fac Sci, Kosice, Slovakia.
[Ban, J.; Kalinak, P.; Kralik, I.; Pastircak, B.; Sandor, L. S.] Slovak Acad Sci, Inst Expt Phys, Kosice 04353, Slovakia.
[Dainese, A.; Ricci, R. A.; Vannucci, L.] Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
[Glenn, A.; Newby, J.; Soltz, R.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Christiansen, P.; Dobrin, A.; Gros, P.; Gustafsson, H.-A.; Oskarsson, A.; Osterman, L.; Otterlund, I.; Stenlund, E.] Lund Univ, Div Expt High Energy Phys, Lund, Sweden.
[Cheynis, B.; Ducroux, L.; Grossiord, J.-Y.; Massacrier, L.; Nendaz, F.; Tieulent, R.; Zoccarato, Y.] Univ Lyon 1, Inst Phys Nucl Lyon, CNRS, IN2P3, F-69365 Lyon, France.
[Blanco, F.; Cotallo, M. E.; Gonzalez-Zamora, P.; Ladron de Guevara, P.; Montes, E.; Rubio-Montero, A. J.; Serradilla, E.] CIEMAT, E-28040 Madrid, Spain.
[Camacho, E.; Contreras, G. J.; Crescio, E.; Gago, A.; Herrera Corral, G.; Montana Zetina, L.; Perez, C.; Ramirez Reyes, A.; Zepeda, A.] CINVESTAV, Mexico City 14000, DF, Mexico.
[Camacho, E.; Contreras, G. J.; Crescio, E.; Gago, A.; Herrera Corral, G.; Montana Zetina, L.; Perez, C.; Ramirez Reyes, A.; Zepeda, A.] CINVESTAV, Merida, Mexico.
[Cuautle, E.; Diaz, L.; Dominguez, I.; Cervantes, I. Maldonado; Mayani, D.; Velasquez, A. Ortiz; Paic, G.; Peskov, V.; Serkin, L.; Sokolov, O.] Univ Nacl Autonoma Mexico, Inst Ciencias Nucl, Mexico City 04510, DF, Mexico.
[Salazar, S. Aguilar; Alfaro Molina, R.; Almaraz Avina, E.; Anzo, A.; Arceo, R.; Belmont-Moreno, E.; Gonzalez-Trueba, L. H.; Grabski, V.; Leon, H.; Davalos, A. Martinez; Menchaca-Rocha, A.; Sandoval, A.; Palomo, L. Valencia] Univ Nacl Autonoma Mexico, Inst Fis, Mexico City 01000, DF, Mexico.
[Guber, F.; Karavichev, O.; Karavicheva, T.; Karpechev, E.; Konevskih, A.; Kurepin, A.; Kurepin, A. N.; Maevskaya, A.; Pshenichnov, I.; Reshetin, A.] Acad Sci, Inst Nucl Res, Moscow, Russia.
[Akindinov, A.; Kaidalov, A. B.; Kiselev, S.; Mal'Kevich, D.; Nedosekin, A.; Polozov, P.; Sharkov, G.; Vetlitskiy, I.; Voloshin, K.; Zagreev, B.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Bogdanov, A.; Grigoriev, V.; Kaplin, V.; Kondratyeva, N.; Loginov, V.] Moscow Engn Phys Inst, Moscow 115409, Russia.
[Aleksandrov, D.; Blau, D.; Dobretsov, V.; Fokin, S.; Ippolitov, M.; Kazantsev, A.; Kozlov, K.; Kucheriaev, Y.; Manko, V.; Moukhanova, T.; Nianine, A.; Nikolaev, S.; Nikulin, S.; Peressounko, D.; Ryabinkin, E.; Sibiriak, Y.; Vasiliev, A.; Vinogradov, A.; Yasnopolsky, A.; Yushmanov, I.] Russian Res Ctr, Kurchatov Inst, Moscow, Russia.
[Jena, S.; Nandi, B. K.; Nyatha, A.; Pujahari, P.; Varma, R.] Indian Inst Technol, Bombay 400076, Maharashtra, India.
[Bathen, B.; Baumann, C.; Dietel, T.; Glasow, R.; Gottschlag, H.; Heide, M.; Rammler, M.; Reygers, K.; Santo, R.; Wessels, J.; Wilk, A.] Univ Munster, Inst Kernphys, D-4400 Munster, Germany.
[Aphecetche, L.; Batigne, G.; Benhabib, L.; Bourdaud, G.; del Valle, Z. Conesa; Cussonneau, J.; Delagrange, H.; Dialinas, M.; Estienne, M.; Germain, M.; Ichou, R.; Le Bris, N.; Lefevre, F.; Lenhardt, M.; Luquin, L.; Garcia, G. Martinez; Pillot, P.; Roy, C.; Schutz, Y.; Tournaire, A.; Yermia, F.] Univ Nantes, SUBATECH, Ecole Mines Nantes, CNRS,IN2P3, Nantes, France.
[Aronsson, T.; Bruna, E.; Caines, H.; Harris, J. W.; Heinz, M.; Hicks, B.; Ma, R.; Putschke, J.; Smirnov, N.] Yale Univ, New Haven, CT USA.
[Frolov, A.; Pestov, Y.] Budker Inst Nucl Phys, Novosibirsk 630090, Russia.
[Awes, T. C.; Enokizono, A.; Silvermyr, D.] Oak Ridge Natl Lab, Oak Ridge, TN USA.
[Bimbot, L.; Boyer, B.; Chambert, V.; Charpy, A.; Espagnon, B.; Hadjidakis, C.; Hrivnacova, I.; Lafage, V.; Le Bornec, Y.; Lopez Noriega, M.; Malek, M.; Peyre, J.; Pouthas, J.; Rousseau, S.; Suire, C.; Takaki, D. J. Tapia; Willis, N.] Univ Paris 11, CNRS, IPNO, IN2P3, F-91405 Orsay, France.
[Aamodt, K.; Arsene, I. C.; Bravina, L.; Dordic, O.; Eyyubova, G.; Hille, P. T.; Kolevatov, R.; Kvaerno, H.; Lindal, S.; Lovhoiden, G.; Milosevic, J.; Nilsson, M. S.; Nyiri, A.; Skaali, T. B.; Tveter, T. S.; Tywoniuk, K.; Wikne, J.; Zabrodin, E.] Univ Oslo, Dept Phys, Oslo, Norway.
[Bianchin, C.; Bombonati, C.; Bortolin, C.; Caffarri, D.; Fabris, D.; Lunardon, M.; Morando, M.; Moretto, S.; Sahoo, R.; Scarlassara, F.; Segato, G.; Soramel, F.; Viesti, G.] Univ Padua, Dipartimento Fis, Padua, Italy.
[Bielcik, J.; Kral, J.; Krus, M.; Pachr, M.; Petracek, V.; Pospisil, V.; Smakal, R.; Tlusty, D.; Wagner, V.; Zychacek, V.] Czech Tech Univ, Fac Nucl Sci & Phys Engn, CR-11519 Prague, Czech Republic.
[Mares, J.; Polak, K.; Zavada, P.] Acad Sci Czech Republic, Inst Phys, Prague, Czech Republic.
[Bogolyubsky, M.; Kharlov, Y.; Kim, J.; Polichtchouk, B.; Sadovsky, S.; Soloviev, A.; Stolpovsky, P.; Zenin, A.] Inst High Energy Phys, Protvino, Russia.
[Cortes Maldonado, I.; Fernandez Tellez, A.; Gonzalez Santos, H.; Lopez-Ramirez, R.; Martinez, M. I.; Munoz, J.; Rodriguez Cahuantzi, M.; Roman Lopez, S.; Tejeda Munoz, G.; Vargas, A.; Vergara, S.] Benemerita Univ Autonoma Puebla, Puebla, Mexico.
[Choi, K.; Lee, H.; Son, C. W.; Yi, J.; Yoo, I.-K.] Pusan Natl Univ, Pusan 609735, South Korea.
[Adamova, D.; Bielcikova, J.; Kapitan, J.; Kushpil, S.; Kushpil, V.; Sumbera, M. S.] Acad Sci Czech Republic, Inst Nucl Phys, CZ-25068 Rez, Czech Republic.
[Meddi, F.] Univ Roma La Sapienza, Dipartimento Fis, I-00185 Rome, Italy.
[Di Liberto, S.; Mazzoni, M. A.; Meddi, F.; Urciuoli, G. M.] Sezione Ist Nazl Fis Nucl, Rome, Italy.
[Baldisseri, A.; Borel, H.; Castellanos, J. Castillo; Charvet, J. L.; Orsini, F.; Pereira, H.; Rakotozafindrabe, A.; Staley, F.] IRFU, Commissariat Energie Atom, Saclay, France.
[De Caro, A.; De Gruttola, D.; De Pasquale, S.; Girard, M. Fusco; Guarnaccia, C.; Pagano, P.; Russo, G.; Virgili, T.] Univ Salerno, Dipartimento Fis ER Caianiello, I-84100 Salerno, Italy.
[De Caro, A.; De Gruttola, D.; De Pasquale, S.; Girard, M. Fusco; Guarnaccia, C.; Pagano, P.; Russo, G.; Virgili, T.] Sezione Ist Nazl Fis Nucl, I-84100 Salerno, Italy.
[Klay, J. L.] Calif Polytech State Univ San Luis Obispo, San Luis Obispo, CA 93407 USA.
[Armesto, N.; Ferreiro, E. G.; Pajares, C.; Salgado, C. A.] Univ Santiago de Compostela, Dept Fis Particulas, Santiago De Compostela, Spain.
[Armesto, N.; Ferreiro, E. G.; Pajares, C.; Salgado, C. A.] Univ Santiago de Compostela, IGFAE, Santiago De Compostela, Spain.
[de Barros, G. O. V.; Deppman, A.; Figueredo, M. A. S.; Lozea Feijo Soares, A.; Munhoz, M. G.; Suaide, A. A. P.; Szanto de Toledo, A.] Univ Sao Paulo, Sao Paulo, Brazil.
[Basmanov, V.; Budnikov, D.; Demanov, V.; Filchagin, S.; Ilkaev, R.; Kuryakin, A.; Mamonov, A.; Nazarenko, S.; Nazarov, G.; Punin, A.; Punin, V.; Tumkin, A.; Vikhlyantsev, O.; Vinogradov, Y.] Russian Fed Nucl Ctr VNIIEF, Sarov, Russia.
[Han, B. H.; Hwang, D. S.; Kim, J. H.; Kim, S.; Son, H. S.] Sejong Univ, Dept Phys, Seoul, South Korea.
[Bohm, J.; Chang, B.; Kang, J. H.; Kim, M.; Kim, Y.; Kwon, Y.; Song, M.] Yonsei Univ, Seoul 120749, South Korea.
[Gotovac, S.; Mudnic, E.; Vickovic, L.] Tech Univ Split FESB, Split, Croatia.
[Asryan, A.; Braun, M.; Derkach, D.; Feofilov, G.; Ivanov, A.; Kolojvari, A.; Kondratiev, V.; Ochirov, A.; Semenov, D.; Vechernin, V.; Vinogradov, L.; Zarochentsev, A.] St Petersburg State Univ, V Fock Inst Phys, St Petersburg, Russia.
[Belikov, I.; Coffin, J.-P.; Hippolyte, B.; Jangal, S.; Kuhn, C.; Lutz, J.-R.; Maire, A.; Michalon, A.; Ricaud, H.] Univ Strasbourg, IPHC, CNRS, IN2P3, Strasbourg, France.
[Akimoto, R.; Gunji, T.; Hamagaki, H.; Hori, Y.; Okada, K.; Ozawa, K.; Sano, S.; Takahara, A.; Tsuji, T.] Univ Tokyo, Tokyo, Japan.
[Bala, R.; Beole, S.; Bianchi, L.; Biolcati, E.; Bossu, F.; Chiavassa, E.; Cobanoglu, O.; Morales, Y. Corrales; Ferretti, A.; Gagliardi, M.; Gallio, M.; Trapaga, C. Garcia; Luparello, G.; Chiesa, A. Marzari; Masera, M.; Ortona, G.; Padilla, F.; Poggio, F.; Poghosyan, M. G.; Siciliano, M.; Stocco, D.; Vasquez, M. A. Subieta; Vercellin, E.] Univ Turin, Dipartimento Fis Sperimentale, Turin, Italy.
[Alessandro, B.; Arnaldi, R.; Bagnasco, S.; Bala, R.; Beole, S.; Bianchi, L.; Biolcati, E.; Bossu, F.; Cerello, P.; Chiavassa, E.; Cobanoglu, O.; Coli, S.; Morales, Y. Corrales; De Marco, N.; De Remigis, R.; Ferretti, A.; Gagliardi, M.; Gallio, M.; Trapaga, C. Garcia; Giraudo, G.; Giubellino, P.; Luparello, G.; Chiesa, A. Marzari; Masera, M.; Mazza, G.; Mereu, P.; Monteno, M.; Musso, A.; Oppedisano, C.; Ortona, G.; Padilla, F.; Piccotti, A.; Poggio, F.; Poghosyan, M. G.; Prino, F.; Riccati, L.; Rivetti, A.; Scomparin, E.; Siciliano, M.; Stocco, D.; Vasquez, M. A. Subieta; Toscano, L.; Tosello, F.; Vercellin, E.] Sezione Ist Nazl Fis Nucl, Turin, Italy.
[Bosisio, L.; Bregant, M.; Camerini, P.; Cattaruzza, E.; Contin, G.; Margagliotti, G. V.; Rossi, A.; Rui, R.; Venaruzzo, M.] Univ Trieste, Dipartmento Fis, I-34127 Trieste, Italy.
[Bosisio, L.; Bregant, M.; Camerini, P.; Cattaruzza, E.; Contin, G.; Fragiacomo, E.; Grion, N.; Margagliotti, G. V.; Piano, S.; Rachevski, A.; Rashevskaya, I.; Rossi, A.; Rui, R.; Vacchi, A.; Venaruzzo, M.] Sezione Ist Nazl Fis Nucl, Trieste, Italy.
[Chujo, T.; Inaba, M.; Miake, Y.; Sakata, D.; Sano, M.; Shimomura, M.; Tanabe, R.; Watanabe, K.; Yokoyama, H.] Univ Tsukuba, Tsukuba, Ibaraki, Japan.
[Chojnacki, M.; Christakoglou, P.; de Haas, A. P.; de Rooij, R.; Grelli, A.; Ivan, C.; Kamermans, R.; Mischke, A.; Nooren, G.; Oskamp, C. J.; Peitzmann, T.; Simili, E.; van den Brink, A.; van Leeuwen, M.; Verweij, M.] Univ Utrecht, Inst Subatom Phys, Utrecht, Netherlands.
[Deloff, A.; Dobrowolski, T.; Ilkiv, I.; Kurashvili, P.; Redlich, K.; Siemiarczuk, T.; Stefanek, G.; Wilk, G.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Kikola, D.; Kupczak, R.; Oleniacz, J.; Ostrowski, P.; Pawlak, T.; Peryt, W.; Pluta, J.; Szuba, M.; Traczyk, T.; Zbroszczyk, H.] Warsaw Univ Technol, Warsaw, Poland.
[Scharenberg, R. P.; Srivastava, B. K.] Purdue Univ, W Lafayette, IN 47907 USA.
[Conner, E. S.; Keidel, R.] Fachhsch Worms, ZTT, Worms, Germany.
[Cai, X.; Ding, H.; Gang, S.; Ma, K.; Mao, Y.; Wan, R.; Wang, D.; Wang, Y.; Xu, C.; Yang, C.; Yin, Z.; Yuan, X.; Zhang, X.; Zhou, D.; Zhu, J.] Huazhong Normal Univ, Wuhan, Peoples R China.
[Grigoryan, A.; Gulkanyan, H.; Harutyunyan, A.; Hayrapetyan, A.] Yerevan Phys Inst, Yerevan 375036, Armenia.
[Anticic, T.; Nikolic, V.; Susa, T.] Rudjer Boskovic Inst, Zagreb, Croatia.
Ctr Studi & Ric, Ctr Fermi, Rome, Italy.
Museo Stor Fis Enrico Fermi, Rome, Italy.
Pontificia Univ Catolica Peru, Dept Ciencias, Secc Fis, Lima, Peru.
Univ Udine, Dipartimento Fis, I-33100 Udine, Italy.
Univ Udine, Dipartimento Fis, I-33100 Udine, Italy.
RP Dainese, A (reprint author), Sezione Ist Nazl Fis Nucl, Padua, Italy.
EM andrea.dainese@pd.infn.it
RI Sevcenco, Adrian/C-1832-2012; Haiduc, Maria /C-5003-2011; Mitu,
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Guarnaccia, Claudio/N-3000-2013; Castillo Castellanos,
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Lee/G-2135-2010; Yang, Hongyan/J-9826-2014; Cosentino,
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Mikalai/I-1555-2016; Kurepin, Alexey/H-4852-2013; Jena,
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Alexandre/L-6239-2016; van der Kolk, Naomi/M-9423-2016; Deppman,
Airton/J-5787-2014; Zagreev, Boris/R-6460-2016; Inst. of Physics, Gleb
Wataghin/A-9780-2017; Ferreiro, Elena/C-3797-2017; Armesto,
Nestor/C-4341-2017; Martinez Hernandez, Mario Ivan/F-4083-2010;
Ferretti, Alessandro/F-4856-2013; Graciani Diaz, Ricardo/I-5152-2016;
Vickovic, Linda/F-3517-2017; Fernandez Tellez, Arturo/E-9700-2017; Rui,
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Leonid/K-3047-2013;
OI Sevcenco, Adrian/0000-0002-4151-1056; Chinellato,
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Massimo/0000-0003-1880-5467; Fernandez Tellez,
Arturo/0000-0001-5092-9748
FU Science and Technology Facilities Council [ST/F011989/1]
NR 36
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PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
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UT WOS:000280524100008
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
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de Abril, M. Magrans
Mohapatra, A.
Ott, G.
Polese, G.
Reeder, D.
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CA CMS Collaboration
TI Calibration of the CMS drift tube chambers and measurement of the drift
velocity with cosmic rays
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Large detector systems for particle astroparticle physics; Particle
tracking detectors (Gaseous detectors)
AB This paper describes the calibration procedure for the drift tubes of the CMS barrel muon system and reports the main results obtained with data collected during a high statistics cosmic ray data-taking period. The main goal of the calibration is to determine, for each drift cell, the minimum time delay for signals relative to the trigger, accounting for the drift velocity within the cell. The accuracy of the calibration procedure is influenced by the random arrival time of the cosmic muons relative to the LHC clock cycle. A more refined analysis of the drift velocity was performed during the offline reconstruction phase, which takes into account this feature of cosmic ray events.
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[Aziz, T.; Guchait, M.; Gurtu, A.; Maity, M.; Majumder, D.; Majumder, G.; Mazumdar, K.; Nayak, A.; Saha, A.; Sudhakar, K.] Tata Inst Fundamental Res, EHEP, Bombay 400005, Maharashtra, India.
[Banerjee, S.; Dugad, S.; Mondal, N. K.] Tata Inst Fundamental Res, HECR, Mumbai 400005, Maharashtra, India.
[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys & Math IPM, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Abbrescia, M.; De Palma, M.; Lusito, L.; Manna, N.; Marangelli, B.; Natali, S.; Nuzzo, S.; Pompili, A.; Roselli, G.; Selvaggi, G.; Tupputi, S.] Univ Bari, Bari, Italy.
[Creanza, D.; Iaselli, G.; Maggi, G.; My, S.; Pugliese, G.; Romano, F.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Bacchi, W.; Braibant-Giacomelli, S.; Capiluppi, P.; Castro, A.; Codispoti, G.; Cuffiani, M.; Fanfani, A.; Masetti, G.; Navarria, F. L.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landia, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Broccolo, G.; Ciulli, V.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Genta, C.; Landia, G.; Lenzi, P.] Univ Florence, Florence, Italy.
[Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Fabbri, F.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Bicocca, I-20133 Milan, Italy.
[Cerati, G. B.; Govoni, P.; Malberti, M.; Miccio, V.; Negri, P.; Paganoni, M.; Pullia, A.; Ragazzi, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Cimmino, A.; De Gruttola, M.; Noli, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Bellan, P.; Bisello, D.; Borsato, E.; Carlin, R.; De Mattia, M.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Kaminskiy, A.; Margoni, M.; Mattiazzo, S.; Meneguzzo, A. T.; Pozzobon, N.; Simonetto, F.; Tosi, M.; Vanini, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Biasini, M.; Caponeri, B.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Santocchia, A.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Bernardini, J.; Fiori, F.; Messineo, A.; Tonelli, G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bocci, A.; Borrello, L.; Foa, L.; Gennai, S.; Ligabue, F.; Petrucciani, G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Barone, L.; Del Re, D.; Di Marco, E.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Rahatlou, S.] Univ Roma La Sapienza, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Amapane, N.; Arcidiacono, R.; Argiro, S.; Borgia, M. A.; Botta, C.; Castello, R.; Cerminara, G.; Costa, M.; Graziano, A.; Marone, M.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Oggero, S.; Pelliccioni, M.; Romero, A.; Sacchi, R.; Solano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.] Univ Turin, Turin, Italy.
[Arneodo, M.; Obertino, M. M.; Ruspa, M.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Della Ricca, G.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.; Anisimov, A.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Bedoya, C. Fernandez; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Rabos, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Ruiz del Arbol, P. Martinez; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, IFCA, CSIC, E-39005 Santander, Spain.
[Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimi, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Boos, E.; Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Campi, D.; Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.; Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schumann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Onengut, G.; Gokbulut, G. Onengut; Ozdemir, K.; Ozturk, S.; Polato, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Ocalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Gulmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; St John, J.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wurthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Pirou, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.] Wayne State Univ, Detroit, MI USA.
[Sakharov, A.; Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Cankocak, K.] Istanbul Tech Univ, Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Amapane, Nicola/J-3683-2012; tosi, mia/J-5777-2012; Klyukhin,
Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012; Raidal,
Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Kadastik, Mario/B-7559-2008; Mundim,
Luiz/A-1291-2012; Santaolalla, Javier/C-3094-2013; Gavrilov,
Gennady/C-6260-2013; Rolandi, Luigi (Gigi)/E-8563-2013; Snigirev,
Alexander/D-8912-2012; Chipaux, Remi/G-1145-2010; Servoli,
Leonello/E-6766-2012; Tomei, Thiago/E-7091-2012; Focardi,
Ettore/E-7376-2012; Fruhwirth, Rudolf/H-2529-2012; Azzi,
Patrizia/H-5404-2012; Torassa, Ezio/I-1788-2012; Giacomelli,
Paolo/B-8076-2009; Jeitler, Manfred/H-3106-2012; Venturi,
Andrea/J-1877-2012; de Jesus Damiao, Dilson/G-6218-2012; Montanari,
Alessandro/J-2420-2012; Wulz, Claudia-Elisabeth/H-5657-2011; Chen,
Jie/H-6210-2011; Bolton, Tim/A-7951-2012; Krammer, Manfred/A-6508-2010;
Lokhtin, Igor/D-7004-2012; Kodolova, Olga/D-7158-2012; Dudko,
Lev/D-7127-2012; Boos, Eduard/D-9748-2012; Tinoco Mendes, Andre
David/D-4314-2011; Ganjour, Serguei/D-8853-2011; Ruiz,
Alberto/E-4473-2011; Stahl, Achim/E-8846-2011; Hektor, Andi/G-1804-2011;
Varela, Joao/K-4829-2016; Fassi, Farida/F-3571-2016; Sguazzoni,
Giacomo/J-4620-2015; Ligabue, Franco/F-3432-2014; Menasce, Dario
Livio/A-2168-2016; Bargassa, Pedrame/O-2417-2016; Gerbaudo,
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Martin/N-2701-2015; Seixas, Joao/F-5441-2013; Verwilligen,
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Andre/L-1621-2016; Haj Ahmad, Wael/E-6738-2016; Xie, Si/O-6830-2016;
Leonardo, Nuno/M-6940-2016; Goh, Junghwan/Q-3720-2016; Govoni,
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Altsybeev, Igor/K-6687-2013; Romaniuk, Ryszard/B-9140-2011; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
korzhik, Mikhail/E-9505-2014; Della Ricca, Giuseppe/B-6826-2013;
Fedorov, Andrei/E-9455-2014; Konovalova, Nina/D-3882-2014; Cordonnier,
Agnes/I-5083-2016; Hernandez Calama, Jose Maria/H-9127-2015; Barcala,
JOSE MIGUEL/I-1105-2015; Bedoya, Cristina/K-8066-2014; Michelotto,
Michele/A-9571-2013; Matorras, Francisco/I-4983-2015; My,
Salvatore/I-5160-2015; Gumus, Kazim/G-2498-2013; Muelmenstaedt,
Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015; Dremin,
Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Paulini, Manfred/N-7794-2014; Vogel,
Helmut/N-8882-2014; Ferguson, Thomas/O-3444-2014; Ragazzi,
Stefano/D-2463-2009; Benussi, Luigi/O-9684-2014; Russ,
James/P-3092-2014; Grandi, Claudio/B-5654-2015; Ahmed, Ijaz/E-9144-2015;
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Raffaello/F-5897-2015; Trocsanyi, Zoltan/A-5598-2009; Konecki,
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Marcos/J-6934-2014; Oller, Juan Carlos/K-6445-2014; Molinero,
Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014; Scodellaro,
Luca/K-9091-2014; Josa, Isabel/K-5184-2014; Navarrete Marin, Jose
Javier/K-6412-2014; Marin, Jesus/K-6991-2014; Gonzalez Suarez,
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Piotr/H-7335-2013; Cavallo, Nicola/F-8913-2012; Dvornikov,
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Daniel/C-9132-2014; Oguri, Vitor/B-5403-2013; Janssen,
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OI Amapane, Nicola/0000-0001-9449-2509; Klyukhin,
Vyacheslav/0000-0002-8577-6531; Novaes, Sergio/0000-0003-0471-8549;
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(Gigi)/0000-0002-0635-274X; Servoli, Leonello/0000-0003-1725-9185;
Tomei, Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267;
Azzi, Patrizia/0000-0002-3129-828X; de Jesus Damiao,
Dilson/0000-0002-3769-1680; Montanari, Alessandro/0000-0003-2748-6373;
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Tabarelli de Fatis, Tommaso/0000-0001-6262-4685; Zabolotny,
Wojciech/0000-0002-6833-4846; Lenzi, Piergiulio/0000-0002-6927-8807;
Gutsche, Oliver/0000-0002-8015-9622; Torassa, Ezio/0000-0003-2321-0599;
Mackay, Catherine/0000-0003-4252-6740; HSIUNG, YEE/0000-0003-4801-1238;
Bonnett Del Alamo, Miguel Reinaldo/0000-0002-1011-8411; Faccioli,
Pietro/0000-0003-1849-6692; Korenkov, Vladimir/0000-0002-2342-7862;
Heath, Helen/0000-0001-6576-9740; Abbiendi,
Giovanni/0000-0003-4499-7562; Levchenko, Petr/0000-0003-4913-0538;
Uliyanov, Alexey/0000-0001-6935-8949; Arneodo,
Michele/0000-0002-7790-7132; Sciacca, Crisostomo/0000-0002-8412-4072;
Varela, Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109;
Toback, David/0000-0003-3457-4144; Ghezzi, Alessio/0000-0002-8184-7953;
bianco, stefano/0000-0002-8300-4124; Demaria,
Natale/0000-0003-0743-9465; Benaglia, Andrea Davide/0000-0003-1124-8450;
Covarelli, Roberto/0000-0003-1216-5235; Staiano,
Amedeo/0000-0003-1803-624X; Ciulli, Vitaliano/0000-0003-1947-3396;
Tonelli, Guido Emilio/0000-0003-2606-9156; Beuselinck,
Raymond/0000-0003-2613-7446; Stober, Fred/0000-0003-2620-3159; Martelli,
Arabella/0000-0003-3530-2255; Hamel de Monchenault,
Gautier/0000-0002-3872-3592; Landsberg, Greg/0000-0002-4184-9380; Rizzi,
Andrea/0000-0002-4543-2718; Gershtein, Yuri/0000-0002-4871-5449;
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Paolo/0000-0002-6368-7220; Fassi, Farida/0000-0002-6423-7213;
Leonidopoulos, Christos/0000-0002-7241-2114; Blekman,
Freya/0000-0002-7366-7098; Lloret Iglesias, Lara/0000-0002-0157-4765;
Kasemann, Matthias/0000-0002-0429-2448; Donvito,
Giacinto/0000-0002-0628-1080; Petragnani, Giulio/0000-0002-0819-6509;
Sguazzoni, Giacomo/0000-0002-0791-3350; WANG,
MIN-ZU/0000-0002-0979-8341; Ligabue, Franco/0000-0002-1549-7107; Diemoz,
Marcella/0000-0002-3810-8530; Baarmand, Marc/0000-0002-9792-8619; Nervo,
Marco/0000-0002-9898-7346; Boccali, Tommaso/0000-0002-9930-9299;
Menasce, Dario Livio/0000-0002-9918-1686; Bargassa,
Pedrame/0000-0001-8612-3332; Mrenna, Stephen/0000-0001-8731-160X; Bilki,
Burak/0000-0001-9515-3306; Costa, Salvatore/0000-0001-9919-0569;
Gerbaudo, Davide/0000-0002-4463-0878; Vieira de Castro Ferreira da
Silva, Pedro Manuel/0000-0002-5725-041X; Actis,
Oxana/0000-0001-8851-3983; Bean, Alice/0000-0001-5967-8674; Longo,
Egidio/0000-0001-6238-6787; Paganoni, Marco/0000-0003-2461-275X; Seixas,
Joao/0000-0002-7531-0842; Vilela Pereira, Antonio/0000-0003-3177-4626;
Sznajder, Andre/0000-0001-6998-1108; Haj Ahmad,
Wael/0000-0003-1491-0446; Xie, Si/0000-0003-2509-5731; Leonardo,
Nuno/0000-0002-9746-4594; Goh, Junghwan/0000-0002-1129-2083; Govoni,
Pietro/0000-0002-0227-1301; Tuominen, Eija/0000-0002-7073-7767; Yazgan,
Efe/0000-0001-5732-7950; Altsybeev, Igor/0000-0002-8079-7026; Romaniuk,
Ryszard/0000-0002-5710-4041; TUVE', Cristina/0000-0003-0739-3153;
Gulmez, Erhan/0000-0002-6353-518X; KIM, Tae Jeong/0000-0001-8336-2434;
Flix, Josep/0000-0003-2688-8047; Ozdemir, Kadri/0000-0002-0103-1488;
Della Ricca, Giuseppe/0000-0003-2831-6982; Cordonnier,
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Bedoya, Cristina/0000-0001-8057-9152; Michelotto,
Michele/0000-0001-6644-987X; Matorras, Francisco/0000-0003-4295-5668;
My, Salvatore/0000-0002-9938-2680; Gumus, Kazim/0000-0002-1450-6868;
Muelmenstaedt, Johannes/0000-0003-1105-6678; Rovelli,
Tiziano/0000-0002-9746-4842; Paulini, Manfred/0000-0002-6714-5787;
Vogel, Helmut/0000-0002-6109-3023; Ferguson, Thomas/0000-0001-5822-3731;
Ragazzi, Stefano/0000-0001-8219-2074; Benussi,
Luigi/0000-0002-2363-8889; Russ, James/0000-0001-9856-9155; Grandi,
Claudio/0000-0001-5998-3070; Lazzizzera, Ignazio/0000-0001-5092-7531;
Sen, Sercan/0000-0001-7325-1087; D'Alessandro,
Raffaello/0000-0001-7997-0306; Trocsanyi, Zoltan/0000-0002-2129-1279;
Konecki, Marcin/0000-0001-9482-4841; Petrucci,
Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Scodellaro, Luca/0000-0002-4974-8330;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Hill,
Christopher/0000-0003-0059-0779; Kuleshov, Sergey/0000-0002-3065-326X;
Troitsky, Sergey/0000-0001-6917-6600; Codispoti,
Giuseppe/0000-0003-0217-7021
FU FMSR (Austria); FNRS (Belgium); FWO (Belgium); CNPq (Brazil); CAPES
(Brazil); FAPERJ (Brazil); FAPESP (Brazil); MES (Bulgaria); CERN; CAS
(China); MoST (China); NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences (Estonia); NICPB (Estonia);
Academy of Finland (Finland); ME (Finland); HIP (Finland); CEA (France);
CNRS/IN2P3 (France); BMBF (Germany); DFG (Germany); HGF (Germany); GSRT
(Greece); OTKA (Hungary); NKTH (Hungary); DAE (India); DST (India); IPM
(Iran); SFI (Ireland); INFN (Italy); NRF (Korea); LAS (Lithuania);
CINVESTAV (Mexico); CONACYT (Mexico); SEP (Mexico); UASLP-FAI (Mexico);
PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia); JINR
(Belarus); JINR (Georgia); JINR (Ukraine); JINR (Uzbekistan); MST
(Russia); MAE (Russia); MSTDS (Serbia); MICINN (Spain); CPAN (Spain);
Swiss Funding Agencies (Switzerland); NSC (Taipei); TUBITAK (Turkey);
TAEK (Turkey); STFC (United Kingdom); DOE (USA); NSF (USA); European
Union; Leventis Foundation; A. P. Sloan Foundation; Alexander von
Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 19
TC 29
Z9 29
U1 1
U2 53
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03016
DI 10.1088/1748-0221/5/03/T03016
PG 39
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 716MM
UT WOS:000286973300003
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
Litomin, A
Makarenko, V
Marfin, I
Mossolov, V
Shumeiko, N
Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
Fedorov, A
Karneyeu, A
Korzhik, M
Panov, V
Zuyeuski, R
Kuchinsky, P
Beaumont, W
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Cardaci, M
De Wolf, EA
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Druzhkin, D
Hashemi, M
Janssen, X
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Mucibello, L
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Pol, ME
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De Souza, SF
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Do Amaral, SMS
Sznajder, A
Tomei, TRFP
Dias, MAF
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Anguelov, T
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Iaydjiev, P
Piperov, S
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Petkov, P
Toteva, Z
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Jiang, CH
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Meng, X
Tao, J
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Wang, Z
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Teng, H
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Montoya, CAC
Gomez, A
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Rios, AAO
Oliveros, AFO
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Sanabria, JC
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Plestina, R
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Dzelalija, M
Brigljevic, V
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Rajan, R
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Bonacorsi, D
Braibant-Giacomelli, S
Cafaro, VD
Caiazza, SS
Capiluppi, P
Castro, A
Cavallo, FR
Codispoti, G
Cuffiani, M
D'Antone, I
Dallavalle, GM
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Fasanella, D
Giacomelli, P
Giordano, V
Giunta, M
Grandi, C
Guerzoni, M
Marcellini, S
Masetti, G
Montanari, A
Navarria, FL
Odorici, F
Pellegrini, G
Perrotta, A
Rossi, AM
Rovelli, T
Siroli, G
Torromeo, G
Travaglini, R
Albergo, S
Costa, S
Potenza, R
Tricomi, A
Tuve, C
Barbagli, G
Broccolo, G
Ciulli, V
Civinini, C
D'Alessandro, R
Focardi, E
Frosali, S
Gallo, E
Genta, C
Landi, G
Lenzi, P
Meschini, M
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Bianco, S
Colafranceschi, S
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CA CMS Collaboration
TI Commissioning and Performance of the CMS Pixel Tracker with Cosmic Ray
Muons
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
ID BARREL DETECTOR; SILICON SENSORS; DESIGN
AB The pixel detector of the Compact Muon Solenoid experiment consists of three barrel layers and two disks for each endcap. The detector was installed in summer 2008, commissioned with charge injections, and operated in the 3.8 T magnetic field during cosmic ray data taking. This paper reports on the first running experience and presents results on the pixel tracker performance, which are found to be in line with the design specifications of this detector. The transverse impact parameter resolution measured in a sample of high momentum muons is 18 microns.
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[Grunewald, M.; Klein, B.; Marinov, A.; Ryckbosch, D.; Thyssen, F.; Tytgat, M.; Vanelderen, L.; Verwilligen, P.] Univ Ghent, B-9000 Ghent, Belgium.
[Basegmez, S.; Bruno, G.; Caudron, J.; Delaere, C.; Demin, P.; Favart, D.; Giammanco, A.; Gregoire, G.; Lemaitre, V.; Militaru, O.; Ovyn, S.; Piotrzkowski, K.; Quertenmont, L.; Schul, N.] Catholic Univ Louvain, B-1348 Louvain, Belgium.
[Beliy, N.; Daubie, E.] Univ Mons, B-7000 Mons, Belgium.
[Alves, G. A.; Pol, M. E.; Souza, M. H. G.] Ctr Brasileiro Pesquisas Fis, Rio De Janeiro, Brazil.
[Carvalho, W.; De Jesus Damiao, D.; De Oliveira Martins, C.; Fonseca De Souza, S.; Mundim, L.; Oguri, V.; Santoro, A.; Silva Do Amaral, S. M.; Sznajder, A.] Univ Estado Rio de Janeiro, BR-20550011 Rio De Janeiro, Brazil.
[Fernandez Perez Tomei, T. R.; Dias, M. A. Ferreira; Gregores, E. M.; Novaes, S. F.] Univ Estadual Paulista, Inst Fis Teor, BR-01405 Sao Paulo, Brazil.
[Abadjiev, K.; Anguelov, T.; Damgov, J.; Darmenov, N.; Dimitrov, L.; Genchev, V.; Iaydjiev, P.; Piperov, S.; Stoykova, S.; Sultanov, G.; Trayanov, R.; Vankov, I.] Bulgarian Acad Sci, Inst Nucl Res & Nucl Energy, Sofia, Bulgaria.
[Dimitrov, A.; Dyulendarova, M.; Kozhuharov, V.; Litov, L.; Marinova, E.; Mateev, M.; Pavlov, B.; Petkov, P.; Toteva, Z.] Univ Sofia, BU-1126 Sofia, Bulgaria.
[Chen, G. M.; Chen, H. S.; Guan, W.; Jiang, C. H.; Liang, D.; Liu, B.; Meng, X.; Tao, J.; Wang, J.; Wang, Z.; Xue, Z.; Zhang, Z.] Inst High Energy Phys, Beijing 100039, Peoples R China.
[Ban, Y.; Cai, J.; Ge, Y.; Guo, S.; Hu, Z.; Mao, Y.; Qian, S. J.; Teng, H.; Zhu, B.] Peking Univ, State Key Lab Nucl Phys & Tech, Beijing 100871, Peoples R China.
[Avila, C.; Baquero Ruiz, M.; Carrillo Montoya, C. A.; Gomez, A.; Gomez Moreno, B.; Ocampo Rios, A. A.; Osorio Oliveros, A. F.; Reyes Romero, D.; Sanabria, J. C.] Univ Los Andes, Bogota, Colombia.
[Godinovic, N.; Lelas, K.; Plestina, R.; Polic, D.; Puljak, I.] Tech Univ Split, Split, Croatia.
[Antunovic, Z.; Dzelalija, M.] Univ Split, Split, Croatia.
[Brigljevic, V.; Duric, S.; Kadija, K.; Morovic, S.] Rudjer Boskovic Inst, Zagreb, Croatia.
[Fereos, R.; Galanti, M.; Mousa, J.; Papadakis, A.; Ptochos, F.; Razis, P. A.; Tsiakkouri, D.; Zinonos, Z.] Univ Cyprus, Nicosia, Cyprus.
[Hektor, A.; Kadastik, M.; Kannike, K.; Muentel, M.; Raidal, M.; Rebane, L.] NICPB, Tallinn, Estonia.
[Anttila, E.; Czellar, S.; Harkonen, J.; Heikkinen, A.; Karimaki, V.; Kinnunen, R.; Klem, J.; Kortelainen, M. J.; Lampen, T.; Lassila-Perini, K.; Lehti, S.; Linden, T.; Luukka, P.; Maenpaa, T.; Nysten, J.; Tuominen, E.; Tuominiemi, J.; Ungaro, D.; Wendland, L.] Helsinki Inst Phys, Helsinki, Finland.
[Banzuzi, K.; Korpela, A.; Tuuva, T.] Lappeenranta Univ Technol, Lappeenranta, Finland.
[Nedelec, P.; Sillou, D.] IN2P3 CNRS, Lab Annecy Le Vieux Phys Particules, Annecy Le Vieux, France.
[Besancon, M.; Chipaux, R.; Dejardin, M.; Denegri, D.; Descamps, J.; Fabbro, B.; Faure, J. L.; Ferri, F.; Ganjour, S.; Gentit, F. X.; Givernaud, A.; Gras, P.; de Monchenault, G. Hamel; Jarry, P.; Lemaire, M. C.; Locci, E.; Malcles, J.; Marionneau, M.; Millischer, L.; Rander, J.; Rosowsky, A.; Rousseau, D.; Titov, M.; Verrecchia, P.] CEA Saclay, DSM IRFU, F-91191 Gif Sur Yvette, France.
[Baffioni, S.; Bianchini, L.; Bluj, M.; Busson, P.; Charlot, C.; Dobrzynski, L.; de Cassagnac, R. Granier; Haguenauer, M.; Mine, P.; Paganini, P.; Sirois, Y.; Thiebaux, C.; Zabi, A.; Beaudette, F.] Ecole Polytech, Lab Leprince Ringuet, CNRS IN2P3, Palaiseau, France.
[Agram, J. -L.; Besson, A.; Bloch, D.; Bodin, D.; Brom, J. -M.; Conte, E.; Drouhin, F.; Fontaine, J. -C.; Gele, D.; Goerlach, U.; Gross, L.; Juillot, P.; Le Bihan, A. -C.; Patois, Y.; Speck, J.; Van Hove, P.] Univ Haute Alsace Mulhouse, Inst Pluridisciplinaire Hubert Curien, Univ Strasbourg, CNRS IN2P3, Strasbourg, France.
[Baty, C.; Bedjidian, M.; Blaha, J.; Boudoul, G.; Brun, H.; Chanon, N.; Chierici, R.; Contardo, D.; Depasse, P.; Dupasquier, T.; El Mamouni, H.; Fassi, F.; Fay, J.; Gascon, S.; Ille, B.; Kurca, T.; Le Grand, T.; Lethuillier, M.; Lumb, N.; Mirabito, L.; Perries, S.; Vander Donckt, M.; Verdier, P.] Univ Lyon 1, CNRS IN2P3, Inst Phys Nucl Lyon, F-69622 Villeurbanne, France.
[Djaoshvili, N.; Roinishvili, N.; Roinishvili, V.] Georgian Acad Sci, E Andronikashvili Inst Phys, GE-380060 Tbilisi, Rep of Georgia.
[Amaglobeli, N.] Tbilisi State Univ, Inst High Energy Phys & Informatizat, GE-380086 Tbilisi, Rep of Georgia.
[Adolphi, R.; Anagnostou, G.; Brauer, R.; Braunschweig, W.; Edelhoff, M.; Esser, H.; Feld, L.; Karpinski, W.; Khomich, A.; Klein, K.; Mohr, N.; Ostaptchouk, A.; Pandoulas, D.; Pierschel, G.; Raupach, F.; Schael, S.; von Dratzig, A. Schultz; Schwering, G.; Sprenger, D.; Thomas, M.; Weber, M.; Wittmer, B.; Wlochal, M.] Rhein Westfal TH Aachen, Inst Phys 1, Aachen, Germany.
[Actis, O.; Altenhoefer, G.; Bender, W.; Biallass, P.; Erdmann, M.; Fetchenhauer, G.; Frangenheim, J.; Hebbeker, T.; Hilgers, G.; Hinzmann, A.; Hoepfner, K.; Hof, C.; Kirsch, M.; Klimkovich, T.; Kreuzer, P.; Lanske, D.; Merschmeyer, M.; Meyer, A.; Philipps, B.; Pieta, H.; Reithler, H.; Schmitz, S. A.; Sonnenschein, L.; Sowa, M.; Steggemann, J.; Szczesny, H.; Teyssier, D.; Zeidler, C.] Rhein Westfal TH Aachen, Phys Inst A 3, Aachen, Germany.
[Bontenackels, M.; Davids, M.; Duda, M.; Fluegge, G.; Geenen, H.; Giffels, M.; Ahmad, W. Haj; Hermanns, T.; Heydhausen, D.; Kalinin, S.; Kress, T.; Linn, A.; Nowack, A.; Perchalla, L.; Poettgens, M.; Pooth, O.; Sauerland, P.; Stahl, A.; Tornier, D.; Zoeller, M. H.] Rhein Westfal TH Aachen, Phys Inst B 3, Aachen, Germany.
[Martin, M. Aldaya; Behrens, U.; Borras, K.; Campbell, A.; Castro, E.; Dammann, D.; Eckerlin, G.; Flossdorf, A.; Flucke, G.; Geiser, A.; Hatton, D.; Hauk, J.; Jung, H.; Kasemann, M.; Katkov, I.; Kleinwort, C.; Kluge, H.; Knutsson, A.; Kuznetsova, E.; Lange, W.; Lohmann, W.; Mankel, R.; Marienfeld, M.; Meyer, A. B.; Miglioranzi, S.; Mnich, J.; Ohlerich, M.; Olzem, J.; Parenti, A.; Rosemann, C.; Schmidt, R.; Schoerner-Sadenius, T.; Volyanskyy, D.; Wissing, C.; Zeuner, W. D.] DESY, Hamburg, Germany.
[Autermann, C.; Bechtel, F.; Draeger, J.; Eckstein, D.; Gebbert, U.; Kaschube, K.; Kaussen, G.; Klanner, R.; Mura, B.; Naumann-Emme, S.; Nowak, F.; Pein, U.; Sander, C.; Schleper, P.; Schum, T.; Stadie, H.; Steinbrueck, G.; Thomsen, J.; Wolf, R.] Univ Hamburg, Hamburg, Germany.
[Bauer, J.; Bluem, P.; Buege, V.; Cakir, A.; Chwalek, T.; De Boer, W.; Dierlamm, A.; Dirkes, G.; Feindt, M.; Felzmann, U.; Frey, M.; Furgeri, A.; Gruschke, J.; Hackstein, C.; Hartmann, F.; Heier, S.; Heinrich, M.; Held, H.; Hirschbuehl, D.; Hoffmann, K. H.; Honc, S.; Jung, C.; Kuhr, T.; Liamsuwan, T.; Martschei, D.; Mueller, S.; Uller, Th. M.; Neuland, M. B.; Niegel, M.; Oberst, O.; Oehler, A.; Ott, J.; Peiffer, T.; Piparo, D.; Quast, G.; Rabbertz, K.; Ratnikov, F.; Ratnikova, N.; Renz, M.; Saout, C.; Sartisohn, G.; Scheurer, A.; Schieferdecker, P.; Schilling, F. -P.; Schott, G.; Simonis, H. J.; Stober, F. M.; Sturm, P.; Troendle, D.; Trunov, A.; Wagner, W.; Wagner-Kuhr, J.; Zeise, M.; Zhukov, V.; Ziebarth, E. B.] Univ Karlsruhe, Inst Expt Kernphys, D-7500 Karlsruhe, Germany.
[Daskalakis, G.; Geralis, T.; Karafasoulis, K.; Kyriakis, A.; Loukas, D.; Markou, A.; Markou, C.; Mavrommatis, C.; Petrakou, E.; Zachariadou, A.] Inst Nucl Phys Demokritos, Aghia Paraskevi, Greece.
[Gouskos, L.; Katsas, P.; Panagiotou, A.; Sphicas, P.] Univ Athens, Athens, Greece.
[Evangelou, I.; Kokkas, P.; Manthos, N.; Papadopoulos, I.; Patras, V.; Triantis, F. A.] Univ Ioannina, GR-45110 Ioannina, Greece.
[Bencze, G.; Boldizsar, L.; Debreczeni, G.; Hajdu, C.; Hernath, S.; Hidas, P.; Horvath, D.; Krajczar, K.; Laszlo, A.; Patay, G.; Sikler, F.; Toth, N.; Vesztergombi, G.; Pasztor, G.] KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
[Horvath, D.; Beni, N.; Christian, G.; Imrek, J.; Molnar, J.; Novak, D.; Palinkas, J.; Szekely, G.; Szillasi, Z.; Tokesi, K.; Veszpremi, V.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Kapusi, A.; Marian, G.; Raics, P.; Szabo, Z.; Trocsanyi, Z. L.; Ujvari, B.; Zilizi, G.] Univ Debrecen, Debrecen, Hungary.
[Bansal, S.; Bawa, H. S.; Beri, S. B.; Bhatnagar, V.; Jindal, M.; Kaur, M.; Kaur, R.; Kohli, J. M.; Mehta, M. Z.; Nishu, N.; Saini, L. K.; Sharma, A.; Singh, A.; Singh, J. B.; Singh, S. P.] Panjab Univ, Chandigarh 160014, India.
[Ahuja, S.; Arora, S.; Bhattacharya, S.; Chauhan, S.; Choudhary, B. C.; Gupta, P.; Jain, S.; Jha, M.; Kumar, A.; Ranjan, K.; Shivpuri, R. K.; Srivastava, A. K.] Univ Delhi, Delhi 110007, India.
[Choudhury, R. K.; Dutta, D.; Kailas, S.; Kataria, S. K.; Mohanty, A. K.; Pant, L. M.; Shukla, P.; Topkar, A.] Bhabha Atom Res Ctr, Mumbai 400085, Maharashtra, India.
[Aziz, T.; Guchait, M.; Gurtu, A.; Maity, M.; Majumder, D.; Majumder, G.; Mazumdar, K.; Nayak, A.; Saha, A.; Sudhakar, K.] Tata Inst Fundamental Res EHEP, Mumbai, Maharashtra, India.
[Guchait, M.; Banerjee, S.; Dugad, S.; Mondal, N. K.] Tata Inst Fundamental Res HECR, Mumbai, Maharashtra, India.
[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys & Math, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Abbrescia, M.; De Palma, M.; Lusito, L.; Manna, N.; Marangelli, B.; Natali, S.; Nuzzo, S.; Roselli, G.; Selvaggi, G.; Tupputi, S.] Univ Bari, Bari, Italy.
[Creanza, D.; Lacalamita, N.; Maggi, G.; My, S.; Pompili, A.; Romano, F.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Bacchi, W.; Braibant-Giacomelli, S.; Capiluppi, P.; Castro, A.; Codispoti, G.; Cuffiani, M.; Fanfani, A.; Masetti, G.; Navarria, F. L.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Broccolo, G.; Ciulli, V.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Genta, C.; Landi, G.; Lenzi, P.] Univ Florence, Florence, Italy.
[Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Fabbri, F.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Cerati, G. B.; Govoni, P.; Malberti, M.; Miccio, V.; Negri, P.; Paganoni, M.; Pullia, A.; Ragazzi, S.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Cimmino, A.; De Gruttola, M.; Noli, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Bellan, P.; Bisello, D.; Borsato, E.; Carlin, R.; De Mattia, M.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Kaminskiy, A.; Margoni, M.; Mattiazzo, S.; Meneguzzo, A. T.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Tosi, M.; Vanini, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.; Pioppi, M.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Biasini, M.; Caponeri, B.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Santocchia, A.; Volpe, R.; Pioppi, M.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Bernardini, J.; Fiori, F.; Messineo, A.; Tonelli, G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bocci, A.; Borrello, L.; Foa, L.; Gennai, S.; Ligabue, F.; Petrucciani, G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Amapane, N.; Arcidiacono, R.; Argiro, S.; Borgia, M. A.; Botta, C.; Castello, R.; Cerminara, G.; Costa, M.; Graziano, A.; Marone, M.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Oggero, S.; Pelliccioni, M.; Romero, A.; Sacchi, R.; Solano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.] Univ Turin, Turin, Italy.
[Arneodo, M.; Obertino, M. M.; Ruspa, M.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Della Ricca, G.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.; Segoni, I.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Bluj, M.; Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.; Musienko, Y.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.; Starodumov, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Zhukov, V.; Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Grishin, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.; Sourkov, A.] State Res Ctr Russian Federat, Inst High Energy Phys, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.; Milenovic, P.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Ruiz del Arbol, P. Martinez; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, IFCA, CSIC, E-39005 Santander, Spain.
[Van Doninck, W.; Abadjiev, K.; Darmenov, N.; Genchev, V.; Toteva, Z.; Kreuzer, P.; Mankel, R.; Zeuner, W. D.; Hartmann, F.; Saout, C.; Panagiotou, A.; Bencze, G.; Hajdu, C.; Szillasi, Z.; Dallavalle, G. M.; Giunta, M.; Lenzi, P.; Cerati, G. B.; Malberti, M.; Cimmino, A.; De Gruttola, M.; Azzi, P.; Bellan, P.; Spagnolo, P.; Tenchini, R.; Tonelli, G.; Cavallari, F.; Paramatti, R.; Trapani, P. P.; Castilla Valdez, H.; Kossov, M.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.; Sidiropoulos, G.; Virdee, T.; Erhan, S.; Lusin, S.; Tkaczyk, S.; Trentadue, R.; Crotty, I.; Hall-Wilton, R.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.; Caminada, L.; Dambach, S.; Eggel, C.; Marchica, C.; Trueb, P.] Paul Scherrer Inst, Villigen, Switzerland.
[Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli 32054, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Onengut, G.; Gokbulut, G. Onengut; Ozdemir, K.; Ozturk, S.; Polatoz, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Ocalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Gulmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Newbold, D. M.; Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.; Avetisyan, A.; Apresyan, A.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; St John, J.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Bhattacharya, S.; Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Dubinin, M.; Spiropulu, M.; Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Sibille, J.; Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Gilmore, J.; Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Zelepoukine, S.; Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Agram, J. -L.; Conte, E.; Drouhin, F.; Fontaine, J. -C.] Univ Haute Alsace, Mulhouse, France.
[Fassi, F.] IN2P3, Ctr Calcul, Villeurbanne, France.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
[Fabozzi, F.] Univ Basilicata, I-85100 Potenza, Italy.
[Biasotto, M.; Gulmini, M.; Lacaprara, S.; Maronde, D.] Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
[Gresele, A.; Lazzizzera, I.] Univ Trent, Trento, Italy.
[Baccaro, S.] ENEA Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade 11001, Serbia.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Rolandi, G.] Scuola Normale, Pisa, Italy.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Ozkorucuklu, S.] Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Cankocak, K.] Istanbul Tech Univ, TR-80626 Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Varela, Joao/K-4829-2016; Fassi, Farida/F-3571-2016; Sguazzoni,
Giacomo/J-4620-2015; Ligabue, Franco/F-3432-2014; Menasce, Dario
Livio/A-2168-2016; Bargassa, Pedrame/O-2417-2016; Gerbaudo,
Davide/J-4536-2012; Paganoni, Marco/A-4235-2016; Kirakosyan,
Martin/N-2701-2015; Seixas, Joao/F-5441-2013; Verwilligen,
Piet/M-2968-2014; Vilela Pereira, Antonio/L-4142-2016; Sznajder,
Andre/L-1621-2016; Haj Ahmad, Wael/E-6738-2016; Xie, Si/O-6830-2016;
Leonardo, Nuno/M-6940-2016; Goh, Junghwan/Q-3720-2016; Govoni,
Pietro/K-9619-2016; Tuominen, Eija/A-5288-2017; Yazgan, Efe/C-4521-2014;
Hoorani, Hafeez/D-1791-2013; Vinogradov, Alexander/M-5331-2015;
Altsybeev, Igor/K-6687-2013; Romaniuk, Ryszard/B-9140-2011; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
korzhik, Mikhail/E-9505-2014; Fedorov, Andrei/E-9455-2014; Konovalova,
Nina/D-3882-2014; Cordonnier, Agnes/I-5083-2016; Trocsanyi,
Zoltan/A-5598-2009; Konecki, Marcin/G-4164-2015; Hernandez Calama, Jose
Maria/H-9127-2015; Barcala, JOSE MIGUEL/I-1105-2015; Bedoya,
Cristina/K-8066-2014; Michelotto, Michele/A-9571-2013; Matorras,
Francisco/I-4983-2015; My, Salvatore/I-5160-2015; Gumus,
Kazim/G-2498-2013; Muelmenstaedt, Johannes/K-2432-2015; Rovelli,
Tiziano/K-4432-2015; Dremin, Igor/K-8053-2015; Gonzalez Suarez,
Rebeca/L-6128-2014; Calvo Alamillo, Enrique/L-1203-2014; Paulini,
Manfred/N-7794-2014; Vogel, Helmut/N-8882-2014; Ferguson,
Thomas/O-3444-2014; Ragazzi, Stefano/D-2463-2009; Benussi,
Luigi/O-9684-2014; Russ, James/P-3092-2014; Grandi, Claudio/B-5654-2015;
Ahmed, Ijaz/E-9144-2015; Lazzizzera, Ignazio/E-9678-2015; Sen,
Sercan/C-6473-2014; D'Alessandro, Raffaello/F-5897-2015; Bellan,
Riccardo/G-2139-2014; Petrucci, Andrea/J-4207-2014; Gribushin,
Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Molinero,
Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014; Scodellaro,
Luca/K-9091-2014; Josa, Isabel/K-5184-2014; Navarrete Marin, Jose
Javier/K-6412-2014; Marin, Jesus/K-6991-2014; Rolandi, Luigi
(Gigi)/E-8563-2013; Zalewski, Piotr/H-7335-2013; Cavallo,
Nicola/F-8913-2012; Dvornikov, Oleg/I-7207-2013; Hill,
Christopher/B-5371-2012; Kuleshov, Sergey/D-9940-2013; Troitsky,
Sergey/C-1377-2014; Marlow, Daniel/C-9132-2014; Janssen,
Xavier/E-1915-2013; Oguri, Vitor/B-5403-2013; Alves, Gilvan/C-4007-2013;
Codispoti, Giuseppe/F-6574-2014; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Lokhtin,
Igor/D-7004-2012; Kodolova, Olga/D-7158-2012; Dudko, Lev/D-7127-2012;
Boos, Eduard/D-9748-2012; Tinoco Mendes, Andre David/D-4314-2011;
Ganjour, Serguei/D-8853-2011; Ruiz, Alberto/E-4473-2011; Stahl,
Achim/E-8846-2011; Hektor, Andi/G-1804-2011; Wulz,
Claudia-Elisabeth/H-5657-2011; Snigirev, Alexander/D-8912-2012; Chipaux,
Remi/G-1145-2010; Servoli, Leonello/E-6766-2012; Tomei,
Thiago/E-7091-2012; Focardi, Ettore/E-7376-2012; Fruhwirth,
Rudolf/H-2529-2012; Azzi, Patrizia/H-5404-2012; Torassa,
Ezio/I-1788-2012; Giacomelli, Paolo/B-8076-2009; Jeitler,
Manfred/H-3106-2012; Venturi, Andrea/J-1877-2012; de Jesus Damiao,
Dilson/G-6218-2012; Montanari, Alessandro/J-2420-2012; Amapane,
Nicola/J-3683-2012; tosi, mia/J-5777-2012; Klyukhin,
Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012; Raidal,
Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Della Ricca, Giuseppe/B-6826-2013; Kadastik,
Mario/B-7559-2008; Mundim, Luiz/A-1291-2012; Santaolalla,
Javier/C-3094-2013; Gavrilov, Gennady/C-6260-2013
OI Luukka, Panja/0000-0003-2340-4641; Goldstein, Joel/0000-0003-1591-6014;
taylor, richard/0000-0002-5880-2490; Sogut, Kenan/0000-0002-9682-2855;
Giubilato, Piero/0000-0003-4358-5355; Gallinaro,
Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Gutsche,
Oliver/0000-0002-8015-9622; Torassa, Ezio/0000-0003-2321-0599; Mackay,
Catherine/0000-0003-4252-6740; HSIUNG, YEE/0000-0003-4801-1238; Bonnett
Del Alamo, Miguel Reinaldo/0000-0002-1011-8411; Faccioli,
Pietro/0000-0003-1849-6692; Korenkov, Vladimir/0000-0002-2342-7862;
Heath, Helen/0000-0001-6576-9740; Abbiendi,
Giovanni/0000-0003-4499-7562; Levchenko, Petr/0000-0003-4913-0538;
Uliyanov, Alexey/0000-0001-6935-8949; Arneodo,
Michele/0000-0002-7790-7132; Sciacca, Crisostomo/0000-0002-8412-4072;
Varela, Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109;
Toback, David/0000-0003-3457-4144; Ghezzi, Alessio/0000-0002-8184-7953;
bianco, stefano/0000-0002-8300-4124; Demaria,
Natale/0000-0003-0743-9465; Benaglia, Andrea Davide/0000-0003-1124-8450;
Covarelli, Roberto/0000-0003-1216-5235; Staiano,
Amedeo/0000-0003-1803-624X; Ciulli, Vitaliano/0000-0003-1947-3396;
Tonelli, Guido Emilio/0000-0003-2606-9156; Beuselinck,
Raymond/0000-0003-2613-7446; Stober, Fred/0000-0003-2620-3159; Martelli,
Arabella/0000-0003-3530-2255; Hamel de Monchenault,
Gautier/0000-0002-3872-3592; Landsberg, Greg/0000-0002-4184-9380; Rizzi,
Andrea/0000-0002-4543-2718; Gershtein, Yuri/0000-0002-4871-5449;
Tricomi, Alessia Rita/0000-0002-5071-5501; CALZOLARI,
FEDERICO/0000-0002-5510-3061; Malik, Sudhir/0000-0002-6356-2655;
Dharmaraatna, Welathantri/0000-0002-6366-837X; Giacomelli,
Paolo/0000-0002-6368-7220; Fassi, Farida/0000-0002-6423-7213;
Leonidopoulos, Christos/0000-0002-7241-2114; Blekman,
Freya/0000-0002-7366-7098; Lloret Iglesias, Lara/0000-0002-0157-4765;
Kasemann, Matthias/0000-0002-0429-2448; Donvito,
Giacinto/0000-0002-0628-1080; Petragnani, Giulio/0000-0002-0819-6509;
Sguazzoni, Giacomo/0000-0002-0791-3350; WANG,
MIN-ZU/0000-0002-0979-8341; Ligabue, Franco/0000-0002-1549-7107; Diemoz,
Marcella/0000-0002-3810-8530; Baarmand, Marc/0000-0002-9792-8619; Nervo,
Marco/0000-0002-9898-7346; Boccali, Tommaso/0000-0002-9930-9299;
Menasce, Dario Livio/0000-0002-9918-1686; Bargassa,
Pedrame/0000-0001-8612-3332; Mrenna, Stephen/0000-0001-8731-160X; Bilki,
Burak/0000-0001-9515-3306; Costa, Salvatore/0000-0001-9919-0569;
Gerbaudo, Davide/0000-0002-4463-0878; Vieira de Castro Ferreira da
Silva, Pedro Manuel/0000-0002-5725-041X; Actis,
Oxana/0000-0001-8851-3983; Bean, Alice/0000-0001-5967-8674; Longo,
Egidio/0000-0001-6238-6787; Paganoni, Marco/0000-0003-2461-275X; Seixas,
Joao/0000-0002-7531-0842; Vilela Pereira, Antonio/0000-0003-3177-4626;
Sznajder, Andre/0000-0001-6998-1108; Haj Ahmad,
Wael/0000-0003-1491-0446; Xie, Si/0000-0003-2509-5731; Leonardo,
Nuno/0000-0002-9746-4594; Goh, Junghwan/0000-0002-1129-2083; Govoni,
Pietro/0000-0002-0227-1301; Tuominen, Eija/0000-0002-7073-7767; Yazgan,
Efe/0000-0001-5732-7950; Altsybeev, Igor/0000-0002-8079-7026; Romaniuk,
Ryszard/0000-0002-5710-4041; TUVE', Cristina/0000-0003-0739-3153;
Gulmez, Erhan/0000-0002-6353-518X; KIM, Tae Jeong/0000-0001-8336-2434;
Flix, Josep/0000-0003-2688-8047; Ozdemir, Kadri/0000-0002-0103-1488;
Cordonnier, Agnes/0000-0002-4216-3524; Trocsanyi,
Zoltan/0000-0002-2129-1279; Konecki, Marcin/0000-0001-9482-4841;
Hernandez Calama, Jose Maria/0000-0001-6436-7547; Barcala, JOSE
MIGUEL/0000-0002-1092-7091; Bedoya, Cristina/0000-0001-8057-9152;
Michelotto, Michele/0000-0001-6644-987X; Matorras,
Francisco/0000-0003-4295-5668; My, Salvatore/0000-0002-9938-2680; Gumus,
Kazim/0000-0002-1450-6868; Muelmenstaedt, Johannes/0000-0003-1105-6678;
Rovelli, Tiziano/0000-0002-9746-4842; Gonzalez Suarez,
Rebeca/0000-0002-6126-7230; Calvo Alamillo, Enrique/0000-0002-1100-2963;
Paulini, Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070;
Lazzizzera, Ignazio/0000-0001-5092-7531; Sen,
Sercan/0000-0001-7325-1087; D'Alessandro, Raffaello/0000-0001-7997-0306;
Petrucci, Andrea/0000-0003-2524-8355; Cerrada,
Marcos/0000-0003-0112-1691; Oller, Juan Carlos/0000-0002-2754-2788;
Scodellaro, Luca/0000-0002-4974-8330; Navarrete Marin, Jose
Javier/0000-0002-6220-8638; Marin, Jesus/0000-0002-9049-3667; Rolandi,
Luigi (Gigi)/0000-0002-0635-274X; Hill, Christopher/0000-0003-0059-0779;
Kuleshov, Sergey/0000-0002-3065-326X; Troitsky,
Sergey/0000-0001-6917-6600; Codispoti, Giuseppe/0000-0003-0217-7021;
Krammer, Manfred/0000-0003-2257-7751; Dudko, Lev/0000-0002-4462-3192;
Tinoco Mendes, Andre David/0000-0001-5854-7699; Ruiz,
Alberto/0000-0002-3639-0368; Stahl, Achim/0000-0002-8369-7506; Hektor,
Andi/0000-0001-7873-8118; Wulz, Claudia-Elisabeth/0000-0001-9226-5812;
Servoli, Leonello/0000-0003-1725-9185; Tomei,
Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267; Azzi,
Patrizia/0000-0002-3129-828X; de Jesus Damiao,
Dilson/0000-0002-3769-1680; Montanari, Alessandro/0000-0003-2748-6373;
Amapane, Nicola/0000-0001-9449-2509; Klyukhin,
Vyacheslav/0000-0002-8577-6531; Novaes, Sergio/0000-0003-0471-8549;
Della Ricca, Giuseppe/0000-0003-2831-6982; Mundim,
Luiz/0000-0001-9964-7805;
FU FMSR (Austria); FNRS (Belgium); FWO (Belgium); CNPq (Brazil); CAPES
(Brazil); FAPERJ (Brazil); FAPESP (Brazil); MES (Bulgaria); CERN; CAS
(China); MoST (China); NSFC (China); COLCIEN-CIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences (Estonia); NICPB (Estonia);
Academy of Finland (Finland); ME (Finland); HIP (Finland); CEA (France);
CNRS/IN2P3 (France); BMBF (Germany); DFG (Germany); HGF (Germany); GSRT
(Greece); OTKA (Hungary); NKTH (Hungary); DAE (India); DST (India); IPM
(Iran); SFI (Ireland); INFN (Italy); NRF (Korea); LAS (Lithuania);
CINVESTAV (Mexico); CONACYT (Mexico); SEP (Mexico); UASLP-FAI (Mexico);
PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia); JINR
(Belarus); JINR (Georgia); JINR (Ukraine); JINR (Uzbekistan); MST
(Russia); MAE (Russia); MSTDS (Serbia); MICINN (Spain); CPAN (Spain);
Swiss Funding Agencies (Switzerland); NSC (Taipei); TUBITAK (Turkey);
TAEK (Turkey); STFC (United Kingdom); DOE (USA); NSF (USA); European
Union; Leventis Foundation; A. P. Sloan Foundation; Alexander von
Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIEN-CIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 27
TC 31
Z9 31
U1 2
U2 56
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03007
DI 10.1088/1748-0221/5/03/T03007
PG 34
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 716MM
UT WOS:000286973300002
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
Litomin, A
Makarenko, V
Marfin, I
Mossolov, V
Shumeiko, N
Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
Fedorov, A
Karneyeu, A
Korzhik, M
Panov, V
Zuyeuski, R
Kuchinsky, P
Beaumont, W
Benucci, L
Cardaci, M
De Wolf, EA
Delmeire, E
Druzhkin, D
Hashemi, M
Janssen, X
Maes, T
Mucibello, L
Ochesanu, S
Rougny, R
Selvaggi, M
Van Haevermaet, H
Van Mechelen, P
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de Abril, M. Magrans
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CA CMS Collaboration
TI CMS data processing workflows during an extended cosmic ray run
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Detector control systems (detector and experiment monitoring and
slow-control systems, architecture, hardware, algorithms, databases);
Data acquisition concepts
AB The CMS Collaboration conducted a month-long data taking exercise, the Cosmic Run At Four Tesla, during October-November 2008, with the goal of commissioning the experiment for extended operation. With all installed detector systems participating, CMS recorded 270 million cosmic ray events with the solenoid at a magnetic field strength of 3.8 T. This paper describes the data flow from the detector through the various online and offline computing systems, as well as the workflows used for recording the data, for aligning and calibrating the detector, and for analysis of the data.
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[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys & Math, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Abbrescia, M.; De Palma, M.; Lusito, L.; Manna, N.; Marangelli, B.; Natali, S.; Nuzzo, S.; Pompili, A.; Roselli, G.; Selvaggi, G.; Tupputi, S.] Univ Bari, Bari, Italy.
[Creanza, D.; Iaselli, G.; Maggi, G.; My, S.; Pugliese, G.; Romano, F.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Bacchi, W.; Braibant-Giacomelli, S.; Capiluppi, P.; Castro, A.; Codispoti, G.; Cuffiani, M.; Fanfani, A.; Masetti, G.; Navarria, F. L.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Broccolo, G.; Ciulli, V.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Genta, C.; Landi, G.; Lenzi, P.] Univ Florence, Florence, Italy.
[Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Fabbri, F.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Cerati, G. B.; Govoni, P.; Malberti, M.; Miccio, V.; Negri, P.; Paganoni, M.; Pullia, A.; Ragazzi, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Cimmino, A.; De Gruttola, M.; Noli, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Bellan, P.; Bisello, D.; Borsato, E.; Carlin, R.; De Mattia, M.; Gasparini, U.; Giubilato, P.; Kaminskiy, A.; Margoni, M.; Mattiazzo, S.; Meneguzzo, A. T.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Tosi, M.; Vanini, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.; Pioppi, M.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Biasini, M.; Caponeri, B.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Santocchia, A.; Volpe, R.; Pioppi, M.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Bernardini, J.; Fiori, F.; Messineo, A.; Tonelli, G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bocci, A.; Borrello, L.; Foa, L.; Gennai, S.; Ligabue, F.; Petrucciani, G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Amapane, N.; Arcidiacono, R.; Argiro, S.; Borgia, M. A.; Botta, C.; Castello, R.; Cerminara, G.; Costa, M.; Graziano, A.; Marone, M.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Oggero, S.; Pelliccioni, M.; Romero, A.; Sacchi, R.; Solano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.] Univ Turin, Turin, Italy.
[Arneodo, M.; Obertino, M. M.; Ruspa, M.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Della Ricca, G.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Bluj, M.; Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.; Musienko, Y.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.; Starodumov, A.; Nikitenko, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Horvath, D.; Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.; Sourkov, A.] State Res Ctr Russian Federat, Inst High Energy Phys, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.; Milenovic, P.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Ruiz del Arbol, P. Martinez; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, IFCA, CSIC, E-39005 Santander, Spain.
[Hammer, J.; Van Doninck, W.; Piotrzkowski, K.; Darmenov, N.; Genchev, V.; Toteva, Z.; Fetchenhauer, G.; Kreuzer, P.; Mankel, R.; Zeuner, W. D.; Hartmann, F.; Saout, C.; Panagiotou, A.; Bencze, G.; Hajdu, C.; Szillasi, Z.; Dallavalle, G. M.; Giunta, M.; Lenzi, P.; Cerati, G. B.; Malberti, M.; Cimmino, A.; De Gruttola, M.; Azzi, P.; Bellan, P.; Spagnolo, P.; Tenchini, R.; Tonelli, G.; Cavallari, F.; Paramatti, R.; Trapani, P. P.; Castilla Valdez, H.; Kossov, M.; Grishin, V.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.; Sidiropoulos, G.; Virdee, T.; Erhan, S.; Afaq, M. A.; Lusin, S.; Tkaczyk, S.; Trentadue, R.; Crotty, I.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Onig, S. K.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.; Caminada, L.; Dambach, S.; Eggel, C.; Marchica, C.; Trueb, P.] Paul Scherrer Inst, Villigen, Switzerland.
[Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli 32054, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Onengut, G.; Gokbulut, G. Onengut; Ozdemir, K.; Ozturk, S.; Polatoz, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Ocalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Gulmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Newbold, D. M.; Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; St John, J.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Bhattacharya, S.; Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Dubinin, M.; Spiropulu, M.; Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Sibille, J.; Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Gilmore, J.; Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Zelepoukine, S.; Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Agram, J. -L.; Conte, E.; Drouhin, F.; Fontaine, J. -C.] Univ Haute Alsace, Mulhouse, France.
[Fassi, F.] IN2P3, Ctr Calcul, Villeurbanne, France.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
[Fabozzi, F.] Univ Basilicata, I-85100 Potenza, Italy.
[Biasotto, M.; Gulmini, M.; Lacaprara, S.; Maron, G.] Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
[Gresele, A.; Lazzizzera, I.] Univ Trent, Trento, Italy.
[Baccaro, S.] ENEA Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Jovanovic, D.; Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade 11001, Serbia.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Rolandi, G.] Sezione Ist Nazl Fis Nucl, Pisa, Italy.
[Rolandi, G.] Scuola Normale, Pisa, Italy.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Ozkorucuklu, S.] Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Cankocak, K.] Istanbul Tech Univ, TR-80626 Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
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Manfred/H-3106-2012; Venturi, Andrea/J-1877-2012; de Jesus Damiao,
Dilson/G-6218-2012; Montanari, Alessandro/J-2420-2012; Menasce, Dario
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Dharmaraatna, Welathantri/0000-0002-6366-837X
FU FMSR (Austria); FNRS, Belgium; FWO, Belgium; CNPq, Brazil; CAPES,
Brazil; FAPERJ, Brazil; FAPESP, Brazil; MES (Bulgaria); CERN; CAS,
China; MoST, China; NSFC, China; COLCIEN-CIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences, Estonia; Academy of
Finland, Finland; ME, Finland; HIP, Finland; CEA, France; CNRS/IN2P3,
France; BMBF, Germany; DFG, Germany; HGF, Germany; GSRT (Greece); OTKA,
Hungary; NKTH, Hungary; DAE, India; DST, India; IPM (Iran); SFI
(Ireland); INFN (Italy); NRF (Korea); LAS (Lithuania); CINVESTAV,
Mexico; CONACYT, Mexico; SEP, Mexico; UASLP-FAI, Mexico; PAEC
(Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia); JINR
(Belarus); JINR (Georgia); JINR (Ukraine); JINR (Uzbekistan); MST,
Russia; MAE, Russia; MSTDS (Serbia); MICINN, Spain; CPAN, Spain; Swiss
Funding Agencies (Switzerland); NSC (Taipei); TUBITAK, Turkey; TAEK,
Turkey; STFC (United Kingdom); DOE, USA; NSF, USA; European Union;
Leventis Foundation; A. P. Sloan Foundation; Alexander von Humboldt
Foundation; NICPB, Estonia
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIEN-CIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 42
TC 28
Z9 28
U1 2
U2 48
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03006
DI 10.1088/1748-0221/5/03/T03006
PG 44
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 716MM
UT WOS:000286973300001
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
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Ghete, VM
Hammer, J
Hansel, S
Hoch, M
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Jeitler, M
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Kastner, K
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Liko, D
de Abril, IM
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Neuherz, B
Oberegger, M
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Rohringer, H
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CA CMS Collaboration
TI Commissioning of the CMS experiment and the cosmic run at four tesla
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Large detector systems for particle and astroparticle physics;
Calorimeters; Particle tracking detectors (Solid-state detectors);
Particle tracking detectors (Gaseous detectors)
ID MAGNETIC-FIELD
AB The CMS Collaboration conducted a month-long data-taking exercise known as the Cosmic Run At Four Tesla in late 2008 in order to complete the commissioning of the experiment for extended operation. The operational lessons resulting from this exercise were addressed in the subsequent shutdown to better prepare CMS for LHC beams in 2009. The cosmic data collected have been invaluable to study the performance of the detectors, to commission the alignment and calibration techniques, and to make several cosmic ray measurements. The experimental setup, conditions, and principal achievements from this data-taking exercise are described along with a review of the preceding integration activities.
C1 [Chatrchyan, S.; Khachatryan, V.; Sirunyan, A. M.] Yerevan Phys Inst, Yerevan 375036, Armenia.
Inst Hochenergiephys OeAW, Vienna, Austria.
Natl Ctr Particle & High Energy Phys, Minsk, Byelarus.
Res Inst Nucl Problems, Minsk, Byelarus.
Res Inst Appl Phys Problems, Minsk, Byelarus.
Univ Antwerp, B-2020 Antwerp, Belgium.
Vrije Univ Brussel, Brussels, Belgium.
Univ Libre Bruxelles, Brussels, Belgium.
Univ Ghent, B-9000 Ghent, Belgium.
Catholic Univ Louvain, B-1348 Louvain, Belgium.
Univ Mons, B-7000 Mons, Belgium.
Ctr Brasileiro Pesquisas Fis, Rio De Janeiro, Brazil.
Univ Estado Rio de Janeiro, BR-20550011 Rio De Janeiro, Brazil.
Univ Estadual Paulista, Inst Fis Teor, BR-01405 Sao Paulo, Brazil.
Bulgarian Acad Sci, Inst Nucl Res & Nucl Energy, Sofia, Bulgaria.
Univ Sofia, BU-1126 Sofia, Bulgaria.
Inst High Energy Phys, Beijing 100039, Peoples R China.
Peking Univ, State Key Lab Nucl Phys & Tech, Beijing 100871, Peoples R China.
Univ Los Andes, Bogota, Colombia.
Tech Univ Split, Split, Croatia.
Univ Split, Split, Croatia.
Rudjer Boskovic Inst, Zagreb, Croatia.
Univ Cyprus, Nicosia, Cyprus.
NICPB, Tallinn, Estonia.
Helsinki Inst Phys, Helsinki, Finland.
Lappeenranta Univ Technol, Lappeenranta, Finland.
CNRS, IN2P3, Lab Annecy le Vieux Phys Particules, Annecy Le Vieux, France.
CEA Saclay, DSM IRFU, F-91191 Gif Sur Yvette, France.
Ecole Polytech, CNRS, IN2P3, Lab Leprince Ringuet, F-91128 Palaiseau, France.
Univ Haute Alsace Mulhouse, Univ Strasbourg, Inst Pluridisciplinaire Hubert Curien, CNRS IN2P3, Strasbourg, France.
Univ Lyon 1, CNRS, IN2P3, Inst Phys Nucl Lyon, F-69622 Villeurbanne, France.
Georgian Acad Sci, E Andronikashvili Inst Phys, GE-380060 Tbilisi, Rep of Georgia.
Tbilisi State Univ, Inst High Energy Phys & Informatizat, GE-380086 Tbilisi, Rep of Georgia.
Rhein Westfal TH Aachen, Inst Phys 1, Aachen, Germany.
Rhein Westfal TH Aachen, Phys Inst A 3, Aachen, Germany.
Rhein Westfal TH Aachen, Phys Inst B 3, Aachen, Germany.
DESY, Hamburg, Germany.
Univ Hamburg, Hamburg, Germany.
Univ Karlsruhe, Inst Expt Kernphys, D-7500 Karlsruhe, Germany.
Inst Nucl Phys Demokritos, Aghia Paraskevi, Greece.
Univ Athens, Athens, Greece.
Univ Ioannina, GR-45110 Ioannina, Greece.
KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
Inst Nucl Res ATOMKI, Debrecen, Hungary.
Univ Debrecen, H-4012 Debrecen, Hungary.
Panjab Univ, Chandigarh 160014, India.
Univ Delhi, Delhi 110007, India.
Bhabha Atom Res Ctr, Mumbai 400085, Maharashtra, India.
Tata Inst Fundamental Res EHEP, Mumbai, Maharashtra, India.
Tata Inst Fundamental Res HECR, Mumbai, Maharashtra, India.
Inst Studies Theoret Phys & Math IPM, Tehran, Iran.
Univ Coll Dublin, Dublin 2, Ireland.
Politecn Bari, Bari, Italy.
Univ Bari, Bari, Italy.
Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
Univ Bologna, Bologna, Italy.
Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
Univ Catania, Catania, Italy.
Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
Univ Florence, Florence, Italy.
Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
Univ Milano Bicocca, Milan, Italy.
Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
Univ Naples Federico II, Naples, Italy.
Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
Univ Padua, Padua, Italy.
Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
Univ Pavia, I-27100 Pavia, Italy.
Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
Univ Perugia, I-06100 Perugia, Italy.
Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
Scuola Normale Super Pisa, Pisa, Italy.
Univ Pisa, Pisa, Italy.
Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
Univ Roma La Sapienza, Rome, Italy.
Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
Univ Torino, Turin, Italy.
Univ Piemonte Orientale Novara, Turin, Italy.
Univ Trieste, Trieste, Italy.
Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
Kyungpook Natl Univ, Taegu, South Korea.
Wonkwang Univ, Iksan, South Korea.
Chonnam Natl Univ, Kwangju, South Korea.
Konkuk Univ, Seoul, South Korea.
Korea Univ, Seoul, South Korea.
Seoul Natl Univ, Seoul, South Korea.
Univ Seoul, Seoul, South Korea.
Sungkyunkwan Univ, Suwon, South Korea.
Vilnius State Univ, Vilnius, Lithuania.
IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
Univ Iberoamer, Mexico City, DF, Mexico.
Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
Univ Auckland, Auckland 1, New Zealand.
Univ Canterbury, Christchurch 1, New Zealand.
Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
Joint Inst Nucl Res, Dubna, Russia.
Petersburg Nucl Phys Inst, St Petersburg, Russia.
Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
Inst Theoret & Expt Phys, Moscow 117259, Russia.
Moscow MV Lomonosov State Univ, Moscow, Russia.
PN Lebedev Phys Inst, Moscow 117924, Russia.
Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
Vinca Inst Nucl Sci, Belgrade, Serbia.
CIEMAT, Madrid, Spain.
Univ Autonoma Madrid, Madrid, Spain.
Univ Oviedo, Oviedo, Spain.
Univ Cantabria, CSIC, Inst Fis Cantabria IFCA, Santander, Spain.
CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
Paul Scherrer Inst, Villigen, Switzerland.
ETH, Inst Particle Phys, Zurich, Switzerland.
Univ Zurich, Zurich, Switzerland.
Natl Cent Univ, Chungli 32054, Taiwan.
Natl Taiwan Univ, Taipei 10764, Taiwan.
Cukurova Univ, Adana, Turkey.
Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
Bogazici Univ, Dept Phys, Istanbul, Turkey.
Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
Univ Bristol, Bristol, Avon, England.
Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
Univ London, Imperial Coll, London, England.
Brunel Univ, Uxbridge UB8 3PH, Middx, England.
Boston Univ, Boston, MA 02215 USA.
Brown Univ, Providence, RI 02912 USA.
Univ Calif Davis, Davis, CA 95616 USA.
Univ Calif Los Angeles, Los Angeles, CA USA.
Univ Calif Riverside, Riverside, CA 92521 USA.
Univ Calif San Diego, La Jolla, CA 92093 USA.
Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
CALTECH, Pasadena, CA 91125 USA.
Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
Univ Colorado, Boulder, CO 80309 USA.
Cornell Univ, Ithaca, NY USA.
Fairfield Univ, Fairfield, CT 06430 USA.
Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
Univ Florida, Gainesville, FL USA.
Florida Int Univ, Miami, FL 33199 USA.
Florida Int Univ, Miami, FL 33199 USA.
Florida State Univ, Tallahassee, FL 32306 USA.
Florida Inst Technol, Melbourne, FL 32901 USA.
Univ Illinois, Chicago, IL USA.
[Cankocak, K.] Univ Iowa, Iowa City, IA USA.
Johns Hopkins Univ, Baltimore, MD USA.
Univ Kansas, Lawrence, KS 66045 USA.
Kansas State Univ, Manhattan, KS 66506 USA.
Lawrence Livermore Natl Lab, Livermore, CA USA.
Univ Maryland, College Pk, MD 20742 USA.
MIT, Cambridge, MA 02139 USA.
Univ Minnesota, Minneapolis, MN USA.
Univ Mississippi, University, MS 38677 USA.
Univ Nebraska, Lincoln, NE USA.
SUNY Buffalo, Buffalo, NY 14260 USA.
Northeastern Univ, Boston, MA 02115 USA.
Northeastern Univ, Evanston, IL USA.
Univ Notre Dame, Notre Dame, IN 46556 USA.
Ohio State Univ, Columbus, OH 43210 USA.
Princeton Univ, Princeton, NJ 08544 USA.
Univ Puerto Rico, Mayaguez, PR USA.
Purdue Univ, W Lafayette, IN 47907 USA.
Purdue Univ Calumet, Hammond, LA USA.
Rice Univ, Houston, TX USA.
Univ Rochester, Rochester, NY 14627 USA.
Rockefeller Univ, New York, NY 10021 USA.
Rutgers State Univ, Piscataway, NJ USA.
Univ Tennessee, Knoxville, TN USA.
Texas A&M Univ, College Stn, TX USA.
Texas Tech Univ, Lubbock, TX 79409 USA.
Vanderbilt Univ, Nashville, TN USA.
Univ Virginia, Charlottesville, VA USA.
Wayne State Univ, Detroit, MI USA.
Univ Wisconsin, Madison, WI 53706 USA.
[Cankocak, K.] Istanbul Tech Univ, Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Janssen, Xavier/E-1915-2013; Alves, Gilvan/C-4007-2013; Santoro,
Alberto/E-7932-2014; Codispoti, Giuseppe/F-6574-2014; Bellan,
Riccardo/G-2139-2014; Petrucci, Andrea/J-4207-2014; Gribushin,
Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Molinero,
Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014; Mundim,
Luiz/A-1291-2012; Santaolalla, Javier/C-3094-2013; Gavrilov,
Gennady/C-6260-2013; Rolandi, Luigi (Gigi)/E-8563-2013; Zalewski,
Piotr/H-7335-2013; Cavallo, Nicola/F-8913-2012; Dvornikov,
Oleg/I-7207-2013; Hill, Christopher/B-5371-2012; Kuleshov,
Sergey/D-9940-2013; Troitsky, Sergey/C-1377-2014; Marlow,
Daniel/C-9132-2014; Oguri, Vitor/B-5403-2013; Jeitler,
Manfred/H-3106-2012; Venturi, Andrea/J-1877-2012; de Jesus Damiao,
Dilson/G-6218-2012; Montanari, Alessandro/J-2420-2012; Amapane,
Nicola/J-3683-2012; tosi, mia/J-5777-2012; Klyukhin,
Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012; Raidal,
Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Kadastik, Mario/B-7559-2008; Lokhtin,
Igor/D-7004-2012; Kodolova, Olga/D-7158-2012; Dudko, Lev/D-7127-2012;
Boos, Eduard/D-9748-2012; Snigirev, Alexander/D-8912-2012; Chipaux,
Remi/G-1145-2010; Servoli, Leonello/E-6766-2012; Tomei,
Thiago/E-7091-2012; Focardi, Ettore/E-7376-2012; Fruhwirth,
Rudolf/H-2529-2012; Azzi, Patrizia/H-5404-2012; Torassa,
Ezio/I-1788-2012; Giacomelli, Paolo/B-8076-2009; Krammer,
Manfred/A-6508-2010; Horvath, Dezso/A-4009-2011; Palinkas,
Jozsef/B-2993-2011; Romaniuk, Ryszard/B-9140-2011; Ganjour,
Serguei/D-8853-2011; Ruiz, Alberto/E-4473-2011; Stahl,
Achim/E-8846-2011; Hektor, Andi/G-1804-2011; Wulz,
Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Tinoco Mendes, Andre David/D-4314-2011; Varela,
Joao/K-4829-2016; Fassi, Farida/F-3571-2016; Sguazzoni,
Giacomo/J-4620-2015; Ligabue, Franco/F-3432-2014; Menasce, Dario
Livio/A-2168-2016; Bargassa, Pedrame/O-2417-2016; Xie, Si/O-6830-2016;
Leonardo, Nuno/M-6940-2016; Goh, Junghwan/Q-3720-2016; Govoni,
Pietro/K-9619-2016; Tuominen, Eija/A-5288-2017; Yazgan, Efe/C-4521-2014;
Gerbaudo, Davide/J-4536-2012; korzhik, Mikhail/E-9505-2014; Della Ricca,
Giuseppe/B-6826-2013; Fedorov, Andrei/E-9455-2014; Konovalova,
Nina/D-3882-2014; Cordonnier, Agnes/I-5083-2016; Paganoni,
Marco/A-4235-2016; Kirakosyan, Martin/N-2701-2015; Seixas,
Joao/F-5441-2013; Verwilligen, Piet/M-2968-2014; Vilela Pereira,
Antonio/L-4142-2016; Sznajder, Andre/L-1621-2016; Haj Ahmad,
Wael/E-6738-2016; Gumus, Kazim/G-2498-2013; Muelmenstaedt,
Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015; Dremin,
Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Altsybeev, Igor/K-6687-2013; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
Ahmed, Ijaz/E-9144-2015; Lazzizzera, Ignazio/E-9678-2015; Sen,
Sercan/C-6473-2014; D'Alessandro, Raffaello/F-5897-2015; Trocsanyi,
Zoltan/A-5598-2009; Konecki, Marcin/G-4164-2015; Hernandez Calama, Jose
Maria/H-9127-2015; Barcala, JOSE MIGUEL/I-1105-2015; Bedoya,
Cristina/K-8066-2014; Michelotto, Michele/A-9571-2013; Matorras,
Francisco/I-4983-2015; My, Salvatore/I-5160-2015; Scodellaro,
Luca/K-9091-2014; Josa, Isabel/K-5184-2014; Navarrete Marin, Jose
Javier/K-6412-2014; Marin, Jesus/K-6991-2014; Gonzalez Suarez,
Rebeca/L-6128-2014; Calvo Alamillo, Enrique/L-1203-2014; Paulini,
Manfred/N-7794-2014; Vogel, Helmut/N-8882-2014; Ferguson,
Thomas/O-3444-2014; Ragazzi, Stefano/D-2463-2009; Benussi,
Luigi/O-9684-2014; Russ, James/P-3092-2014; Grandi, Claudio/B-5654-2015
OI Sogut, Kenan/0000-0002-9682-2855; Codispoti,
Giuseppe/0000-0003-0217-7021; Petrucci, Andrea/0000-0003-2524-8355;
Cerrada, Marcos/0000-0003-0112-1691; Oller, Juan
Carlos/0000-0002-2754-2788; Mundim, Luiz/0000-0001-9964-7805; Rolandi,
Luigi (Gigi)/0000-0002-0635-274X; Hill, Christopher/0000-0003-0059-0779;
Kuleshov, Sergey/0000-0002-3065-326X; Troitsky,
Sergey/0000-0001-6917-6600; de Jesus Damiao, Dilson/0000-0002-3769-1680;
Montanari, Alessandro/0000-0003-2748-6373; Amapane,
Nicola/0000-0001-9449-2509; Klyukhin, Vyacheslav/0000-0002-8577-6531;
Novaes, Sergio/0000-0003-0471-8549; Dudko, Lev/0000-0002-4462-3192;
Servoli, Leonello/0000-0003-1725-9185; Tomei,
Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267; Azzi,
Patrizia/0000-0002-3129-828X; Krammer, Manfred/0000-0003-2257-7751;
Romaniuk, Ryszard/0000-0002-5710-4041; Ruiz,
Alberto/0000-0002-3639-0368; Stahl, Achim/0000-0002-8369-7506; Hektor,
Andi/0000-0001-7873-8118; Wulz, Claudia-Elisabeth/0000-0001-9226-5812;
Tinoco Mendes, Andre David/0000-0001-5854-7699; Gutsche,
Oliver/0000-0002-8015-9622; Torassa, Ezio/0000-0003-2321-0599; Luukka,
Panja/0000-0003-2340-4641; Goldstein, Joel/0000-0003-1591-6014;
Faccioli, Pietro/0000-0003-1849-6692; Korenkov,
Vladimir/0000-0002-2342-7862; Heath, Helen/0000-0001-6576-9740;
Giubilato, Piero/0000-0003-4358-5355; Gallinaro,
Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Arneodo,
Michele/0000-0002-7790-7132; Sciacca, Crisostomo/0000-0002-8412-4072;
Varela, Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109;
Toback, David/0000-0003-3457-4144; Mackay,
Catherine/0000-0003-4252-6740; HSIUNG, YEE/0000-0003-4801-1238; Bonnett
Del Alamo, Miguel Reinaldo/0000-0002-1011-8411; Staiano,
Amedeo/0000-0003-1803-624X; Ciulli, Vitaliano/0000-0003-1947-3396;
Tonelli, Guido Emilio/0000-0003-2606-9156; Beuselinck,
Raymond/0000-0003-2613-7446; Stober, Fred/0000-0003-2620-3159; Martelli,
Arabella/0000-0003-3530-2255; Abbiendi, Giovanni/0000-0003-4499-7562;
Levchenko, Petr/0000-0003-4913-0538; Uliyanov,
Alexey/0000-0001-6935-8949; CALZOLARI, FEDERICO/0000-0002-5510-3061;
Malik, Sudhir/0000-0002-6356-2655; Dharmaraatna,
Welathantri/0000-0002-6366-837X; Giacomelli, Paolo/0000-0002-6368-7220;
Fassi, Farida/0000-0002-6423-7213; Leonidopoulos,
Christos/0000-0002-7241-2114; Blekman, Freya/0000-0002-7366-7098;
Ghezzi, Alessio/0000-0002-8184-7953; bianco,
stefano/0000-0002-8300-4124; Demaria, Natale/0000-0003-0743-9465;
Benaglia, Andrea Davide/0000-0003-1124-8450; Covarelli,
Roberto/0000-0003-1216-5235; Sguazzoni, Giacomo/0000-0002-0791-3350;
WANG, MIN-ZU/0000-0002-0979-8341; Ligabue, Franco/0000-0002-1549-7107;
Diemoz, Marcella/0000-0002-3810-8530; Hamel de Monchenault,
Gautier/0000-0002-3872-3592; Landsberg, Greg/0000-0002-4184-9380; Rizzi,
Andrea/0000-0002-4543-2718; Gershtein, Yuri/0000-0002-4871-5449;
Tricomi, Alessia Rita/0000-0002-5071-5501; Menasce, Dario
Livio/0000-0002-9918-1686; Bargassa, Pedrame/0000-0001-8612-3332;
Mrenna, Stephen/0000-0001-8731-160X; Bilki, Burak/0000-0001-9515-3306;
Costa, Salvatore/0000-0001-9919-0569; Lloret Iglesias,
Lara/0000-0002-0157-4765; Kasemann, Matthias/0000-0002-0429-2448;
Donvito, Giacinto/0000-0002-0628-1080; Petragnani,
Giulio/0000-0002-0819-6509; Bean, Alice/0000-0001-5967-8674; Longo,
Egidio/0000-0001-6238-6787; Baarmand, Marc/0000-0002-9792-8619; Nervo,
Marco/0000-0002-9898-7346; Boccali, Tommaso/0000-0002-9930-9299; Xie,
Si/0000-0003-2509-5731; Leonardo, Nuno/0000-0002-9746-4594; Goh,
Junghwan/0000-0002-1129-2083; Govoni, Pietro/0000-0002-0227-1301;
Tuominen, Eija/0000-0002-7073-7767; Yazgan, Efe/0000-0001-5732-7950;
Gerbaudo, Davide/0000-0002-4463-0878; Vieira de Castro Ferreira da
Silva, Pedro Manuel/0000-0002-5725-041X; Actis,
Oxana/0000-0001-8851-3983; Della Ricca, Giuseppe/0000-0003-2831-6982;
Cordonnier, Agnes/0000-0002-4216-3524; Paganoni,
Marco/0000-0003-2461-275X; Seixas, Joao/0000-0002-7531-0842; Vilela
Pereira, Antonio/0000-0003-3177-4626; Sznajder,
Andre/0000-0001-6998-1108; Haj Ahmad, Wael/0000-0003-1491-0446; Gumus,
Kazim/0000-0002-1450-6868; Muelmenstaedt, Johannes/0000-0003-1105-6678;
Rovelli, Tiziano/0000-0002-9746-4842; Altsybeev,
Igor/0000-0002-8079-7026; TUVE', Cristina/0000-0003-0739-3153; Gulmez,
Erhan/0000-0002-6353-518X; KIM, Tae Jeong/0000-0001-8336-2434; Flix,
Josep/0000-0003-2688-8047; Ozdemir, Kadri/0000-0002-0103-1488;
Lazzizzera, Ignazio/0000-0001-5092-7531; Sen,
Sercan/0000-0001-7325-1087; D'Alessandro, Raffaello/0000-0001-7997-0306;
Trocsanyi, Zoltan/0000-0002-2129-1279; Konecki,
Marcin/0000-0001-9482-4841; Hernandez Calama, Jose
Maria/0000-0001-6436-7547; Barcala, JOSE MIGUEL/0000-0002-1092-7091;
Bedoya, Cristina/0000-0001-8057-9152; Michelotto,
Michele/0000-0001-6644-987X; Matorras, Francisco/0000-0003-4295-5668;
My, Salvatore/0000-0002-9938-2680; Scodellaro, Luca/0000-0002-4974-8330;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070
FU FMSR (Austria); FNRS and FWO (Belgium); CNPq; CAPES; FAPERJ; FAPESP
(Brazil); MES (Bulgaria); CERN; CAS; MoST; NSFC (China); COLCIENCIAS
(Colombia); MSES (Croatia); RPF (Cyprus); Academy of Sciences; NICPB
(Estonia); Academy of Finland; ME; HIP (Finland); CEA; CNRS/IN2P3
(France); BMBF; DFG; HGF (Germany); GSRT (Greece); OTKA; NKTH (Hungary);
DAE; DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF (Korea);
LAS (Lithuania); CINVESTAV; CONACYT; SEP; UASLP-FAI (Mexico); PAEC
(Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia, Belarus,
Georgia, Ukraine, Uzbekistan); MST; MAE (Russia); MSTDS (Serbia);
MICINN; CPAN (Spain); Swiss Funding Agencies (Switzerland); NSC
(Taipei); TUBITAK; TAEK (Turkey); STFC (United Kingdom); DOE; NSF (USA);
European Union; Leventis Foundation; A. P. Sloan Foundation; Alexander
von Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 27
TC 29
Z9 29
U1 2
U2 56
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03001
DI 10.1088/1748-0221/5/03/T03001
PG 39
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100030
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
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CA CMS Collaboration
TI Performance of the CMS Level-1 trigger during commissioning with cosmic
ray muons and LHC beams
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Trigger concepts and systems (hardware and software); Trigger algorithms
AB The CMS Level-1 trigger was used to select cosmic ray muons and LHC beam events during data-taking runs in 2008, and to estimate the level of detector noise. This paper describes the trigger components used, the algorithms that were executed, and the trigger synchronisation. Using data from extended cosmic ray runs, the muon, electron/photon, and jet triggers have been validated, and their performance evaluated. Efficiencies were found to be high, resolutions were found to be good, and rates as expected.
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Andre/L-1621-2016; Haj Ahmad, Wael/E-6738-2016; Xie, Si/O-6830-2016;
Leonardo, Nuno/M-6940-2016; Goh, Junghwan/Q-3720-2016; Muelmenstaedt,
Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015; Dremin,
Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Altsybeev, Igor/K-6687-2013; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
korzhik, Mikhail/E-9505-2014; Lazzizzera, Ignazio/E-9678-2015; Sen,
Sercan/C-6473-2014; D'Alessandro, Raffaello/F-5897-2015; Trocsanyi,
Zoltan/A-5598-2009; Konecki, Marcin/G-4164-2015; Hernandez Calama, Jose
Maria/H-9127-2015; Barcala, JOSE MIGUEL/I-1105-2015; Bedoya,
Cristina/K-8066-2014; Michelotto, Michele/A-9571-2013; Matorras,
Francisco/I-4983-2015; My, Salvatore/I-5160-2015; Gumus,
Kazim/G-2498-2013; Josa, Isabel/K-5184-2014; Navarrete Marin, Jose
Javier/K-6412-2014; Marin, Jesus/K-6991-2014; Gonzalez Suarez,
Rebeca/L-6128-2014; Calvo Alamillo, Enrique/L-1203-2014; Paulini,
Manfred/N-7794-2014; Vogel, Helmut/N-8882-2014; Ferguson,
Thomas/O-3444-2014; Ragazzi, Stefano/D-2463-2009; Benussi,
Luigi/O-9684-2014; Russ, James/P-3092-2014; Grandi, Claudio/B-5654-2015;
Ahmed, Ijaz/E-9144-2015; Janssen, Xavier/E-1915-2013; Alves,
Gilvan/C-4007-2013; Codispoti, Giuseppe/F-6574-2014; Bellan,
Riccardo/G-2139-2014; Petrucci, Andrea/J-4207-2014; Gribushin,
Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Molinero,
Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014; Scodellaro,
Luca/K-9091-2014; Mundim, Luiz/A-1291-2012; Santaolalla,
Javier/C-3094-2013; Gavrilov, Gennady/C-6260-2013; Rolandi, Luigi
(Gigi)/E-8563-2013; Zalewski, Piotr/H-7335-2013; Cavallo,
Nicola/F-8913-2012; Dvornikov, Oleg/I-7207-2013; Hill,
Christopher/B-5371-2012; Kuleshov, Sergey/D-9940-2013; Troitsky,
Sergey/C-1377-2014; Marlow, Daniel/C-9132-2014; Oguri,
Vitor/B-5403-2013; Venturi, Andrea/J-1877-2012; de Jesus Damiao,
Dilson/G-6218-2012; Montanari, Alessandro/J-2420-2012; Amapane,
Nicola/J-3683-2012; tosi, mia/J-5777-2012; Klyukhin,
Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012; Raidal,
Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Della Ricca, Giuseppe/B-6826-2013; Kadastik,
Mario/B-7559-2008
OI Dudko, Lev/0000-0002-4462-3192; Servoli, Leonello/0000-0003-1725-9185;
Tomei, Thiago/0000-0002-1809-5226; Azzi, Patrizia/0000-0002-3129-828X;
Tinoco Mendes, Andre David/0000-0001-5854-7699; Romaniuk,
Ryszard/0000-0002-5710-4041; Ruiz, Alberto/0000-0002-3639-0368; Stahl,
Achim/0000-0002-8369-7506; Hektor, Andi/0000-0001-7873-8118; Wulz,
Claudia-Elisabeth/0000-0001-9226-5812; Krammer,
Manfred/0000-0003-2257-7751; Sogut, Kenan/0000-0002-9682-2855;
Gallinaro, Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Torassa,
Ezio/0000-0003-2321-0599; Luukka, Panja/0000-0003-2340-4641; Mackay,
Catherine/0000-0003-4252-6740; Bonnett Del Alamo, Miguel
Reinaldo/0000-0002-1011-8411; Faccioli, Pietro/0000-0003-1849-6692;
Goldstein, Joel/0000-0003-1591-6014; Korenkov,
Vladimir/0000-0002-2342-7862; Heath, Helen/0000-0001-6576-9740;
Giubilato, Piero/0000-0003-4358-5355; Ghezzi,
Alessio/0000-0002-8184-7953; bianco, stefano/0000-0002-8300-4124;
Demaria, Natale/0000-0003-0743-9465; Benaglia, Andrea
Davide/0000-0003-1124-8450; Covarelli, Roberto/0000-0003-1216-5235;
Ciulli, Vitaliano/0000-0003-1947-3396; Martelli,
Arabella/0000-0003-3530-2255; Levchenko, Petr/0000-0003-4913-0538;
Uliyanov, Alexey/0000-0001-6935-8949; Varela, Joao/0000-0003-2613-3146;
Donvito, Giacinto/0000-0002-0628-1080; Sguazzoni,
Giacomo/0000-0002-0791-3350; Ligabue, Franco/0000-0002-1549-7107;
Diemoz, Marcella/0000-0002-3810-8530; Tricomi, Alessia
Rita/0000-0002-5071-5501; CALZOLARI, FEDERICO/0000-0002-5510-3061;
Fassi, Farida/0000-0002-6423-7213; Longo, Egidio/0000-0001-6238-6787;
Baarmand, Marc/0000-0002-9792-8619; Nervo, Marco/0000-0002-9898-7346;
Boccali, Tommaso/0000-0002-9930-9299; Menasce, Dario
Livio/0000-0002-9918-1686; Bargassa, Pedrame/0000-0001-8612-3332; Bilki,
Burak/0000-0001-9515-3306; Lloret Iglesias, Lara/0000-0002-0157-4765;
Govoni, Pietro/0000-0002-0227-1301; Tuominen, Eija/0000-0002-7073-7767;
Yazgan, Efe/0000-0001-5732-7950; Gerbaudo, Davide/0000-0002-4463-0878;
Vieira de Castro Ferreira da Silva, Pedro Manuel/0000-0002-5725-041X;
Actis, Oxana/0000-0001-8851-3983; Bean, Alice/0000-0001-5967-8674;
Cordonnier, Agnes/0000-0002-4216-3524; Paganoni,
Marco/0000-0003-2461-275X; Seixas, Joao/0000-0002-7531-0842; Vilela
Pereira, Antonio/0000-0003-3177-4626; Sznajder,
Andre/0000-0001-6998-1108; Haj Ahmad, Wael/0000-0003-1491-0446; Xie,
Si/0000-0003-2509-5731; Leonardo, Nuno/0000-0002-9746-4594; Goh,
Junghwan/0000-0002-1129-2083; Muelmenstaedt,
Johannes/0000-0003-1105-6678; Rovelli, Tiziano/0000-0002-9746-4842;
Altsybeev, Igor/0000-0002-8079-7026; TUVE',
Cristina/0000-0003-0739-3153; Gulmez, Erhan/0000-0002-6353-518X; KIM,
Tae Jeong/0000-0001-8336-2434; Flix, Josep/0000-0003-2688-8047; Ozdemir,
Kadri/0000-0002-0103-1488; Lazzizzera, Ignazio/0000-0001-5092-7531; Sen,
Sercan/0000-0001-7325-1087; D'Alessandro, Raffaello/0000-0001-7997-0306;
Trocsanyi, Zoltan/0000-0002-2129-1279; Konecki,
Marcin/0000-0001-9482-4841; Hernandez Calama, Jose
Maria/0000-0001-6436-7547; Barcala, JOSE MIGUEL/0000-0002-1092-7091;
Bedoya, Cristina/0000-0001-8057-9152; Michelotto,
Michele/0000-0001-6644-987X; Matorras, Francisco/0000-0003-4295-5668;
My, Salvatore/0000-0002-9938-2680; Gumus, Kazim/0000-0002-1450-6868;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070;
Codispoti, Giuseppe/0000-0003-0217-7021; Petrucci,
Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Scodellaro, Luca/0000-0002-4974-8330;
Mundim, Luiz/0000-0001-9964-7805; Rolandi, Luigi
(Gigi)/0000-0002-0635-274X; Hill, Christopher/0000-0003-0059-0779;
Kuleshov, Sergey/0000-0002-3065-326X; Troitsky,
Sergey/0000-0001-6917-6600; de Jesus Damiao, Dilson/0000-0002-3769-1680;
Montanari, Alessandro/0000-0003-2748-6373; Amapane,
Nicola/0000-0001-9449-2509; Klyukhin, Vyacheslav/0000-0002-8577-6531;
Novaes, Sergio/0000-0003-0471-8549; Della Ricca,
Giuseppe/0000-0003-2831-6982;
FU FMSR (Austria); FNRS and FWO (Belgium); CNPq; CAPES; FAPERJ; FAPESP
(Brazil); MES (Bulgaria); CERN; CAS; MoST; NSFC (China); COLCIENCIAS
(Colombia); MSES (Croatia); RPF (Cyprus); Academy of Sciences; NICPB
(Estonia); Academy of Finland; ME; HIP (Finland); CEA; CNRS/IN2P3
(France); BMBF; DFG; HGF (Germany); GSRT (Greece); OTKA and NKTH
(Hungary); DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy);
NRF (Korea); LAS (Lithuania); CINVESTAV; CONACYT; SEP; UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK; TAEK (Turkey); STFC (United Kingdom); DOE and NSF
(USA); European Union; Leventis Foundation; A. P. Sloan Foundation;
Alexander von Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 27
TC 30
Z9 30
U1 2
U2 60
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03002
DI 10.1088/1748-0221/5/03/T03002
PG 52
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100029
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
Litomin, A
Makarenko, V
Marfin, I
Mossolov, V
Shumeiko, N
Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
Fedorov, A
Karneyeu, A
Korzhik, M
Panov, V
Zuyeuski, R
Kuchinsky, P
Beaumont, W
Benucci, L
Cardaci, M
De Wolf, EA
Delmeire, E
Druzhkin, D
Hashemi, M
Janssen, X
Maes, T
Mucibello, L
Ochesanu, S
Rougny, R
Selvaggi, M
Van Haevermaet, H
Van Mechelen, P
Van Remortel, N
Adler, V
Beauceron, S
Blyweert, S
D'Hondt, J
De Weirdt, S
Devroede, O
Heyninck, J
Kalogeropoulos, A
Maes, J
Maes, M
Mozer, MU
Tavernier, S
Van Doninck, W
Van Mulders, P
Villella, I
Bouhali, O
Chabert, EC
Charaf, O
Clerbaux, B
De Lentdecker, G
Dero, V
Elgammal, S
Gay, APR
Hammad, GH
Marage, PE
Rugovac, S
Vander Velde, C
Vanlaer, P
Wickens, J
Grunewald, M
Klein, B
Marinov, A
Ryckbosch, D
Thyssen, F
Tytgat, M
Vanelderen, L
Verwilligen, P
Basegmez, S
Bruno, G
Caudron, J
Delaere, C
Demin, P
Favart, D
Giammanco, A
Gregoire, G
Lemaitre, V
Militaru, O
Ovyn, S
Piotrzkowski, K
Quertenmont, L
Schul, N
Beliy, N
Daubie, E
Alves, GA
Pol, ME
Souza, MHG
Carvalho, W
Damiao, DD
Martins, CD
De Souza, SF
Mundim, L
Oguri, V
Santoro, A
Do Amaral, SMS
Sznajder, A
Tomei, TRFP
Dias, MAF
Gregores, EM
Novaes, SF
Abadjiev, K
Anguelov, T
Damgov, J
Darmenov, N
Dimitrov, L
Genchev, V
Iaydjiev, P
Piperov, S
Stoykova, S
Sultanov, G
Trayanov, R
Vankov, I
Dimitrov, A
Dyulendarova, M
Kozhuharov, V
Litov, L
Marinova, E
Mateev, M
Pavlov, B
Petkov, P
Toteva, Z
Chen, GM
Chen, HS
Guan, W
Jiang, CH
Liang, D
Liu, B
Meng, X
Tao, J
Wang, J
Wang, Z
Xue, Z
Zhang, Z
Ban, Y
Cai, J
Ge, Y
Guo, S
Hu, Z
Mao, Y
Qian, SJ
Teng, H
Zhu, B
Avila, C
Ruiz, MB
Montoya, CAC
Gomez, A
Moreno, BG
Rios, AAO
Oliveros, AFO
Romero, DR
Sanabria, JC
Godinovic, N
Lelas, K
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Polic, D
Puljak, I
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Dzelalija, M
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Duric, S
Kadija, K
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Mousa, J
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Hektor, A
Kadastik, M
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Raidal, M
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Anttila, E
Czellar, S
Harkonen, J
Heikkinen, A
Karimaki, V
Kinnunen, R
Klem, J
Kortelainen, MJ
Lampen, T
Lassila-Perini, K
Lehti, S
Linden, T
Luukka, P
Maenpaa, T
Nysten, J
Tuominen, E
Tuominiemi, J
Ungaro, D
Wendland, L
Banzuzi, K
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Tuuva, T
Nedelec, P
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Dejardin, M
Denegri, D
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Fabbro, B
Faure, JL
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Ganjour, S
Gentit, FX
Givernaud, A
Gras, P
de Monchenault, GH
Jarry, P
Lemaire, MC
Locci, E
Malcles, J
Marionneau, M
Millischer, L
Rander, J
Rosowsky, A
Rousseau, D
Titov, M
Verrecchia, P
Baffioni, S
Bianchini, L
Bluj, M
Busson, P
Charlot, C
Dobrzynski, L
de Cassagnac, RG
Haguenauer, M
Mine, P
Paganini, P
Sirois, Y
Thiebaux, C
Zabi, A
Agram, JL
Besson, A
Bloch, D
Bodin, D
Brom, JM
Conte, E
Drouhin, F
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Gele, D
Goerlach, U
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Le Bihan, AC
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Ille, B
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Anagnostou, G
Brauer, R
Braunschweig, W
Edelhoff, M
Esser, H
Feld, L
Karpinski, W
Khomich, A
Klein, K
Mohr, N
Ostaptchouk, A
Pandoulas, D
Pierschel, G
Raupach, F
Schael, S
von Dratzig, AS
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Sprenger, D
Thomas, M
Weber, M
Wittmer, B
Wlochal, M
Actis, O
Altenhofer, G
Bender, W
Biallass, P
Erdmann, M
Fetchenhauer, G
Frangenheim, J
Hebbeker, T
Hilgers, G
Hinzmann, A
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Hof, C
Kirsch, M
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Kreuzer, P
Lanske, D
Merschmeyer, M
Meyer, A
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Duda, M
Flugge, G
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Ahmad, WH
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Heydhausen, D
Kalinin, S
Kress, T
Linn, A
Nowack, A
Perchalla, L
Poettgens, M
Pooth, O
Sauerland, P
Stahl, A
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Zoeller, MH
Martin, MA
Behrens, U
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Campbell, A
Castro, E
Dammann, D
Eckerlin, G
Flossdorf, A
Flucke, G
Geiser, A
Hatton, D
Hauk, J
Jung, H
Kasemann, M
Katkov, I
Kleinwort, C
Kluge, H
Knutsson, A
Kuznetsova, E
Lange, W
Lohmann, W
Mankel, R
Marienfeld, M
Meyer, AB
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Hoffmann, KH
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Martschei, D
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Neuland, MB
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Ott, J
Peiffer, T
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Ratnikov, F
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Renz, M
Saout, C
Sartisohn, G
Scheurer, A
Schieferdecker, P
Schilling, FP
Schott, G
Simonis, HJ
Stober, FM
Sturm, P
Troendle, D
Trunov, A
Wagner, W
Wagner-Kuhr, J
Zeise, M
Zhukov, V
Ziebarth, EB
Daskalakis, G
Geralis, T
Karafasoulis, K
Kyriakis, A
Loukas, D
Markou, A
Markou, C
Mavrommatis, C
Petrakou, E
Zachariadou, A
Gouskos, L
Katsas, P
Panagiotou, A
Evangelou, I
Kokkas, P
Manthos, N
Papadopoulos, I
Patras, V
Triantis, FA
Bencze, G
Boldizsar, L
Debreczeni, G
Hajdu, C
Hernath, S
Hidas, P
Horvath, D
Krajczar, K
Laszlo, A
Patay, G
Sikler, F
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Vesztergombi, G
Beni, N
Christian, G
Imrek, J
Molnar, J
Novak, D
Palinkas, J
Szekely, G
Szillasi, Z
Tokesi, K
Veszpremi, V
Kapusi, A
Marian, G
Raics, P
Szabo, Z
Trocsanyi, ZL
Ujvari, B
Zilizi, G
Bansal, S
Bawa, HS
Beri, SB
Bhatnagar, V
Jindal, M
Kaur, M
Kaur, R
Kohli, JM
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CA CMS Collaboration
TI Fine synchronization of the CMS muon drift-tube local trigger using
cosmic rays
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Large detector systems for particle and astroparticle physics; Trigger
detetectors
AB The CMS experiment uses self-triggering arrays of drift tubes in the barrel muon trigger to perform the identification of the correct bunch crossing. The identification is unique only if the trigger chain is correctly synchronized. In this paper, the synchronization performed during an extended cosmic ray run is described and the results are reported. The random arrival time of cosmic ray muons allowed several synchronization aspects to be studied and a simple method for the fine synchronization of the Drift Tube Local Trigger at LHC to be developed.
C1 [Chatrchyan, S.; Khachatryan, V.; Sirunyan, A. M.] Yerevan Phys Inst, Yerevan 375036, Armenia.
[Adam, W.; Arnold, B.; Bergauer, H.; Bergauer, T.; Dragicevic, M.; Eichberger, M.; Eroe, J.; Friedl, M.; Fruehwirth, R.; Ghete, V. M.; Hammer, J.; Haensel, S.; Hoch, M.; Hoermann, N.; Hrubec, J.; Jeitler, M.; Kasieczka, G.; Kastner, K.; Krammer, M.; Liko, D.; de Abril, I. Magrans; Mikulec, I.; Mittermayr, F.; Neuherz, B.; Oberegger, M.; Padrta, M.; Pernicka, M.; Rohringer, H.; Schmid, S.; Schoefbeck, R.; Schreiner, T.; Stark, R.; Steininger, H.; Strauss, J.; Taurok, A.; Teischinger, F.; Themel, T.; Uhl, D.; Wagner, P.; Waltenberger, W.; Walzel, G.; Widl, E.; Wulz, C. -E.] Austrian Acad Sci, Inst Hochenergiephys, OeAW, A-1050 Vienna, Austria.
[Chekhovsky, V.; Dvornikov, O.; Emeliantchik, I.; Litomin, A.; Makarenko, V.; Marfin, I.; Mossolov, V.; Shumeiko, N.; Solin, A.; Stefanovitch, R.; Gonzalez, J. Suarez; Tikhonov, A.] Natl Ctr Particle & High Energy Phys, Minsk, Byelarus.
[Fedorov, A.; Karneyeu, A.; Korzhik, M.; Panov, V.; Zuyeuski, R.] Res Inst Nucl Problems, Minsk, Byelarus.
[Kuchinsky, P.] Res Inst Appl Phys Problems, Minsk, Byelarus.
[Beaumont, W.; Benucci, L.; Cardaci, M.; De Wolf, E. A.; Delmeire, E.; Druzhkin, D.; Hashemi, M.; Janssen, X.; Maes, T.; Mucibello, L.; Ochesanu, S.; Rougny, R.; Selvaggi, M.; Van Haevermaet, H.; Van Mechelen, P.; Van Remortel, N.] Univ Antwerp, B-2020 Antwerp, Belgium.
[Adler, V.; Beauceron, S.; Blyweert, S.; D'Hondt, J.; De Weirdt, S.; Devroede, O.; Heyninck, J.; Kalogeropoulos, A.; Maes, J.; Maes, M.; Mozer, M. U.; Tavernier, S.; Van Doninck, W.; Van Mulders, P.; Villella, I.] Vrije Univ Brussel, Brussels, Belgium.
[Bouhali, O.; Chabert, E. C.; Charaf, O.; Clerbaux, B.; De Lentdecker, G.; Dero, V.; Elgammal, S.; Gay, A. P. R.; Hammad, G. H.; Marage, P. E.; Rugovac, S.; Vander Velde, C.; Vanlaer, P.; Wickens, J.] Univ Libre Bruxelles, Brussels, Belgium.
[Grunewald, M.; Klein, B.; Marinov, A.; Ryckbosch, D.; Thyssen, F.; Tytgat, M.; Vanelderen, L.; Verwilligen, P.] Univ Ghent, B-9000 Ghent, Belgium.
[Basegmez, S.; Bruno, G.; Caudron, J.; Delaere, C.; Demin, P.; Favart, D.; Giammanco, A.; Gregoire, G.; Lemaitre, V.; Militaru, O.; Ovyn, S.; Piotrzkowski, K.; Quertenmont, L.; Schul, N.] Catholic Univ Louvain, B-1348 Louvain, Belgium.
[Beliy, N.; Daubie, E.] Univ Mons, B-7000 Mons, Belgium.
[Alves, G. A.; Pol, M. E.; Souza, M. H. G.] Ctr Brasileiro Pesquisas Fis, Rio De Janeiro, Brazil.
[Carvalho, W.; De Jesus Damiao, D.; De Oliveira Martins, C.; Fonseca De Souza, S.; Mundim, L.; Oguri, V.; Santoro, A.; Silva Do Amaral, S. M.; Sznajder, A.] Univ Estado Rio de Janeiro, BR-20550011 Rio De Janeiro, Brazil.
[Fernandez Perez Tomei, T. R.; Ferreira Dias, M. A.; Gregores, E. M.; Novaes, S. F.] Univ Estadual Paulista, Inst Fis Teor, BR-01405 Sao Paulo, Brazil.
[Abadjiev, K.; Anguelov, T.; Damgov, J.; Darmenov, N.; Dimitrov, L.; Genchev, V.; Iaydjiev, P.; Piperov, S.; Stoykova, S.; Sultanov, G.; Trayanov, R.; Vankov, I.] Bulgarian Acad Sci, Inst Nucl Res & Nucl Energy, Sofia, Bulgaria.
[Dimitrov, A.; Dyulendarova, M.; Kozhuharov, V.; Litov, L.; Marinova, E.; Mateev, M.; Pavlov, B.; Petkov, P.; Toteva, Z.] Univ Sofia, BU-1126 Sofia, Bulgaria.
[Chen, G. M.; Chen, H. S.; Guan, W.; Jiang, C. H.; Liang, D.; Liu, B.; Meng, X.; Tao, J.; Wang, J.; Wang, Z.; Xue, Z.; Zhang, Z.] Inst High Energy Phys, Beijing 100039, Peoples R China.
[Ban, Y.; Cai, J.; Ge, Y.; Guo, S.; Hu, Z.; Mao, Y.; Qian, S. J.; Teng, H.; Zhu, B.] Peking Univ, State Key Lab Nucl Phys & Tech, Beijing 100871, Peoples R China.
[Avila, C.; Baquero Ruiz, M.; Carrillo Montoya, C. A.; Gomez, A.; Gomez Moreno, B.; Ocampo Rios, A. A.; Osorio Oliveros, A. F.; Reyes Romero, D.; Sanabria, J. C.] Univ Los Andes, Bogota, Colombia.
[Godinovic, N.; Lelas, K.; Plestina, R.; Polic, D.; Puljak, I.] Tech Univ Split, Split, Croatia.
[Antunovic, Z.; Dzelalija, M.] Univ Split, Split, Croatia.
[Brigljevic, V.; Duric, S.; Kadija, K.; Morovic, S.] Rudjer Boskovic Inst, Zagreb, Croatia.
[Fereos, R.; Galanti, M.; Mousa, J.; Papadakis, A.; Ptochos, F.; Razis, P. A.; Tsiakkouri, D.; Zinonos, Z.] Univ Cyprus, Nicosia, Cyprus.
[Hektor, A.; Kadastik, M.; Kannike, K.; Muentel, M.; Raidal, M.; Rebane, L.] NICPB, Tallinn, Estonia.
[Anttila, E.; Czellar, S.; Harkonen, J.; Heikkinen, A.; Karimaki, V.; Kinnunen, R.; Klem, J.; Kortelainen, M. J.; Lampen, T.; Lassila-Perini, K.; Lehti, S.; Linden, T.; Luukka, P.; Maenpaa, T.; Nysten, J.; Tuominen, E.; Tuominiemi, J.; Ungaro, D.; Wendland, L.] Helsinki Inst Phys, Helsinki, Finland.
[Banzuzi, K.; Korpela, A.; Tuuva, T.] Lappeenranta Univ Technol, Lappeenranta, Finland.
[Nedelec, P.; Sillou, D.] Lab Annecy Le Vieux Phys Particules, CNRS, IN2P3, F-74941 Annecy Le Vieux, France.
[Besancon, M.; Chipaux, R.; Dejardin, M.; Denegri, D.; Descamps, J.; Fabbro, B.; Faure, J. L.; Ferri, F.; Ganjour, S.; Gentit, F. X.; Givernaud, A.; Gras, P.; de Monchenault, G. Hamel; Jarry, P.; Lemaire, M. C.; Locci, E.; Malcles, J.; Marionneau, M.; Millischer, L.; Rander, J.; Rosowsky, A.; Rousseau, D.; Titov, M.; Verrecchia, P.] CEA Saclay, DSM IRFU, F-91191 Gif Sur Yvette, France.
[Baffioni, S.; Bianchini, L.; Bluj, M.; Busson, P.; Charlot, C.; Dobrzynski, L.; de Cassagnac, R. Granier; Haguenauer, M.; Mine, P.; Paganini, P.; Sirois, Y.; Thiebaux, C.; Zabi, A.] Ecole Polytech, CNRS, Lab Leprince Ringuet, IN2P3, F-91128 Palaiseau, France.
[Iaydjiev, P.; Agram, J. -L.; Besson, A.; Bloch, D.; Bodin, D.; Brom, J. -M.; Conte, E.; Drouhin, F.; Fontaine, J. -C.; Gele, D.; Goerlach, U.; Gross, L.; Juillot, P.; Le Bihan, A. -C.; Patois, Y.; Speck, J.; Van Hove, P.] Univ Haute Alsace Mulhouse, Inst Pluridisciplinaire Hubert Curien, Univ Strasbourg, CNRS,IN2P3, Strasbourg, France.
[Baty, C.; Bedjidian, M.; Blaha, J.; Boudoul, G.; Brun, H.; Chanon, N.; Chierici, R.; Contardo, D.; Depasse, P.; Dupasquier, T.; El Mamouni, H.; Fassi, F.; Fay, J.; Gascon, S.; Ille, B.; Kurca, T.; Le Grand, T.; Lethuillier, M.; Lumb, N.; Mirabito, L.; Perries, S.; Vander Donckt, M.; Verdier, P.] Univ Lyon 1, CNRS, Inst Phys Nucl Lyon, F-69622 Villeurbanne, France.
[Djaoshvili, N.; Roinishvili, N.; Roinishvili, V.] Georgian Acad Sci, E Andronikashvili Inst Phys, GE-380060 Tbilisi, Rep of Georgia.
[Amaglobeli, N.] Tbilisi State Univ, Inst High Energy Phys & Informatizat, GE-380086 Tbilisi, Rep of Georgia.
[Adolphi, R.; Anagnostou, G.; Brauer, R.; Braunschweig, W.; Edelhoff, M.; Esser, H.; Feld, L.; Karpinski, W.; Khomich, A.; Klein, K.; Mohr, N.; Ostaptchouk, A.; Pandoulas, D.; Pierschel, G.; Raupach, F.; Schael, S.; von Dratzig, A. Schultz; Schwering, G.; Sprenger, D.; Thomas, M.; Weber, M.; Wittmer, B.; Wlochal, M.] Rhein Westfal TH Aachen, Inst Phys 1, Aachen, Germany.
[Actis, O.; Altenhoefer, G.; Bender, W.; Biallass, P.; Erdmann, M.; Fetchenhauer, G.; Frangenheim, J.; Hebbeker, T.; Hilgers, G.; Hinzmann, A.; Hoepfner, K.; Hof, C.; Kirsch, M.; Klimkovich, T.; Kreuzer, P.; Lanske, D.; Merschmeyer, M.; Meyer, A.; Philipps, B.; Pieta, H.; Reithler, H.; Schmitz, S. A.; Sonnenschein, L.; Sowa, M.; Steggemann, J.; Szczesny, H.; Teyssier, D.; Zeidler, C.] Rhein Westfal TH Aachen, Phys Inst A 3, Aachen, Germany.
[Bontenackels, M.; Davids, M.; Duda, M.; Fluegge, G.; Geenen, H.; Giffels, M.; Ahmad, W. Haj; Hermanns, T.; Heydhausen, D.; Kalinin, S.; Kress, T.; Linn, A.; Nowack, A.; Perchalla, L.; Poettgens, M.; Pooth, O.; Sauerland, P.; Stahl, A.; Tornier, D.; Zoeller, M. H.] Rhein Westfal TH Aachen, Phys Inst B 3, Aachen, Germany.
[Martin, M. Aldaya; Behrens, U.; Borras, K.; Campbell, A.; Castro, E.; Dammann, D.; Eckerlin, G.; Flossdorf, A.; Flucke, G.; Geiser, A.; Hatton, D.; Hauk, J.; Jung, H.; Kasemann, M.; Katkov, I.; Kleinwort, C.; Kluge, H.; Knutsson, A.; Kuznetsova, E.; Lange, W.; Lohmann, W.; Mankel, R.; Marienfeld, M.; Meyer, A. B.; Miglioranzi, S.; Mnich, J.; Ohlerich, M.; Olzem, J.; Parenti, A.; Rosemann, C.; Schmidt, R.; Schoerner-Sadenius, T.; Volyanskyy, D.; Wissing, C.; Zeuner, W. D.] DESY, Hamburg, Germany.
[Autermann, C.; Bechtel, F.; Draeger, J.; Eckstein, D.; Gebbert, U.; Kaschube, K.; Kaussen, G.; Klanner, R.; Mura, B.; Naumann-Emme, S.; Nowak, F.; Pein, U.; Sander, C.; Schleper, P.; Schum, T.; Stadie, H.; Steinbrueck, G.; Thomsen, J.; Wolf, R.] Univ Hamburg, Hamburg, Germany.
[Bauer, J.; Bluem, P.; Buege, V.; Cakir, A.; Chwalek, T.; De Boer, W.; Dierlamm, A.; Dirkes, G.; Feindt, M.; Felzmann, U.; Frey, M.; Furgeri, A.; Gruschke, J.; Hackstein, C.; Hartmann, F.; Heier, S.; Heinrich, M.; Held, H.; Hirschbuehl, D.; Hoffmann, K. H.; Honc, S.; Jung, C.; Kuhr, T.; Liamsuwan, T.; Martschei, D.; Mueller, S.; Mueller, Th.; Neuland, M. B.; Niegel, M.; Oberst, O.; Oehler, A.; Ott, J.; Peiffer, T.; Piparo, D.; Quast, G.; Rabbertz, K.; Ratnikov, F.; Ratnikova, N.; Renz, M.; Saout, C.; Sartisohn, G.; Scheurer, A.; Schieferdecker, P.; Schilling, F. -P.; Schott, G.; Simonis, H. J.; Stober, F. M.; Sturm, P.; Troendle, D.; Trunov, A.; Wagner, W.; Wagner-Kuhr, J.; Zeise, M.; Zhukov, V.; Ziebarth, E. B.] Univ Karlsruhe, Inst Expt Kernphys, D-7500 Karlsruhe, Germany.
[Daskalakis, G.; Geralis, T.; Karafasoulis, K.; Kyriakis, A.; Loukas, D.; Markou, A.; Markou, C.; Mavrommatis, C.; Petrakou, E.; Zachariadou, A.] Inst Nucl Phys Demokritos, Aghia Paraskevi, Greece.
[Gouskos, L.; Katsas, P.; Panagiotou, A.] Univ Athens, Athens, Greece.
[Evangelou, I.; Kokkas, P.; Manthos, N.; Papadopoulos, I.; Patras, V.; Triantis, F. A.] Univ Ioannina, GR-45110 Ioannina, Greece.
[Bencze, G.; Boldizsar, L.; Debreczeni, G.; Hajdu, C.; Hernath, S.; Hidas, P.; Horvath, D.; Krajczar, K.; Laszlo, A.; Patay, G.; Sikler, F.; Toth, N.; Vesztergombi, G.] KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
[Beni, N.; Christian, G.; Imrek, J.; Molnar, J.; Novak, D.; Palinkas, J.; Szekely, G.; Szillasi, Z.; Tokesi, K.; Veszpremi, V.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Kapusi, A.; Marian, G.; Raics, P.; Szabo, Z.; Trocsanyi, Z. L.; Ujvari, B.; Zilizi, G.] Univ Debrecen, H-4012 Debrecen, Hungary.
[Bansal, S.; Bawa, H. S.; Beri, S. B.; Bhatnagar, V.; Jindal, M.; Kaur, M.; Kaur, R.; Kohli, J. M.; Mehta, M. Z.; Nishu, N.; Saini, L. K.; Sharma, A.; Singh, A.; Singh, J. B.; Singh, S. P.] Panjab Univ, Chandigarh 160014, India.
[Ahuja, S.; Arora, S.; Bhattacharya, S.; Chauhan, S.; Choudhary, B. C.; Gupta, P.; Jain, S.; Jain, S.; Jha, M.; Kumar, A.; Ranjan, K.; Shivpuri, R. K.; Srivastava, A. K.] Univ Delhi, Delhi 110007, India.
[Choudhury, R. K.; Dutta, D.; Kailas, S.; Kataria, S. K.; Mohanty, A. K.; Pant, L. M.; Shukla, P.; Topkar, A.] Bhabha Atom Res Ctr, Mumbai 400085, Maharashtra, India.
[Aziz, T.; Guchait, M.; Gurtu, A.; Maity, M.; Majumder, D.; Majumder, G.; Mazumdar, K.; Nayak, A.; Saha, A.; Sudhakar, K.] Tata Inst Fundamental Res, EHEP, Mumbai 400005, Maharashtra, India.
[Banerjee, S.; Dugad, S.; Mondal, N. K.] Tata Inst Fundamental Res, HECR, Mumbai 400005, Maharashtra, India.
[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys & Math IPM, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Abbrescia, M.; De Palma, M.; Lusito, L.; Manna, N.; Marangelli, B.; Natali, S.; Nuzzo, S.; Pompili, A.; Roselli, G.; Selvaggi, G.; Tupputi, S.] Univ Bari, Bari, Italy.
[Iaydjiev, P.; Creanza, D.; Iaselli, G.; Maggi, G.; My, S.; Pugliese, G.; Romano, F.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsia, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Bacchi, W.; Braibant-Giacomelli, S.; Capiluppi, P.; Castro, A.; Codispoti, G.; Cuffiani, M.; Fanfani, A.; Masetti, G.; Navarria, F. L.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Broccolo, G.; Ciulli, V.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Genta, C.; Landi, G.; Lenzi, P.] Univ Florence, Florence, Italy.
[Fabbri, F.; Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Cerati, G. B.; Govoni, P.; Malberti, M.; Miccio, V.; Negri, P.; Paganoni, M.; Pullia, A.; Ragazzi, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Cimmino, A.; De Gruttola, M.; Noli, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Bellan, P.; Bisello, D.; Borsato, E.; Carlin, R.; De Mattia, M.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Kaminskiy, A.; Margoni, M.; Mattiazzo, S.; Meneguzzo, A. T.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Tosi, M.; Vanini, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Biasini, M.; Caponeri, B.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Santocchia, A.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, I-56010 Pisa, Italy.
[Bernardini, J.; Fiori, F.; Messineo, A.; Tonelli, G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bocci, A.; Borrello, L.; Foa, L.; Gennai, S.; Ligabue, F.; Petrucciani, G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Barone, L.; Del Re, D.; Di Marco, E.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Rahatlou, S.] Univ Roma La Sapienza, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Amapane, N.; Arcidiacono, R.; Argiro, S.; Borgia, M. A.; Botta, C.; Castello, R.; Cerminara, G.; Costa, M.; Graziano, A.; Marone, M.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Oggero, S.; Pelliccioni, M.; Romero, A.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Turin, Turin, Italy.
[Arneodo, M.; Obertino, M. M.; Ruspa, M.] Univ Piemonte Orientale, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Della Ricca, G.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius State Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikho-Nenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Solovey, A.; Toropin, A.; Troitsky, S.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] State Res Ctr Russian Federat, Inst High Energy Phys, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, Inst Fis Cantabria IFCA, CSIC, E-39005 Santander, Spain.
[Sharma, A.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Weber, M.; Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli 32054, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Hansen, M.; Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London, Imperial Coll, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; St John, J.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Bhattacharya, S.; Andrea, J.; Avetisyan, A.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Liu, H.; Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Ranieri, A.; Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[D'Alessandro, R.; Agostino, L.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Banerjee, S.; Evans, D.; Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Schroeder, M.; Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Kumar, A.; Baur, U.; Iashvili, I.; Kharchilava, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northeastern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Kim, H.; Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Harris, P.; Gollapinni, S.; Gunthoti, K.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Cankocak, K.] Istanbul Tech Univ, Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI de la Cruz, Begona/K-7552-2014; Scodellaro, Luca/K-9091-2014; Josa,
Isabel/K-5184-2014; Navarrete Marin, Jose Javier/K-6412-2014; Marin,
Jesus/K-6991-2014; Gonzalez Suarez, Rebeca/L-6128-2014; Calvo Alamillo,
Enrique/L-1203-2014; Paulini, Manfred/N-7794-2014; Vogel,
Helmut/N-8882-2014; Ferguson, Thomas/O-3444-2014; Ragazzi,
Stefano/D-2463-2009; Benussi, Luigi/O-9684-2014; Russ,
James/P-3092-2014; Oguri, Vitor/B-5403-2013; Alves, Gilvan/C-4007-2013;
Santoro, Alberto/E-7932-2014; Codispoti, Giuseppe/F-6574-2014; Bellan,
Riccardo/G-2139-2014; Petrucci, Andrea/J-4207-2014; Gribushin,
Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Molinero,
Antonio/H-7347-2013; Mundim, Luiz/A-1291-2012; Santaolalla,
Javier/C-3094-2013; Gavrilov, Gennady/C-6260-2013; Rolandi, Luigi
(Gigi)/E-8563-2013; Zalewski, Piotr/H-7335-2013; Cavallo,
Nicola/F-8913-2012; Dvornikov, Oleg/I-7207-2013; Hill,
Christopher/B-5371-2012; Kuleshov, Sergey/D-9940-2013; Troitsky,
Sergey/C-1377-2014; Marlow, Daniel/C-9132-2014; Janssen,
Xavier/E-1915-2013; Jeitler, Manfred/H-3106-2012; Venturi,
Andrea/J-1877-2012; de Jesus Damiao, Dilson/G-6218-2012; Montanari,
Alessandro/J-2420-2012; Amapane, Nicola/J-3683-2012; tosi,
mia/J-5777-2012; Klyukhin, Vyacheslav/D-6850-2012; Petrushanko,
Sergey/D-6880-2012; Raidal, Martti/F-4436-2012; Vardanyan,
Irina/K-7981-2012; Novaes, Sergio/D-3532-2012; Kadastik,
Mario/B-7559-2008; Lokhtin, Igor/D-7004-2012; Kodolova,
Olga/D-7158-2012; Dudko, Lev/D-7127-2012; Boos, Eduard/D-9748-2012;
Snigirev, Alexander/D-8912-2012; Chipaux, Remi/G-1145-2010; Servoli,
Leonello/E-6766-2012; Tomei, Thiago/E-7091-2012; Focardi,
Ettore/E-7376-2012; Fruhwirth, Rudolf/H-2529-2012; Azzi,
Patrizia/H-5404-2012; Torassa, Ezio/I-1788-2012; Giacomelli,
Paolo/B-8076-2009; Horvath, Dezso/A-4009-2011; Palinkas,
Jozsef/B-2993-2011; Romaniuk, Ryszard/B-9140-2011; Ganjour,
Serguei/D-8853-2011; Ruiz, Alberto/E-4473-2011; Stahl,
Achim/E-8846-2011; Hektor, Andi/G-1804-2011; Wulz,
Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Tinoco Mendes, Andre
David/D-4314-2011; Varela, Joao/K-4829-2016; Fassi, Farida/F-3571-2016;
Sguazzoni, Giacomo/J-4620-2015; Ligabue, Franco/F-3432-2014; Menasce,
Dario Livio/A-2168-2016; Bargassa, Pedrame/O-2417-2016; Leonardo,
Nuno/M-6940-2016; Goh, Junghwan/Q-3720-2016; Govoni, Pietro/K-9619-2016;
Tuominen, Eija/A-5288-2017; Yazgan, Efe/C-4521-2014; Gerbaudo,
Davide/J-4536-2012; Lazzizzera, Ignazio/E-9678-2015; Xie,
Si/O-6830-2016; Ozdemir, Kadri/P-8058-2014; korzhik,
Mikhail/E-9505-2014; Della Ricca, Giuseppe/B-6826-2013; Fedorov,
Andrei/E-9455-2014; Konovalova, Nina/D-3882-2014; Cordonnier,
Agnes/I-5083-2016; Paganoni, Marco/A-4235-2016; Kirakosyan,
Martin/N-2701-2015; Seixas, Joao/F-5441-2013; Verwilligen,
Piet/M-2968-2014; Vilela Pereira, Antonio/L-4142-2016; Sznajder,
Andre/L-1621-2016; Haj Ahmad, Wael/E-6738-2016; Gumus,
Kazim/G-2498-2013; Muelmenstaedt, Johannes/K-2432-2015; Rovelli,
Tiziano/K-4432-2015; Dremin, Igor/K-8053-2015; Hoorani,
Hafeez/D-1791-2013; Vinogradov, Alexander/M-5331-2015; Altsybeev,
Igor/K-6687-2013; TUVE', Cristina/P-3933-2015; Gulmez,
Erhan/P-9518-2015; KIM, Tae Jeong/P-7848-2015; Arce, Pedro/L-1268-2014;
Flix, Josep/G-5414-2012; Grandi, Claudio/B-5654-2015; Ahmed,
Ijaz/E-9144-2015; Sen, Sercan/C-6473-2014; D'Alessandro,
Raffaello/F-5897-2015; Trocsanyi, Zoltan/A-5598-2009; Konecki,
Marcin/G-4164-2015; Hernandez Calama, Jose Maria/H-9127-2015; Barcala,
JOSE MIGUEL/I-1105-2015; Bedoya, Cristina/K-8066-2014; Michelotto,
Michele/A-9571-2013; Matorras, Francisco/I-4983-2015; My,
Salvatore/I-5160-2015
OI Sogut, Kenan/0000-0002-9682-2855; Gutsche, Oliver/0000-0002-8015-9622;
Torassa, Ezio/0000-0003-2321-0599; Luukka, Panja/0000-0003-2340-4641;
Goldstein, Joel/0000-0003-1591-6014; Scodellaro,
Luca/0000-0002-4974-8330; Navarrete Marin, Jose
Javier/0000-0002-6220-8638; Marin, Jesus/0000-0002-9049-3667; Gonzalez
Suarez, Rebeca/0000-0002-6126-7230; Calvo Alamillo,
Enrique/0000-0002-1100-2963; Paulini, Manfred/0000-0002-6714-5787;
Vogel, Helmut/0000-0002-6109-3023; Ferguson, Thomas/0000-0001-5822-3731;
Ragazzi, Stefano/0000-0001-8219-2074; Benussi,
Luigi/0000-0002-2363-8889; Russ, James/0000-0001-9856-9155; Codispoti,
Giuseppe/0000-0003-0217-7021; Petrucci, Andrea/0000-0003-2524-8355;
Cerrada, Marcos/0000-0003-0112-1691; Oller, Juan
Carlos/0000-0002-2754-2788; Mundim, Luiz/0000-0001-9964-7805; Rolandi,
Luigi (Gigi)/0000-0002-0635-274X; Hill, Christopher/0000-0003-0059-0779;
Kuleshov, Sergey/0000-0002-3065-326X; Troitsky,
Sergey/0000-0001-6917-6600; de Jesus Damiao, Dilson/0000-0002-3769-1680;
Montanari, Alessandro/0000-0003-2748-6373; Amapane,
Nicola/0000-0001-9449-2509; Klyukhin, Vyacheslav/0000-0002-8577-6531;
Novaes, Sergio/0000-0003-0471-8549; Dudko, Lev/0000-0002-4462-3192;
Servoli, Leonello/0000-0003-1725-9185; Tomei,
Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267; Azzi,
Patrizia/0000-0002-3129-828X; Romaniuk, Ryszard/0000-0002-5710-4041;
Ruiz, Alberto/0000-0002-3639-0368; Stahl, Achim/0000-0002-8369-7506;
Hektor, Andi/0000-0001-7873-8118; Wulz,
Claudia-Elisabeth/0000-0001-9226-5812; Krammer,
Manfred/0000-0003-2257-7751; Tinoco Mendes, Andre
David/0000-0001-5854-7699; Faccioli, Pietro/0000-0003-1849-6692;
Korenkov, Vladimir/0000-0002-2342-7862; Heath,
Helen/0000-0001-6576-9740; Giubilato, Piero/0000-0003-4358-5355;
Gallinaro, Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Arneodo,
Michele/0000-0002-7790-7132; Sciacca, Crisostomo/0000-0002-8412-4072;
Varela, Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109;
Toback, David/0000-0003-3457-4144; Mackay,
Catherine/0000-0003-4252-6740; HSIUNG, YEE/0000-0003-4801-1238; Bonnett
Del Alamo, Miguel Reinaldo/0000-0002-1011-8411; Ciulli,
Vitaliano/0000-0003-1947-3396; Tonelli, Guido
Emilio/0000-0003-2606-9156; Beuselinck, Raymond/0000-0003-2613-7446;
Stober, Fred/0000-0003-2620-3159; Martelli,
Arabella/0000-0003-3530-2255; Abbiendi, Giovanni/0000-0003-4499-7562;
Levchenko, Petr/0000-0003-4913-0538; Uliyanov,
Alexey/0000-0001-6935-8949; Malik, Sudhir/0000-0002-6356-2655;
Dharmaraatna, Welathantri/0000-0002-6366-837X; Giacomelli,
Paolo/0000-0002-6368-7220; Fassi, Farida/0000-0002-6423-7213;
Leonidopoulos, Christos/0000-0002-7241-2114; Blekman,
Freya/0000-0002-7366-7098; Ghezzi, Alessio/0000-0002-8184-7953; bianco,
stefano/0000-0002-8300-4124; Demaria, Natale/0000-0003-0743-9465;
Benaglia, Andrea Davide/0000-0003-1124-8450; Covarelli,
Roberto/0000-0003-1216-5235; Staiano, Amedeo/0000-0003-1803-624X;
Sguazzoni, Giacomo/0000-0002-0791-3350; WANG,
MIN-ZU/0000-0002-0979-8341; Ligabue, Franco/0000-0002-1549-7107; Diemoz,
Marcella/0000-0002-3810-8530; Landsberg, Greg/0000-0002-4184-9380;
Rizzi, Andrea/0000-0002-4543-2718; Gershtein, Yuri/0000-0002-4871-5449;
Tricomi, Alessia Rita/0000-0002-5071-5501; CALZOLARI,
FEDERICO/0000-0002-5510-3061; Menasce, Dario Livio/0000-0002-9918-1686;
Bargassa, Pedrame/0000-0001-8612-3332; Mrenna,
Stephen/0000-0001-8731-160X; Bilki, Burak/0000-0001-9515-3306; Costa,
Salvatore/0000-0001-9919-0569; Lloret Iglesias,
Lara/0000-0002-0157-4765; Kasemann, Matthias/0000-0002-0429-2448;
Donvito, Giacinto/0000-0002-0628-1080; Petragnani,
Giulio/0000-0002-0819-6509; Bean, Alice/0000-0001-5967-8674; Longo,
Egidio/0000-0001-6238-6787; Baarmand, Marc/0000-0002-9792-8619; Nervo,
Marco/0000-0002-9898-7346; Boccali, Tommaso/0000-0002-9930-9299;
Leonardo, Nuno/0000-0002-9746-4594; Goh, Junghwan/0000-0002-1129-2083;
Govoni, Pietro/0000-0002-0227-1301; Tuominen, Eija/0000-0002-7073-7767;
Yazgan, Efe/0000-0001-5732-7950; Gerbaudo, Davide/0000-0002-4463-0878;
Vieira de Castro Ferreira da Silva, Pedro Manuel/0000-0002-5725-041X;
Actis, Oxana/0000-0001-8851-3983; Lazzizzera,
Ignazio/0000-0001-5092-7531; Xie, Si/0000-0003-2509-5731; Ozdemir,
Kadri/0000-0002-0103-1488; Della Ricca, Giuseppe/0000-0003-2831-6982;
Cordonnier, Agnes/0000-0002-4216-3524; Paganoni,
Marco/0000-0003-2461-275X; Seixas, Joao/0000-0002-7531-0842; Vilela
Pereira, Antonio/0000-0003-3177-4626; Sznajder,
Andre/0000-0001-6998-1108; Haj Ahmad, Wael/0000-0003-1491-0446; Gumus,
Kazim/0000-0002-1450-6868; Muelmenstaedt, Johannes/0000-0003-1105-6678;
Rovelli, Tiziano/0000-0002-9746-4842; Altsybeev,
Igor/0000-0002-8079-7026; TUVE', Cristina/0000-0003-0739-3153; Gulmez,
Erhan/0000-0002-6353-518X; KIM, Tae Jeong/0000-0001-8336-2434; Arce,
Pedro/0000-0003-3009-0484; Flix, Josep/0000-0003-2688-8047; Grandi,
Claudio/0000-0001-5998-3070; Sen, Sercan/0000-0001-7325-1087;
D'Alessandro, Raffaello/0000-0001-7997-0306; Trocsanyi,
Zoltan/0000-0002-2129-1279; Konecki, Marcin/0000-0001-9482-4841;
Hernandez Calama, Jose Maria/0000-0001-6436-7547; Barcala, JOSE
MIGUEL/0000-0002-1092-7091; Bedoya, Cristina/0000-0001-8057-9152;
Michelotto, Michele/0000-0001-6644-987X; Matorras,
Francisco/0000-0003-4295-5668; My, Salvatore/0000-0002-9938-2680
FU FMSR (Austria); FNRS and FWO (Belgium); CNPq; CAPES; FAPERJ; FAPESP
(Brazil); MES (Bulgaria); CERN; CAS; MoST; NSFC (China); COLCIENCIAS
(Colombia); MSES (Croatia); RPF (Cyprus); Academy of Sciences and NICPB
(Estonia); Academy of Finland, ME, and HIP (Finland); CEA; CNRS/IN2P3
(France); BMBF; DFG; HGF (Germany); GSRT (Greece); OTKA and NKTH
(Hungary); DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy);
NRF (Korea); LAS (Lithuania); CINVESTAV; CONACYT; SEP; UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA); European Union; Leventis Foundation; A. P. Sloan Foundation;
Alexander von Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 17
TC 28
Z9 28
U1 1
U2 45
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03004
DI 10.1088/1748-0221/5/03/T03004
PG 33
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100027
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
Litomin, A
Makarenko, V
Marfin, I
Mossolov, V
Shumeiko, N
Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
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Grogg, K. S.
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Jaworski, M.
Klabbers, P.
Klukas, J.
Lanaro, A.
Lazaridis, C.
Leonard, J.
Loveless, R.
de Abril, M. Magrans
Mohapatra, A.
Ott, G.
Polese, G.
Reeder, D.
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Smith, W. H.
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Swanson, J.
Weinberg, M.
Wenman, D.
Wensveen, M.
White, A.
CA CMS Collaboration
TI Performance of the CMS drift-tube chamber local trigger with cosmic rays
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Large detector systems for particle and astroparticle physics; Particle
tracking detectors (Gaseous detectors)
ID MUON TRIGGER
AB The performance of the Local Trigger based on the drift-tube system of the CMS experiment has been studied using muons from cosmic ray events collected during the commissioning of the detector in 2008. The properties of the system are extensively tested and compared with the simulation. The effect of the random arrival time of the cosmic rays on the trigger performance is reported, and the results are compared with the design expectations for proton-proton collisions and with previous measurements obtained with muon beams.
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[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
Politecn Bari, Bari, Italy.
Univ Bari, Bari, Italy.
Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
Univ Bologna, Bologna, Italy.
Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
Univ Catania, Catania, Italy.
Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
Univ Florence, Florence, Italy.
Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
Univ Milano Bicocca, Milan, Italy.
Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
Univ Naples Federico II, Naples, Italy.
Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
Univ Padua, Padua, Italy.
Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
Univ Pavia, I-27100 Pavia, Italy.
Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
Univ Perugia, I-06100 Perugia, Italy.
Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
Scuola Normale Super Pisa, Pisa, Italy.
Univ Pisa, Pisa, Italy.
Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
Univ Roma La Sapienza, Rome, Italy.
Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
Univ Piemonte Orientale Novara, Turin, Italy.
Univ Turin, Turin, Italy.
Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
Univ Trieste, Trieste, Italy.
Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
Univ Seoul, Seoul, South Korea.
Sungkyunkwan Univ, Suwon, South Korea.
Vilnius State Univ, Vilnius, Lithuania.
IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
Univ Iberoamer, Mexico City, DF, Mexico.
Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
Univ Auckland, Auckland 1, New Zealand.
Univ Canterbury, Christchurch 1, New Zealand.
Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
Joint Inst Nucl Res, Dubna, Russia.
Petersburg Nucl Phys Inst, St Petersburg, Russia.
Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
Inst Theoret & Expt Phys, Moscow 117259, Russia.
Moscow MV Lomonosov State Univ, Moscow, Russia.
PN Lebedev Phys Inst, Moscow 117924, Russia.
Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
Vinca Inst Nucl Sci, Belgrade, Serbia.
CIEMAT, Madrid, Spain.
Univ Autonoma Madrid, Madrid, Spain.
Univ Oviedo, Oviedo, Spain.
Univ Cantabria, CSIC, Inst Fis Cantabria IFCA, E-39005 Santander, Spain.
CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
Paul Scherrer Inst, Villigen, Switzerland.
ETH, Inst Particle Phys, Zurich, Switzerland.
Univ Zurich, Zurich, Switzerland.
Natl Cent Univ, Chungli 32054, Taiwan.
Natl Taiwan Univ, Taipei 10764, Taiwan.
Cukurova Univ, Adana, Turkey.
Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
Bogazici Univ, Dept Phys, Istanbul, Turkey.
Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
Univ Bristol, Bristol, Avon, England.
Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
Univ London, Imperial Coll, London, England.
Brunel Univ, Uxbridge UB8 3PH, Middx, England.
Boston Univ, Boston, MA 02215 USA.
Brown Univ, Providence, RI 02912 USA.
Univ Calif Davis, Davis, CA 95616 USA.
Univ Calif Los Angeles, Los Angeles, CA USA.
Univ Calif Riverside, Riverside, CA 92521 USA.
Univ Calif San Diego, La Jolla, CA 92093 USA.
Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
CALTECH, Pasadena, CA 91125 USA.
Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
Univ Colorado, Boulder, CO 80309 USA.
Cornell Univ, Ithaca, NY USA.
Fairfield Univ, Fairfield, CT 06430 USA.
Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
Univ Florida, Gainesville, FL USA.
Florida Int Univ, Miami, FL 33199 USA.
Florida State Univ, Tallahassee, FL 32306 USA.
Univ Illinois, Chicago, IL USA.
[Cankocak, K.] Univ Iowa, Iowa City, IA USA.
Johns Hopkins Univ, Baltimore, MD USA.
Univ Kansas, Lawrence, KS 66045 USA.
Kansas State Univ, Manhattan, KS 66506 USA.
Lawrence Livermore Natl Lab, Livermore, CA USA.
Univ Maryland, College Pk, MD 20742 USA.
MIT, Cambridge, MA 02139 USA.
Univ Minnesota, Minneapolis, MN USA.
Univ Mississippi, University, MS 38677 USA.
Univ Nebraska, Lincoln, NE USA.
SUNY Buffalo, Buffalo, NY 14260 USA.
Northeastern Univ, Boston, MA 02115 USA.
Northwestern Univ, Evanston, IL USA.
Univ Notre Dame, Notre Dame, IN 46556 USA.
Ohio State Univ, Columbus, OH 43210 USA.
Princeton Univ, Princeton, NJ 08544 USA.
Univ Puerto Rico, Mayaguez, PR USA.
Purdue Univ, W Lafayette, IN 47907 USA.
Purdue Univ Calumet, Hammond, LA USA.
Rice Univ, Houston, TX USA.
Univ Rochester, Rochester, NY 14627 USA.
Rockefeller Univ, New York, NY 10021 USA.
Rutgers State Univ, Piscataway, NJ USA.
Univ Tennessee, Knoxville, TN USA.
Texas A&M Univ, College Stn, TX USA.
Texas Tech Univ, Lubbock, TX 79409 USA.
Vanderbilt Univ, Nashville, TN USA.
Univ Virginia, Charlottesville, VA USA.
Wayne State Univ, Detroit, MI USA.
Univ Wisconsin, Madison, WI 53706 USA.
Univ Fed ABC, Santo Andre, Brazil.
Univ Haute Alsace, Mulhouse, France.
IN2P3, Ctr Calcul, Inst Natl Phys Nucl & Phys Particules, Villeurbanne, France.
Visva Bharati Univ, Santini Ketan, W Bengal, India.
Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
Univ Basilicata, I-85100 Potenza, Italy.
Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
Univ Trent, Trento, Italy.
ENEA Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
Alstom Contracting, Geneva, Switzerland.
Ist Nazl Fis Nucl, Scuola Normale & Sez, Pisa, Italy.
Univ Athens, Athens, Greece.
Mersin Univ, Mersin, Turkey.
Izmir Inst Technol, Izmir, Turkey.
Kafkas Univ, Kars, Turkey.
Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
Ege Univ, Izmir, Turkey.
[Cankocak, K.] Istanbul Tech Univ, Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Venturi, Andrea/J-1877-2012; de Jesus Damiao, Dilson/G-6218-2012;
Montanari, Alessandro/J-2420-2012; Amapane, Nicola/J-3683-2012; tosi,
mia/J-5777-2012; Klyukhin, Vyacheslav/D-6850-2012; Petrushanko,
Sergey/D-6880-2012; Raidal, Martti/F-4436-2012; Vardanyan,
Irina/K-7981-2012; Novaes, Sergio/D-3532-2012; Kadastik,
Mario/B-7559-2008; Mundim, Luiz/A-1291-2012; Kodolova, Olga/D-7158-2012;
Dudko, Lev/D-7127-2012; Boos, Eduard/D-9748-2012; Snigirev,
Alexander/D-8912-2012; Chipaux, Remi/G-1145-2010; Servoli,
Leonello/E-6766-2012; Tomei, Thiago/E-7091-2012; Focardi,
Ettore/E-7376-2012; Fruhwirth, Rudolf/H-2529-2012; Azzi,
Patrizia/H-5404-2012; Torassa, Ezio/I-1788-2012; Giacomelli,
Paolo/B-8076-2009; Jeitler, Manfred/H-3106-2012; Romaniuk,
Ryszard/B-9140-2011; Ruiz, Alberto/E-4473-2011; Stahl,
Achim/E-8846-2011; Hektor, Andi/G-1804-2011; Wulz,
Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Tinoco Mendes, Andre
David/D-4314-2011; Lokhtin, Igor/D-7004-2012; Horvath,
Dezso/A-4009-2011; Palinkas, Jozsef/B-2993-2011; Varela,
Joao/K-4829-2016; Sguazzoni, Giacomo/J-4620-2015; Ligabue,
Franco/F-3432-2014; Fassi, Farida/F-3571-2016; Menasce, Dario
Livio/A-2168-2016; Bargassa, Pedrame/O-2417-2016; Leonardo,
Nuno/M-6940-2016; Goh, Junghwan/Q-3720-2016; Govoni, Pietro/K-9619-2016;
Tuominen, Eija/A-5288-2017; Yazgan, Efe/C-4521-2014; Gerbaudo,
Davide/J-4536-2012; Lazzizzera, Ignazio/E-9678-2015; Della Ricca,
Giuseppe/B-6826-2013; Fedorov, Andrei/E-9455-2014; Konovalova,
Nina/D-3882-2014; Cordonnier, Agnes/I-5083-2016; Paganoni,
Marco/A-4235-2016; Kirakosyan, Martin/N-2701-2015; Seixas,
Joao/F-5441-2013; Verwilligen, Piet/M-2968-2014; Vilela Pereira,
Antonio/L-4142-2016; Sznajder, Andre/L-1621-2016; Haj Ahmad,
Wael/E-6738-2016; Xie, Si/O-6830-2016; Muelmenstaedt,
Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015; Dremin,
Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Altsybeev, Igor/K-6687-2013; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
korzhik, Mikhail/E-9505-2014; Sen, Sercan/C-6473-2014; D'Alessandro,
Raffaello/F-5897-2015; Trocsanyi, Zoltan/A-5598-2009; Konecki,
Marcin/G-4164-2015; Hernandez Calama, Jose Maria/H-9127-2015; Barcala,
JOSE MIGUEL/I-1105-2015; Bedoya, Cristina/K-8066-2014; Michelotto,
Michele/A-9571-2013; Matorras, Francisco/I-4983-2015; My,
Salvatore/I-5160-2015; Gumus, Kazim/G-2498-2013; Josa,
Isabel/K-5184-2014; Navarrete Marin, Jose Javier/K-6412-2014; Marin,
Jesus/K-6991-2014; Gonzalez Suarez, Rebeca/L-6128-2014; Calvo Alamillo,
Enrique/L-1203-2014; Paulini, Manfred/N-7794-2014; Vogel,
Helmut/N-8882-2014; Ferguson, Thomas/O-3444-2014; Ragazzi,
Stefano/D-2463-2009; Benussi, Luigi/O-9684-2014; Russ,
James/P-3092-2014; Grandi, Claudio/B-5654-2015; Ahmed, Ijaz/E-9144-2015;
Alves, Gilvan/C-4007-2013; Santoro, Alberto/E-7932-2014; Codispoti,
Giuseppe/F-6574-2014; Bellan, Riccardo/G-2139-2014; Petrucci,
Andrea/J-4207-2014; Gribushin, Andrei/J-4225-2012; Cerrada,
Marcos/J-6934-2014; Calderon, Alicia/K-3658-2014; Oller, Juan
Carlos/K-6445-2014; Molinero, Antonio/H-7347-2013; de la Cruz,
Begona/K-7552-2014; Scodellaro, Luca/K-9091-2014; Santaolalla,
Javier/C-3094-2013; Gavrilov, Gennady/C-6260-2013; Rolandi, Luigi
(Gigi)/E-8563-2013; Zalewski, Piotr/H-7335-2013; Cavallo,
Nicola/F-8913-2012; Dvornikov, Oleg/I-7207-2013; Hill,
Christopher/B-5371-2012; Kuleshov, Sergey/D-9940-2013; Troitsky,
Sergey/C-1377-2014; Marlow, Daniel/C-9132-2014; Oguri,
Vitor/B-5403-2013; Janssen, Xavier/E-1915-2013
OI de Jesus Damiao, Dilson/0000-0002-3769-1680; Montanari,
Alessandro/0000-0003-2748-6373; Amapane, Nicola/0000-0001-9449-2509;
Klyukhin, Vyacheslav/0000-0002-8577-6531; Novaes,
Sergio/0000-0003-0471-8549; Mundim, Luiz/0000-0001-9964-7805; Dudko,
Lev/0000-0002-4462-3192; Servoli, Leonello/0000-0003-1725-9185; Tomei,
Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267; Azzi,
Patrizia/0000-0002-3129-828X; Romaniuk, Ryszard/0000-0002-5710-4041;
Ruiz, Alberto/0000-0002-3639-0368; Stahl, Achim/0000-0002-8369-7506;
Hektor, Andi/0000-0001-7873-8118; Wulz,
Claudia-Elisabeth/0000-0001-9226-5812; Krammer,
Manfred/0000-0003-2257-7751; Tinoco Mendes, Andre
David/0000-0001-5854-7699; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Torassa,
Ezio/0000-0003-2321-0599; Luukka, Panja/0000-0003-2340-4641; Sogut,
Kenan/0000-0002-9682-2855; Mackay, Catherine/0000-0003-4252-6740;
Bonnett Del Alamo, Miguel Reinaldo/0000-0002-1011-8411; Faccioli,
Pietro/0000-0003-1849-6692; Korenkov, Vladimir/0000-0002-2342-7862;
Giubilato, Piero/0000-0003-4358-5355; Gallinaro,
Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Ghezzi, Alessio/0000-0002-8184-7953;
Demaria, Natale/0000-0003-0743-9465; Benaglia, Andrea
Davide/0000-0003-1124-8450; Covarelli, Roberto/0000-0003-1216-5235;
Ciulli, Vitaliano/0000-0003-1947-3396; Martelli,
Arabella/0000-0003-3530-2255; Levchenko, Petr/0000-0003-4913-0538;
Uliyanov, Alexey/0000-0001-6935-8949; Varela, Joao/0000-0003-2613-3146;
Lloret Iglesias, Lara/0000-0002-0157-4765; Donvito,
Giacinto/0000-0002-0628-1080; Sguazzoni, Giacomo/0000-0002-0791-3350;
Ligabue, Franco/0000-0002-1549-7107; Diemoz,
Marcella/0000-0002-3810-8530; Tricomi, Alessia Rita/0000-0002-5071-5501;
CALZOLARI, FEDERICO/0000-0002-5510-3061; Fassi,
Farida/0000-0002-6423-7213; Longo, Egidio/0000-0001-6238-6787; Baarmand,
Marc/0000-0002-9792-8619; Nervo, Marco/0000-0002-9898-7346; Boccali,
Tommaso/0000-0002-9930-9299; Menasce, Dario Livio/0000-0002-9918-1686;
Bargassa, Pedrame/0000-0001-8612-3332; Bilki, Burak/0000-0001-9515-3306;
Leonardo, Nuno/0000-0002-9746-4594; Goh, Junghwan/0000-0002-1129-2083;
Govoni, Pietro/0000-0002-0227-1301; Tuominen, Eija/0000-0002-7073-7767;
Yazgan, Efe/0000-0001-5732-7950; Gerbaudo, Davide/0000-0002-4463-0878;
Vieira de Castro Ferreira da Silva, Pedro Manuel/0000-0002-5725-041X;
Actis, Oxana/0000-0001-8851-3983; Lazzizzera,
Ignazio/0000-0001-5092-7531; Bean, Alice/0000-0001-5967-8674; Della
Ricca, Giuseppe/0000-0003-2831-6982; Cordonnier,
Agnes/0000-0002-4216-3524; Paganoni, Marco/0000-0003-2461-275X; Seixas,
Joao/0000-0002-7531-0842; Vilela Pereira, Antonio/0000-0003-3177-4626;
Sznajder, Andre/0000-0001-6998-1108; Haj Ahmad,
Wael/0000-0003-1491-0446; Xie, Si/0000-0003-2509-5731; Muelmenstaedt,
Johannes/0000-0003-1105-6678; Rovelli, Tiziano/0000-0002-9746-4842;
Altsybeev, Igor/0000-0002-8079-7026; TUVE',
Cristina/0000-0003-0739-3153; Gulmez, Erhan/0000-0002-6353-518X; KIM,
Tae Jeong/0000-0001-8336-2434; Flix, Josep/0000-0003-2688-8047; Ozdemir,
Kadri/0000-0002-0103-1488; Sen, Sercan/0000-0001-7325-1087;
D'Alessandro, Raffaello/0000-0001-7997-0306; Trocsanyi,
Zoltan/0000-0002-2129-1279; Konecki, Marcin/0000-0001-9482-4841;
Hernandez Calama, Jose Maria/0000-0001-6436-7547; Barcala, JOSE
MIGUEL/0000-0002-1092-7091; Bedoya, Cristina/0000-0001-8057-9152;
Michelotto, Michele/0000-0001-6644-987X; Matorras,
Francisco/0000-0003-4295-5668; My, Salvatore/0000-0002-9938-2680; Gumus,
Kazim/0000-0002-1450-6868; Navarrete Marin, Jose
Javier/0000-0002-6220-8638; Marin, Jesus/0000-0002-9049-3667; Gonzalez
Suarez, Rebeca/0000-0002-6126-7230; Calvo Alamillo,
Enrique/0000-0002-1100-2963; Paulini, Manfred/0000-0002-6714-5787;
Vogel, Helmut/0000-0002-6109-3023; Ferguson, Thomas/0000-0001-5822-3731;
Ragazzi, Stefano/0000-0001-8219-2074; Benussi,
Luigi/0000-0002-2363-8889; Russ, James/0000-0001-9856-9155; Grandi,
Claudio/0000-0001-5998-3070; Codispoti, Giuseppe/0000-0003-0217-7021;
Petrucci, Andrea/0000-0003-2524-8355; Cerrada,
Marcos/0000-0003-0112-1691; Oller, Juan Carlos/0000-0002-2754-2788;
Scodellaro, Luca/0000-0002-4974-8330; Rolandi, Luigi
(Gigi)/0000-0002-0635-274X; Hill, Christopher/0000-0003-0059-0779;
Kuleshov, Sergey/0000-0002-3065-326X; Troitsky,
Sergey/0000-0001-6917-6600;
FU FMSR (Austria); FNRS and FWO (Belgium); CNPq; CAPES; FAPERJ; FAPESP
(Brazil); MES (Bulgaria); CERN; CAS; MoST; NSFC (China); COLCIENCIAS
(Colombia); MSES (Croatia); RPF (Cyprus); Academy of Sciences and NICPB
(Estonia); ME; HIP; Academy of Finland (Finland); CEA; CNRS/IN2P3
(France); BMBF and DESY (Germany); DFG; HGF (Germany); GSRT (Greece);
OTKA; NKTH (Hungary); DAE and DST (India); IPM (Iran); SFI (Ireland);
INFN (Italy); NRF (Korea); LAS (Lithuania); CINVESTAV; CONACYT; SEP;
UASLP-FAI (Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR
(Armenia, Belarus, Georgia, Ukraine, Uzbekistan); MST; MAE (Russia);
MSTDS (Serbia); MCINN; CPAN (Spain); Swiss Funding Agencies
(Switzerland); NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United
Kingdom); DOE; NSF (U.S.A.); European Union; Leventis Foundation; A. P.
Sloan Foundation; Alexander von Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia); ME,
HIP and Academy of Finland (Finland); CEA and CNRS/IN2P3 (France); BMBF
and DESY (Germany); BMBF, DFG and HGF (Germany); GSRT (Greece); OTKA and
NKTH (Hungary); DAE and DST (India); IPM (Iran); SFI (Ireland); INFN
(Italy); NRF (Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP and
UASLP-FAI (Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR
(Armenia, Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia);
MSTDS (Serbia); MCINN and CPAN (Spain); Swiss Funding Agencies
(Switzerland); NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United
Kingdom); DOE and NSF (U.S.A.). Individuals have received support from
the Marie-Curie IEF program (European Union); the Leventis Foundation;
the A. P. Sloan Foundation; and the Alexander von Humboldt Foundation.
NR 17
TC 28
Z9 28
U1 0
U2 50
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03003
DI 10.1088/1748-0221/5/03/T03003
PG 34
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100028
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
Litomin, A
Makarenko, V
Marfin, I
Mossolov, V
Shumeiko, N
Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
Fedorov, A
Karneyeu, A
Korzhik, M
Panov, V
Zuyeuski, R
Kuchinsky, P
Beaumont, W
Benucci, L
Cardaci, M
De Wolf, EA
Delmeire, E
Druzhkin, D
Hashemi, M
Janssen, X
Maes, T
Mucibello, L
Ochesanu, S
Rougny, R
Selvaggi, M
Van Haevermaet, H
Van Mechelen, P
Van Remortel, N
Adler, V
Beauceron, S
Blyweert, S
D'Hondt, J
De Weirdt, S
Devroede, O
Heyninck, J
Kalogeropoulos, A
Maes, J
Maes, M
Mozer, MU
Tavernier, S
Van Doninck, W
Van Mulders, P
Villella, I
Bouhali, O
Chabert, EC
Charaf, O
Clerbaux, B
De Lentdecker, G
Dero, V
Elgammal, S
Gay, APR
Hammad, GH
Marage, PE
Rugovac, S
Vander Velde, C
Vanlaer, P
Wickens, J
Grunewald, M
Klein, B
Marinov, A
Ryckbosch, D
Thyssen, F
Tytgat, M
Vanelderen, L
Verwilligen, P
Basegmez, S
Bruno, G
Caudron, J
Delaere, C
Demin, P
Favart, D
Giammanco, A
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de Abril, M. Magrans
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CA CMS Collaboration
TI Commissioning of the CMS High-Level Trigger with cosmic rays
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Trigger concepts and systems (hardware and software); Online farms and
online filtering
AB The CMS High-Level Trigger (HLT) is responsible for ensuring that data samples with potentially interesting events are recorded with high efficiency and good quality. This paper gives an overview of the HLT and focuses on its commissioning using cosmic rays. The selection of triggers that were deployed is presented and the online grouping of triggered events into streams and primary datasets is discussed. Tools for online and offline data quality monitoring for the HLT are described, and the operational performance of the muon HLT algorithms is reviewed. The average time taken for the HLT selection and its dependence on detector and operating conditions are presented. The HLT performed reliably and helped provide a large dataset. This dataset has proven to be invaluable for understanding the performance of the trigger and the CMS experiment as a whole.
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[Abbrescia, M.; De Palma, M.; Lusito, L.; Manna, N.; Marangelli, B.; Natali, S.; Nuzzo, S.; Pompili, A.; Roselli, G.; Selvaggi, G.; Tupputi, S.] Univ Bari, Bari, Italy.
[Creanza, D.; Iaselli, G.; Maggi, G.; My, S.; Pugliese, G.; Romano, F.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Bacchi, W.; Braibant-Giacomelli, S.; Capiluppi, P.; Castro, A.; Codispoti, G.; Cuffiani, M.; Fanfani, A.; Masetti, G.; Navarria, F. L.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Broccolo, G.; Ciulli, V.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Genta, C.; Landi, G.; Lenzi, P.] Univ Florence, Florence, Italy.
[Fabbri, F.; Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Cerati, G. B.; Govoni, P.; Malberti, M.; Miccio, V.; Negri, P.; Paganoni, M.; Pullia, A.; Ragazzi, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Cimmino, A.; De Gruttola, M.; Noli, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Bellan, P.; Bisello, D.; Borsato, E.; Carlin, R.; De Mattia, M.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Kaminskiy, A.; Margoni, M.; Mattiazzo, S.; Meneguzzo, A. T.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Tosi, M.; Vanini, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Baesso, P.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Biasini, M.; Caponeri, B.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Santocchia, A.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bocci, A.; Borrello, L.; Foa, L.; Gennai, S.; Ligabue, F.; Petrucciani, G.] Scuola Normale Super Pisa, Pisa, Italy.
[Bernardini, J.; Fiori, F.; Messineo, A.; Tonelli, G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Barone, L.; Del Re, D.; Di Marco, E.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Rahatlou, S.] Univ Roma La Sapienza, Rome, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Arneodo, M.; Obertino, M. M.; Ruspa, M.] Univ Piemonte Orientale Novara, Turin, Italy.
[Amapane, N.; Arcidiacono, R.; Argiro, S.; Borgia, M. A.; Botta, C.; Castello, R.; Cerminara, G.; Costa, M.; Graziano, A.; Marone, M.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Oggero, S.; Pelliccioni, M.; Romero, A.; Sacchi, R.; Solano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.] Univ Turin, Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Ambroglini, F.; Della Ricca, G.] Univ Trieste, Trieste, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius State Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Pedro, L. Antunes; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Ferreira, M. Freitas; Gallinaro, M.; Jordao, M. Guerra; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Pelayo, J. Puerta; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] Ctr Invest Energet Medioambientales & Tecnol CIEM, Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Ruiz del Arbol, P. Martinez; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, CSIC, Inst Fis Cantabria IFCA, E-39005 Santander, Spain.
[Sharma, A.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Erdmann, M.; Bertl, W.; Deiters, K.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Weber, M.; Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, S. W.] Natl Cent Univ, Chungli 32054, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Hansen, M.; Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London, Imperial Coll, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Bhattacharya, S.; Andrea, J.; Avetisyan, A.; Chou, J. P.; Cutts, D.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.; Carlsmith, D.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Liu, H.; Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
Fairfield Univ, Fairfield, CT 06430 USA.
Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
Univ Florida, Gainesville, FL USA.
Florida Int Univ, Miami, FL 33199 USA.
Florida State Univ, Tallahassee, FL 32306 USA.
Florida Inst Technol, Melbourne, FL 32901 USA.
Univ Illinois, Chicago, IL USA.
Univ Iowa, Iowa City, IA USA.
Johns Hopkins Univ, Baltimore, MD USA.
Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
Univ Maryland, College Pk, MD 20742 USA.
MIT, Cambridge, MA 02139 USA.
[Schroeder, M.; Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Sanders, S.; Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Kumar, A.; Baur, U.; Iashvili, I.; Kharchilava, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Schmitt, M.; Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Stoynev, S.; Velasco, M.; Won, S.] Northeastern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Kim, H.; Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Bluj, M.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Agram, J. -L.; Conte, E.; Drouhin, F.; Fontaine, J. -C.] Univ Haute Alsace, Mulhouse, France.
[Fassi, F.] Inst Natl Phys Nucl & Phys Particules IN2P3, Ctr Calcul, Villeurbanne, France.
[Horvath, D.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Guchait, M.] Tata Inst Fundamental Res HECR, Mumbai, Maharashtra, India.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
Univ Basilicata, I-85100 Potenza, Italy.
[Biasotto, M.; Gulmini, M.; Lacaprara, S.; Maron, G.] Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
[Gresele, A.; Lazzizzera, I.] Univ Trent, Trento, Italy.
ENEA Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Jovanovic, D.; Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade, Serbia.
[Beaudette, F.] CNRS, IN2P3, Lab Leprince Ringuet, Ecole Polytech, Palaiseau, France.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
Ist Nazl Fis Nucl, Scuola Normale Sez, Pisa, Italy.
[Sphicas, P.] Univ Athens, Athens, Greece.
[Starodumov, A.; Nikitenko, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Milenovic, P.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Ozkorucuklu, S.] Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Pasztor, G.] KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
[Cankocak, K.] Istanbul Tech Univ, TR-80626 Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Venturi, Andrea/J-1877-2012; de Jesus Damiao, Dilson/G-6218-2012;
Montanari, Alessandro/J-2420-2012; Amapane, Nicola/J-3683-2012; tosi,
mia/J-5777-2012; Klyukhin, Vyacheslav/D-6850-2012; Petrushanko,
Sergey/D-6880-2012; Raidal, Martti/F-4436-2012; Vardanyan,
Irina/K-7981-2012; Novaes, Sergio/D-3532-2012; Della Ricca,
Giuseppe/B-6826-2013; Kadastik, Mario/B-7559-2008; Kodolova,
Olga/D-7158-2012; Dudko, Lev/D-7127-2012; Boos, Eduard/D-9748-2012;
Snigirev, Alexander/D-8912-2012; Chipaux, Remi/G-1145-2010; Servoli,
Leonello/E-6766-2012; Tomei, Thiago/E-7091-2012; Focardi,
Ettore/E-7376-2012; Fruhwirth, Rudolf/H-2529-2012; Azzi,
Patrizia/H-5404-2012; Torassa, Ezio/I-1788-2012; Giacomelli,
Paolo/B-8076-2009; Jeitler, Manfred/H-3106-2012; Romaniuk,
Ryszard/B-9140-2011; Ruiz, Alberto/E-4473-2011; Stahl,
Achim/E-8846-2011; Hektor, Andi/G-1804-2011; Wulz,
Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Tinoco Mendes, Andre
David/D-4314-2011; Lokhtin, Igor/D-7004-2012; Horvath,
Dezso/A-4009-2011; Palinkas, Jozsef/B-2993-2011; Varela,
Joao/K-4829-2016; Fassi, Farida/F-3571-2016; Ligabue,
Franco/F-3432-2014; Sguazzoni, Giacomo/J-4620-2015; Menasce, Dario
Livio/A-2168-2016; Bargassa, Pedrame/O-2417-2016; Govoni,
Pietro/K-9619-2016; Tuominen, Eija/A-5288-2017; Yazgan, Efe/C-4521-2014;
Gerbaudo, Davide/J-4536-2012; Fedorov, Andrei/E-9455-2014; Konovalova,
Nina/D-3882-2014; Cordonnier, Agnes/I-5083-2016; Paganoni,
Marco/A-4235-2016; Kirakosyan, Martin/N-2701-2015; Seixas,
Joao/F-5441-2013; Verwilligen, Piet/M-2968-2014; Vilela Pereira,
Antonio/L-4142-2016; Sznajder, Andre/L-1621-2016; Haj Ahmad,
Wael/E-6738-2016; Xie, Si/O-6830-2016; Leonardo, Nuno/M-6940-2016; Goh,
Junghwan/Q-3720-2016; Muelmenstaedt, Johannes/K-2432-2015; Rovelli,
Tiziano/K-4432-2015; Dremin, Igor/K-8053-2015; Hoorani,
Hafeez/D-1791-2013; Vinogradov, Alexander/M-5331-2015; Altsybeev,
Igor/K-6687-2013; TUVE', Cristina/P-3933-2015; Gulmez,
Erhan/P-9518-2015; KIM, Tae Jeong/P-7848-2015; Flix, Josep/G-5414-2012;
Ozdemir, Kadri/P-8058-2014; korzhik, Mikhail/E-9505-2014; Lazzizzera,
Ignazio/E-9678-2015; Sen, Sercan/C-6473-2014; D'Alessandro,
Raffaello/F-5897-2015; Trocsanyi, Zoltan/A-5598-2009; Konecki,
Marcin/G-4164-2015; Hernandez Calama, Jose Maria/H-9127-2015; Barcala,
JOSE MIGUEL/I-1105-2015; Bedoya, Cristina/K-8066-2014; Michelotto,
Michele/A-9571-2013; Matorras, Francisco/I-4983-2015; My,
Salvatore/I-5160-2015; Gumus, Kazim/G-2498-2013; Josa,
Isabel/K-5184-2014; Navarrete Marin, Jose Javier/K-6412-2014; Marin,
Jesus/K-6991-2014; Gonzalez Suarez, Rebeca/L-6128-2014; Calvo Alamillo,
Enrique/L-1203-2014; Paulini, Manfred/N-7794-2014; Vogel,
Helmut/N-8882-2014; Ferguson, Thomas/O-3444-2014; Ragazzi,
Stefano/D-2463-2009; Benussi, Luigi/O-9684-2014; Russ,
James/P-3092-2014; Grandi, Claudio/B-5654-2015; Ahmed, Ijaz/E-9144-2015;
Janssen, Xavier/E-1915-2013; Alves, Gilvan/C-4007-2013; Codispoti,
Giuseppe/F-6574-2014; Bellan, Riccardo/G-2139-2014; Petrucci,
Andrea/J-4207-2014; Gribushin, Andrei/J-4225-2012; Cerrada,
Marcos/J-6934-2014; Calderon, Alicia/K-3658-2014; Oller, Juan
Carlos/K-6445-2014; Molinero, Antonio/H-7347-2013; de la Cruz,
Begona/K-7552-2014; Scodellaro, Luca/K-9091-2014; Mundim,
Luiz/A-1291-2012; Santaolalla, Javier/C-3094-2013; Gavrilov,
Gennady/C-6260-2013; Rolandi, Luigi (Gigi)/E-8563-2013; Zalewski,
Piotr/H-7335-2013; Cavallo, Nicola/F-8913-2012; Dvornikov,
Oleg/I-7207-2013; Hill, Christopher/B-5371-2012; Kuleshov,
Sergey/D-9940-2013; Troitsky, Sergey/C-1377-2014; Marlow,
Daniel/C-9132-2014; Oguri, Vitor/B-5403-2013
OI Luukka, Panja/0000-0003-2340-4641; Goldstein, Joel/0000-0003-1591-6014;
Sogut, Kenan/0000-0002-9682-2855; de Jesus Damiao,
Dilson/0000-0002-3769-1680; Montanari, Alessandro/0000-0003-2748-6373;
Amapane, Nicola/0000-0001-9449-2509; Klyukhin,
Vyacheslav/0000-0002-8577-6531; Novaes, Sergio/0000-0003-0471-8549;
Della Ricca, Giuseppe/0000-0003-2831-6982; Dudko,
Lev/0000-0002-4462-3192; Servoli, Leonello/0000-0003-1725-9185; Tomei,
Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267; Azzi,
Patrizia/0000-0002-3129-828X; Romaniuk, Ryszard/0000-0002-5710-4041;
Ruiz, Alberto/0000-0002-3639-0368; Stahl, Achim/0000-0002-8369-7506;
Hektor, Andi/0000-0001-7873-8118; Wulz,
Claudia-Elisabeth/0000-0001-9226-5812; Krammer,
Manfred/0000-0003-2257-7751; Tinoco Mendes, Andre
David/0000-0001-5854-7699; Heath, Helen/0000-0001-6576-9740; Giubilato,
Piero/0000-0003-4358-5355; Gallinaro, Michele/0000-0003-1261-2277;
Tabarelli de Fatis, Tommaso/0000-0001-6262-4685; Zabolotny,
Wojciech/0000-0002-6833-4846; Lenzi, Piergiulio/0000-0002-6927-8807;
Gutsche, Oliver/0000-0002-8015-9622; Torassa, Ezio/0000-0003-2321-0599;
Varela, Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109;
Toback, David/0000-0003-3457-4144; Mackay,
Catherine/0000-0003-4252-6740; HSIUNG, YEE/0000-0003-4801-1238; Bonnett
Del Alamo, Miguel Reinaldo/0000-0002-1011-8411; Faccioli,
Pietro/0000-0003-1849-6692; Korenkov, Vladimir/0000-0002-2342-7862;
Stober, Fred/0000-0003-2620-3159; Martelli,
Arabella/0000-0003-3530-2255; Abbiendi, Giovanni/0000-0003-4499-7562;
Levchenko, Petr/0000-0003-4913-0538; Uliyanov,
Alexey/0000-0001-6935-8949; Arneodo, Michele/0000-0002-7790-7132;
Sciacca, Crisostomo/0000-0002-8412-4072; Fassi,
Farida/0000-0002-6423-7213; Leonidopoulos, Christos/0000-0002-7241-2114;
Blekman, Freya/0000-0002-7366-7098; Ghezzi, Alessio/0000-0002-8184-7953;
bianco, stefano/0000-0002-8300-4124; Demaria,
Natale/0000-0003-0743-9465; Benaglia, Andrea Davide/0000-0003-1124-8450;
Covarelli, Roberto/0000-0003-1216-5235; Staiano,
Amedeo/0000-0003-1803-624X; Ciulli, Vitaliano/0000-0003-1947-3396;
Tonelli, Guido Emilio/0000-0003-2606-9156; Beuselinck,
Raymond/0000-0003-2613-7446; Ligabue, Franco/0000-0002-1549-7107;
Diemoz, Marcella/0000-0002-3810-8530; Hamel de Monchenault,
Gautier/0000-0002-3872-3592; Landsberg, Greg/0000-0002-4184-9380; Rizzi,
Andrea/0000-0002-4543-2718; Gershtein, Yuri/0000-0002-4871-5449;
Tricomi, Alessia Rita/0000-0002-5071-5501; CALZOLARI,
FEDERICO/0000-0002-5510-3061; Malik, Sudhir/0000-0002-6356-2655;
Dharmaraatna, Welathantri/0000-0002-6366-837X; Giacomelli,
Paolo/0000-0002-6368-7220; Mrenna, Stephen/0000-0001-8731-160X; Bilki,
Burak/0000-0001-9515-3306; Costa, Salvatore/0000-0001-9919-0569; Lloret
Iglesias, Lara/0000-0002-0157-4765; Kasemann,
Matthias/0000-0002-0429-2448; Donvito, Giacinto/0000-0002-0628-1080;
Petragnani, Giulio/0000-0002-0819-6509; Sguazzoni,
Giacomo/0000-0002-0791-3350; WANG, MIN-ZU/0000-0002-0979-8341; Longo,
Egidio/0000-0001-6238-6787; Baarmand, Marc/0000-0002-9792-8619; Nervo,
Marco/0000-0002-9898-7346; Boccali, Tommaso/0000-0002-9930-9299;
Menasce, Dario Livio/0000-0002-9918-1686; Bargassa,
Pedrame/0000-0001-8612-3332; Govoni, Pietro/0000-0002-0227-1301;
Tuominen, Eija/0000-0002-7073-7767; Yazgan, Efe/0000-0001-5732-7950;
Gerbaudo, Davide/0000-0002-4463-0878; Vieira de Castro Ferreira da
Silva, Pedro Manuel/0000-0002-5725-041X; Actis,
Oxana/0000-0001-8851-3983; Bean, Alice/0000-0001-5967-8674; Cordonnier,
Agnes/0000-0002-4216-3524; Paganoni, Marco/0000-0003-2461-275X; Seixas,
Joao/0000-0002-7531-0842; Vilela Pereira, Antonio/0000-0003-3177-4626;
Sznajder, Andre/0000-0001-6998-1108; Haj Ahmad,
Wael/0000-0003-1491-0446; Xie, Si/0000-0003-2509-5731; Leonardo,
Nuno/0000-0002-9746-4594; Goh, Junghwan/0000-0002-1129-2083;
Muelmenstaedt, Johannes/0000-0003-1105-6678; Rovelli,
Tiziano/0000-0002-9746-4842; Altsybeev, Igor/0000-0002-8079-7026; TUVE',
Cristina/0000-0003-0739-3153; Gulmez, Erhan/0000-0002-6353-518X; KIM,
Tae Jeong/0000-0001-8336-2434; Flix, Josep/0000-0003-2688-8047; Ozdemir,
Kadri/0000-0002-0103-1488; Lazzizzera, Ignazio/0000-0001-5092-7531; Sen,
Sercan/0000-0001-7325-1087; D'Alessandro, Raffaello/0000-0001-7997-0306;
Trocsanyi, Zoltan/0000-0002-2129-1279; Konecki,
Marcin/0000-0001-9482-4841; Hernandez Calama, Jose
Maria/0000-0001-6436-7547; Barcala, JOSE MIGUEL/0000-0002-1092-7091;
Bedoya, Cristina/0000-0001-8057-9152; Michelotto,
Michele/0000-0001-6644-987X; Matorras, Francisco/0000-0003-4295-5668;
My, Salvatore/0000-0002-9938-2680; Gumus, Kazim/0000-0002-1450-6868;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070;
Codispoti, Giuseppe/0000-0003-0217-7021; Petrucci,
Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Scodellaro, Luca/0000-0002-4974-8330;
Mundim, Luiz/0000-0001-9964-7805; Rolandi, Luigi
(Gigi)/0000-0002-0635-274X; Hill, Christopher/0000-0003-0059-0779;
Kuleshov, Sergey/0000-0002-3065-326X; Troitsky,
Sergey/0000-0001-6917-6600;
FU FMSR (Austria); FNRS and FWO (Belgium); CNPq; CAPES; FAPERJ; FAPESP
(Brazil); MES (Bulgaria); CERN; CAS; MoST; NSFC (China); COLCIENCIAS
(Colombia); MSES (Croatia); RPF (Cyprus); Academy of Sciences and NICPB
(Estonia); Academy of Finland; ME; HIP (Finland); CEA and CNRS/IN2P3
(France); BMBF; DFG; HGF (Germany); GSRT (Greece); OTKA and NKTH
(Hungary); DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy);
NRF (Korea); LAS (Lithuania); CINVESTAV; CONACYT; SEP; UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA); European Union; Leventis Foundation; A. P. Sloan Foundation;
Alexander von Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 13
TC 29
Z9 29
U1 1
U2 46
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03005
DI 10.1088/1748-0221/5/03/T03005
PG 33
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100026
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
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de Abril, M. Magrans
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TI Commissioning and performance of the CMS silicon strip tracker with
cosmic ray muons
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Large detector systems for particle and astroparticle physics; Particle
tracking detectors (Solid-state detectors)
AB During autumn 2008, the Silicon Strip Tracker was operated with the full CMS experiment in a comprehensive test, in the presence of the 3.8 T magnetic field produced by the CMS superconducting solenoid. Cosmic ray muons were detected in the muon chambers and used to trigger the readout of all CMS sub-detectors. About 15 million events with a muon in the tracker were collected. The efficiency of hit and track reconstruction were measured to be higher than 99% and consistent with expectations from Monte Carlo simulation. This article details the commissioning and performance of the Silicon Strip Tracker with cosmic ray muons.
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[Banzuzi, K.; Korpela, A.; Tuuva, T.] Lappeenranta Univ Technol, Lappeenranta, Finland.
[Nedelec, P.; Sillou, D.] CNRS, Lab Annecy le Vieux Phys Particules, IN2P3, Annecy Le Vieux, France.
[Besancon, M.; Chipaux, R.; Dejardin, M.; Denegri, D.; Descamps, J.; Fabbro, B.; Faure, J. L.; Ferri, F.; Ganjour, S.; Gentit, F. X.; Givernaud, A.; Gras, P.; de Monchenault, G. Hamel; Jarry, P.; Lemaire, M. C.; Locci, E.; Malcles, J.; Marionneau, M.; Millischer, L.; Rander, J.; Rosowsky, A.; Rousseau, D.; Titov, M.; Verrecchia, P.] CEA Saclay, DSM IRFU, F-91191 Gif Sur Yvette, France.
[Baffioni, S.; Bianchini, L.; Bluj, M.; Busson, P.; Charlot, C.; Dobrzynski, L.; de Cassagnac, R. Granier; Haguenauer, M.; Mine, P.; Paganini, P.; Sirois, Y.; Thiebaux, C.; Zabi, A.] Ecole Polytech, CNRS, Lab Leprince Ringuet, IN2P3, F-91128 Palaiseau, France.
[Agram, J. -L.; Besson, A.; Bloch, D.; Bodin, D.; Brom, J. -M.; Conte, E.; Drouhin, F.; Fontaine, J. -C.; Gele, D.; Goerlach, U.; Gross, L.; Juillot, P.; Le Bihan, A. -C.; Patois, Y.; Speck, J.; Van Hove, P.] Univ Haute Alsace Mulhouse, Inst Pluridisciplinaire Hubert Curien, Univ Strasbourg, CNRS IN2P3, Strasbourg, France.
[Baty, C.; Bedjidian, M.; Blaha, J.; Boudoul, G.; Brun, H.; Chanon, N.; Chierici, R.; Contardo, D.; Depasse, P.; Dupasquier, T.; El Mamouni, H.; Fassi, F.; Fay, J.; Gascon, S.; Ille, B.; Kurca, T.; Le Grand, T.; Lethuillier, M.; Lumb, N.; Mirabito, L.; Perries, S.; Donckt, M. Vander; Verdier, P.] Univ Lyon 1, CNRS, IN2P3, Inst Phys Nucl Lyon, F-69622 Villeurbanne, France.
[Djaoshvili, N.; Roinishvili, N.; Roinishvili, V.] Georgian Acad Sci, E Andronikashvili Inst Phys, GE-380060 Tbilisi, Rep of Georgia.
[Amaglobeli, N.] Tbilisi State Univ, Inst High Energy Phys & Informatizat, GE-380086 Tbilisi, Rep of Georgia.
[Adolphi, R.; Anagnostou, G.; Brauer, R.; Braunschweig, W.; Edelhoff, M.; Esser, H.; Feld, L.; Karpinski, W.; Khomich, A.; Klein, K.; Mohr, N.; Ostaptchouk, A.; Pandoulas, D.; Pierschel, G.; Raupach, F.; Schael, S.; von Dratzig, A. Schultz; Schwering, G.; Sprenger, D.; Thomas, M.; Weber, M.; Wittmer, B.; Wlochal, M.] Rhein Westfal TH Aachen, Phys Inst 1, Aachen, Germany.
[Actis, O.; Altenhoefer, G.; Bender, W.; Biallass, P.; Erdmann, M.; Fetchenhauer, G.; Frangenheim, J.; Hebbeker, T.; Hilgers, G.; Hinzmann, A.; Hoepfner, K.; Hof, C.; Kirsch, M.; Klimkovich, T.; Kreuzer, P.; Lanske, D.; Merschmeyer, M.; Meyer, A.; Philipps, B.; Pieta, H.; Reithler, H.; Schmitz, S. A.; Sonnenschein, L.; Sowa, M.; Steggemann, J.; Szczesny, H.; Teyssier, D.; Zeidler, C.] Rhein Westfal TH Aachen, Phys Inst A 3, Aachen, Germany.
[Bontenackels, M.; Davids, M.; Duda, M.; Fluegge, G.; Geenen, H.; Giffels, M.; Ahmad, W. Haj; Hermanns, T.; Heydhausen, D.; Kalinin, S.; Kress, T.; Linn, A.; Nowack, A.; Perchalla, L.; Poettgens, M.; Pooth, O.; Sauerland, P.; Stahl, A.; Tornier, D.; Zoeller, M. H.] Rhein Westfal TH Aachen, Physikal Inst B 3, Aachen, Germany.
[Martin, M. Aldaya; Behrens, U.; Borras, K.; Campbell, A.; Castro, E.; Dammann, D.; Eckerlin, G.; Flossdorf, A.; Flucke, G.; Geiser, A.; Hatton, D.; Hauk, J.; Jung, H.; Kasemann, M.; Katkov, I.; Kleinwort, C.; Kluge, H.; Knutsson, A.; Kuznetsova, E.; Lange, W.; Lohmann, W.; Mankel, R.; Marienfeld, M.; Meyer, A. B.; Miglioranzi, S.; Mnich, J.; Ohlerich, M.; Olzem, J.; Parenti, A.; Rosemann, C.; Schmidt, R.; Schoerner-Sadenius, T.; Volyanskyy, D.; Wissing, C.; Zeuner, W. D.] DESY, Hamburg, Germany.
[Autermann, C.; Bechtel, F.; Draeger, J.; Eckstein, D.; Gebbert, U.; Kaschube, K.; Kaussen, G.; Klanner, R.; Mura, B.; Naumann-Emme, S.; Nowak, F.; Pein, U.; Sander, C.; Schleper, P.; Schum, T.; Stadie, H.; Steinbrueck, G.; Thomsen, J.; Wolf, R.] Univ Hamburg, Hamburg, Germany.
[Bauer, J.; Bluem, P.; Buege, V.; Cakir, A.; Chwalek, T.; De Boer, W.; Dierlamm, A.; Dirkes, G.; Feindt, M.; Felzmann, U.; Frey, M.; Furgeri, A.; Gruschke, J.; Hackstein, C.; Hartmann, F.; Heier, S.; Heinrich, M.; Held, H.; Hirschbuehl, D.; Hoffmann, K. H.; Honc, S.; Jung, C.; Kuhr, T.; Liamsuwan, T.; Martschei, D.; Mueller, S.; Mueller, Th.; Neuland, M. B.; Niegel, M.; Oberst, O.; Oehler, A.; Ott, J.; Peiffer, T.; Piparo, D.; Quast, G.; Rabbertz, K.; Ratnikov, F.; Ratnikova, N.; Renz, M.; Saout, C.; Sartisohn, G.; Scheurer, A.; Schieferdecker, P.; Schilling, F. -P.; Schott, G.; Simonis, H. J.; Stober, F. M.; Sturm, P.; Troendle, D.; Trunov, A.; Wagner, W.; Wagner-Kuhr, J.; Zeise, M.; Zhukov, V.; Ziebarth, E. B.] Univ Karlsruhe, Inst Expt Kernphys, D-7500 Karlsruhe, Germany.
[Daskalakis, G.; Geralis, T.; Karafasoulis, K.; Kyriakis, A.; Loukas, D.; Markou, A.; Markou, C.; Mavrommatis, C.; Petrakou, E.; Zachariadou, A.] Inst Nucl Phys Demokritos, Aghia Paraskevi, Greece.
[Gouskos, L.; Katsas, P.; Panagiotou, A.] Univ Athens, Athens, Greece.
[Evangelou, I.; Kokkas, P.; Manthos, N.; Papadopoulos, I.; Patras, V.; Triantis, F. A.] Univ Ioannina, GR-45110 Ioannina, Greece.
[Bencze, G.; Boldizsar, L.; Debreczeni, G.; Hajdu, C.; Hernath, S.; Hidas, P.; Horvath, D.; Krajczar, K.; Laszlo, A.; Patay, G.; Sikler, F.; Toth, N.; Vesztergombi, G.] KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
[Beni, N.; Christian, G.; Imrek, J.; Molnar, J.; Novak, D.; Palinkas, J.; Szekely, G.; Szillasi, Z.; Tokesi, K.; Veszpremi, V.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Kapusi, A.; Raics, P.; Szabo, Z.; Trocsanyi, Z. L.; Ujvari, B.; Zilizi, G.; Mariani, F.] Univ Debrecen, Debrecen, Hungary.
[Bansal, S.; Bawa, H. S.; Beri, S. B.; Bhatnagar, V.; Jindal, M.; Kaur, M.; Kaur, R.; Kohli, J. M.; Mehta, M. Z.; Nishu, N.; Saini, L. K.; Sharma, A.; Singh, A.; Singh, J. B.; Singh, S. P.] Panjab Univ, Chandigarh 160014, India.
[Ahuja, S.; Arora, S.; Bhattacharya, S.; Chauhan, S.; Choudhary, B. C.; Gupta, P.; Jain, S.; Jha, M.; Kumar, A.; Ranjan, K.; Shivpuri, R. K.; Srivastava, A. K.] Univ Delhi, Delhi 110007, India.
[Choudhury, R. K.; Dutta, D.; Kailas, S.; Kataria, S. K.; Mohanty, A. K.; Pant, L. M.; Shukla, P.; Topkar, A.] Bhabha Atom Res Ctr, Bombay 400085, Maharashtra, India.
[Aziz, T.; Guchait, M.; Gurtu, A.; Maity, M.; Majumder, D.; Majumder, G.; Mazumdar, K.; Nayak, A.; Saha, A.; Sudhakar, K.] Tata Inst Fundamental Res, EHEP, Bombay 400005, Maharashtra, India.
[Banerjee, S.; Dugad, S.; Mondal, N. K.] Tata Inst Fundamental Res, HECR, Bombay 400005, Maharashtra, India.
[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys & Math IPM, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamit, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] INFN Sez Bari, Bari, Italy.
[Abbrescia, M.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Lusito, L.; Manna, N.; Marangelli, B.; Natali, S.; Nuzzo, S.; Pompili, A.; Roselli, G.; Selvaggi, G.; Tupputi, S.] Univ Bari, Bari, Italy.
[Creanza, D.; Iaselli, G.; Maggi, G.; My, S.; Pugliese, G.; Romano, F.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] INFN Sez Bologna, Bologna, Italy.
[Bacchi, W.; Braibant-Giacomelli, S.; Capiluppi, P.; Castro, A.; Codispoti, G.; Cuffiani, M.; Fanfani, A.; Masetti, G.; Navarria, F. L.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] INFN Sez Catania, Catania, Italy.
INFN Sez Catania, Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] INFN Sez Firenze, Florence, Italy.
[Broccolo, G.; Ciulli, V.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Genta, C.; Landi, G.; Lenzi, P.] Univ Florence, Florence, Italy.
[Fabbri, F.; Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] INFN Lab Nazl Frascati, Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] INFN Sez Genova, Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; De Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] INFN Sez Milano Biccoca, Milan, Italy.
[Cerati, G. B.; Govoni, P.; Malberti, M.; Miccio, V.; Negri, P.; Paganoni, M.; Pullia, A.; Ragazzi, S.; Salerno, R.; De Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] INFN Sez Napoli, Naples, Italy.
[Cimmino, A.; De Gruttola, M.; Noli, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzagoa, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzoa, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.; Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.] INFN Sez Padova, Padua, Italy.
[Bellan, P.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; De Mattia, M.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Kaminskiy, A.; Margoni, M.; Mattiazzoa, S.; Meneguzzo, A. T.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Tosi, M.; Vanini, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] INFN Sez Pavia, Pavia, Italy.
[Baesso, P.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] INFN Sez Perugia, Perugia, Italy.
[Barbagli, G.; Azzurri, P.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] INFN Sez Pisa, Pisa, Italy.
[Biasini, M.; Caponeri, B.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Bernardini, J.; Fiori, F.; Messineo, A.; Tonelli, G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Borrello, L.; Foa, L.; Gennai, S.; Ligabue, F.; Petrucciani, G.] Scuola Normale Super Pisa, Pisa, Italy.
[Pellegrini, G.; Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Rahatlou, S.; Rovelli, C.] INFN Sez Roma, Rome, Italy.
[Barone, L.; Del Re, D.; Di Marco, E.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Rahatlou, S.] Univ Roma La Sapienza, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] INFN Sez Torino, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] INFN Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Della Ricca, G.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] Ctr Invest & Estudios Avanzados IPN, Mexico City, DF, Mexico.
[Carrillo Montoya, C. A.] Univ Iberoamer, Mexico City, DF, Mexico.
[Pineda, A. Morelos] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Pedro, L. Antunes; Bargassa, P.; Faccioli, A. David P.; Parracho, P. G. Ferreira; Ferreira, M. Freitas; Gallinaro, M.; Jordao, M. Guerra; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.] Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] State Res Ctr Russian Federat, Inst High Energy Phys, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] Ctr Invest Energet Medioambientales & Tecnol CIEM, Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Ruiz del Arbol, P. Martinez; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, Inst Fis Cantabria IFCA, CSIC, E-39005 Santander, Spain.
[Velichko, G.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, L.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Weber, M.; Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Schmidt, R.; Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli 32054, Taiwan.
[Klein, B.; Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Natl Sci Ctr, Kharkov Inst Phys & Technol, Kharkov, Ukraine.
[Hansen, M.; Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Williams, J. C.; Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London, Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; John, J. St.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Liu, H.; Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Jung, S. Y.; Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Banerjee, S.; Evans, D.; Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Castro, E.; Garcia Raboso, A.; Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Chung, J.; Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Panagiotou, A.; Dubinin, M.; Barnett, B. A.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Panagiotou, A.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Panagiotou, A.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Panagiotou, A.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Abadjiev, K.; Bencze, G.; Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] NW Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Killewald, J. Gu P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; De Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Jaworski, M.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
Univ Fed ABC, Santo Andre, Brazil.
Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
Univ Haute Alsace, Mulhouse, France.
Alstom Contracting, Geneva, Switzerland.
[Cankocak, K.] Istanbul Tech Univ, Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Venturi, Andrea/J-1877-2012; de Jesus Damiao, Dilson/G-6218-2012;
Montanari, Alessandro/J-2420-2012; Amapane, Nicola/J-3683-2012;
Klyukhin, Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012;
Raidal, Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Della Ricca, Giuseppe/B-6826-2013; Kadastik,
Mario/B-7559-2008; Mundim, Luiz/A-1291-2012; Kodolova, Olga/D-7158-2012;
Dudko, Lev/D-7127-2012; Boos, Eduard/D-9748-2012; Snigirev,
Alexander/D-8912-2012; Chipaux, Remi/G-1145-2010; Servoli,
Leonello/E-6766-2012; Tomei, Thiago/E-7091-2012; Focardi,
Ettore/E-7376-2012; Fruhwirth, Rudolf/H-2529-2012; Azzi,
Patrizia/H-5404-2012; Torassa, Ezio/I-1788-2012; Giacomelli,
Paolo/B-8076-2009; Jeitler, Manfred/H-3106-2012; Romaniuk,
Ryszard/B-9140-2011; Ganjour, Serguei/D-8853-2011; Ruiz,
Alberto/E-4473-2011; Stahl, Achim/E-8846-2011; Hektor, Andi/G-1804-2011;
Wulz, Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Lokhtin,
Igor/D-7004-2012; Horvath, Dezso/A-4009-2011; Palinkas,
Jozsef/B-2993-2011; Varela, Joao/K-4829-2016; Fassi, Farida/F-3571-2016;
Ligabue, Franco/F-3432-2014; Sguazzoni, Giacomo/J-4620-2015; Menasce,
Dario Livio/A-2168-2016; Bargassa, Pedrame/O-2417-2016; Govoni,
Pietro/K-9619-2016; Tuominen, Eija/A-5288-2017; Yazgan, Efe/C-4521-2014;
Gerbaudo, Davide/J-4536-2012; Fedorov, Andrei/E-9455-2014; Konovalova,
Nina/D-3882-2014; Cordonnier, Agnes/I-5083-2016; Paganoni,
Marco/A-4235-2016; Kirakosyan, Martin/N-2701-2015; Tinoco Mendes, Andre
David/D-4314-2011; Seixas, Joao/F-5441-2013; Verwilligen,
Piet/M-2968-2014; Vilela Pereira, Antonio/L-4142-2016; Sznajder,
Andre/L-1621-2016; Haj Ahmad, Wael/E-6738-2016; Leonardo,
Nuno/M-6940-2016; Goh, Junghwan/Q-3720-2016; Muelmenstaedt,
Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015; Dremin,
Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Altsybeev, Igor/K-6687-2013; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
korzhik, Mikhail/E-9505-2014; Lazzizzera, Ignazio/E-9678-2015; Sen,
Sercan/C-6473-2014; D'Alessandro, Raffaello/F-5897-2015; Trocsanyi,
Zoltan/A-5598-2009; Konecki, Marcin/G-4164-2015; Hernandez Calama, Jose
Maria/H-9127-2015; Barcala, JOSE MIGUEL/I-1105-2015; Bedoya,
Cristina/K-8066-2014; Michelotto, Michele/A-9571-2013; Matorras,
Francisco/I-4983-2015; My, Salvatore/I-5160-2015; Gumus,
Kazim/G-2498-2013; Josa, Isabel/K-5184-2014; Navarrete Marin, Jose
Javier/K-6412-2014; Marin, Jesus/K-6991-2014; Gonzalez Suarez,
Rebeca/L-6128-2014; Calvo Alamillo, Enrique/L-1203-2014; Paulini,
Manfred/N-7794-2014; Vogel, Helmut/N-8882-2014; Ferguson,
Thomas/O-3444-2014; Ragazzi, Stefano/D-2463-2009; Benussi,
Luigi/O-9684-2014; Russ, James/P-3092-2014; Grandi, Claudio/B-5654-2015;
Ahmed, Ijaz/E-9144-2015; Alves, Gilvan/C-4007-2013; Santoro,
Alberto/E-7932-2014; Codispoti, Giuseppe/F-6574-2014; Bellan,
Riccardo/G-2139-2014; Petrucci, Andrea/J-4207-2014; Gribushin,
Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Molinero,
Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014; Scodellaro,
Luca/K-9091-2014; Santaolalla, Javier/C-3094-2013; Gavrilov,
Gennady/C-6260-2013; Rolandi, Luigi (Gigi)/E-8563-2013; Zalewski,
Piotr/H-7335-2013; Cavallo, Nicola/F-8913-2012; Dvornikov,
Oleg/I-7207-2013; Hill, Christopher/B-5371-2012; Kuleshov,
Sergey/D-9940-2013; Troitsky, Sergey/C-1377-2014; Marlow,
Daniel/C-9132-2014; Oguri, Vitor/B-5403-2013; Janssen,
Xavier/E-1915-2013
OI de Jesus Damiao, Dilson/0000-0002-3769-1680; Montanari,
Alessandro/0000-0003-2748-6373; Amapane, Nicola/0000-0001-9449-2509;
Klyukhin, Vyacheslav/0000-0002-8577-6531; Novaes,
Sergio/0000-0003-0471-8549; Della Ricca, Giuseppe/0000-0003-2831-6982;
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Servoli, Leonello/0000-0003-1725-9185; Tomei,
Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267; Azzi,
Patrizia/0000-0002-3129-828X; Romaniuk, Ryszard/0000-0002-5710-4041;
Ruiz, Alberto/0000-0002-3639-0368; Stahl, Achim/0000-0002-8369-7506;
Hektor, Andi/0000-0001-7873-8118; Wulz,
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Heath, Helen/0000-0001-6576-9740; Giubilato, Piero/0000-0003-4358-5355;
Gallinaro, Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Gutsche,
Oliver/0000-0002-8015-9622; Torassa, Ezio/0000-0003-2321-0599; Varela,
Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109; Toback,
David/0000-0003-3457-4144; Mackay, Catherine/0000-0003-4252-6740;
HSIUNG, YEE/0000-0003-4801-1238; Bonnett Del Alamo, Miguel
Reinaldo/0000-0002-1011-8411; Faccioli, Pietro/0000-0003-1849-6692;
Korenkov, Vladimir/0000-0002-2342-7862; Stober,
Fred/0000-0003-2620-3159; Martelli, Arabella/0000-0003-3530-2255;
Abbiendi, Giovanni/0000-0003-4499-7562; Levchenko,
Petr/0000-0003-4913-0538; Uliyanov, Alexey/0000-0001-6935-8949; Arneodo,
Michele/0000-0002-7790-7132; Sciacca, Crisostomo/0000-0002-8412-4072;
Fassi, Farida/0000-0002-6423-7213; Leonidopoulos,
Christos/0000-0002-7241-2114; Blekman, Freya/0000-0002-7366-7098;
Ghezzi, Alessio/0000-0002-8184-7953; bianco,
stefano/0000-0002-8300-4124; Demaria, Natale/0000-0003-0743-9465;
Benaglia, Andrea Davide/0000-0003-1124-8450; Covarelli,
Roberto/0000-0003-1216-5235; Staiano, Amedeo/0000-0003-1803-624X;
Ciulli, Vitaliano/0000-0003-1947-3396; Tonelli, Guido
Emilio/0000-0003-2606-9156; Beuselinck, Raymond/0000-0003-2613-7446;
Ligabue, Franco/0000-0002-1549-7107; Diemoz,
Marcella/0000-0002-3810-8530; Hamel de Monchenault,
Gautier/0000-0002-3872-3592; Landsberg, Greg/0000-0002-4184-9380; Rizzi,
Andrea/0000-0002-4543-2718; Gershtein, Yuri/0000-0002-4871-5449;
Tricomi, Alessia Rita/0000-0002-5071-5501; CALZOLARI,
FEDERICO/0000-0002-5510-3061; Malik, Sudhir/0000-0002-6356-2655;
Dharmaraatna, Welathantri/0000-0002-6366-837X; Giacomelli,
Paolo/0000-0002-6368-7220; Mrenna, Stephen/0000-0001-8731-160X; Bilki,
Burak/0000-0001-9515-3306; Costa, Salvatore/0000-0001-9919-0569; Lloret
Iglesias, Lara/0000-0002-0157-4765; Kasemann,
Matthias/0000-0002-0429-2448; Donvito, Giacinto/0000-0002-0628-1080;
Petragnani, Giulio/0000-0002-0819-6509; Sguazzoni,
Giacomo/0000-0002-0791-3350; WANG, MIN-ZU/0000-0002-0979-8341; Longo,
Egidio/0000-0001-6238-6787; Baarmand, Marc/0000-0002-9792-8619; Nervo,
Marco/0000-0002-9898-7346; Boccali, Tommaso/0000-0002-9930-9299;
Menasce, Dario Livio/0000-0002-9918-1686; Bargassa,
Pedrame/0000-0001-8612-3332; Govoni, Pietro/0000-0002-0227-1301;
Tuominen, Eija/0000-0002-7073-7767; Yazgan, Efe/0000-0001-5732-7950;
Gerbaudo, Davide/0000-0002-4463-0878; Vieira de Castro Ferreira da
Silva, Pedro Manuel/0000-0002-5725-041X; Actis,
Oxana/0000-0001-8851-3983; Bean, Alice/0000-0001-5967-8674; Cordonnier,
Agnes/0000-0002-4216-3524; Paganoni, Marco/0000-0003-2461-275X; Tinoco
Mendes, Andre David/0000-0001-5854-7699; Seixas,
Joao/0000-0002-7531-0842; Vilela Pereira, Antonio/0000-0003-3177-4626;
Sznajder, Andre/0000-0001-6998-1108; Haj Ahmad,
Wael/0000-0003-1491-0446; Leonardo, Nuno/0000-0002-9746-4594; Goh,
Junghwan/0000-0002-1129-2083; Muelmenstaedt,
Johannes/0000-0003-1105-6678; Rovelli, Tiziano/0000-0002-9746-4842;
Altsybeev, Igor/0000-0002-8079-7026; TUVE',
Cristina/0000-0003-0739-3153; Gulmez, Erhan/0000-0002-6353-518X; KIM,
Tae Jeong/0000-0001-8336-2434; Flix, Josep/0000-0003-2688-8047; Ozdemir,
Kadri/0000-0002-0103-1488; Lazzizzera, Ignazio/0000-0001-5092-7531; Sen,
Sercan/0000-0001-7325-1087; D'Alessandro, Raffaello/0000-0001-7997-0306;
Trocsanyi, Zoltan/0000-0002-2129-1279; Konecki,
Marcin/0000-0001-9482-4841; Hernandez Calama, Jose
Maria/0000-0001-6436-7547; Barcala, JOSE MIGUEL/0000-0002-1092-7091;
Bedoya, Cristina/0000-0001-8057-9152; Michelotto,
Michele/0000-0001-6644-987X; Matorras, Francisco/0000-0003-4295-5668;
My, Salvatore/0000-0002-9938-2680; Gumus, Kazim/0000-0002-1450-6868;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070;
Codispoti, Giuseppe/0000-0003-0217-7021; Petrucci,
Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Scodellaro, Luca/0000-0002-4974-8330;
Rolandi, Luigi (Gigi)/0000-0002-0635-274X; Hill,
Christopher/0000-0003-0059-0779; Kuleshov, Sergey/0000-0002-3065-326X;
Troitsky, Sergey/0000-0001-6917-6600;
FU FMSR (Austria); FNRS (Belgium); FWO (Belgium); CNPq (Brazil); CAPES
(Brazil); FAPERJ (Brazil); FAPESP (Brazil); MES (Bulgaria); CERN
(China); CAS (China); MoST (China); NSFC (China); COLCIEN-CIAS
(Colombia); MSES (Croatia); RPF (Cyprus); Academy of Sciences (Estonia);
NICPB (Estonia); Academy of Finland (Finland); ME (Finland); HIP
(Finland); CEA (France); CNRS/IN2P3 (France); BMBF (Germany); DFG
(Germany); HGF (Germany); GSRT (Greece); OTKA (Hungary); NKTH (Hungary);
DAE (India); DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV (Mexico); CONACYT (Mexico); SEP
(Mexico); UASLP-FAI (Mexico); PAEC (Pakistan); SCSR (Poland); FCT
(Portugal); JINR (Armenia); JINR (Belarus); JINR (Georgia); JINR
(Ukraine); JINR (Uzbekistan); MST (Russia); MAE (Russia); MSTDS
(Serbia); MICINN (Spain); CPAN (Spain); Swiss Funding Agencies
(Switzerland); NSC (Taipei); TUBITAK (Turkey); TAEK (Turkey); STFC
(United Kingdom); DOE (USA); NSF (USA); European Union; Leventis
Foundation; A. P. Sloan Foundation; Alexander von Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 38
TC 29
Z9 29
U1 2
U2 50
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03008
DI 10.1088/1748-0221/5/03/T03008
PG 130
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100025
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
Litomin, A
Makarenko, V
Marfin, I
Mossolov, V
Shumeiko, N
Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
Fedorov, A
Karneyeu, A
Korzhik, M
Panov, V
Zuyeuski, R
Kuchinsky, P
Beaumont, W
Benucci, L
Cardaci, M
De Wolf, EA
Delmeire, E
Druzhkin, D
Hashemi, M
Janssen, X
Maes, T
Mucibello, L
Ochesanu, S
Rougny, R
Selvaggi, M
Van Haevermaet, H
Van Mechelen, P
Van Remortel, N
Adler, V
Beauceron, S
Blyweert, S
D'Hondt, J
De Weirdt, S
Devroede, O
Heyninck, J
Kalogeropoulos, A
Maes, J
Maes, M
Mozer, MU
Tavernier, S
Van Doninck, W
Van Mulders, P
Villella, I
Bouhali, O
Chabert, EC
Charaf, O
Clerbaux, B
De Lentdecker, G
Dero, V
Elgammal, S
Gay, APR
Hammad, GH
Marage, PE
Rugovac, S
Vander Velde, C
Vanlaer, P
Wickens, J
Grunewald, M
Klein, B
Marinov, A
Ryckbosch, D
Thyssen, F
Tytgat, M
Vanelderen, L
Verwilligen, P
Basegmez, S
Bruno, G
Caudron, J
Delaere, C
Demin, P
Favart, D
Giammanco, A
Gregoire, G
Lemaitre, V
Militaru, O
Ovyn, S
Piotrzkowski, K
Quertenmont, L
Schul, N
Beliy, N
Daubie, E
Alves, GA
Pol, ME
Souza, MHG
Carvalho, W
Damiao, DD
Martins, CD
De Souza, SF
Mundim, L
Oguri, V
Santoro, A
Do Amaral, SMS
Sznajder, A
Tomei, TRFP
Dias, MAF
Gregores, EM
Novaes, SF
Abadjiev, K
Anguelov, T
Damgov, J
Darmenov, N
Dimitrov, L
Genchev, V
Iaydjiev, P
Piperov, S
Stoykova, S
Sultanov, G
Trayanov, R
Vankov, I
Dimitrov, A
Dyulendarova, M
Kozhuharov, V
Litov, L
Marinova, E
Mateev, M
Pavlov, B
Petkov, P
Toteva, Z
Chen, GM
Chen, HS
Guan, W
Jiang, CH
Liang, D
Liu, B
Meng, X
Tao, J
Wang, J
Wang, Z
Xue, Z
Zhang, Z
Avila, C
Ruiz, MB
Montoya, CAC
Gomez, A
Moreno, BG
Rios, AAO
Oliveros, AFO
Romero, DR
Sanabria, JC
Godinovic, N
Lelas, K
Plestina, R
Polic, D
Puljak, I
Antunovic, Z
Dzelalija, M
Brigljevic, V
Duric, S
Kadija, K
Morovic, S
Fereos, R
Galanti, M
Mousa, J
Papadakis, A
Ptochos, F
Razis, PA
Tsiakkouri, D
Zinonos, Z
Hektor, A
Kadastik, M
Kannike, K
Muntel, M
Raidal, M
Rebane, L
Anttila, E
Czellar, S
Harkonen, J
Heikkinen, A
Karimaki, V
Kinnunen, R
Klem, J
Kortelainen, MJ
Lampen, T
Lassila-Perini, K
Lehti, S
Linden, T
Luukka, P
Maenpaa, T
Nysten, J
Tuominen, E
Tuominiemi, J
Ungaro, D
Wendland, L
Banzuzi, K
Korpela, A
Tuuva, T
Nedelec, P
Sillou, D
Besancon, M
Chipaux, R
Dejardin, M
Denegri, D
Descamps, J
Fabbro, B
Faure, JL
Ferri, F
Ganjour, S
Gentit, FX
Givernaud, A
Gras, P
de Monchenault, GH
Jarry, P
Lemaire, MC
Locci, E
Malcles, J
Marionneau, M
Millischer, L
Rander, J
Rosowsky, A
Rousseau, D
Titov, M
Verrecchia, P
Baffioni, S
Bianchini, L
Bluj, M
Busson, P
Charlot, C
Dobrzynski, L
de Cassagnac, RG
Haguenauer, M
Mine, P
Paganini, P
Sirois, Y
Thiebaux, C
Zabi, A
Agram, JL
Besson, A
Bloch, D
Bodin, D
Brom, JM
Conte, E
Drouhin, F
Fontaine, JC
Gele, D
Goerlach, U
Gross, L
Juillot, P
Le Bihan, AC
Patois, Y
Speck, J
Van Hove, P
Baty, C
Bedjidian, M
Blaha, J
Boudoul, G
Brun, H
Chanon, N
Chierici, R
Contardo, D
Depasse, P
Dupasquier, T
El Mamouni, H
Fassi, F
Fay, J
Gascon, S
Ille, B
Kurca, T
Le Grand, T
Lethuillier, M
Lumb, N
Mirabito, L
Perries, S
Vander Donckt, M
Verdier, P
Djaoshvili, N
Roinishvili, N
Roinishvili, V
Amaglobeli, N
Adolphi, R
Anagnostou, G
Brauer, R
Braunschweig, W
Edelhoff, M
Esser, H
Feld, L
Karpinski, W
Khomich, A
Klein, K
Mohr, N
Ostaptchouk, A
Pandoulas, D
Pierschel, G
Raupach, F
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CA CMS Collaboration
TI Alignment of the CMS silicon tracker during commissioning with cosmic
rays
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Large detector systems for particle and astroparticle physics; Particle
tracking detectors (Solid-state detectors)
AB The CMS silicon tracker, consisting of 1440 silicon pixel and 15 148 silicon strip detector modules, has been aligned using more than three million cosmic ray charged particles, with additional information from optical surveys. The positions of the modules were determined with respect to cosmic ray trajectories to an average precision of 3-4 microns RMS in the barrel and 3-14 microns RMS in the endcap in the most sensitive coordinate. The results have been validated by several studies, including laser beam cross-checks, track fit self-consistency, track residuals in overlapping module regions, and track parameter resolution, and are compared with predictions obtained from simulation. Correlated systematic effects have been investigated. The track parameter resolutions obtained with this alignment are close to the design performance.
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[Bellan, P.; Bisello, D.; Borsato, E.; Carlin, R.; De Mattia, M.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Kaminskiy, A.; Margoni, M.; Mattiazzo, S.; Meneguzzo, A. T.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Tosi, M.; Vanini, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Biasini, M.; Caponeri, B.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Santocchia, A.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Bernardini, J.; Fiori, F.; Messineo, A.; Tonelli, G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bocci, A.; Borrello, L.; Foa, L.; Gennai, S.; Ligabue, F.; Petrucciani, G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Barone, L.; Del Re, D.; Di Marco, E.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Rahatlou, S.] Univ Roma La Sapienza, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Amapane, N.; Arcidiacono, R.; Argiro, S.; Borgia, M. A.; Botta, C.; Castello, R.; Cerminara, G.; Costa, M.; Graziano, A.; Marone, M.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Oggero, S.; Pelliccioni, M.; Romero, A.; Sacchi, R.; Solano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.] Univ Turin, Turin, Italy.
[Arneodo, M.; Obertino, M. M.; Ruspa, M.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Della Ricca, G.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius State Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Wohri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, IFCA, CSIC, E-39005 Santander, Spain.
[Sharma, A.; Bellan, P.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Weber, M.; Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli 32054, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Phys & Technol Inst, Natl Sci Ctr, UA-310108 Kharkov, Ukraine.
[Hansen, M.; Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London, Imperial Coll, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; John, J. St.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Adiguzel, A.; Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Liu, H.; Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Banerjee, S.; Evans, D.; Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Schroeder, M.; Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Kumar, A.; Baur, U.; Iashvili, I.; Kharchilava, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Schmitt, M.; Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Kim, H.; Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Adiguzel, A.; Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Fassi, F.] Ctr Calcul, IN2P3, Villeurbanne, France.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Fabozzi, F.] Univ Basilicata, I-85100 Potenza, Italy.
[Biasotto, M.; Gulmini, M.; Lacaprara, S.; Maron, G.] Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
[Gresele, A.; Lazzizzera, I.] Univ Trent, Trento, Italy.
[Baccaro, S.] ENEA, Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Ozkorucuklu, S.] Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Cankocak, K.] Istanbul Tech Univ, TR-80626 Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI de Jesus Damiao, Dilson/G-6218-2012; Montanari, Alessandro/J-2420-2012;
Amapane, Nicola/J-3683-2012; tosi, mia/J-5777-2012; Klyukhin,
Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012; Raidal,
Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Della Ricca, Giuseppe/B-6826-2013; Kadastik,
Mario/B-7559-2008; Mundim, Luiz/A-1291-2012; Kodolova, Olga/D-7158-2012;
Dudko, Lev/D-7127-2012; Snigirev, Alexander/D-8912-2012; Chipaux,
Remi/G-1145-2010; Servoli, Leonello/E-6766-2012; Tomei,
Thiago/E-7091-2012; Focardi, Ettore/E-7376-2012; Fruhwirth,
Rudolf/H-2529-2012; Azzi, Patrizia/H-5404-2012; Torassa,
Ezio/I-1788-2012; Giacomelli, Paolo/B-8076-2009; Jeitler,
Manfred/H-3106-2012; Venturi, Andrea/J-1877-2012; Horvath,
Dezso/A-4009-2011; Palinkas, Jozsef/B-2993-2011; Romaniuk,
Ryszard/B-9140-2011; Ruiz, Alberto/E-4473-2011; Stahl,
Achim/E-8846-2011; Hektor, Andi/G-1804-2011; Wulz,
Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Tinoco Mendes, Andre
David/D-4314-2011; Lokhtin, Igor/D-7004-2012; Varela, Joao/K-4829-2016;
Fassi, Farida/F-3571-2016; Ligabue, Franco/F-3432-2014; Sguazzoni,
Giacomo/J-4620-2015; Menasce, Dario Livio/A-2168-2016; Bargassa,
Pedrame/O-2417-2016; Govoni, Pietro/K-9619-2016; Tuominen,
Eija/A-5288-2017; Yazgan, Efe/C-4521-2014; Gerbaudo, Davide/J-4536-2012;
Fedorov, Andrei/E-9455-2014; Konovalova, Nina/D-3882-2014; Cordonnier,
Agnes/I-5083-2016; Paganoni, Marco/A-4235-2016; Kirakosyan,
Martin/N-2701-2015; Seixas, Joao/F-5441-2013; Verwilligen,
Piet/M-2968-2014; Vilela Pereira, Antonio/L-4142-2016; Sznajder,
Andre/L-1621-2016; Haj Ahmad, Wael/E-6738-2016; Xie, Si/O-6830-2016;
Leonardo, Nuno/M-6940-2016; Goh, Junghwan/Q-3720-2016; Muelmenstaedt,
Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015; Dremin,
Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Altsybeev, Igor/K-6687-2013; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
korzhik, Mikhail/E-9505-2014; Lazzizzera, Ignazio/E-9678-2015; Sen,
Sercan/C-6473-2014; D'Alessandro, Raffaello/F-5897-2015; Trocsanyi,
Zoltan/A-5598-2009; Konecki, Marcin/G-4164-2015; Hernandez Calama, Jose
Maria/H-9127-2015; Barcala, JOSE MIGUEL/I-1105-2015; Bedoya,
Cristina/K-8066-2014; Michelotto, Michele/A-9571-2013; Matorras,
Francisco/I-4983-2015; My, Salvatore/I-5160-2015; Gumus,
Kazim/G-2498-2013; Josa, Isabel/K-5184-2014; Navarrete Marin, Jose
Javier/K-6412-2014; Marin, Jesus/K-6991-2014; Gonzalez Suarez,
Rebeca/L-6128-2014; Calvo Alamillo, Enrique/L-1203-2014; Paulini,
Manfred/N-7794-2014; Vogel, Helmut/N-8882-2014; Ferguson,
Thomas/O-3444-2014; Ragazzi, Stefano/D-2463-2009; Benussi,
Luigi/O-9684-2014; Russ, James/P-3092-2014; Grandi, Claudio/B-5654-2015;
Ahmed, Ijaz/E-9144-2015; Alves, Gilvan/C-4007-2013; Santoro,
Alberto/E-7932-2014; Codispoti, Giuseppe/F-6574-2014; Bellan,
Riccardo/G-2139-2014; Petrucci, Andrea/J-4207-2014; Gribushin,
Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Molinero,
Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014; Scodellaro,
Luca/K-9091-2014; Santaolalla, Javier/C-3094-2013; Gavrilov,
Gennady/C-6260-2013; Rolandi, Luigi (Gigi)/E-8563-2013; Zalewski,
Piotr/H-7335-2013; Cavallo, Nicola/F-8913-2012; Dvornikov,
Oleg/I-7207-2013; Hill, Christopher/B-5371-2012; Kuleshov,
Sergey/D-9940-2013; Troitsky, Sergey/C-1377-2014; Marlow,
Daniel/C-9132-2014; Janssen, Xavier/E-1915-2013; Oguri,
Vitor/B-5403-2013
OI Luukka, Panja/0000-0003-2340-4641; Goldstein, Joel/0000-0003-1591-6014;
Sogut, Kenan/0000-0002-9682-2855; de Jesus Damiao,
Dilson/0000-0002-3769-1680; Montanari, Alessandro/0000-0003-2748-6373;
Amapane, Nicola/0000-0001-9449-2509; Klyukhin,
Vyacheslav/0000-0002-8577-6531; Novaes, Sergio/0000-0003-0471-8549;
Della Ricca, Giuseppe/0000-0003-2831-6982; Mundim,
Luiz/0000-0001-9964-7805; Dudko, Lev/0000-0002-4462-3192; Servoli,
Leonello/0000-0003-1725-9185; Tomei, Thiago/0000-0002-1809-5226;
Focardi, Ettore/0000-0002-3763-5267; Azzi, Patrizia/0000-0002-3129-828X;
Romaniuk, Ryszard/0000-0002-5710-4041; Ruiz,
Alberto/0000-0002-3639-0368; Stahl, Achim/0000-0002-8369-7506; Hektor,
Andi/0000-0001-7873-8118; Wulz, Claudia-Elisabeth/0000-0001-9226-5812;
Krammer, Manfred/0000-0003-2257-7751; Tinoco Mendes, Andre
David/0000-0001-5854-7699; Heath, Helen/0000-0001-6576-9740; Giubilato,
Piero/0000-0003-4358-5355; Gallinaro, Michele/0000-0003-1261-2277;
Tabarelli de Fatis, Tommaso/0000-0001-6262-4685; Zabolotny,
Wojciech/0000-0002-6833-4846; Lenzi, Piergiulio/0000-0002-6927-8807;
Gutsche, Oliver/0000-0002-8015-9622; Torassa, Ezio/0000-0003-2321-0599;
Varela, Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109;
Toback, David/0000-0003-3457-4144; Mackay,
Catherine/0000-0003-4252-6740; HSIUNG, YEE/0000-0003-4801-1238; Bonnett
Del Alamo, Miguel Reinaldo/0000-0002-1011-8411; Faccioli,
Pietro/0000-0003-1849-6692; Korenkov, Vladimir/0000-0002-2342-7862;
Stober, Fred/0000-0003-2620-3159; Martelli,
Arabella/0000-0003-3530-2255; Abbiendi, Giovanni/0000-0003-4499-7562;
Levchenko, Petr/0000-0003-4913-0538; Uliyanov,
Alexey/0000-0001-6935-8949; Arneodo, Michele/0000-0002-7790-7132;
Sciacca, Crisostomo/0000-0002-8412-4072; Fassi,
Farida/0000-0002-6423-7213; Leonidopoulos, Christos/0000-0002-7241-2114;
Blekman, Freya/0000-0002-7366-7098; Ghezzi, Alessio/0000-0002-8184-7953;
bianco, stefano/0000-0002-8300-4124; Demaria,
Natale/0000-0003-0743-9465; Benaglia, Andrea Davide/0000-0003-1124-8450;
Covarelli, Roberto/0000-0003-1216-5235; Staiano,
Amedeo/0000-0003-1803-624X; Ciulli, Vitaliano/0000-0003-1947-3396;
Tonelli, Guido Emilio/0000-0003-2606-9156; Beuselinck,
Raymond/0000-0003-2613-7446; Ligabue, Franco/0000-0002-1549-7107;
Diemoz, Marcella/0000-0002-3810-8530; Hamel de Monchenault,
Gautier/0000-0002-3872-3592; Landsberg, Greg/0000-0002-4184-9380; Rizzi,
Andrea/0000-0002-4543-2718; Gershtein, Yuri/0000-0002-4871-5449;
Tricomi, Alessia Rita/0000-0002-5071-5501; CALZOLARI,
FEDERICO/0000-0002-5510-3061; Malik, Sudhir/0000-0002-6356-2655;
Dharmaraatna, Welathantri/0000-0002-6366-837X; Giacomelli,
Paolo/0000-0002-6368-7220; Mrenna, Stephen/0000-0001-8731-160X; Bilki,
Burak/0000-0001-9515-3306; Costa, Salvatore/0000-0001-9919-0569; Lloret
Iglesias, Lara/0000-0002-0157-4765; Kasemann,
Matthias/0000-0002-0429-2448; Donvito, Giacinto/0000-0002-0628-1080;
Petragnani, Giulio/0000-0002-0819-6509; Sguazzoni,
Giacomo/0000-0002-0791-3350; WANG, MIN-ZU/0000-0002-0979-8341; Longo,
Egidio/0000-0001-6238-6787; Baarmand, Marc/0000-0002-9792-8619; Nervo,
Marco/0000-0002-9898-7346; Boccali, Tommaso/0000-0002-9930-9299;
Menasce, Dario Livio/0000-0002-9918-1686; Bargassa,
Pedrame/0000-0001-8612-3332; Govoni, Pietro/0000-0002-0227-1301;
Tuominen, Eija/0000-0002-7073-7767; Yazgan, Efe/0000-0001-5732-7950;
Gerbaudo, Davide/0000-0002-4463-0878; Vieira de Castro Ferreira da
Silva, Pedro Manuel/0000-0002-5725-041X; Actis,
Oxana/0000-0001-8851-3983; Bean, Alice/0000-0001-5967-8674; Cordonnier,
Agnes/0000-0002-4216-3524; Paganoni, Marco/0000-0003-2461-275X; Seixas,
Joao/0000-0002-7531-0842; Vilela Pereira, Antonio/0000-0003-3177-4626;
Sznajder, Andre/0000-0001-6998-1108; Haj Ahmad,
Wael/0000-0003-1491-0446; Xie, Si/0000-0003-2509-5731; Leonardo,
Nuno/0000-0002-9746-4594; Goh, Junghwan/0000-0002-1129-2083;
Muelmenstaedt, Johannes/0000-0003-1105-6678; Rovelli,
Tiziano/0000-0002-9746-4842; Altsybeev, Igor/0000-0002-8079-7026; TUVE',
Cristina/0000-0003-0739-3153; Gulmez, Erhan/0000-0002-6353-518X; KIM,
Tae Jeong/0000-0001-8336-2434; Flix, Josep/0000-0003-2688-8047; Ozdemir,
Kadri/0000-0002-0103-1488; Lazzizzera, Ignazio/0000-0001-5092-7531; Sen,
Sercan/0000-0001-7325-1087; D'Alessandro, Raffaello/0000-0001-7997-0306;
Trocsanyi, Zoltan/0000-0002-2129-1279; Konecki,
Marcin/0000-0001-9482-4841; Hernandez Calama, Jose
Maria/0000-0001-6436-7547; Barcala, JOSE MIGUEL/0000-0002-1092-7091;
Bedoya, Cristina/0000-0001-8057-9152; Michelotto,
Michele/0000-0001-6644-987X; Matorras, Francisco/0000-0003-4295-5668;
My, Salvatore/0000-0002-9938-2680; Gumus, Kazim/0000-0002-1450-6868;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070;
Codispoti, Giuseppe/0000-0003-0217-7021; Petrucci,
Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Scodellaro, Luca/0000-0002-4974-8330;
Rolandi, Luigi (Gigi)/0000-0002-0635-274X; Hill,
Christopher/0000-0003-0059-0779; Kuleshov, Sergey/0000-0002-3065-326X;
Troitsky, Sergey/0000-0001-6917-6600;
FU FMSR (Austria); FNRS (Belgium); FWO (Belgium); CNPq (Brazil); CAPES
(Brazil); FAPERJ (Brazil); FAPESP (Brazil); MES (Bulgaria); CERN
(China); CAS (China); MoST (China); NSFC (China); COLCIEN-CIAS
(Colombia); MSES (Croatia); RPF (Cyprus); Academy of Sciences (Estonia);
NICPB (Estonia; Academy of Finland (Finland); ME (Finland); HIP
(Finland); CEA (France); CNRS/IN2P3 (France); BMBF (Germany); DFG
(Germany); HGF (Germany); GSRT (Greece); OTKA (Hungary); NKTH (Hungary);
DAE (India); DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV (Mexico); CONACYT (Mexico); SEP
(Mexico); UASLP-FAI (Mexico); PAEC (Pakistan); SCSR (Poland); FCT
(Portugal); JINR (Armenia); JINR (Belarus); JINR (Georgia); JINR
(Ukraine); JINR (Uzbekistan); MST (Russia); MAE (Russia); MSTDS
(Serbia); MICINN (Spain); CPAN (Spain); Swiss Funding Agencies
(Switzerland); NSC (Taipei); TUBITAK (Turkey); TAEK (Turkey); STFC
(United Kingdom); DOE (USA); NSF (USA); European Union; Leventis
Foundation; A. P. Sloan Foundation; Alexander von Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 16
TC 32
Z9 32
U1 1
U2 51
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03009
DI 10.1088/1748-0221/5/03/T03009
PG 41
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100024
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
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Neuherz, B
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de Abril, M. Magrans
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Polese, G.
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Wenman, D.
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White, A.
CA CMS Collaboration
TI Performance and operation of the CMS electromagnetic calorimeter
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Calorimeters; Large detector systems for particle and astroparticle
physics
ID PHYSICS
AB The operation and general performance of the CMS electromagnetic calorimeter using cosmic-ray muons are described. These muons were recorded after the closure of the CMS detector in late 2008. The calorimeter is made of lead tungstate crystals and the overall status of the 75 848 channels corresponding to the barrel and endcap detectors is reported. The stability of crucial operational parameters, such as high voltage, temperature and electronic noise, is summarised and the performance of the light monitoring system is presented.
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[Dimitrov, A.; Dyulendarova, M.; Kozhuharov, V.; Litov, L.; Marinova, E.; Mateev, M.; Pavlov, B.; Petkov, P.; Toteva, Z.] Univ Sofia, BU-1126 Sofia, Bulgaria.
[Chen, G. M.; Chen, H. S.; Guan, W.; Jiang, C. H.; Liang, D.; Liu, B.; Meng, X.; Tao, J.; Wang, J.; Wang, Z.; Xue, Z.; Zhang, Z.] Inst High Energy Phys, Beijing 100039, Peoples R China.
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[Brigljevic, V.; Duric, S.; Kadija, K.; Morovic, S.] Rudjer Boskovic Inst, Zagreb, Croatia.
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[Nedelec, P.; Sillou, D.] Lab Annecy Le Vieux Phys Particules, IN2P3, CNRS, F-74941 Annecy Le Vieux, France.
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[Baffioni, S.; Bianchini, L.; Bluj, M.; Busson, P.; Charlot, C.; Dobrzynski, L.; de Cassagnac, R. Granier; Haguenauer, M.; Minc, P.; Paganini, P.; Sirois, Y.; Thiebaux, C.; Zabi, A.] Ecole Polytech, CNRS, IN2P3, Lab Leprince Ringuet, F-91128 Palaiseau, France.
[Agram, J. -L.; Besson, A.; Bloch, D.; Bodin, D.; Brom, J. -M.; Conte, E.; Drouhin, F.; Fontaine, J. -C.; Gele, D.; Goerlach, U.; Gross, L.; Juillot, P.; Le Bihan, A. -C.; Patois, Y.; Speck, J.; Van Hove, P.] Univ Haute Alsace Mulhouse, Inst Pluridisciplinaire Hubert Curien, Univ Strasbourg, CNRS,IN2P3, Strasbourg, France.
[Baty, C.; Bedjidian, M.; Blaha, J.; Boudoul, G.; Brun, H.; Chanon, N.; Chierici, R.; Contardo, D.; Depasse, P.; Dupasquier, T.; El Mamouni, H.; Fassi, F.; Fay, J.; Gascon, S.; Ille, B.; Kurca, T.; Le Grand, T.; Lethuillier, M.; Lumb, N.; Mirabito, L.; Perries, S.; Vander Donckt, M.; Verdier, P.] Univ Lyon 1, CNRS, IN2P3, Inst Phys Nucl Lyon, F-69622 Villeurbanne, France.
[Djaoshvili, N.; Roinishvili, N.; Roinishvili, V.] Georgian Acad Sci, E Andronikashvili Inst Phys, GE-380060 Tbilisi, Rep of Georgia.
[Amaglobeli, N.] Tbilisi State Univ, Inst High Energy Phys & Informatizat, GE-380086 Tbilisi, Rep of Georgia.
[Adolphi, R.; Anagnostou, G.; Brauer, R.; Braunschweig, W.; Edelhoff, M.; Esser, H.; Feld, L.; Karpinski, W.; Khomich, A.; Klein, K.; Mohr, N.; Ostaptchouk, A.; Pandoulas, D.; Pierschel, G.; Raupach, F.; Schael, S.; von Dratzig, A. Schultz; Schwering, G.; Sprenger, D.; Thomas, M.; Weber, M.; Wittmer, B.; Wlochal, M.] Rhein Westfal TH Aachen, Inst Phys 1, Aachen, Germany.
[Actis, O.; Altenhoefer, G.; Bender, W.; Biallass, P.; Erdmann, M.; Fetchenhauer, G.; Frangenheim, J.; Hebbeker, T.; Hilgers, G.; Hinzmann, A.; Hoepfner, K.; Hof, C.; Kirsch, M.; Klimkovich, T.; Kreuzer, P.; Lanske, D.; Merschmeyer, M.; Meyer, A.; Philipps, B.; Pieta, H.; Reithler, H.; Schmitz, S. A.; Sonnenschein, L.; Sowa, M.; Steggemann, J.; Szczesny, H.; Teyssier, D.; Zeidler, C.] Rhein Westfal TH Aachen, Inst Phys A 3, Aachen, Germany.
[Bontenackels, M.; Davids, M.; Duda, M.; Fluegge, G.; Geenen, H.; Giffels, M.; Ahmad, W. Haj; Hermanns, T.; Heydhausen, D.; Kalinin, S.; Kress, T.; Linn, A.; Nowack, A.; Perchalla, L.; Poettgens, M.; Pooth, O.; Sauerland, P.; Stahl, A.; Tornier, D.; Zoeller, M. H.] Rhein Westfal TH Aachen, Inst Phys B 3, Aachen, Germany.
[Martin, M. Aldaya; Behrens, U.; Borras, K.; Campbell, A.; Castro, E.; Dammann, D.; Eckerlin, G.; Flossdorf, A.; Flucke, G.; Geiser, A.; Hatton, D.; Hauk, J.; Jung, H.; Kasemann, M.; Katkov, I.; Kleinwort, C.; Kluge, H.; Knutsson, A.; Kuznetsova, E.; Lange, W.; Lohmann, W.; Mankel, R.; Marienfeld, M.; Meyer, A. B.; Miglioranzi, S.; Mnich, J.; Ohlerich, M.; Olzem, J.; Parenti, A.; Rosemann, C.; Schmidt, R.; Schoerner-Sadenius, T.; Volyanskyy, D.; Wissing, C.; Zeuner, W. D.] DESY, Hamburg, Germany.
[Autermann, C.; Bechtel, F.; Draeger, J.; Eckstein, D.; Gebbert, U.; Kaschube, K.; Kaussen, G.; Klanner, R.; Mura, B.; Naumann-Emme, S.; Nowak, F.; Pein, U.; Sander, C.; Schleper, P.; Schum, T.; Stadie, H.; Steinbrueck, G.; Thomsen, J.; Wolf, R.] Univ Hamburg, Hamburg, Germany.
[Bauer, J.; Bluem, P.; Buege, V.; Cakir, A.; Chwalek, T.; De Boer, W.; Dierlamm, A.; Dirkes, G.; Feindt, M.; Felzmann, U.; Frey, M.; Furgeri, A.; Gruschke, J.; Hackstein, C.; Hartmann, F.; Heier, S.; Heinrich, M.; Held, H.; Hirschbuehl, D.; Hoffmann, K. H.; Honc, S.; Jung, C.; Kuhr, T.; Liamsuwan, T.; Martschei, D.; Mueller, S.; Mueller, Th.; Neuland, M. B.; Niegel, M.; Oberst, O.; Oehler, A.; Ott, J.; Peiffer, T.; Piparo, D.; Quast, G.; Rabbertz, K.; Ratnikov, F.; Ratnikova, N.; Renz, M.; Saout, C.; Sartisohn, G.; Scheurer, A.; Schieferdecker, P.; Schilling, F. -P.; Schott, G.; Simonis, H. J.; Stober, F. M.; Sturm, P.; Troendle, D.; Trunov, A.; Wagner, W.; Wagner-Kuhr, J.; Zeise, M.; Zhukov, V.; Ziebarth, E. B.] Univ Karlsruhe, Inst Expt Kernphys, D-7500 Karlsruhe, Germany.
[Daskalakis, G.; Geralis, T.; Karafasoulis, K.; Kyriakis, A.; Loukas, D.; Markou, A.; Markou, C.; Mavrommatis, C.; Petrakou, E.; Zachariadou, A.] Inst Nucl Phys Demokritos, Aghia Paraskevi, Greece.
[Gouskos, L.; Katsas, P.; Panagiotou, A.] Univ Athens, Athens, Greece.
[Evangelou, I.; Kokkas, P.; Manthos, N.; Papadopoulos, I.; Patras, V.; Triantis, F. A.] Univ Ioannina, GR-45110 Ioannina, Greece.
[Bencze, G.; Boldizsar, L.; Debreczeni, G.; Hajdu, C.; Hernath, S.; Hidas, P.; Horvath, D.; Krajczar, K.; Laszlo, A.; Patay, G.; Sikler, F.; Toth, N.; Vesztergombi, G.] KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
[Beni, N.; Christian, G.; Imrek, J.; Molnar, J.; Novak, D.; Palinkas, J.; Szekely, G.; Szillasi, Z.; Tokesi, K.; Veszpremi, V.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Kapusi, A.; Marian, G.; Raics, P.; Szabo, Z.; Trocsanyi, Z. L.; Ujvari, B.; Zilizi, G.] Univ Debrecen, H-4012 Debrecen, Hungary.
[Bansal, S.; Bawa, H. S.; Beri, S. B.; Bhatnagar, V.; Jindal, M.; Kaur, M.; Kaur, R.; Kohli, J. M.; Mehta, M. Z.; Nishu, N.; Saini, L. K.; Sharma, A.; Singh, A.; Singh, J. B.; Singh, S. P.] Panjab Univ, Chandigarh 160014, India.
[Ahuja, S.; Arora, S.; Bhattacharya, S.; Chauhan, S.; Choudhary, B. C.; Gupta, P.; Jain, S.; Jain, S.; Jha, M.; Kumar, A.; Ranjan, K.; Shivpuri, R. K.; Srivastava, A. K.] Univ Delhi, Delhi 110007, India.
[Choudhury, R. K.; Dutta, D.; Kailas, S.; Kataria, S. K.; Mohanty, A. K.; Pant, L. M.; Shukla, P.; Topkar, A.] Bhabha Atom Res Ctr, Bombay 400085, Maharashtra, India.
[Aziz, T.; Guchait, M.; Gurtu, A.; Maity, M.; Majumder, D.; Majumder, G.; Mazumdar, K.; Nayak, A.; Saha, A.; Sudhakar, K.] Tata Inst Fundamental Res, EHEP, Bombay 400005, Maharashtra, India.
[Banerjee, S.; Dugad, S.; Mondal, N. K.] Tata Inst Fundamental Res, HECR, Bombay 400005, Maharashtra, India.
[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys & Math, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Abbrescia, M.; De Palma, M.; Lusito, L.; Manna, N.; Marangelli, B.; Natali, S.; Nuzzo, S.; Pompili, A.; Roselli, G.; Selvaggi, G.; Tupputi, S.] Univ Bari, Bari, Italy.
[Creanza, D.; Iaselli, G.; Maggi, G.; My, S.; Pugliese, G.; Romano, F.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Bacchi, W.; Braibant-Giacomelli, S.; Capiluppi, P.; Castro, A.; Codispoti, G.; Cuffiani, M.; Fanfani, A.; Masetti, G.; Navarria, F. L.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Broccolo, G.; Ciulli, V.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Genta, C.; Landi, G.; Lenzi, P.] Univ Florence, Florence, Italy.
[Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Fabbri, F.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Cerati, G. B.; Govoni, P.; Malberti, M.; Miccio, V.; Negri, P.; Paganoni, M.; Pullia, A.; Ragazzi, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Cimmino, A.; De Gruttola, M.; Noli, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Bellan, P.; Bisello, D.; Borsato, E.; Carlin, R.; De Mattia, M.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Kaminskiy, A.; Margoni, M.; Mattiazzo, S.; Meneguzzo, A. T.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Tosi, M.; Vanini, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Biasini, M.; Caponeri, B.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Santocchia, A.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Bernardini, J.; Fiori, F.; Messineo, A.; Tonelli, G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bocci, A.; Borrello, L.; Foa, L.; Gennai, S.; Ligabue, F.; Petrucciani, G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Barone, L.; Del Re, D.; Di Marco, E.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Rahatlou, S.] Univ Roma La Sapienza, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Amapane, N.; Arcidiacono, R.; Argiro, S.; Borgia, M. A.; Botta, C.; Castello, R.; Cerminara, G.; Costa, M.; Graziano, A.; Marone, M.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Oggero, S.; Pelliccioni, M.; Romero, A.; Sacchi, R.; Solano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.] Univ Turin, Turin, Italy.
[Arneodo, M.; Obertino, M. M.; Ruspa, M.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Della Ricca, G.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius State Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Pedro, L. Antunes; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Ferreira, M. Freitas; Gallinaro, M.; Jordao, M. Guerra; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Postoev, V. E.; Solovey, A.; Solovey, A.; Toropin, A.; Troitsky, S.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De la Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Rivero, C. Martinez; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, CSIC, IFCA, E-39005 Santander, Spain.
[Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli 32054, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Natl Sci Ctr, Kharkov Inst Phys & Technol, Kharkov, Ukraine.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; St John, J.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; De la Barca Sanchez, M. Calderon; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Cankocak, K.] Istanbul Tech Univ, Istanbul, Turkey.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
Univ Fed ABC, Santo Andre, Brazil.
Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
Univ Haute Alsace, Mulhouse, France.
IN2P3, Ctr Calcul, Villeurbanne, France.
Visva Bharati Univ, Santini Ketan, W Bengal, India.
Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
Univ Basilicata, I-85100 Potenza, Italy.
Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
Univ Trento, Trento, Italy.
ENEA Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
Univ Belgrade, Fac Phys, Belgrade, Serbia.
Ecole Polytech, CNRS, IN2P3, Lab Leprince Ringuet, F-91128 Palaiseau, France.
Alstom Contracting, Geneva, Switzerland.
Ist Nazl Fis Nucl, Scuola Normale & Sez, Pisa, Italy.
Univ Athens, Athens, Greece.
Univ Kansas, Lawrence, KS 66045 USA.
Inst Theoret & Expt Phys, Moscow 117259, Russia.
Paul Scherrer Inst, Villigen, Switzerland.
Vinca Inst Nucl Sci, Belgrade, Serbia.
Mersin Univ, Mersin, Turkey.
Kafkas Univ, Kars, Turkey.
Izmir Inst Technol, Izmir, Turkey.
Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
Ege Univ, Izmir, Turkey.
KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Venturi, Andrea/J-1877-2012; de Jesus Damiao, Dilson/G-6218-2012;
Montanari, Alessandro/J-2420-2012; Amapane, Nicola/J-3683-2012; tosi,
mia/J-5777-2012; Klyukhin, Vyacheslav/D-6850-2012; Petrushanko,
Sergey/D-6880-2012; Raidal, Martti/F-4436-2012; Vardanyan,
Irina/K-7981-2012; Novaes, Sergio/D-3532-2012; Kadastik,
Mario/B-7559-2008; Mundim, Luiz/A-1291-2012; Kodolova, Olga/D-7158-2012;
Dudko, Lev/D-7127-2012; Boos, Eduard/D-9748-2012; Snigirev,
Alexander/D-8912-2012; Chipaux, Remi/G-1145-2010; Servoli,
Leonello/E-6766-2012; Tomei, Thiago/E-7091-2012; Focardi,
Ettore/E-7376-2012; Fruhwirth, Rudolf/H-2529-2012; Azzi,
Patrizia/H-5404-2012; Torassa, Ezio/I-1788-2012; Giacomelli,
Paolo/B-8076-2009; Jeitler, Manfred/H-3106-2012; Ruiz,
Alberto/E-4473-2011; Stahl, Achim/E-8846-2011; Hektor, Andi/G-1804-2011;
Wulz, Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Tinoco Mendes, Andre
David/D-4314-2011; Lokhtin, Igor/D-7004-2012; Horvath,
Dezso/A-4009-2011; Palinkas, Jozsef/B-2993-2011; Romaniuk,
Ryszard/B-9140-2011; Varela, Joao/K-4829-2016; Sguazzoni,
Giacomo/J-4620-2015; Ligabue, Franco/F-3432-2014; Fassi,
Farida/F-3571-2016; Menasce, Dario Livio/A-2168-2016; Bargassa,
Pedrame/O-2417-2016; Leonardo, Nuno/M-6940-2016; Goh,
Junghwan/Q-3720-2016; Govoni, Pietro/K-9619-2016; Tuominen,
Eija/A-5288-2017; Yazgan, Efe/C-4521-2014; Gerbaudo, Davide/J-4536-2012;
Della Ricca, Giuseppe/B-6826-2013; Fedorov, Andrei/E-9455-2014;
Konovalova, Nina/D-3882-2014; Cordonnier, Agnes/I-5083-2016; Paganoni,
Marco/A-4235-2016; Kirakosyan, Martin/N-2701-2015; Seixas,
Joao/F-5441-2013; Verwilligen, Piet/M-2968-2014; Vilela Pereira,
Antonio/L-4142-2016; Sznajder, Andre/L-1621-2016; Haj Ahmad,
Wael/E-6738-2016; Xie, Si/O-6830-2016; Muelmenstaedt,
Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015; Dremin,
Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Altsybeev, Igor/K-6687-2013; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
korzhik, Mikhail/E-9505-2014; Lazzizzera, Ignazio/E-9678-2015; Sen,
Sercan/C-6473-2014; D'Alessandro, Raffaello/F-5897-2015; Trocsanyi,
Zoltan/A-5598-2009; Konecki, Marcin/G-4164-2015; Hernandez Calama, Jose
Maria/H-9127-2015; Barcala, JOSE MIGUEL/I-1105-2015; Bedoya,
Cristina/K-8066-2014; Michelotto, Michele/A-9571-2013; Matorras,
Francisco/I-4983-2015; My, Salvatore/I-5160-2015; Gumus,
Kazim/G-2498-2013; Josa, Isabel/K-5184-2014; Navarrete Marin, Jose
Javier/K-6412-2014; Marin, Jesus/K-6991-2014; Gonzalez Suarez,
Rebeca/L-6128-2014; Calvo Alamillo, Enrique/L-1203-2014; Paulini,
Manfred/N-7794-2014; Vogel, Helmut/N-8882-2014; Ferguson,
Thomas/O-3444-2014; Ragazzi, Stefano/D-2463-2009; Benussi,
Luigi/O-9684-2014; Russ, James/P-3092-2014; Grandi, Claudio/B-5654-2015;
Ahmed, Ijaz/E-9144-2015; Alves, Gilvan/C-4007-2013; Santoro,
Alberto/E-7932-2014; Codispoti, Giuseppe/F-6574-2014; Bellan,
Riccardo/G-2139-2014; Petrucci, Andrea/J-4207-2014; Gribushin,
Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Molinero,
Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014; Scodellaro,
Luca/K-9091-2014; Santaolalla, Javier/C-3094-2013; Gavrilov,
Gennady/C-6260-2013; Rolandi, Luigi (Gigi)/E-8563-2013; Zalewski,
Piotr/H-7335-2013; Cavallo, Nicola/F-8913-2012; Dvornikov,
Oleg/I-7207-2013; Hill, Christopher/B-5371-2012; Kuleshov,
Sergey/D-9940-2013; Troitsky, Sergey/C-1377-2014; Marlow,
Daniel/C-9132-2014; Oguri, Vitor/B-5403-2013; Janssen,
Xavier/E-1915-2013
OI de Jesus Damiao, Dilson/0000-0002-3769-1680; Montanari,
Alessandro/0000-0003-2748-6373; Amapane, Nicola/0000-0001-9449-2509;
Klyukhin, Vyacheslav/0000-0002-8577-6531; Novaes,
Sergio/0000-0003-0471-8549; Mundim, Luiz/0000-0001-9964-7805; Dudko,
Lev/0000-0002-4462-3192; Servoli, Leonello/0000-0003-1725-9185; Tomei,
Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267; Azzi,
Patrizia/0000-0002-3129-828X; Ruiz, Alberto/0000-0002-3639-0368; Stahl,
Achim/0000-0002-8369-7506; Hektor, Andi/0000-0001-7873-8118; Wulz,
Claudia-Elisabeth/0000-0001-9226-5812; Krammer,
Manfred/0000-0003-2257-7751; Tinoco Mendes, Andre
David/0000-0001-5854-7699; Romaniuk, Ryszard/0000-0002-5710-4041;
Torassa, Ezio/0000-0003-2321-0599; Luukka, Panja/0000-0003-2340-4641;
Goldstein, Joel/0000-0003-1591-6014; Sogut, Kenan/0000-0002-9682-2855;
Korenkov, Vladimir/0000-0002-2342-7862; Heath,
Helen/0000-0001-6576-9740; Giubilato, Piero/0000-0003-4358-5355;
Gallinaro, Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Gutsche,
Oliver/0000-0002-8015-9622; Arneodo, Michele/0000-0002-7790-7132;
Sciacca, Crisostomo/0000-0002-8412-4072; Varela,
Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109; Toback,
David/0000-0003-3457-4144; Mackay, Catherine/0000-0003-4252-6740;
HSIUNG, YEE/0000-0003-4801-1238; Bonnett Del Alamo, Miguel
Reinaldo/0000-0002-1011-8411; Faccioli, Pietro/0000-0003-1849-6692;
bianco, stefano/0000-0002-8300-4124; Demaria,
Natale/0000-0003-0743-9465; Benaglia, Andrea Davide/0000-0003-1124-8450;
Covarelli, Roberto/0000-0003-1216-5235; Ciulli,
Vitaliano/0000-0003-1947-3396; Martelli, Arabella/0000-0003-3530-2255;
Levchenko, Petr/0000-0003-4913-0538; Uliyanov,
Alexey/0000-0001-6935-8949; Sguazzoni, Giacomo/0000-0002-0791-3350;
Ligabue, Franco/0000-0002-1549-7107; Diemoz,
Marcella/0000-0002-3810-8530; Tricomi, Alessia Rita/0000-0002-5071-5501;
CALZOLARI, FEDERICO/0000-0002-5510-3061; Fassi,
Farida/0000-0002-6423-7213; Ghezzi, Alessio/0000-0002-8184-7953;
Baarmand, Marc/0000-0002-9792-8619; Nervo, Marco/0000-0002-9898-7346;
Boccali, Tommaso/0000-0002-9930-9299; Menasce, Dario
Livio/0000-0002-9918-1686; Bargassa, Pedrame/0000-0001-8612-3332;
Mrenna, Stephen/0000-0001-8731-160X; Bilki, Burak/0000-0001-9515-3306;
Lloret Iglesias, Lara/0000-0002-0157-4765; Donvito,
Giacinto/0000-0002-0628-1080; WANG, MIN-ZU/0000-0002-0979-8341; Rizzi,
Andrea/0000-0002-4543-2718; Gershtein, Yuri/0000-0002-4871-5449; Bean,
Alice/0000-0001-5967-8674; Longo, Egidio/0000-0001-6238-6787;
Dharmaraatna, Welathantri/0000-0002-6366-837X; Leonidopoulos,
Christos/0000-0002-7241-2114; Blekman, Freya/0000-0002-7366-7098;
Beuselinck, Raymond/0000-0003-2613-7446; Petragnani,
Giulio/0000-0002-0819-6509; Giacomelli, Paolo/0000-0002-6368-7220;
Costa, Salvatore/0000-0001-9919-0569; Hamel de Monchenault,
Gautier/0000-0002-3872-3592; Malik, Sudhir/0000-0002-6356-2655; Staiano,
Amedeo/0000-0003-1803-624X; Tonelli, Guido Emilio/0000-0003-2606-9156;
Abbiendi, Giovanni/0000-0003-4499-7562; Leonardo,
Nuno/0000-0002-9746-4594; Goh, Junghwan/0000-0002-1129-2083; Govoni,
Pietro/0000-0002-0227-1301; Tuominen, Eija/0000-0002-7073-7767; Yazgan,
Efe/0000-0001-5732-7950; Gerbaudo, Davide/0000-0002-4463-0878; Vieira de
Castro Ferreira da Silva, Pedro Manuel/0000-0002-5725-041X; Actis,
Oxana/0000-0001-8851-3983; Kasemann, Matthias/0000-0002-0429-2448;
Stober, Fred/0000-0003-2620-3159; Landsberg, Greg/0000-0002-4184-9380;
Della Ricca, Giuseppe/0000-0003-2831-6982; Cordonnier,
Agnes/0000-0002-4216-3524; Paganoni, Marco/0000-0003-2461-275X; Seixas,
Joao/0000-0002-7531-0842; Vilela Pereira, Antonio/0000-0003-3177-4626;
Sznajder, Andre/0000-0001-6998-1108; Haj Ahmad,
Wael/0000-0003-1491-0446; Xie, Si/0000-0003-2509-5731; Muelmenstaedt,
Johannes/0000-0003-1105-6678; Rovelli, Tiziano/0000-0002-9746-4842;
Altsybeev, Igor/0000-0002-8079-7026; TUVE',
Cristina/0000-0003-0739-3153; Gulmez, Erhan/0000-0002-6353-518X; KIM,
Tae Jeong/0000-0001-8336-2434; Flix, Josep/0000-0003-2688-8047; Ozdemir,
Kadri/0000-0002-0103-1488; Lazzizzera, Ignazio/0000-0001-5092-7531; Sen,
Sercan/0000-0001-7325-1087; D'Alessandro, Raffaello/0000-0001-7997-0306;
Trocsanyi, Zoltan/0000-0002-2129-1279; Konecki,
Marcin/0000-0001-9482-4841; Hernandez Calama, Jose
Maria/0000-0001-6436-7547; Barcala, JOSE MIGUEL/0000-0002-1092-7091;
Bedoya, Cristina/0000-0001-8057-9152; Michelotto,
Michele/0000-0001-6644-987X; Matorras, Francisco/0000-0003-4295-5668;
My, Salvatore/0000-0002-9938-2680; Gumus, Kazim/0000-0002-1450-6868;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070;
Codispoti, Giuseppe/0000-0003-0217-7021; Petrucci,
Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Scodellaro, Luca/0000-0002-4974-8330;
Rolandi, Luigi (Gigi)/0000-0002-0635-274X; Hill,
Christopher/0000-0003-0059-0779; Kuleshov, Sergey/0000-0002-3065-326X;
Troitsky, Sergey/0000-0001-6917-6600;
FU FMSR (Austria); FNRS (Belgium); FWO (Belgium); CNPq (Brazil); CAPES
(Brazil); FAPERJ (Brazil); FAPESP (Brazil); MES (Bulgaria); CERN
(China); CAS (China); MoST (China); NSFC (China); COLCIEN-CIAS
(Colombia); MSES (Croatia); RPF (Cyprus); Academy of Sciences (Estonia);
NICPB (Estonia); Academy of Finland (Finland); ME (Finland); HIP
(Finland); CEA (France); CNRS/IN2P3 (France); BMBF (Germany); DFG
(Germany); HGF (Germany); GSRT (Greece); OTKA (Hungary); NKTH (Hungary);
DAE (India); DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV (Mexico); CONACYT (Mexico); SEP
(Mexico); UASLP-FAI (Mexico); PAEC (Pakistan); SCSR (Poland); FCT
(Portugal); JINR (Armenia); JINR (Belarus); JINR (Georgia); JINR
(Ukraine); JINR (Uzbekistan); MST (Russia); MAE (Russia); MSTDS
(Serbia); MICINN (Spain; CPAN (Spain); Swiss Funding Agencies
(Switzerland); NSC (Taipei); TUBITAK (Turkey); TAEK (Turkey); STFC
(United Kingdom); DOE (USA); NSF (USA); European Union; Leventis
Foundation; A. P. Sloan Foundation; Alexander von Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 24
TC 33
Z9 33
U1 3
U2 57
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03010
DI 10.1088/1748-0221/5/03/T03010
PG 41
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100023
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
Litomin, A
Makarenko, V
Marfin, I
Mossolov, V
Shumeiko, N
Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
Fedorov, A
Karneyeu, A
Korzhik, M
Panov, V
Zuyeuski, R
Kuchinsky, P
Beaumont, W
Benucci, L
Cardaci, M
De Wolf, EA
Delmeire, E
Druzhkin, D
Hashemi, M
Janssen, X
Maes, T
Mucibello, L
Ochesanu, S
Rougny, R
Selvaggi, M
Van Haevermaet, H
Van Mechelen, P
Van Remortel, N
Adler, V
Beauceron, S
Blyweert, S
D'Hondt, J
De Weirdt, S
Devroede, O
Heyninck, J
Kalogeropoulos, A
Maes, J
Maes, M
Mozer, MU
Tavernier, S
Van Doninck, W
Van Mulders, P
Villella, I
Bouhali, O
Chabert, EC
Charaf, O
Clerbaux, B
De Lentdecker, G
Dero, V
Elgammal, S
Gay, APR
Hammad, GH
Marage, PE
Rugovac, S
Vander Velde, C
Vanlaer, P
Wickens, J
Grunewald, M
Klein, B
Marinov, A
Ryckbosch, D
Thyssen, F
Tytgat, M
Vanelderen, L
Verwilligen, P
Basegmez, S
Bruno, G
Caudron, J
Delaere, C
Demin, P
Favart, D
Giammanco, A
Gregoire, G
Lemaitre, V
Militaru, O
Ovyn, S
Piotrzkowski, K
Quertenmont, L
Schul, N
Beliy, N
Daubie, E
Alves, GA
Pol, ME
Souza, MHG
Carvalho, W
Damiao, DD
Martins, CD
De Souza, SF
Mundim, L
Oguri, V
Santoro, A
Do Amaral, SMS
Sznajder, A
Tomei, TRFP
Dias, MAF
Gregores, EM
Novaes, SF
Abadjiev, K
Anguelov, T
Damgov, J
Darmenov, N
Dimitrov, L
Genchev, V
Iaydjiev, P
Piperov, S
Stoykova, S
Sultanov, G
Trayanov, R
Vankov, I
Dimitrov, A
Dyulendarova, M
Kozhuharov, V
Litov, L
Marinova, E
Mateev, M
Pavlov, B
Petkov, P
Toteva, Z
Chen, GM
Chen, HS
Guan, W
Jiang, CH
Liang, D
Liu, B
Meng, X
Tao, J
Wang, J
Wang, Z
Xue, Z
Zhang, Z
Ban, Y
Cai, J
Ge, Y
Guo, S
Hu, Z
Mao, Y
Qian, SJ
Teng, H
Zhu, B
Avila, C
Ruiz, MB
Montoya, CAC
Gomez, A
Moreno, BG
Rios, AAO
Oliveros, AFO
Romero, DR
Sanabria, JC
Godinovic, N
Lelas, K
Plestina, R
Polic, D
Puljak, I
Antunovic, Z
Dzelalija, M
Brigljevic, V
Duric, S
Kadija, K
Morovic, S
Fereos, R
Galanti, M
Mousa, J
Papadakis, A
Ptochos, F
Razis, PA
Tsiakkouri, D
Zinonos, Z
Hektor, A
Kadastik, M
Kannike, K
Muntel, M
Raidal, M
Rebane, L
Anttila, E
Czellar, S
Harkonen, J
Heikkinen, A
Karimaki, V
Kinnunen, R
Klem, J
Kortelainen, MJ
Lampen, T
Lassila-Perini, K
Lehti, S
Linden, T
Luukka, P
Maenpaa, T
Nysten, J
Tuominen, E
Tuominiemi, J
Ungaro, D
Wendland, L
Banzuzi, K
Korpela, A
Tuuva, T
Nedelec, P
Sillou, D
Besancon, M
Chipaux, R
Dejardin, M
Denegri, D
Descamps, J
Fabbro, B
Faure, JL
Ferri, F
Ganjour, S
Gentit, FX
Givernaud, A
Gras, P
de Monchenault, GH
Jarry, P
Lemaire, MC
Locci, E
Malcles, J
Marionneau, M
Millischer, L
Rander, J
Rosowsky, A
Rousseau, D
Titov, M
Verrecchia, P
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Grogg, K. S.
Grothe, M.
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Jaworski, M.
Klabbers, P.
Klukas, J.
Lanaro, A.
Lazaridis, C.
Leonard, J.
Loveless, R.
De Abril, M. Magrans
Mohapatra, A.
Ott, G.
Polese, G.
Reeder, D.
Savin, A.
Smith, W. H.
Sourkov, A.
Swanson, J.
Weinberg, M.
Wenman, D.
Wensveen, M.
White, A.
CA CMS Collaboration
Organtini, G
TI Measurement of the muon stopping power in lead tungstate
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Interaction of radiation with matter; Calorimeters
AB A large sample of cosmic ray events collected by the CMS detector is exploited to measure the specific energy loss of muons in the lead tungstate (PbWO4) of the electromagnetic calorimeter. The measurement spans a momentum range from 5 GeV/c to 1 TeV/c. The results are consistent with the expectations over the entire range. The calorimeter energy scale, set with 120 GeV/c electrons, is validated down to the sub-GeV region using energy deposits, of order 100MeV, associated with low-momentum muons. The muon critical energy in PbWO4 is measured to be 160(-6)(+5) +/- 8 GeV, in agreement with expectations. This is the first experimental determination of muon critical energy.
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[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Cimmino, A.; De Gruttola, M.; Noli, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Bellan, P.; Bisello, D.; Borsato, E.; Carlin, R.; De Mattia, M.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gresele, A.; Kaminskiy, A.; Margoni, M.; Mattiazzo, S.; Meneguzzo, A. T.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Tosi, M.; Triossi, A.; Vanini, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Biasini, M.; Caponeri, B.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Santocchia, A.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Bernardini, J.; Fiori, F.; Messineo, A.; Tonelli, G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bocci, A.; Borrello, L.; Foa, L.; Gennai, S.; Ligabue, F.; Petrucciani, G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.; Organtini, G] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Amapane, N.; Arcidiacono, R.; Argiro, S.; Borgia, M. A.; Botta, C.; Castello, R.; Cerminara, G.; Costa, M.; Graziano, A.; Marone, M.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Oggero, S.; Pelliccioni, M.; Romero, A.; Sacchi, R.; Solano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.] Univ Turin, Turin, Italy.
[Arneodo, M.; Obertino, M. M.; Ruspa, M.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Della Ricca, G.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoameri, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potos, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Konecki, K. Doroba M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Bluj, M.; Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrilov, G.; Golovtsov, V.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Anisimov, A.; Dermenev, A.; Pashenkov, A.; Solovey, A.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.; Starodumov, A.; Nikitenko, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.; Sourkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.; Nardulli, A.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, CSIC, Inst Fis Cantabria IFCA, E-39005 Santander, Spain.
[Hammer, J.; Van Doninck, W.; Piotrzkowski, K.; Abadjiev, K.; Darmenov, N.; Genchev, V.; Toteva, Z.; Fetchenhauer, G.; Kreuzer, P.; Mankel, R.; Zeuner, W. D.; Hartmann, F.; Saout, C.; Panagiotou, A.; Bencze, G.; Hajdu, C.; Szillasi, Z.; Dallavalle, G. M.; Giunta, M.; Lenzi, P.; Cerati, G. B.; Malberti, M.; Cimmino, A.; De Gruttola, M.; Azzi, P.; Bellan, P.; Spagnolo, P.; Tenchini, R.; Tonelli, G.; Cavallari, F.; Paramatti, R.; Trapani, P. P.; Castilla Valdez, H.; Kossov, M.; Grishin, V.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.; Sidiropoulos, G.; Virdee, T.; Erhan, S.; Afaq, M. A.; Tkaczyk, S.; Trentadue, R.; Crotty, I.; Hall-Wilton, R.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Meier, U. Langenegger F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.; Caminada, L.; Dambach, S.; Eggel, C.; Marchica, C.; Trueb, P.] Paul Scherrer Inst, Villigen, Switzerland.
[Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] Swiss Fed Inst Technol, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli 32054, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Acosta, M. Vazquez; Wardrope, D.; Wingham, M.] Univ London, Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; St John, J.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Bhattacharya, S.; Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Zhu, B.; Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Spiropulu, M.; Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Sibille, J.; Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.; Aurisano, A.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska Lincoln, Lincoln, NE USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Pozdnyakov, A.; Schmitt, M.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Gilmore, J.; Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Zelepoukine, S.; Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; De Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Agram, J. -L.; Conte, E.; Drouhin, F.; Fontaine, J. -C.] Univ Haute Alsace, Mulhouse, France.
[Fassi, F.] Inst Natl Phys Nucl & Phys Particules, IN2P3, Ctr Calcul, Villeurbanne, France.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Fabozzi, F.] Univ Basilicata, I-85100 Potenza, Italy.
[Biasotto, M.; Gulmini, M.; Lacaprara, S.; Maron, G.] Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
[Gresele, A.; Lazzizzera, I.] Univ Trento, Trento, Italy.
[Baccaro, S.] ENEA, Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Jovanovic, D.; Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade 11001, Serbia.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Rolandi, G.] Ist Nazl Fis Nucl, Scuola Normale & Sez, Pisa, Italy.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Maron, G.; Ozkorucuklu, S.] Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Cankocak, K.] Istanbul Tech Univ, TR-80626 Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Torassa, Ezio/I-1788-2012; Giacomelli, Paolo/B-8076-2009; Jeitler,
Manfred/H-3106-2012; Venturi, Andrea/J-1877-2012; de Jesus Damiao,
Dilson/G-6218-2012; Montanari, Alessandro/J-2420-2012; Amapane,
Nicola/J-3683-2012; tosi, mia/J-5777-2012; Klyukhin,
Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012; Raidal,
Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
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Achim/E-8846-2011; Hektor, Andi/G-1804-2011; Wulz,
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Sguazzoni, Giacomo/J-4620-2015; Ligabue, Franco/F-3432-2014; Menasce,
Dario Livio/A-2168-2016; Bargassa, Pedrame/O-2417-2016; Tuominen,
Eija/A-5288-2017; Yazgan, Efe/C-4521-2014; Gerbaudo, Davide/J-4536-2012;
Konovalova, Nina/D-3882-2014; Cordonnier, Agnes/I-5083-2016; Paganoni,
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Joao/F-5441-2013; Verwilligen, Piet/M-2968-2014; Vilela Pereira,
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Igor/K-6687-2013; TUVE', Cristina/P-3933-2015; Gulmez,
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Ozdemir, Kadri/P-8058-2014; korzhik, Mikhail/E-9505-2014; Della Ricca,
Giuseppe/B-6826-2013; Fedorov, Andrei/E-9455-2014; Sen,
Sercan/C-6473-2014; D'Alessandro, Raffaello/F-5897-2015; Trocsanyi,
Zoltan/A-5598-2009; Hernandez Calama, Jose Maria/H-9127-2015; Barcala,
JOSE MIGUEL/I-1105-2015; Bedoya, Cristina/K-8066-2014; Michelotto,
Michele/A-9571-2013; Matorras, Francisco/I-4983-2015; My,
Salvatore/I-5160-2015; Gumus, Kazim/G-2498-2013; Muelmenstaedt,
Johannes/K-2432-2015; Josa, Isabel/K-5184-2014; Navarrete Marin, Jose
Javier/K-6412-2014; Gonzalez Suarez, Rebeca/L-6128-2014; Calvo Alamillo,
Enrique/L-1203-2014; Paulini, Manfred/N-7794-2014; Vogel,
Helmut/N-8882-2014; Ferguson, Thomas/O-3444-2014; Ragazzi,
Stefano/D-2463-2009; Benussi, Luigi/O-9684-2014; Russ,
James/P-3092-2014; Grandi, Claudio/B-5654-2015; Ahmed, Ijaz/E-9144-2015;
Lazzizzera, Ignazio/E-9678-2015; Oguri, Vitor/B-5403-2013; Alves,
Gilvan/C-4007-2013; Codispoti, Giuseppe/F-6574-2014; Bellan,
Riccardo/G-2139-2014; Petrucci, Andrea/J-4207-2014; Gribushin,
Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Molinero,
Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014; Scodellaro,
Luca/K-9091-2014; Kadastik, Mario/B-7559-2008; Mundim, Luiz/A-1291-2012;
Santaolalla, Javier/C-3094-2013; Gavrilov, Gennady/C-6260-2013; Rolandi,
Luigi (Gigi)/E-8563-2013; Zalewski, Piotr/H-7335-2013; Cavallo,
Nicola/F-8913-2012; Dvornikov, Oleg/I-7207-2013; Hill,
Christopher/B-5371-2012; Kuleshov, Sergey/D-9940-2013; Troitsky,
Sergey/C-1377-2014; Marlow, Daniel/C-9132-2014; Janssen,
Xavier/E-1915-2013
OI Luukka, Panja/0000-0003-2340-4641; Goldstein, Joel/0000-0003-1591-6014;
Sogut, Kenan/0000-0002-9682-2855; de Jesus Damiao,
Dilson/0000-0002-3769-1680; Montanari, Alessandro/0000-0003-2748-6373;
Amapane, Nicola/0000-0001-9449-2509; Klyukhin,
Vyacheslav/0000-0002-8577-6531; Novaes, Sergio/0000-0003-0471-8549;
Tinoco Mendes, Andre David/0000-0001-5854-7699; Dudko,
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Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267; Azzi,
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Ruiz, Alberto/0000-0002-3639-0368; Stahl, Achim/0000-0002-8369-7506;
Hektor, Andi/0000-0001-7873-8118; Wulz,
Claudia-Elisabeth/0000-0001-9226-5812; Krammer,
Manfred/0000-0003-2257-7751; Giubilato, Piero/0000-0003-4358-5355;
Gallinaro, Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Gutsche,
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Catherine/0000-0003-4252-6740; HSIUNG, YEE/0000-0003-4801-1238; Bonnett
Del Alamo, Miguel Reinaldo/0000-0002-1011-8411; Faccioli,
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Heath, Helen/0000-0001-6576-9740; Martelli,
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Leonidopoulos, Christos/0000-0002-7241-2114; Blekman,
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Benaglia, Andrea Davide/0000-0003-1124-8450; Covarelli,
Roberto/0000-0003-1216-5235; Staiano, Amedeo/0000-0003-1803-624X;
Ciulli, Vitaliano/0000-0003-1947-3396; Tonelli, Guido
Emilio/0000-0003-2606-9156; Beuselinck, Raymond/0000-0003-2613-7446;
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Petragnani, Giulio/0000-0002-0819-6509; Sguazzoni,
Giacomo/0000-0002-0791-3350; WANG, MIN-ZU/0000-0002-0979-8341; Ligabue,
Franco/0000-0002-1549-7107; Bean, Alice/0000-0001-5967-8674; Longo,
Egidio/0000-0001-6238-6787; Baarmand, Marc/0000-0002-9792-8619; Boccali,
Tommaso/0000-0002-9930-9299; Menasce, Dario Livio/0000-0002-9918-1686;
Bargassa, Pedrame/0000-0001-8612-3332; Tuominen,
Eija/0000-0002-7073-7767; Yazgan, Efe/0000-0001-5732-7950; Gerbaudo,
Davide/0000-0002-4463-0878; Vieira de Castro Ferreira da Silva, Pedro
Manuel/0000-0002-5725-041X; Actis, Oxana/0000-0001-8851-3983; Nervo,
Marco/0000-0002-9898-7346; Cordonnier, Agnes/0000-0002-4216-3524;
Paganoni, Marco/0000-0003-2461-275X; Seixas, Joao/0000-0002-7531-0842;
Vilela Pereira, Antonio/0000-0003-3177-4626; Sznajder,
Andre/0000-0001-6998-1108; Haj Ahmad, Wael/0000-0003-1491-0446; Xie,
Si/0000-0003-2509-5731; Leonardo, Nuno/0000-0002-9746-4594; Goh,
Junghwan/0000-0002-1129-2083; Govoni, Pietro/0000-0002-0227-1301;
Rovelli, Tiziano/0000-0002-9746-4842; Altsybeev,
Igor/0000-0002-8079-7026; TUVE', Cristina/0000-0003-0739-3153; Gulmez,
Erhan/0000-0002-6353-518X; KIM, Tae Jeong/0000-0001-8336-2434; Flix,
Josep/0000-0003-2688-8047; Ozdemir, Kadri/0000-0002-0103-1488; Della
Ricca, Giuseppe/0000-0003-2831-6982; Sen, Sercan/0000-0001-7325-1087;
D'Alessandro, Raffaello/0000-0001-7997-0306; Trocsanyi,
Zoltan/0000-0002-2129-1279; Hernandez Calama, Jose
Maria/0000-0001-6436-7547; Barcala, JOSE MIGUEL/0000-0002-1092-7091;
Bedoya, Cristina/0000-0001-8057-9152; Michelotto,
Michele/0000-0001-6644-987X; Matorras, Francisco/0000-0003-4295-5668;
My, Salvatore/0000-0002-9938-2680; Gumus, Kazim/0000-0002-1450-6868;
Muelmenstaedt, Johannes/0000-0003-1105-6678; Navarrete Marin, Jose
Javier/0000-0002-6220-8638; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070;
Lazzizzera, Ignazio/0000-0001-5092-7531; Codispoti,
Giuseppe/0000-0003-0217-7021; Petrucci, Andrea/0000-0003-2524-8355;
Cerrada, Marcos/0000-0003-0112-1691; Oller, Juan
Carlos/0000-0002-2754-2788; Scodellaro, Luca/0000-0002-4974-8330;
Mundim, Luiz/0000-0001-9964-7805; Rolandi, Luigi
(Gigi)/0000-0002-0635-274X; Hill, Christopher/0000-0003-0059-0779;
Kuleshov, Sergey/0000-0002-3065-326X; Troitsky,
Sergey/0000-0001-6917-6600;
FU FMSR (Austria); FNRS (Belgium); FWO (Belgium); CNPq (Brazil); CAPES
(Brazil); FAPERJ (Brazil); FAPESP (Brazil); MES (Bulgaria); CERN
(China); CAS (China); MoST (China); NSFC (China); COLCIEN-CIAS
(Colombia); MSES (Croatia); RPF (Cyprus); Academy of Sciences (Estonia);
NICPB (Estonia); Academy of Finland (Finland); ME (Finland); HIP
(Finland); CEA (France); CNRS/IN2P3 (France); BMBF (Germany); DFG
(Germany); HGF (Germany); GSRT (Greece); OTKA (Hungary); NKTH (Hungary);
DAE (India); DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV (Mexico); CONACYT (Mexico); SEP
(Mexico); UASLP-FAI (Mexico); PAEC (Pakistan); SCSR (Poland); FCT
(Portugal); JINR (Armenia); JINR (Belarus); JINR (Georgia); JINR
(Ukraine); JINR (Uzbekistan); MST (Russia); MAE (Russia); MSTDS
(Serbia); MICINN (Spain); CPAN (Spain); Swiss Funding Agencies
(Switzerland); NSC (Taipei); TUBITAK (Turkey); TAEK (Turkey); STFC
(United Kingdom); DOE (USA); NSF (USA); European Union; Leventis
Foundation; A. P. Sloan Foundation; Alexander von Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 12
TC 28
Z9 28
U1 1
U2 50
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR P03007
DI 10.1088/1748-0221/5/03/P03007
PG 32
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100022
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
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De Abril, M. Magrans
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CA CMS Collaboration
TI Performance of the CMS hadron calorimeter with cosmic ray muons and LHC
beam data
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Calorimeters; Large detector systems for particle and astroparticle
physics
ID MAGNETIC-FIELDS; CALIBRATION; SCINTILLATORS; DESIGN; WEDGES
AB The CMS Hadron Calorimeter in the barrel, endcap and forward regions is fully commissioned. Cosmic ray data were taken with and without magnetic field at the surface hall and after installation in the experimental hall, hundred meters underground. Various measurements were also performed during the few days of beam in the LHC in September 2008. Calibration parameters were extracted, and the energy response of the HCAL determined from test beam data has been checked.
C1 [Chatrchyan, S.; Khachatryan, V.; Sirunyan, A. M.] Yerevan Phys Inst, Yerevan 375036, Armenia.
[Adam, W.; Arnold, B.; Bergauer, H.; Bergauer, T.; Dragicevic, M.; Eichberger, M.; Eroe, J.; Friedl, M.; Fruehwirth, R.; Ghete, V. M.; Hammer, J.; Haensel, S.; Hoch, M.; Hoermann, N.; Hrubec, J.; Jeitler, M.; Kasieczka, G.; Kastner, K.; Krammer, M.; Liko, D.; de Abril, I. Magrans; Mikulec, I.; Mittermayr, F.; Neuherz, B.; Oberegger, M.; Padrta, M.; Pernicka, M.; Rohringer, H.; Schmid, S.; Schoefbeck, R.; Schreiner, T.; Stark, R.; Steininger, H.; Strauss, J.; Taurok, A.; Teischinger, F.; Themel, T.; Uhl, D.; Wagner, P.; Waltenberger, W.; Walzel, G.; Widl, E.; Wulz, C. -E.] Inst Hochenergiephys OeAW, Vienna, Austria.
[Chekhovsky, V.; Dvornikov, O.; Emeliantchik, I.; Litomin, A.; Makarenko, V.; Marfin, I.; Mossolov, V.; Shumeiko, N.; Solin, A.; Stefanovitch, R.; Gonzalez, J. Suarez; Tikhonov, A.] Natl Ctr Particle & High Energy Phys, Minsk, Byelarus.
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[Kuchinsky, P.] Res Inst Appl Phys Problems, Minsk, Byelarus.
[Beaumont, W.; Benucci, L.; Cardaci, M.; De Wolf, E. A.; Delmeire, E.; Druzhkin, D.; Hashemi, M.; Janssen, X.; Maes, T.; Mucibello, L.; Ochesanu, S.; Rougny, R.; Selvaggi, M.; Van Haevermaet, H.; Van Mechelen, P.; Van Remortel, N.] Univ Antwerp, B-2020 Antwerp, Belgium.
[Adler, V.; Beauceron, S.; Blyweert, S.; D'Hondt, J.; De Weirdt, S.; Devroede, O.; Heyninck, J.; Kalogeropoulos, A.; Maes, J.; Maes, M.; Mozer, M. U.; Tavernier, S.; Van Doninck, W.; Van Mulders, P.; Villella, I.] Vrije Univ Brussel, Brussels, Belgium.
[Bouhali, O.; Chabert, E. C.; Charaf, O.; Clerbaux, B.; De Lentdecker, G.; Dero, V.; Elgammal, S.; Gay, A. P. R.; Hammad, G. H.; Marage, P. E.; Rugovac, S.; Velde, C. Vander; Vanlaer, P.; Wickens, J.] Univ Libre Brussels, Brussels, Belgium.
[Grunewald, M.; Klein, B.; Marinov, A.; Ryckbosch, D.; Thyssen, F.; Tytgat, M.; Vanelderen, L.; Verwilligen, P.] Univ Ghent, B-9000 Ghent, Belgium.
[Basegmez, S.; Bruno, G.; Caudron, J.; Delaere, C.; Demin, P.; Favart, D.; Giammanco, A.; Gregoire, G.; Lemaitre, V.; Militaru, O.; Ovyn, S.; Piotrzkowski, K.; Quertenmont, L.; Schul, N.] Catholic Univ Louvain, B-1348 Louvain, Belgium.
[Beliy, N.; Daubie, E.] Univ Mons, B-7000 Mons, Belgium.
[Alves, G. A.; Pol, M. E.; Souza, M. H. G.] Ctr Brasileiro Pesquisas Fis, Rio De Janeiro, Brazil.
[Carvalho, W.; Damiao, D. De Jesus; Martins, C. De Oliveira; De Souza, S. Fonseca; Mundim, L.; Oguri, V.; Santoro, A.; Silva Do Amaral, S. M.; Sznajder, A.] Univ Estado Rio de Janeiro, BR-20550011 Rio De Janeiro, Brazil.
[Fernandez Perez Tomei, T. R.; Ferreira Dias, M. A.; Gregores, E. M.; Novaes, S. F.] Univ Estadual Paulista, Inst Fis Teor, BR-01405 Sao Paulo, Brazil.
[Abadjiev, K.; Anguelov, T.; Damgov, J.; Darmenov, N.; Dimitrov, L.; Genchev, V.; Iaydjiev, P.; Piperov, S.; Stoykova, S.; Sultanov, G.; Trayanov, R.; Vankov, I.] Bulgarian Acad Sci, Inst Nucl Res & Nucl Energy, Sofia, Bulgaria.
[Dimitrov, A.; Dyulendarova, M.; Kozhuharov, V.; Litov, L.; Marinova, E.; Mateev, M.; Pavlov, B.; Petkov, P.; Toteva, Z.] Univ Sofia, BU-1126 Sofia, Bulgaria.
[Chen, G. M.; Chen, H. S.; Guan, W.; Jiang, C. H.; Liang, D.; Liu, B.; Meng, X.; Tao, J.; Wang, J.; Wang, Z.; Xue, Z.; Zhang, Z.] Inst High Energy Phys, Beijing 100039, Peoples R China.
[Ban, Y.; Cai, J.; Ge, Y.; Guo, S.; Hu, Z.; Mao, Y.; Qian, S. J.; Teng, H.; Zhu, B.] Peking Univ, State Key Lab Nucl Phys & Tech, Beijing 100871, Peoples R China.
[Avila, C.; Ruiz, M. Baquero; Montoya, C. A. Carrillo; Gomez, A.; Gomez Moreno, B.; Ocampo Rios, A. A.; Osorio Oliveros, A. F.; Reyes Romero, D.; Sanabria, J. C.] Univ Los Andes, Bogota, Colombia.
[Godinovic, N.; Lelas, K.; Plestina, R.; Polic, D.; Puljak, I.] Tech Univ Split, Split, Croatia.
[Antunovic, Z.; Dzelalija, M.] Univ Split, Split, Croatia.
[Brigljevic, V.; Duric, S.; Kadija, K.; Morovic, S.] Rudjer Boskovic Inst, Zagreb, Croatia.
[Fereos, R.; Galanti, M.; Mousa, J.; Papadakis, A.; Ptochos, F.; Razis, P. A.; Tsiakkouri, D.; Zinonos, Z.] Univ Cyprus, Nicosia, Cyprus.
[Hektor, A.; Kadastik, M.; Kannike, K.; Muentel, M.; Raidal, M.; Rebane, L.] NICPB, Tallinn, Estonia.
[Anttila, E.; Czellar, S.; Harkonen, J.; Heikkinen, A.; Karimaki, V.; Kinnunen, R.; Klem, J.; Kortelainen, M. J.; Lampen, T.; Lassila-Perini, K.; Lehti, S.; Linden, T.; Luukka, P.; Maenpaa, T.; Nysten, J.; Tuominen, E.; Tuominiemi, J.; Ungaro, D.; Wendland, L.] Helsinki Inst Phys, Helsinki, Finland.
[Banzuzi, K.; Korpela, A.; Tuuva, T.] Lappeenranta Univ Technol, Lappeenranta, Finland.
[Nedelec, P.; Sillou, D.] CNRS, IN2P3, Lab Annecy Le Vieux Phys Particules, Annecy Le Vieux, France.
[Besancon, M.; Chipaux, R.; Dejardin, M.; Denegri, D.; Descamps, J.; Fabbro, B.; Faure, J. L.; Ferri, F.; Ganjour, S.; Gentit, F. X.; Givernaud, A.; Gras, P.; de Monchenault, G. Hamel; Jarry, P.; Lemaire, M. C.; Locci, E.; Malcles, J.; Marionneau, M.; Millischer, L.; Rander, J.; Rosowsky, A.; Rousseau, D.; Titov, M.; Verrecchia, P.] CEA Saclay, IRFU, DSM, F-91191 Gif Sur Yvette, France.
[Baffioni, S.; Bianchini, L.; Bluj, M.; Busson, P.; Charlot, C.; Dobrzynski, L.; de Cassagnac, R. Granier; Haguenauer, M.; Minc, P.; Paganini, P.; Sirois, Y.; Thiebaux, C.; Zabi, A.; Beaudette, F.] Ecole Polytech, CNRS, IN2P3, Lab Leprince Ringuet, F-91128 Palaiseau, France.
[Agram, J. -L.; Besson, A.; Bloch, D.; Bodin, D.; Brom, J. -M.; Conte, E.; Drouhin, F.; Fontaine, J. -C.; Gele, D.; Goerlach, U.; Gross, L.; Juillot, P.; Le Bihan, A-C.; Patois, Y.; Speck, J.; Van Hove, P.] Univ Haute Alsace Mulhouse, Univ Strasbourg, Inst Pluridisciplinaire Hubert Curien, CNRS,IN2P3, Strasbourg, France.
[Baty, C.; Bedjidian, M.; Blaha, J.; Boudoul, G.; Brun, H.; Chanon, N.; Chierici, R.; Contardo, D.; Depasse, P.; Dupasquier, T.; El Mamouni, H.; Fassi, F.; Fay, J.; Gascon, S.; Ille, B.; Kurca, T.; Le Grand, T.; Lethuillier, M.; Lumb, N.; Mirabito, L.; Perries, S.; Donckt, M. Vander; Verdier, P.] Univ Lyon 1, CNRS, IN2P3, Inst Phys Nucl Lyon, Villeurbanne, France.
[Djaoshvili, N.; Roinishvili, N.; Roinishvili, V.] Georgian Acad Sci, E Andronikashvili Inst Phys, GE-380060 Tbilisi, Rep of Georgia.
[Amaglobeli, N.] Tbilisi State Univ, Inst High Energy Phys & Informatizat, GE-380086 Tbilisi, Rep of Georgia.
[Adolphi, R.; Anagnostou, G.; Brauer, R.; Braunschweig, W.; Edelhoff, M.; Esser, H.; Feld, L.; Karpinski, W.; Khomich, A.; Klein, K.; Mohr, N.; Ostaptchouk, A.; Pandoulas, D.; Pierschel, G.; Raupach, F.; Schael, S.; von Dratzig, A. Schultz; Schwering, G.; Sprenger, D.; Thomas, M.; Weber, M.; Wittmer, B.; Wlochal, M.] Rhein Westfal TH Aachen, Inst Phys 1, Aachen, Germany.
[Actis, O.; Altenhoefer, G.; Bender, W.; Biallass, P.; Erdmann, M.; Fetchenhauer, G.; Frangenheim, J.; Hebbeker, T.; Hilgers, G.; Hinzmann, A.; Hoepfner, K.; Hof, C.; Kirsch, M.; Klimkovich, T.; Kreuzer, P.; Lanske, D.; Merschmeyer, M.; Meyer, A.; Philipps, B.; Pieta, H.; Reithler, H.; Schmitz, S. A.; Sonnenschein, L.; Sowa, M.; Steggemann, J.; Szczesny, H.; Teyssier, D.; Zeidler, C.] Rhein Westfal TH Aachen, Phys Inst A 3, Aachen, Germany.
[Bontenackels, M.; Davids, M.; Duda, M.; Fluegge, G.; Geenen, H.; Giffels, M.; Ahmad, W. Haj; Hermanns, T.; Heydhausen, D.; Kalinin, S.; Kress, T.; Linn, A.; Nowack, A.; Perchalla, L.; Poettgens, M.; Pooth, O.; Sauerland, P.; Stahl, A.; Tornier, D.; Zoeller, M. H.] Rhein Westfal TH Aachen, Phys Inst B 3, Aachen, Germany.
[Martin, M. Aldaya; Behrens, U.; Borras, K.; Campbell, A.; Castro, E.; Dammann, D.; Eckerlin, G.; Flossdorf, A.; Flucke, G.; Geiser, A.; Hatton, D.; Hauk, J.; Jung, H.; Kasemann, M.; Katkov, I.; Kleinwort, C.; Kluge, H.; Knutsson, A.; Kuznetsova, E.; Lange, W.; Lohmann, W.; Mankel, R.; Marienfeld, M.; Meyer, A. B.; Miglioranzi, S.; Mnich, J.; Ohlerich, M.; Olzem, J.; Parenti, A.; Rosemann, C.; Schmidt, R.; Schoerner-Sadenius, T.; Volyanskyy, D.; Wissing, C.; Zeuner, W. D.] Deutsch Elekt Synchrotron, Hamburg, Germany.
[Autermann, C.; Bechtel, F.; Draeger, J.; Eckstein, D.; Gebbert, U.; Kaschube, K.; Kaussen, G.; Klanner, R.; Mura, B.; Naumann-Emme, S.; Nowak, F.; Pein, U.; Sander, C.; Schleper, P.; Schum, T.; Stadie, H.; Steinbrueck, G.; Thomsen, J.; Wolf, R.] Univ Hamburg, Hamburg, Germany.
[Besson, A.; Bauer, J.; Bluem, P.; Buege, V.; Cakir, A.; Chwalek, T.; De Boer, W.; Dierlamm, A.; Dirkes, G.; Feindt, M.; Felzmann, U.; Frey, M.; Furgeri, A.; Gruschke, J.; Hackstein, C.; Hartmann, F.; Heier, S.; Heinrich, M.; Held, H.; Hirschbuehl, D.; Hoffmann, K. H.; Honc, S.; Jung, C.; Kuhr, T.; Liamsuwan, T.; Martschei, D.; Mueller, S.; Mueller, Th.; Neuland, M. B.; Niegel, M.; Oberst, O.; Oehler, A.; Ott, J.; Peiffer, T.; Piparo, D.; Quast, G.; Rabbertz, K.; Ratnikov, F.; Ratnikova, N.; Renz, M.; Saout, C.; Sartisohn, G.; Scheurer, A.; Schieferdecker, P.; Schilling, F. -P.; Schott, G.; Simonis, H. J.; Stober, F. M.; Sturm, P.; Troendle, D.; Trunov, A.; Wagner, W.; Wagner-Kuhr, J.; Zeise, M.; Zhukov, V.; Ziebarth, E. B.] Univ Karlsruhe, Inst Expt Kernphys, D-7500 Karlsruhe, Germany.
[Daskalakis, G.; Geralis, T.; Karafasoulis, K.; Kyriakis, A.; Loukas, D.; Markou, A.; Markou, C.; Mavrommatis, C.; Petrakou, E.; Zachariadou, A.] Inst Nucl Phys Demokritos, Aghia Paraskevi, Greece.
[Gouskos, L.; Katsas, P.; Panagiotou, A.; Sphicas, P.] Univ Athens, Athens, Greece.
[Evangelou, I.; Kokkas, P.; Manthos, N.; Papadopoulos, I.; Patras, V.; Triantis, F. A.] Univ Ioannina, GR-45110 Ioannina, Greece.
[Bencze, G.; Boldizsar, L.; Debreczeni, G.; Hajdu, C.; Hernath, S.; Hidas, P.; Horvath, D.; Krajczar, K.; Laszlo, A.; Patay, G.; Sikler, F.; Toth, N.; Vesztergombi, G.; Pasztor, G.] KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
[Horvath, D.; Beni, N.; Christian, G.; Imrek, J.; Molnar, J.; Novak, D.; Palinkas, J.; Szekely, G.; Szillasi, Z.; Tokesi, K.; Veszpremi, V.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Kapusi, A.; Marian, G.; Raics, P.; Szabo, Z.; Trocsanyi, Z. L.; Ujvari, B.; Zilizi, G.] Univ Debrecen, Debrecen, Hungary.
[Bansal, S.; Bawa, H. S.; Beri, S. B.; Bhatnagar, V.; Jindal, M.; Kaur, M.; Kaur, R.; Kohli, J. M.; Mehta, M. Z.; Nishu, N.; Saini, L. K.; Sharma, A.; Singh, A.; Singh, J. B.; Singh, S. P.] Panjab Univ, Chandigarh 160014, India.
[Ahuja, S.; Arora, S.; Bhattacharya, S.; Chauhan, S.; Choudhary, B. C.; Gupta, P.; Jha, M.; Kumar, A.; Ranjan, K.; Shivpuri, R. K.; Srivastava, A. K.] Univ Delhi, Delhi 110007, India.
[Choudhury, R. K.; Dutta, D.; Kailas, S.; Kataria, S. K.; Mohanty, A. K.; Pant, L. M.; Shukla, P.; Topkar, A.] Bhabha Atom Res Ctr, Mumbai 400085, Maharashtra, India.
[Aziz, T.; Guchait, M.; Gurtu, A.; Maity, M.; Majumder, D.; Majumder, G.; Mazumdar, K.; Nayak, A.; Saha, A.; Sudhakar, K.] Tata Inst Fundamental Res, EHEP, Mumbai 400005, Maharashtra, India.
[Guchait, M.; Banerjee, S.; Dugad, S.; Mondal, N. K.] Tata Inst Fundamental Res, HECR, Mumbai 400005, Maharashtra, India.
[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys & Math IPM, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Abbrescia, M.; De Palma, M.; Lusito, L.; Manna, N.; Marangelli, B.; Natali, S.; Nuzzo, S.; Pompili, A.; Roselli, G.; Selvaggi, G.; Tupputi, S.] Univ Bari, Bari, Italy.
[Creanza, D.; Iaselli, G.; Maggi, G.; My, S.; Pugliese, G.; Romano, F.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Bacchi, W.; Braibant-Giacomelli, S.; Capiluppi, P.; Castro, A.; Codispoti, G.; Cuffiani, M.; Fanfani, A.; Masetti, G.; Navarria, F. L.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, I-50125 Florence, Italy.
[Broccolo, G.; Ciulli, V.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Genta, C.; Landi, G.; Lenzi, P.] Univ Florence, Florence, Italy.
[Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Fabbri, F.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Cerati, G. B.; Govoni, P.; Malberti, M.; Miccio, V.; Negri, P.; Paganoni, M.; Pullia, A.; Ragazzi, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Cimmino, A.; De Gruttola, M.; Noli, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosia, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Bellan, P.; Bisello, D.; Borsato, E.; Carlin, R.; De Mattia, M.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Kaminskiy, A.; Margoni, M.; Mattiazzo, S.; Meneguzzo, A. T.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Tosia, M.; Vanini, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.; Pioppi, M.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Biasini, M.; Caponeri, B.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Santocchia, A.; Volpe, R.; Pioppi, M.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Bernardini, J.; Fiori, F.; Messineo, A.; Tonelli, G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bocci, A.; Borrello, L.; Foa, L.; Gennai, S.; Ligabue, F.; Petrucciani, G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Francia, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Amapane, N.; Arcidiacono, R.; Argiro, S.; Borgia, M. A.; Botta, C.; Castello, R.; Cerminara, G.; Costa, M.; Graziano, A.; Marone, M.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Oggero, S.; Pelliccioni, M.; Romero, A.; Sacchi, R.; Solano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.] Univ Turin, Turin, Italy.
[Arneodo, M.; Obertino, M. M.; Ruspa, M.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Della Ricca, G.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Zhukov, V.; Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius State Univ, Vilnius, Lithuania.
[Valdez, H. Castilla; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Moreno, S. Carrillo] Univ Iberoamer, Mexico City, DF, Mexico.
[Pineda, A. Morelos] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Bluj, M.; Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Pedro, L. Antunes; Bargassa, P.; David, A.; Faccioli, P.; Parracho, P. G. Ferreira; Ferreira, M. Freitas; Gallinaro, M.; Jordao, M. Guerra; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.; Musienko, Y.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.; Starodumov, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.; Sourkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.; Nardulli, A.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Maestre, J. Alcaraz; Arce, P.; Barcala, J. M.; Battilana, C.; Lazaro, C. Burgos; Bejar, J. Caballero; Calvo, E.; Montes, M. Cardenas; Cepeda, M.; Cerrada, M.; Llatas, M. Chamizo; Clemente, F.; Colino, N.; Daniel, M.; De la Cruz, B.; Peris, A. Delgado; Pardos, C. Diez; Bedoya, C. Fernandez; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Lopez, O. Gonzalez; Lopez, S. Goy; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Pelayo, J. Puerta; Romero, L.; Santaolalla, J.; Munoz, C. Villanueva; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Otano, M. Blanco; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Ruiz del Arbol, P. Martinez; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, CSIC, IFCA, E-39005 Santander, Spain.
[Abadjiev, K.; Darmenov, N.; Genchev, V.; Toteva, Z.; Fetchenhauer, G.; Kreuzer, P.; Mankel, R.; Zeuner, W. D.; Hartmann, F.; Saout, C.; Panagiotou, A.; Bencze, G.; Hajdu, C.; Szillasi, Z.; Dallavalle, G. M.; Giunta, M.; Malberti, M.; Cimmino, A.; De Gruttola, M.; Azzi, P.; Bellan, P.; Spagnolo, P.; Tenchini, R.; Tonelli, G.; Cavallari, F.; Paramatti, R.; Trapani, P. P.; Valdez, H. Castilla; Kossov, M.; Grishin, V.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Coarasa Perez, J. A.; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.; Virdee, T.; Erhan, S.; Afaq, M. A.; Tkaczyk, S.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.; Moortgat, F.] Paul Scherrer Inst, Villigen, Switzerland.
[Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] Swiss Fed Inst Technol, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli 32054, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.; Adiguzel, A.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Newbold, D. M.; Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Adiguzel, A.; Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; John, J. St.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De la Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Arora, S.; Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Urthwein, F. W.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Dubinin, M.; Spiropulu, M.; Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagen-Hart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Sibille, J.; Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Ton-War, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Sum-Mers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northeastern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; De Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Gilmore, J.; Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Zelepoukine, S.; Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; De Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Agram, J. -L.; Conte, E.; Drouhin, F.; Fontaine, J. -C.] Univ Haute Alsace, Mulhouse, France.
[Fassi, F.] IN2P3, Ctr Calcul, Villeurbanne, France.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Fabozzi, F.] Univ Basilicata, I-85100 Potenza, Italy.
[Gulmini, M.; Lacaprara, S.; Maron, G.] Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
[Gresele, A.; Lazzizzera, I.] Univ Trento, Trento, Italy.
[Baccaro, S.] Casaccia Res Ctr, ENEA, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Jovanovic, D.; Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade 11001, Serbia.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Rolandi, G.] Ist Nazl Fis Nucl, Scuola Normale & Sez, Pisa, Italy.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Ozkorucuklu, S.] Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Cankocak, K.] Istanbul Tech Univ, TR-80626 Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Venturi, Andrea/J-1877-2012; de Jesus Damiao, Dilson/G-6218-2012;
Montanari, Alessandro/J-2420-2012; Amapane, Nicola/J-3683-2012;
Klyukhin, Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012;
Raidal, Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Della Ricca, Giuseppe/B-6826-2013; Kadastik,
Mario/B-7559-2008; Mundim, Luiz/A-1291-2012; Kodolova, Olga/D-7158-2012;
Dudko, Lev/D-7127-2012; Boos, Eduard/D-9748-2012; Snigirev,
Alexander/D-8912-2012; Chipaux, Remi/G-1145-2010; Servoli,
Leonello/E-6766-2012; Tomei, Thiago/E-7091-2012; Focardi,
Ettore/E-7376-2012; Fruhwirth, Rudolf/H-2529-2012; Azzi,
Patrizia/H-5404-2012; Torassa, Ezio/I-1788-2012; Giacomelli,
Paolo/B-8076-2009; Jeitler, Manfred/H-3106-2012; Palinkas,
Jozsef/B-2993-2011; Romaniuk, Ryszard/B-9140-2011; Ruiz,
Alberto/E-4473-2011; Stahl, Achim/E-8846-2011; Hektor, Andi/G-1804-2011;
Wulz, Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Tinoco Mendes, Andre
David/D-4314-2011; Lokhtin, Igor/D-7004-2012; Horvath,
Dezso/A-4009-2011; Varela, Joao/K-4829-2016; Fassi, Farida/F-3571-2016;
Ligabue, Franco/F-3432-2014; Sguazzoni, Giacomo/J-4620-2015; Menasce,
Dario Livio/A-2168-2016; Bargassa, Pedrame/O-2417-2016; Govoni,
Pietro/K-9619-2016; Tuominen, Eija/A-5288-2017; Yazgan, Efe/C-4521-2014;
Gerbaudo, Davide/J-4536-2012; Fedorov, Andrei/E-9455-2014; Konovalova,
Nina/D-3882-2014; Cordonnier, Agnes/I-5083-2016; Paganoni,
Marco/A-4235-2016; Kirakosyan, Martin/N-2701-2015; Seixas,
Joao/F-5441-2013; Verwilligen, Piet/M-2968-2014; Vilela Pereira,
Antonio/L-4142-2016; Sznajder, Andre/L-1621-2016; Haj Ahmad,
Wael/E-6738-2016; Xie, Si/O-6830-2016; Leonardo, Nuno/M-6940-2016; Goh,
Junghwan/Q-3720-2016; Muelmenstaedt, Johannes/K-2432-2015; Rovelli,
Tiziano/K-4432-2015; Dremin, Igor/K-8053-2015; Hoorani,
Hafeez/D-1791-2013; Vinogradov, Alexander/M-5331-2015; Altsybeev,
Igor/K-6687-2013; TUVE', Cristina/P-3933-2015; Gulmez,
Erhan/P-9518-2015; KIM, Tae Jeong/P-7848-2015; Flix, Josep/G-5414-2012;
Ozdemir, Kadri/P-8058-2014; korzhik, Mikhail/E-9505-2014; Lazzizzera,
Ignazio/E-9678-2015; Sen, Sercan/C-6473-2014; D'Alessandro,
Raffaello/F-5897-2015; Trocsanyi, Zoltan/A-5598-2009; Konecki,
Marcin/G-4164-2015; Hernandez Calama, Jose Maria/H-9127-2015; Barcala,
JOSE MIGUEL/I-1105-2015; Bedoya, Cristina/K-8066-2014; Michelotto,
Michele/A-9571-2013; Matorras, Francisco/I-4983-2015; My,
Salvatore/I-5160-2015; Gumus, Kazim/G-2498-2013; Josa,
Isabel/K-5184-2014; Navarrete Marin, Jose Javier/K-6412-2014; Marin,
Jesus/K-6991-2014; Gonzalez Suarez, Rebeca/L-6128-2014; Calvo Alamillo,
Enrique/L-1203-2014; Paulini, Manfred/N-7794-2014; Vogel,
Helmut/N-8882-2014; Ferguson, Thomas/O-3444-2014; Ragazzi,
Stefano/D-2463-2009; Benussi, Luigi/O-9684-2014; Russ,
James/P-3092-2014; Grandi, Claudio/B-5654-2015; Ahmed, Ijaz/E-9144-2015;
Alves, Gilvan/C-4007-2013; Santoro, Alberto/E-7932-2014; Codispoti,
Giuseppe/F-6574-2014; Bellan, Riccardo/G-2139-2014; Petrucci,
Andrea/J-4207-2014; Gribushin, Andrei/J-4225-2012; Cerrada,
Marcos/J-6934-2014; Calderon, Alicia/K-3658-2014; Oller, Juan
Carlos/K-6445-2014; Molinero, Antonio/H-7347-2013; de la Cruz,
Begona/K-7552-2014; Scodellaro, Luca/K-9091-2014; Santaolalla,
Javier/C-3094-2013; Gavrilov, Gennady/C-6260-2013; Rolandi, Luigi
(Gigi)/E-8563-2013; Zalewski, Piotr/H-7335-2013; Cavallo,
Nicola/F-8913-2012; Dvornikov, Oleg/I-7207-2013; Hill,
Christopher/B-5371-2012; Kuleshov, Sergey/D-9940-2013; Troitsky,
Sergey/C-1377-2014; Marlow, Daniel/C-9132-2014; Janssen,
Xavier/E-1915-2013; Oguri, Vitor/B-5403-2013
OI de Jesus Damiao, Dilson/0000-0002-3769-1680; Montanari,
Alessandro/0000-0003-2748-6373; Amapane, Nicola/0000-0001-9449-2509;
Klyukhin, Vyacheslav/0000-0002-8577-6531; Novaes,
Sergio/0000-0003-0471-8549; Della Ricca, Giuseppe/0000-0003-2831-6982;
Mundim, Luiz/0000-0001-9964-7805; Dudko, Lev/0000-0002-4462-3192;
Servoli, Leonello/0000-0003-1725-9185; Tomei,
Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267; Azzi,
Patrizia/0000-0002-3129-828X; Romaniuk, Ryszard/0000-0002-5710-4041;
Ruiz, Alberto/0000-0002-3639-0368; Stahl, Achim/0000-0002-8369-7506;
Hektor, Andi/0000-0001-7873-8118; Wulz,
Claudia-Elisabeth/0000-0001-9226-5812; Krammer,
Manfred/0000-0003-2257-7751; Tinoco Mendes, Andre
David/0000-0001-5854-7699; Luukka, Panja/0000-0003-2340-4641; Goldstein,
Joel/0000-0003-1591-6014; Sogut, Kenan/0000-0002-9682-2855; Heath,
Helen/0000-0001-6576-9740; Giubilato, Piero/0000-0003-4358-5355;
Gallinaro, Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Gutsche,
Oliver/0000-0002-8015-9622; Torassa, Ezio/0000-0003-2321-0599; Varela,
Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109; Toback,
David/0000-0003-3457-4144; Mackay, Catherine/0000-0003-4252-6740;
HSIUNG, YEE/0000-0003-4801-1238; Bonnett Del Alamo, Miguel
Reinaldo/0000-0002-1011-8411; Faccioli, Pietro/0000-0003-1849-6692;
Korenkov, Vladimir/0000-0002-2342-7862; Stober,
Fred/0000-0003-2620-3159; Martelli, Arabella/0000-0003-3530-2255;
Abbiendi, Giovanni/0000-0003-4499-7562; Levchenko,
Petr/0000-0003-4913-0538; Uliyanov, Alexey/0000-0001-6935-8949; Arneodo,
Michele/0000-0002-7790-7132; Sciacca, Crisostomo/0000-0002-8412-4072;
Fassi, Farida/0000-0002-6423-7213; Leonidopoulos,
Christos/0000-0002-7241-2114; Blekman, Freya/0000-0002-7366-7098;
Ghezzi, Alessio/0000-0002-8184-7953; bianco,
stefano/0000-0002-8300-4124; Demaria, Natale/0000-0003-0743-9465;
Benaglia, Andrea Davide/0000-0003-1124-8450; Covarelli,
Roberto/0000-0003-1216-5235; Staiano, Amedeo/0000-0003-1803-624X;
Ciulli, Vitaliano/0000-0003-1947-3396; Tonelli, Guido
Emilio/0000-0003-2606-9156; Beuselinck, Raymond/0000-0003-2613-7446;
Ligabue, Franco/0000-0002-1549-7107; Diemoz,
Marcella/0000-0002-3810-8530; Hamel de Monchenault,
Gautier/0000-0002-3872-3592; Landsberg, Greg/0000-0002-4184-9380; Rizzi,
Andrea/0000-0002-4543-2718; Gershtein, Yuri/0000-0002-4871-5449;
Tricomi, Alessia Rita/0000-0002-5071-5501; CALZOLARI,
FEDERICO/0000-0002-5510-3061; Malik, Sudhir/0000-0002-6356-2655;
Dharmaraatna, Welathantri/0000-0002-6366-837X; Giacomelli,
Paolo/0000-0002-6368-7220; Mrenna, Stephen/0000-0001-8731-160X; Bilki,
Burak/0000-0001-9515-3306; Costa, Salvatore/0000-0001-9919-0569; Lloret
Iglesias, Lara/0000-0002-0157-4765; Kasemann,
Matthias/0000-0002-0429-2448; Donvito, Giacinto/0000-0002-0628-1080;
Petragnani, Giulio/0000-0002-0819-6509; Sguazzoni,
Giacomo/0000-0002-0791-3350; WANG, MIN-ZU/0000-0002-0979-8341; Longo,
Egidio/0000-0001-6238-6787; Baarmand, Marc/0000-0002-9792-8619; Nervo,
Marco/0000-0002-9898-7346; Boccali, Tommaso/0000-0002-9930-9299;
Menasce, Dario Livio/0000-0002-9918-1686; Bargassa,
Pedrame/0000-0001-8612-3332; Govoni, Pietro/0000-0002-0227-1301;
Tuominen, Eija/0000-0002-7073-7767; Yazgan, Efe/0000-0001-5732-7950;
Gerbaudo, Davide/0000-0002-4463-0878; Vieira de Castro Ferreira da
Silva, Pedro Manuel/0000-0002-5725-041X; Actis,
Oxana/0000-0001-8851-3983; Bean, Alice/0000-0001-5967-8674; Cordonnier,
Agnes/0000-0002-4216-3524; Paganoni, Marco/0000-0003-2461-275X; Seixas,
Joao/0000-0002-7531-0842; Vilela Pereira, Antonio/0000-0003-3177-4626;
Sznajder, Andre/0000-0001-6998-1108; Haj Ahmad,
Wael/0000-0003-1491-0446; Xie, Si/0000-0003-2509-5731; Leonardo,
Nuno/0000-0002-9746-4594; Goh, Junghwan/0000-0002-1129-2083;
Muelmenstaedt, Johannes/0000-0003-1105-6678; Rovelli,
Tiziano/0000-0002-9746-4842; Altsybeev, Igor/0000-0002-8079-7026; TUVE',
Cristina/0000-0003-0739-3153; Gulmez, Erhan/0000-0002-6353-518X; KIM,
Tae Jeong/0000-0001-8336-2434; Flix, Josep/0000-0003-2688-8047; Ozdemir,
Kadri/0000-0002-0103-1488; Lazzizzera, Ignazio/0000-0001-5092-7531; Sen,
Sercan/0000-0001-7325-1087; D'Alessandro, Raffaello/0000-0001-7997-0306;
Trocsanyi, Zoltan/0000-0002-2129-1279; Konecki,
Marcin/0000-0001-9482-4841; Hernandez Calama, Jose
Maria/0000-0001-6436-7547; Barcala, JOSE MIGUEL/0000-0002-1092-7091;
Bedoya, Cristina/0000-0001-8057-9152; Michelotto,
Michele/0000-0001-6644-987X; Matorras, Francisco/0000-0003-4295-5668;
My, Salvatore/0000-0002-9938-2680; Gumus, Kazim/0000-0002-1450-6868;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070;
Codispoti, Giuseppe/0000-0003-0217-7021; Petrucci,
Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Scodellaro, Luca/0000-0002-4974-8330;
Rolandi, Luigi (Gigi)/0000-0002-0635-274X; Hill,
Christopher/0000-0003-0059-0779; Kuleshov, Sergey/0000-0002-3065-326X;
Troitsky, Sergey/0000-0001-6917-6600;
FU FMSR (Austria); FNRS (Belgium); FWO (Belgium); CNPq (Brazil); CAPES
(Brazil); FAPERJ (Brazil); FAPESP (Brazil); MES (Bulgaria); CERN
(China); CAS (China); MoST (China); NSFC (China); COLCIEN-CIAS
(Colombia); MSES (Croatia); RPF (Cyprus); Academy of Sciences (Estonia);
NICPB (Estonia); Academy of Finland (Finland); ME (Finland); HIP
(Finland); CEA (France); CNRS/IN2P3 (France); BMBF (Germany); DFG
(Germany); HGF (Germany); GSRT (Greece); OTKA (Hungary); NKTH (Hungary);
DAE (India); DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV (Mexico); CONACYT (Mexico); SEP
(Mexico); UASLP-FAI (Mexico); PAEC (Pakistan); SCSR (Poland); FCT
(Portugal); JINR (Armenia); JINR (Belarus); JINR (Georgia); JINR
(Ukraine); JINR (Uzbekistan); MST (Russia); MAE (Russia); MSTDS
(Serbia); MICINN (Spain); CPAN (Spain); Swiss Funding Agencies
(Switzerland); NSC (Taipei); TUBITAK (Turkey); TAEK (Turkey); STFC
(United Kingdom); DOE (USA; NSF (USA); European Union; Leventis
Foundation; A. P. Sloan Foundation; Alexander von Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIEN-CIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/ IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 19
TC 32
Z9 32
U1 1
U2 56
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03012
DI 10.1088/1748-0221/5/03/T03012
PG 35
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100020
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
Litomin, A
Makarenko, V
Marfin, I
Mossolov, V
Shumeiko, N
Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
Fedorov, A
Karneyeu, A
Korzhik, M
Panov, V
Zuyeuski, R
Kuchinsky, P
Beaumont, W
Benucci, L
Cardaci, M
De Wolf, EA
Delmeire, E
Druzhkin, D
Hashemi, M
Janssen, X
Maes, T
Mucibello, L
Ochesanu, S
Rougny, R
Selvaggi, M
Van Haevermaet, H
Van Mechelen, P
Van Remortel, N
Adler, V
Beauceron, S
Blyweert, S
D'Hondt, J
De Weirdt, S
Devroede, O
Heyninck, J
Kalogeropoulos, A
Maes, J
Maes, M
Mozer, MU
Tavernier, S
Van Doninck, W
Van Mulders, P
Villella, I
Bouhali, O
Chabert, EC
Charaf, O
Clerbaux, B
De Lentdecker, G
Dero, V
Elgammal, S
Gay, APR
Hammad, GH
Marage, PE
Rugovac, S
Vander Velde, C
Vanlaer, P
Wickens, J
Grunewald, M
Klein, B
Marinov, A
Ryckbosch, D
Thyssen, F
Tytgat, M
Vanelderen, L
Verwilligen, P
Basegmez, S
Bruno, G
Caudron, J
Delaere, C
Demin, P
Favart, D
Giammanco, A
Gregoire, G
Lemaitre, V
Militaru, O
Ovyn, S
Piotrzkowski, K
Quertenmont, L
Schul, N
Beliy, N
Daubie, E
Alves, GA
Pol, ME
Souza, MHG
Carvalho, W
Damiao, DD
Martins, CD
De Souza, SF
Mundim, L
Oguri, V
Santoro, A
Do Amaral, SMS
Sznajder, A
Tomei, TRFP
Dias, MAF
Gregores, EM
Novaes, SF
Abadjiev, K
Anguelov, T
Damgov, J
Darmenov, N
Dimitrov, L
Genchev, V
Iaydjiev, P
Piperov, S
Stoykova, S
Sultanov, G
Trayanov, R
Vankov, I
Dimitrov, A
Dyulendarova, M
Kozhuharov, V
Litov, L
Marinova, E
Mateev, M
Pavlov, B
Petkov, P
Toteva, Z
Chen, GM
Chen, HS
Guan, W
Jiang, CH
Liang, D
Liu, B
Meng, X
Tao, J
Wang, J
Wang, Z
Xue, Z
Zhang, Z
Ban, Y
Cai, J
Ge, Y
Guo, S
Hu, Z
Mao, Y
Qian, SJ
Teng, H
Zhu, B
Avila, C
Ruiz, MB
Montoya, CAC
Gomez, A
Moreno, BG
Rios, AAO
Oliveros, AFO
Romero, DR
Sanabria, JC
Godinovic, N
Lelas, K
Plestina, R
Polic, D
Puljak, I
Antunovic, Z
Dzelalija, M
Brigljevic, V
Duric, S
Kadija, K
Morovic, S
Fereos, R
Galanti, M
Mousa, J
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CA CMS Collaboration
TI Performance of CMS hadron calorimeter timing and synchronization using
test beam, cosmic ray, and LHC beam data
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Calorimeters; Large detector systems for particle and astroparticle
physics
ID DESIGN; CALIBRATION
AB This paper discusses the design and performance of the time measurement technique and of the synchronization systems of the CMS hadron calorimeter. Time measurement performance results are presented from test beam data taken in the years 2004 and 2006. For hadronic showers of energy greater than 100 GeV, the timing resolution is measured to be about 1.2 ns. Time synchronization and out-of-time background rejection results are presented from the Cosmic Run At Four Tesla and LHC beam runs taken in the Autumn of 2008. The inter-channel synchronization is measured to be within +/- 2 ns.
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[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Broccolo, G.; Ciulli, V.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Genta, C.; Landi, G.; Lenzi, P.] Univ Florence, Florence, Italy.
[Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Fabbri, F.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milanobiccoca, I-20133 Milan, Italy.
[Cerati, G. B.; Govoni, P.; Malberti, M.; Miccio, V.; Negri, P.; Paganoni, M.; Pullia, A.; Ragazzi, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milanobicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Cimmino, A.; De Gruttola, M.; Noli, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Bellan, P.; Bisello, D.; Borsato, E.; Carlin, R.; De Mattia, M.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Kaminskiy, A.; Margoni, M.; Mattiazzo, S.; Meneguzzo, A. T.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Tosi, M.; Vanini, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.; Pioppi, M.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Biasini, M.; Caponeri, B.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Santocchia, A.; Volpe, R.; Pioppi, M.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Bernardini, J.; Fiori, F.; Messineo, A.; Tonelli, G.] Univ Pisa, Pisa, Italy.
[Bocci, A.; Borrello, L.; Foa, L.; Gennai, S.; Ligabue, F.; Petrucciani, G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Amapane, N.; Arcidiacono, R.; Argiro, S.; Borgia, M. A.; Botta, C.; Castello, R.; Cerminara, G.; Costa, M.; Graziano, A.; Marone, M.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Oggero, S.; Pelliccioni, M.; Romero, A.; Sacchi, R.; Solano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.] Univ Turin, Turin, Italy.
[Arneodo, M.; Obertino, M. M.; Ruspa, M.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Della Ricca, G.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius State Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Bluj, M.; Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.; Musienko, Y.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.; Starodumov, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Zhukov, V.; Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.; Sourkov, A.] State Res Ctr Russian Federat, Inst High Energy Phys, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.; Milenovic, P.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De la Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Pelayo, J. Puerta; Romero, L.; Santaolalla, J.; Munoz, C. Villanueva; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, CSIC, Inst Fis Cantabria IFCA, E-39005 Santander, Spain.
[Piotrzkowski, K.; Abadjiev, K.; Darmenov, N.; Genchev, V.; Toteva, Z.; Mankel, R.; Zeuner, W. D.; Panagiotou, A.; Bencze, G.; Hajdu, C.; Szillasi, Z.; Dallavalle, G. M.; Giunta, M.; Lenzi, P.; Colafranceschi, S.; Colonna, D.; Cerati, G. B.; Malberti, M.; Cimmino, A.; De Gruttola, M.; Azzi, P.; Spagnolo, P.; Tenchini, R.; Tonelli, G.; Cavallari, F.; Paramatti, R.; Trapani, P. P.; Castilla Valdez, H.; Kossov, M.; Grishin, V.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourencoe, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimia, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.; Ozkorucuklu, S.; Afaq, M. A.; Lusin, S.; Tkaczyk, S.; Trentadue, R.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Onig, S. K.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.; Caminada, L.; Dambach, S.; Eggel, C.; Marchica, C.; Trueb, P.] Paul Scherrer Inst, Villigen, Switzerland.
[Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M-C; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] Swiss Fed Inst Technol, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli 32054, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W-S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R-S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Phys & Technol Inst, Natl Sci Ctr, UA-310108 Kharkov, Ukraine.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Newbold, D. M.; Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A-M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; St John, J.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De la Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Bhattacharya, S.; Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Dubinin, M.; Spiropulu, M.; Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J-P; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Sibille, J.; Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y-J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Gilmore, J.; Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips H, D.; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Zelepoukine, S.; Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Agram, J-L.; Conte, E.; Drouhin, F.; Fontaine, J-C.] Univ Haute Alsace, Mulhouse, France.
[Fassi, F.] IN2P3, Ctr Calcul, Villeurbanne, France.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Fabozzi, F.] Univ Basilicata, I-85100 Potenza, Italy.
[Biasotto, M.; Gulmini, M.; Lacaprara, S.; Maron, G.] Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
[Gresele, A.; Lazzizzera, I.] Univ Trento, Trento, Italy.
[Baccaro, S.] ENEA Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Jovanovic, D.; Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade 11001, Serbia.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Rolandi, G.] Ist Nazl Fis Nucl, Scuola Normale & Sez, Pisa, Italy.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Ozkorucuklu, S.] Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Cankocak, K.] Istanbul Tech Univ, TR-80626 Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Tinoco Mendes, Andre David/D-4314-2011; Lokhtin, Igor/D-7004-2012;
Kodolova, Olga/D-7158-2012; Dudko, Lev/D-7127-2012; Boos,
Eduard/D-9748-2012; Snigirev, Alexander/D-8912-2012; Chipaux,
Remi/G-1145-2010; Servoli, Leonello/E-6766-2012; Tomei,
Thiago/E-7091-2012; Focardi, Ettore/E-7376-2012; Fruhwirth,
Rudolf/H-2529-2012; Azzi, Patrizia/H-5404-2012; Hektor,
Andi/G-1804-2011; Wulz, Claudia-Elisabeth/H-5657-2011; Chen,
Jie/H-6210-2011; Bolton, Tim/A-7951-2012; Krammer, Manfred/A-6508-2010;
Horvath, Dezso/A-4009-2011; Palinkas, Jozsef/B-2993-2011; Romaniuk,
Ryszard/B-9140-2011; kaya, mithat/D-8062-2011; Ganjour,
Serguei/D-8853-2011; Ruiz, Alberto/E-4473-2011; Stahl,
Achim/E-8846-2011; Varela, Joao/K-4829-2016; Fassi, Farida/F-3571-2016;
Ligabue, Franco/F-3432-2014; Bargassa, Pedrame/O-2417-2016; Sguazzoni,
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Marco/A-4235-2016; Kirakosyan, Martin/N-2701-2015; Seixas,
Joao/F-5441-2013; Verwilligen, Piet/M-2968-2014; Vilela Pereira,
Antonio/L-4142-2016; Sznajder, Andre/L-1621-2016; Haj Ahmad,
Wael/E-6738-2016; Gumus, Kazim/G-2498-2013; Muelmenstaedt,
Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015; Dremin,
Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Altsybeev, Igor/K-6687-2013; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
My, Salvatore/I-5160-2015; Russ, James/P-3092-2014; Grandi,
Claudio/B-5654-2015; Ahmed, Ijaz/E-9144-2015; Sen, Sercan/C-6473-2014;
D'Alessandro, Raffaello/F-5897-2015; Trocsanyi, Zoltan/A-5598-2009;
Konecki, Marcin/G-4164-2015; Hernandez Calama, Jose Maria/H-9127-2015;
Barcala, JOSE MIGUEL/I-1105-2015; Bedoya, Cristina/K-8066-2014;
Michelotto, Michele/A-9571-2013; Matorras, Francisco/I-4983-2015;
Molinero, Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014;
Scodellaro, Luca/K-9091-2014; Josa, Isabel/K-5184-2014; Navarrete Marin,
Jose Javier/K-6412-2014; Marin, Jesus/K-6991-2014; Gonzalez Suarez,
Rebeca/L-6128-2014; Calvo Alamillo, Enrique/L-1203-2014; Paulini,
Manfred/N-7794-2014; Vogel, Helmut/N-8882-2014; Ferguson,
Thomas/O-3444-2014; Ragazzi, Stefano/D-2463-2009; Benussi,
Luigi/O-9684-2014; Oguri, Vitor/B-5403-2013; Janssen,
Xavier/E-1915-2013; Alves, Gilvan/C-4007-2013; Santoro,
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Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Kadastik,
Mario/B-7559-2008; Mundim, Luiz/A-1291-2012; Santaolalla,
Javier/C-3094-2013; Gavrilov, Gennady/C-6260-2013; Rolandi, Luigi
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Nicola/F-8913-2012; Dvornikov, Oleg/I-7207-2013; Hill,
Christopher/B-5371-2012; Kuleshov, Sergey/D-9940-2013; Troitsky,
Sergey/C-1377-2014; Marlow, Daniel/C-9132-2014; Torassa,
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OI Torassa, Ezio/0000-0003-2321-0599; Luukka, Panja/0000-0003-2340-4641;
Goldstein, Joel/0000-0003-1591-6014; Sogut, Kenan/0000-0002-9682-2855;
Tinoco Mendes, Andre David/0000-0001-5854-7699; Dudko,
Lev/0000-0002-4462-3192; Servoli, Leonello/0000-0003-1725-9185; Tomei,
Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267; Azzi,
Patrizia/0000-0002-3129-828X; Hektor, Andi/0000-0001-7873-8118; Wulz,
Claudia-Elisabeth/0000-0001-9226-5812; Krammer,
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Abbiendi, Giovanni/0000-0003-4499-7562; Levchenko,
Petr/0000-0003-4913-0538; Uliyanov, Alexey/0000-0001-6935-8949; Arneodo,
Michele/0000-0002-7790-7132; Dharmaraatna,
Welathantri/0000-0002-6366-837X; Giacomelli, Paolo/0000-0002-6368-7220;
Fassi, Farida/0000-0002-6423-7213; Leonidopoulos,
Christos/0000-0002-7241-2114; Blekman, Freya/0000-0002-7366-7098;
Ghezzi, Alessio/0000-0002-8184-7953; bianco,
stefano/0000-0002-8300-4124; Demaria, Natale/0000-0003-0743-9465;
Benaglia, Andrea Davide/0000-0003-1124-8450; Covarelli,
Roberto/0000-0003-1216-5235; Staiano, Amedeo/0000-0003-1803-624X;
Ciulli, Vitaliano/0000-0003-1947-3396; Ligabue,
Franco/0000-0002-1549-7107; Diemoz, Marcella/0000-0002-3810-8530; Hamel
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Greg/0000-0002-4184-9380; Rizzi, Andrea/0000-0002-4543-2718; Gershtein,
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Costa, Salvatore/0000-0001-9919-0569; Lloret Iglesias,
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Donvito, Giacinto/0000-0002-0628-1080; Petragnani,
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Govoni, Pietro/0000-0002-0227-1301; Tuominen, Eija/0000-0002-7073-7767;
Yazgan, Efe/0000-0001-5732-7950; Gerbaudo, Davide/0000-0002-4463-0878;
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Ignazio/0000-0001-5092-7531; Della Ricca, Giuseppe/0000-0003-2831-6982;
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Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
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Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Mundim, Luiz/0000-0001-9964-7805;
Rolandi, Luigi (Gigi)/0000-0002-0635-274X; Hill,
Christopher/0000-0003-0059-0779; Kuleshov, Sergey/0000-0002-3065-326X;
Troitsky, Sergey/0000-0001-6917-6600; de Jesus Damiao,
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Amapane, Nicola/0000-0001-9449-2509; Klyukhin,
Vyacheslav/0000-0002-8577-6531; Novaes, Sergio/0000-0003-0471-8549
FU FMSR (Austria); FNRS (Belgium); CNPq (Brazil); CAPES (Brazil); FAPERJ
(Brazil); FAPESP (Brazil); MES (Bulgaria); CERN; CAS (China); MoST
(China); NSFC (China); COLCIENCIAS (Colombia); MSES (Croatia); RPF
(Cyprus); Academy of Sciences (Estonia); NICPB (Estonia); Academy of
Finland (Finland); ME (Finland); HIP (Finland); CEA (France); CNRS/IN2P3
(France); BMBF (Germany); DFG (Germany); HGF (Germany); GSRT (Greece);
OTKA (Hungary); NKTH (Hungary); DAE (India); DST (India); IPM (Iran);
SFI (Ireland); INFN (Italy); NRF (Korea); LAS (Lithuania); CINVESTAV
(Mexico); CONACYT (Mexico); SEP (Mexico); UASLP-FAI (Mexico); PAEC
(Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia); JINR
(Belarus); JINR (Georgia); JINR (Ukraine); JINR (Uzbekistan); MST
(Russia); MAE (Russia); MSTDS (Serbia); MICINN (Spain); CPAN (Spain);
Swiss Funding Agencies (Switzerland); NSC (Taipei); TUBITAK (Turkey);
TAEK (Turkey); STFC (United Kingdom); DOE (USA); NSF (USA); European
Union; Leventis Foundation; A. P. Sloan Foundation; Alexander von
Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 15
TC 29
Z9 29
U1 1
U2 44
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03013
DI 10.1088/1748-0221/5/03/T03013
PG 31
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100019
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
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Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
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Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
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Litomin, A
Makarenko, V
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Shumeiko, N
Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
Fedorov, A
Karneyeu, A
Korzhik, M
Panov, V
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Kuchinsky, P
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Salerno, R
de Fatis, TT
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CA CMS Collaboration
TI Identification and filtering of uncharacteristic noise in the CMS hadron
calorimeter
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Calorimeters; Large detector systems for particle and astroparticle
physics
AB Commissioning studies of the CMS hadron calorimeter have identified sporadic uncharacteristic noise and a small number of malfunctioning calorimeter channels. Algorithms have been developed to identify and address these problems in the data. The methods have been tested on cosmic ray muon data, calorimeter noise data, and single beam data collected with CMS in 2008. The noise rejection algorithms can be applied to LHC collision data at the trigger level or in the offline analysis. The application of the algorithms at the trigger level is shown to remove 90% of noise events with fake missing transverse energy above 100 GeV, which is sufficient for the CMS physics trigger operation.
C1 [Chatrchyan, S.; Khachatryan, V.; Sirunyan, A. M.] Yerevan Phys Inst, Yerevan 375036, Armenia.
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[Bouhali, O.; Chabert, E. C.; Charaf, O.; Clerbaux, B.; De Lentdecker, G.; Dero, V.; Elgammal, S.; Gay, A. P. R.; Hammad, G. H.; Marage, P. E.; Rugovac, S.; Vander Velde, C.; Vanlaer, P.; Wickens, J.] Univ Libre Bruxelles, Brussels, Belgium.
[Grunewald, M.; Klein, B.; Marinov, A.; Ryckbosch, D.; Thyssen, F.; Tytgat, M.; Vanelderen, L.; Verwilligen, P.] Univ Ghent, B-9000 Ghent, Belgium.
[Basegmez, S.; Bruno, G.; Caudron, J.; Delaere, C.; Demin, P.; Favart, D.; Giammanco, A.; Gregoire, G.; Lemaitre, V.; Militaru, O.; Ovyn, S.; Piotrzkowski, K.; Quertenmont, L.; Schul, N.] Catholic Univ Louvain, B-1348 Louvain, Belgium.
[Beliy, N.; Daubie, E.] Univ Mons, B-7000 Mons, Belgium.
[Alves, G. A.; Pol, M. E.; Souza, M. H. G.] Ctr Brasileiro Pesquisas Fis, Rio De Janeiro, Brazil.
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[Fernandez Perez Tomei, T. R.; Ferreira Dias, M. A.; Gregores, E. M.; Novaes, S. F.] Univ Estadual Paulista, Inst Fis Teor, BR-01405 Sao Paulo, Brazil.
[Abadjiev, K.; Anguelov, T.; Damgov, J.; Darmenov, N.; Dimitrov, L.; Genchev, V.; Iaydjiev, P.; Piperov, S.; Stoykova, S.; Sultanov, G.; Trayanov, R.; Vankov, I.] Bulgarian Acad Sci, Inst Nucl Res & Nucl Energy, Sofia, Bulgaria.
[Dimitrov, A.; Dyulendarova, M.; Kozhuharov, V.; Litov, L.; Marinova, E.; Mateev, M.; Pavlov, B.; Petkov, P.; Toteva, Z.] Univ Sofia, BU-1126 Sofia, Bulgaria.
[Chen, G. M.; Chen, H. S.; Guan, W.; Jiang, C. H.; Liang, D.; Liu, B.; Meng, X.; Tao, J.; Wang, J.; Wang, Z.; Xue, Z.; Zhang, Z.] Inst High Energy Phys, Beijing 100039, Peoples R China.
[Ban, Y.; Cai, J.; Ge, Y.; Guo, S.; Hu, Z.; Mao, Y.; Qian, S. J.; Teng, H.; Zhu, B.] Peking Univ, State Key Lab Nucl Phys & tech, Beijing 100871, Peoples R China.
[Avila, C.; Baquero Ruiz, M.; Carrillo Montoya, C. A.; Gomez, A.; Gomez Moreno, B.; Ocampo Rios, A. A.; Osorio Oliveros, A. F.; Reyes Romero, D.; Sanabria, J. C.] Univ Los Andes, Bogota, Colombia.
[Godinovic, N.; Lelas, K.; Plestina, R.; Polic, D.; Puljak, I.] Tech Univ Split, Split, Croatia.
[Antunovic, Z.; Dzelalija, M.] Univ Split, Split, Croatia.
[Brigljevic, V.; Duric, S.; Kadija, K.; Morovic, S.] Rudjer Boskovic Inst, Zagreb, Croatia.
[Fereos, R.; Galanti, M.; Mousa, J.; Papadakis, A.; Ptochos, F.; Razis, P. A.; Tsiakkouri, D.; Zinonos, Z.] Univ Cyprus, Nicosia, Cyprus.
[Hektor, A.; Kadastik, M.; Kannike, K.; Muentel, M.; Raidal, M.; Rebane, L.] NICPB, Tallinn, Estonia.
[Anttila, E.; Czellar, S.; Harkonen, J.; Heikkinen, A.; Karimaki, V.; Kinnunen, R.; Klem, J.; Kortelainen, M. J.; Lampen, T.; Lassila-Perini, K.; Lehti, S.; Linden, T.; Luukka, P.; Maenpaa, T.; Nysten, J.; Tuominen, E.; Tuominiemi, J.; Ungaro, D.; Wendland, L.] Helsinki Inst Phys, Helsinki, Finland.
[Banzuzi, K.; Korpela, A.; Tuuva, T.] Lappeenranta Univ Technol, Lappeenranta, Finland.
[Nedelec, P.; Sillou, D.] CNRS, IN2P3, Lab Annecy Le Vieux Phys Particules, Annecy Le Vieux, France.
[Besancon, M.; Chipaux, R.; Dejardin, M.; Denegri, D.; Descamps, J.; Fabbro, B.; Faure, J. L.; Ferri, F.; Ganjour, S.; Gentit, F. X.; Givernaud, A.; Gras, P.; de Monchenault, G. Hamel; Jarry, P.; Lemaire, M. C.; Locci, E.; Malcles, J.; Marionneau, M.; Millischer, L.; Rander, J.; Rosowsky, A.; Rousseau, D.; Titov, M.; Verrecchia, P.] CEA Saclay, DSM IRFU, F-91191 Gif Sur Yvette, France.
[Baffioni, S.; Bianchini, L.; Bluj, M.; Busson, P.; Charlot, C.; Dobrzynski, L.; de Cassagnac, R. Granier; Haguenauer, M.; Mine, P.; Paganini, P.; Sirois, Y.; Thiebaux, C.; Zabi, A.] Ecole Polytech, CNRS, IN2P3, Lab Leprince Ringuet, F-91128 Palaiseau, France.
[Agram, J. -L.; Besson, A.; Bloch, D.; Bodin, D.; Brom, J. -M.; Conte, E.; Drouhin, F.; Fontaine, J. -C.; Gele, D.; Goerlach, U.; Gross, L.; Juillot, P.; Le Bihan, A. -C.; Patois, Y.; Speck, J.; Van Hove, P.] Univ Haute Alsace Mulhouse, Univ Strasbourg, CNRS IN2P3, Inst Pluridisciplinaire Hubert Curien, Strasbourg, France.
[Baty, C.; Bedjidian, M.; Blaha, J.; Boudoul, G.; Brun, H.; Chanon, N.; Chierici, R.; Contardo, D.; Depasse, P.; Dupasquier, T.; El Mamouni, H.; Fassi, F.; Fay, J.; Gascon, S.; Ille, B.; Kurca, T.; Le Grand, T.; Lethuillier, M.; Lumb, N.; Mirabito, L.; Perries, S.; Vander Donckt, M.; Verdier, P.] Univ Lyon 1, CNRS, IN2P3, Inst Phys Nucl Lyon, F-69622 Villeurbanne, France.
[Djaoshvili, N.; Roinishvili, N.; Roinishvili, V.] Georgian Acad Sci, E Andronikashvili Inst Phys, GE-380060 Tbilisi, Rep of Georgia.
[Amaglobeli, N.] Tbilisi State Univ, Inst High Energy Phys & Informatizat, GE-380086 Tbilisi, Rep of Georgia.
[Adolphi, R.; Anagnostou, G.; Brauer, R.; Braunschweig, W.; Edelhoff, M.; Esser, H.; Feld, L.; Karpinski, W.; Khomich, A.; Klein, K.; Mohr, N.; Ostaptchouk, A.; Pandoulas, D.; Pierschel, G.; Raupach, F.; Schael, S.; von Dratzig, A. Schultz; Schwering, G.; Sprenger, D.; Thomas, M.; Weber, M.; Wittmer, B.; Wlochal, M.] Rhein Westfal TH Aachen, Inst Phys 1, Aachen, Germany.
[Actis, O.; Altenhoefer, G.; Bender, W.; Biallass, P.; Erdmann, M.; Fetchenhauer, G.; Frangenheim, J.; Hebbeker, T.; Hilgers, G.; Hinzmann, A.; Hoepfner, K.; Hof, C.; Kirsch, M.; Klimkovich, T.; Kreuzer, P.; Lanske, D.; Merschmeyer, M.; Meyer, A.; Philipps, B.; Pieta, H.; Reithler, H.; Schmitz, S. A.; Sonnenschein, L.; Sowa, M.; Steggemann, J.; Szczesny, H.; Teyssier, D.; Zeidler, C.] Rhein Westfal TH Aachen, Phys Inst A 3, Aachen, Germany.
[Bontenackels, M.; Davids, M.; Duda, M.; Fluegge, G.; Geenen, H.; Giffels, M.; Ahmad, W. Haj; Hermanns, T.; Heydhausen, D.; Kalinin, S.; Kress, T.; Linn, A.; Nowack, A.; Perchalla, L.; Poettgens, M.; Pooth, O.; Sauerland, P.; Stahl, A.; Tornier, D.; Zoeller, M. H.] Rhein Westfal TH Aachen, Phys Inst B 3, Aachen, Germany.
[Martin, M. Aldaya; Behrens, U.; Borras, K.; Campbell, A.; Castro, E.; Dammann, D.; Eckerlin, G.; Flossdorf, A.; Flucke, G.; Geiser, A.; Hatton, D.; Hauk, J.; Jung, H.; Kasemann, M.; Katkov, I.; Kleinwort, C.; Kluge, H.; Knutsson, A.; Kuznetsova, E.; Lange, W.; Lohmann, W.; Mankel, R.; Marienfeld, M.; Meyer, A. B.; Miglioranzi, S.; Mnich, J.; Ohlerich, M.; Olzem, J.; Parenti, A.; Rosemann, C.; Schmidt, R.; Schoerner-Sadenius, T.; Volyanskyy, D.; Wissing, C.; Zeuner, W. D.] DESY, Hamburg, Germany.
[Autermann, C.; Bechtel, F.; Draeger, J.; Eckstein, D.; Gebbert, U.; Kaschube, K.; Kaussen, G.; Klanner, R.; Mura, B.; Naumann-Emme, S.; Nowak, F.; Pein, U.; Sander, C.; Schleper, P.; Schum, T.; Stadie, H.; Steinbrueck, G.; Thomsen, J.; Wolf, R.] Univ Hamburg, Hamburg, Germany.
[Bauer, J.; Bluem, P.; Buege, V.; Cakir, A.; Chwalek, T.; De Boer, W.; Dierlamm, A.; Dirkes, G.; Feindt, M.; Felzmann, U.; Frey, M.; Furgeri, A.; Gruschke, J.; Hackstein, C.; Hartmann, F.; Heier, S.; Heinrich, M.; Held, H.; Hirschbuehl, D.; Hoffmann, K. H.; Honc, S.; Jung, C.; Kuhr, T.; Liamsuwan, T.; Martschei, D.; Mueller, S.; Mueller, Th.; Neuland, M. B.; Niegel, M.; Oberst, O.; Oehler, A.; Ott, J.; Peiffer, T.; Piparo, D.; Quast, G.; Rabbertz, K.; Ratnikov, F.; Ratnikova, N.; Renz, M.; Saout, C.; Sartisohn, G.; Scheurer, A.; Schieferdecker, P.; Schilling, F. -P.; Schott, G.; Simonis, H. J.; Stober, F. M.; Sturm, P.; Troendle, D.; Trunov, A.; Wagner, W.; Wagner-Kuhr, J.; Zeise, M.; Zhukov, V.; Ziebarth, E. B.] Univ Karlsruhe, Inst Expt Kernphys, D-7500 Karlsruhe, Germany.
[Daskalakis, G.; Geralis, T.; Karafasoulis, K.; Kyriakis, A.; Loukas, D.; Markou, A.; Markou, C.; Mavrommatis, C.; Petrakou, E.; Zachariadou, A.] Inst Nucl Phys Demokritos, Aghia Paraskevi, Greece.
[Gouskos, L.; Katsas, P.; Panagiotou, A.] Univ Athens, Athens, Greece.
[Evangelou, I.; Kokkas, P.; Manthos, N.; Papadopoulos, I.; Patras, V.; Triantis, F. A.] Univ Ioannina, GR-45110 Ioannina, Greece.
[Bencze, G.; Boldizsar, L.; Debreczeni, G.; Hajdu, C.; Hernath, S.; Hidas, P.; Horvath, D.; Krajczar, K.; Laszlo, A.; Patay, G.; Sikler, F.; Toth, N.; Vesztergombi, G.] KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
[Beni, N.; Christian, G.; Imrek, J.; Molnar, J.; Novak, D.; Palinkas, J.; Szekely, G.; Szillasi, Z.; Tokesi, K.; Veszpremi, V.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Kapusi, A.; Marian, G.; Raics, P.; Szabo, Z.; Trocsanyi, Z. L.; Ujvari, B.; Zilizi, G.] Univ Debrecen, H-4012 Debrecen, Hungary.
[Bansal, S.; Bawa, H. S.; Beri, S. B.; Bhatnagar, V.; Jindal, M.; Kaur, M.; Kaur, R.; Kohli, J. M.; Mehta, M. Z.; Nishu, N.; Saini, L. K.; Sharma, A.; Singh, A.; Singh, J. B.; Singh, S. P.] Panjab Univ, Chandigarh 160014, India.
[Ahuja, S.; Arora, S.; Bhattacharya, S.; Chauhan, S.; Choudhary, B. C.; Gupta, P.; Jain, S.; Jha, M.; Kumar, A.; Ranjan, K.; Shivpuri, R. K.; Srivastava, A. K.] Univ Delhi, Delhi 110007, India.
[Choudhury, R. K.; Dutta, D.; Kailas, S.; Kataria, S. K.; Mohanty, A. K.; Pant, L. M.; Shukla, P.; Topkar, A.] Bhabha Atom Res Ctr, Mumbai 400085, Maharashtra, India.
[Aziz, T.; Guchait, M.; Gurtu, A.; Maity, M.; Majumder, D.; Majumder, G.; Mazumdar, K.; Nayak, A.; Saha, A.; Sudhakar, K.] Tata Inst Fundamental Res, EHEP, Mumbai 400005, Maharashtra, India.
[Banerjee, S.; Dugad, S.; Mondal, N. K.] Tata Inst Fundamental Res, HECR, Mumbai 400005, Maharashtra, India.
[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys & Math IPM, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Abbrescia, M.; De Palma, M.; Lusito, L.; Manna, N.; Marangelli, B.; Natali, S.; Nuzzo, S.; Pompili, A.; Roselli, G.; Selvaggi, G.; Tupputi, S.] Univ Bari, Bari, Italy.
[Creanza, D.; Maggi, G.; My, S.; Pugliese, G.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Bacchi, W.; Braibant-Giacomelli, S.; Capiluppi, P.; Castro, A.; Codispoti, G.; Cuffiani, M.; Fanfani, A.; Masetti, G.; Navarria, F. L.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Broccolo, G.; Ciulli, V.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Genta, C.; Landi, G.; Lenzi, P.] Univ Florence, Florence, Italy.
[Fabbri, F.; Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Denegri, D.; Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Cerati, G. B.; Govoni, P.; Malberti, M.; Miccio, V.; Negri, P.; Paganoni, M.; Pullia, A.; Ragazzi, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Cimmino, A.; De Gruttola, M.; Noli, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Bellan, P.; Bisello, D.; Borsato, E.; Carlin, R.; De Mattia, M.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Kaminskiy, A.; Margoni, M.; Mattiazzo, S.; Meneguzzo, A. T.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Tosi, M.; Vanini, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Biasini, M.; Caponeri, B.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Santocchia, A.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Pisa, Italy.
[Bernardini, J.; Fiori, F.; Messineo, A.; Tonelli, G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bocci, A.; Borrello, L.; Foa, L.; Gennai, S.; Ligabue, F.; Petrucciani, G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Barone, L.; Del Re, D.; Di Marco, E.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Rahatlou, S.] Univ Roma La Sapienza, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Amapane, N.; Arcidiacono, R.; Argiro, S.; Borgia, M. A.; Botta, C.; Castello, R.; Cerminara, G.; Costa, M.; Graziano, A.; Marone, M.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Oggero, S.; Pelliccioni, M.; Romero, A.; Sacchi, R.; Solano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.] Univ Turin, Turin, Italy.
[Arneodo, M.; Obertino, M. M.; Ruspa, M.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Della Ricca, G.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius State Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] State Res Ctr Russian Federat, Inst High Energy Phys, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, CSIC, Inst Fis Cantabria IFCA, E-39005 Santander, Spain.
[Sharma, A.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Weber, M.; Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli 32054, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Phys & Technol Inst, Natl Sci Ctr, UA-310108 Kharkov, Ukraine.
[Hansen, M.; Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; John, J. St.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Liu, H.; Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Bartoloni, A.; Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Banerjee, S.; Evans, D.; Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Schroeder, M.; Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Kumar, A.; Baur, U.; Iashvili, I.; Kharchilava, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Schmitt, M.; Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Dutta, D.; Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Cankocak, K.] Istanbul Tech Univ, Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Torassa, Ezio/I-1788-2012; Giacomelli, Paolo/B-8076-2009; Jeitler,
Manfred/H-3106-2012; Venturi, Andrea/J-1877-2012; de Jesus Damiao,
Dilson/G-6218-2012; Montanari, Alessandro/J-2420-2012; Amapane,
Nicola/J-3683-2012; tosi, mia/J-5777-2012; Klyukhin,
Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012; Raidal,
Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Tinoco Mendes, Andre David/D-4314-2011; Lokhtin,
Igor/D-7004-2012; Kodolova, Olga/D-7158-2012; Dudko, Lev/D-7127-2012;
Boos, Eduard/D-9748-2012; Snigirev, Alexander/D-8912-2012; Chipaux,
Remi/G-1145-2010; Servoli, Leonello/E-6766-2012; Tomei,
Thiago/E-7091-2012; Focardi, Ettore/E-7376-2012; Fruhwirth,
Rudolf/H-2529-2012; Azzi, Patrizia/H-5404-2012; Palinkas,
Jozsef/B-2993-2011; Romaniuk, Ryszard/B-9140-2011; Ganjour,
Serguei/D-8853-2011; Ruiz, Alberto/E-4473-2011; Stahl,
Achim/E-8846-2011; Hektor, Andi/G-1804-2011; Wulz,
Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Horvath,
Dezso/A-4009-2011; Langenegger, Urs/A-4578-2008; Varela,
Joao/K-4829-2016; Fassi, Farida/F-3571-2016; Sguazzoni,
Giacomo/J-4620-2015; Ligabue, Franco/F-3432-2014; Menasce, Dario
Livio/A-2168-2016; Bargassa, Pedrame/O-2417-2016; Vilela Pereira,
Antonio/L-4142-2016; Sznajder, Andre/L-1621-2016; Haj Ahmad,
Wael/E-6738-2016; Xie, Si/O-6830-2016; Leonardo, Nuno/M-6940-2016; Goh,
Junghwan/Q-3720-2016; Govoni, Pietro/K-9619-2016; Tuominen,
Eija/A-5288-2017; Yazgan, Efe/C-4521-2014; Gerbaudo, Davide/J-4536-2012;
Arce, Pedro/L-1268-2014; Flix, Josep/G-5414-2012; Ozdemir,
Kadri/P-8058-2014; korzhik, Mikhail/E-9505-2014; Della Ricca,
Giuseppe/B-6826-2013; Fedorov, Andrei/E-9455-2014; Konovalova,
Nina/D-3882-2014; Cordonnier, Agnes/I-5083-2016; Paganoni,
Marco/A-4235-2016; Kirakosyan, Martin/N-2701-2015; Seixas,
Joao/F-5441-2013; Verwilligen, Piet/M-2968-2014; Matorras,
Francisco/I-4983-2015; My, Salvatore/I-5160-2015; Gumus,
Kazim/G-2498-2013; Muelmenstaedt, Johannes/K-2432-2015; Rovelli,
Tiziano/K-4432-2015; Dremin, Igor/K-8053-2015; Hoorani,
Hafeez/D-1791-2013; Vinogradov, Alexander/M-5331-2015; Altsybeev,
Igor/K-6687-2013; TUVE', Cristina/P-3933-2015; Gulmez,
Erhan/P-9518-2015; KIM, Tae Jeong/P-7848-2015; Russ, James/P-3092-2014;
Grandi, Claudio/B-5654-2015; Ahmed, Ijaz/E-9144-2015; Lazzizzera,
Ignazio/E-9678-2015; Sen, Sercan/C-6473-2014; D'Alessandro,
Raffaello/F-5897-2015; Trocsanyi, Zoltan/A-5598-2009; Konecki,
Marcin/G-4164-2015; Hernandez Calama, Jose Maria/H-9127-2015; Barcala,
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Isabel/K-5184-2014; Navarrete Marin, Jose Javier/K-6412-2014; Marin,
Jesus/K-6991-2014; Gonzalez Suarez, Rebeca/L-6128-2014; Calvo Alamillo,
Enrique/L-1203-2014; Paulini, Manfred/N-7794-2014; Vogel,
Helmut/N-8882-2014; Ferguson, Thomas/O-3444-2014; Ragazzi,
Stefano/D-2463-2009; Benussi, Luigi/O-9684-2014; Oguri,
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Carlos/K-6445-2014; Kadastik, Mario/B-7559-2008; Mundim,
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Piotr/H-7335-2013; Cavallo, Nicola/F-8913-2012; Dvornikov,
Oleg/I-7207-2013; Hill, Christopher/B-5371-2012; Kuleshov,
Sergey/D-9940-2013; Troitsky, Sergey/C-1377-2014; Marlow,
Daniel/C-9132-2014
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Klyukhin, Vyacheslav/0000-0002-8577-6531; Novaes,
Sergio/0000-0003-0471-8549; Tinoco Mendes, Andre
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Leonello/0000-0003-1725-9185; Tomei, Thiago/0000-0002-1809-5226;
Focardi, Ettore/0000-0002-3763-5267; Azzi, Patrizia/0000-0002-3129-828X;
Romaniuk, Ryszard/0000-0002-5710-4041; Ruiz,
Alberto/0000-0002-3639-0368; Stahl, Achim/0000-0002-8369-7506; Hektor,
Andi/0000-0001-7873-8118; Wulz, Claudia-Elisabeth/0000-0001-9226-5812;
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Tabarelli de Fatis, Tommaso/0000-0001-6262-4685; Zabolotny,
Wojciech/0000-0002-6833-4846; Lenzi, Piergiulio/0000-0002-6927-8807;
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Pietro/0000-0003-1849-6692; Korenkov, Vladimir/0000-0002-2342-7862;
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Gallinaro, Michele/0000-0003-1261-2277; Uliyanov,
Alexey/0000-0001-6935-8949; Arneodo, Michele/0000-0002-7790-7132;
Sciacca, Crisostomo/0000-0002-8412-4072; Varela,
Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109; Toback,
David/0000-0003-3457-4144; Mackay, Catherine/0000-0003-4252-6740;
HSIUNG, YEE/0000-0003-4801-1238; Demaria, Natale/0000-0003-0743-9465;
Benaglia, Andrea Davide/0000-0003-1124-8450; Covarelli,
Roberto/0000-0003-1216-5235; Staiano, Amedeo/0000-0003-1803-624X;
Ciulli, Vitaliano/0000-0003-1947-3396; Tonelli, Guido
Emilio/0000-0003-2606-9156; Beuselinck, Raymond/0000-0003-2613-7446;
Stober, Fred/0000-0003-2620-3159; Martelli,
Arabella/0000-0003-3530-2255; Abbiendi, Giovanni/0000-0003-4499-7562;
Levchenko, Petr/0000-0003-4913-0538; Gershtein,
Yuri/0000-0002-4871-5449; Tricomi, Alessia Rita/0000-0002-5071-5501;
CALZOLARI, FEDERICO/0000-0002-5510-3061; Malik,
Sudhir/0000-0002-6356-2655; Dharmaraatna,
Welathantri/0000-0002-6366-837X; Giacomelli, Paolo/0000-0002-6368-7220;
Fassi, Farida/0000-0002-6423-7213; Leonidopoulos,
Christos/0000-0002-7241-2114; Blekman, Freya/0000-0002-7366-7098;
Ghezzi, Alessio/0000-0002-8184-7953; bianco,
stefano/0000-0002-8300-4124; Costa, Salvatore/0000-0001-9919-0569;
Lloret Iglesias, Lara/0000-0002-0157-4765; Kasemann,
Matthias/0000-0002-0429-2448; Donvito, Giacinto/0000-0002-0628-1080;
Sguazzoni, Giacomo/0000-0002-0791-3350; WANG,
MIN-ZU/0000-0002-0979-8341; Ligabue, Franco/0000-0002-1549-7107; Diemoz,
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Egidio/0000-0001-6238-6787; Baarmand, Marc/0000-0002-9792-8619; Nervo,
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Pedrame/0000-0001-8612-3332; Mrenna, Stephen/0000-0001-8731-160X; Bilki,
Burak/0000-0001-9515-3306; Actis, Oxana/0000-0001-8851-3983; Landsberg,
Greg/0000-0002-4184-9380; Petragnani, Giulio/0000-0002-0819-6509; Hamel
de Monchenault, Gautier/0000-0002-3872-3592; Bean,
Alice/0000-0001-5967-8674; Vilela Pereira, Antonio/0000-0003-3177-4626;
Sznajder, Andre/0000-0001-6998-1108; Haj Ahmad,
Wael/0000-0003-1491-0446; Xie, Si/0000-0003-2509-5731; Leonardo,
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Pietro/0000-0002-0227-1301; Tuominen, Eija/0000-0002-7073-7767; Yazgan,
Efe/0000-0001-5732-7950; Gerbaudo, Davide/0000-0002-4463-0878; Vieira de
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Pedro/0000-0003-3009-0484; Flix, Josep/0000-0003-2688-8047; Ozdemir,
Kadri/0000-0002-0103-1488; Della Ricca, Giuseppe/0000-0003-2831-6982;
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Marco/0000-0003-2461-275X; Seixas, Joao/0000-0002-7531-0842; Matorras,
Francisco/0000-0003-4295-5668; My, Salvatore/0000-0002-9938-2680; Gumus,
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Rovelli, Tiziano/0000-0002-9746-4842; Altsybeev,
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Erhan/0000-0002-6353-518X; KIM, Tae Jeong/0000-0001-8336-2434; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070;
Lazzizzera, Ignazio/0000-0001-5092-7531; Sen,
Sercan/0000-0001-7325-1087; D'Alessandro, Raffaello/0000-0001-7997-0306;
Trocsanyi, Zoltan/0000-0002-2129-1279; Konecki,
Marcin/0000-0001-9482-4841; Hernandez Calama, Jose
Maria/0000-0001-6436-7547; Barcala, JOSE MIGUEL/0000-0002-1092-7091;
Bedoya, Cristina/0000-0001-8057-9152; Michelotto,
Michele/0000-0001-6644-987X; Scodellaro, Luca/0000-0002-4974-8330;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889;
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Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Mundim, Luiz/0000-0001-9964-7805;
Rolandi, Luigi (Gigi)/0000-0002-0635-274X; Hill,
Christopher/0000-0003-0059-0779; Kuleshov, Sergey/0000-0002-3065-326X;
Troitsky, Sergey/0000-0001-6917-6600;
FU FMSR (Austria); FNRS (Belgium); FWO (Belgium); CNPq (Brazil); CAPES
(Brazil); FAPERJ (Brazil); FAPESP (Brazil); MES (Bulgaria); CERN; CAS
(China); MoST (China); NSFC (China); COLCIEN-CIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences (Estonia); NICPB (Estonia);
Academy of Finland (Finland); ME (Finland); HIP (Finland); CEA (France);
CNRS/IN2P3 (France); BMBF (Germany); DFG (Germany); HGF (Germany); GSRT
(Greece); OTKA (Hungary); NKTH (Hungary); DAE (India); DST (India); IPM
(Iran); SFI (Ireland); INFN (Italy); NRF (Korea); LAS (Lithuania);
CINVESTAV (Mexico); SEP (Mexico); UASLP-FAI (Mexico); PAEC (Pakistan);
SCSR (Poland); FCT (Portugal); JINR (Armenia); JINR (Belarus); JINR
(Georgia); JINR (Ukraine); JINR (Uzbekistan); MST (Russia); MAE
(Russia); MSTDS (Serbia); MICINN (Spain); CPAN (Spain); Swiss Funding
Agencies (Switzerland); NSC (Taipei); TUBITAK (Turkey); TAEK (Turkey);
STFC (United Kingdom); DOE (USA); NSF (USA); European Union; Leventis
Foundation; A. P. Sloan Foundation; Alexander von Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIEN-CIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 8
TC 38
Z9 38
U1 5
U2 60
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03014
DI 10.1088/1748-0221/5/03/T03014
PG 31
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100018
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
Litomin, A
Makarenko, V
Marfin, I
Mossolov, V
Shumeiko, N
Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
Fedorov, A
Karneyeu, A
Korzhik, M
Panov, V
Zuyeuski, R
Kuchinsky, P
Beaumont, W
Benucci, L
Cardaci, M
De Wolf, EA
Delmeire, E
Druzhkin, D
Hashemi, M
Janssen, X
Maes, T
Mucibello, L
Ochesanu, S
Rougny, R
Selvaggi, M
Van Haevermaet, H
Van Mechelen, P
Van Remortel, N
Adler, V
Beauceron, S
Blyweert, S
D'Hondt, J
De Weirdt, S
Devroede, O
Heyninck, J
Kalogeropoulos, A
Maes, J
Maes, M
Mozer, MU
Tavernier, S
Van Doninck, W
Van Mulders, P
Villella, I
Bouhali, O
Chabert, EC
Charaf, O
Clerbaux, B
De Lentdecker, G
Dero, V
Elgammal, S
Gay, APR
Hammad, GH
Marage, PE
Rugovac, S
Velde, CV
Vanlaer, P
Wickens, J
Grunewald, M
Klein, B
Marinov, A
Ryckbosch, D
Thyssen, F
Tytgat, M
Vanelderen, L
Verwilligen, P
Basegmez, S
Bruno, G
Caudron, J
Delaere, C
Demin, P
Favart, D
Giammanco, A
Gregoire, G
Lemaitre, V
Militaru, O
Ovyn, S
Piotrzkowski, K
Quertenmont, L
Schul, N
Beliy, N
Daubie, E
Alves, GA
Pol, ME
Souza, MHG
Carvalho, W
Damiao, DD
Martins, CD
De Souza, SF
Mundim, L
Oguri, V
Santoro, A
Do Amaral, SMS
Sznajder, A
Tomei, TRFP
Dias, MAF
Gregores, EM
Novaes, SF
Abadjiev, K
Anguelov, T
Damgov, J
Darmenov, N
Dimitrov, L
Genchev, V
Iaydjiev, P
Piperov, S
Stoykova, S
Sultanov, G
Trayanov, R
Vankov, I
Dimitrov, A
Dyulendarova, M
Kozhuharov, V
Litov, L
Marinova, E
Mateev, M
Pavlov, B
Petkov, P
Toteva, Z
Chen, GM
Chen, HS
Guan, W
Jiang, CH
Liang, D
Liu, B
Meng, X
Tao, J
Wang, J
Wang, Z
Xue, Z
Zhang, Z
Ban, Y
Cai, J
Ge, Y
Guo, S
Hu, Z
Mao, Y
Qian, SJ
Teng, H
Zhu, B
Avila, C
Ruiz, MB
Montoya, CAC
Gomez, A
Moreno, BG
Rios, AAO
Oliveros, AFO
Romero, DR
Sanabria, JC
Godinovic, N
Lelas, K
Plestina, R
Polic, D
Puljak, I
Antunovic, Z
Dzelalija, M
Brigljevic, V
Duric, S
Kadija, K
Morovic, S
Fereos, R
Galanti, M
Mousa, J
Papadakis, A
Ptochos, F
Razis, PA
Tsiakkouri, D
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de Abril, M. Magrans
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CA CMS Collaboration
TI Performance of the CMS drift tube chambers with cosmic rays
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Large detector systems for particle and astroparticle physics; Particle
tracking detectors (Gaseous detectors)
ID MUON CHAMBER
AB Studies of the performance of the CMS drift tube barrel muon system are described, with results based on data collected during the CMS Cosmic Run at Four Tesla. For most of these data, the solenoidal magnet was operated with a central field of 3.8 T. The analysis of data from 246 out of a total of 250 chambers indicates a very good muon reconstruction capability, with a coordinate resolution for a single hit of about 260 mu m, and a nearly 100% efficiency for the drift tube cells. The resolution of the track direction measured in the bending plane is about 1.8 mrad, and the efficiency to reconstruct a segment in a single chamber is higher than 99%. The CMS simulation of cosmic rays reproduces well the performance of the barrel muon detector.
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[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.] Univ Florence, Florence, Italy.
[Tropiano, A.; Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Fabbri, F.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Cimmino, A.; Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Univ Roma La Sapienza, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Turin, Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius Univ, Vilnius, Lithuania.
[Valdez, H. Castilla; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Pedro, L. Antunes; Bargassa, P.; Faccioli, P.; Parracho, P. G. Ferreira; Ferreira, M. Freitas; Gallinaro, M.; Jordao, M. Guerra; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Solovey, A.; Toropin, A.; Troitsky, S.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Jimeno, A. Ruiz; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, IFCA, CSIC, E-39005 Santander, Spain.
[Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; St John, J.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.; Hagopian, V.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Campagnari, C.; Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P. ]; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.] Univ Virginia, Charlottesville, VA USA.
[Yohay, R.; Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Agram, J. -L.; Conte, E.; Drouhin, F.; Fontaine, J. -C.] Univ Haute Alsace, Mulhouse, France.
[Fassi, F.] IN2P3, Ctr Calcul, Villeurbanne, France.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
[Lazzizzera, I.] Univ Trent, Trento, Italy.
[Baccaro, S.] ENEA Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Jovanovic, D.; Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade 11001, Serbia.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Rolandi, G.] Ist Nazl Fis Nucl, Scuola Normale & Sez, Pisa, Italy.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Cankocak, K.] Istanbul Tech Univ, TR-80626 Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Torassa, Ezio/I-1788-2012; Giacomelli, Paolo/B-8076-2009; Jeitler,
Manfred/H-3106-2012; Venturi, Andrea/J-1877-2012; de Jesus Damiao,
Dilson/G-6218-2012; Montanari, Alessandro/J-2420-2012; Amapane,
Nicola/J-3683-2012; tosi, mia/J-5777-2012; Klyukhin,
Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012; Raidal,
Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Tinoco Mendes, Andre David/D-4314-2011; Lokhtin,
Igor/D-7004-2012; Kodolova, Olga/D-7158-2012; Dudko, Lev/D-7127-2012;
Boos, Eduard/D-9748-2012; Snigirev, Alexander/D-8912-2012; Chipaux,
Remi/G-1145-2010; Servoli, Leonello/E-6766-2012; Tomei,
Thiago/E-7091-2012; Focardi, Ettore/E-7376-2012; Fruhwirth,
Rudolf/H-2529-2012; Azzi, Patrizia/H-5404-2012; Langenegger,
Urs/A-4578-2008; Palinkas, Jozsef/B-2993-2011; Romaniuk,
Ryszard/B-9140-2011; kaya, mithat/D-8062-2011; Ganjour,
Serguei/D-8853-2011; Stahl, Achim/E-8846-2011; Hektor, Andi/G-1804-2011;
Wulz, Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Horvath,
Dezso/A-4009-2011; Varela, Joao/K-4829-2016; Fassi, Farida/F-3571-2016;
Ligabue, Franco/F-3432-2014; Bargassa, Pedrame/O-2417-2016; Sguazzoni,
Giacomo/J-4620-2015; Menasce, Dario Livio/A-2168-2016; Xie,
Si/O-6830-2016; Leonardo, Nuno/M-6940-2016; Goh, Junghwan/Q-3720-2016;
Govoni, Pietro/K-9619-2016; Tuominen, Eija/A-5288-2017; Yazgan,
Efe/C-4521-2014; Gerbaudo, Davide/J-4536-2012; Lazzizzera,
Ignazio/E-9678-2015; korzhik, Mikhail/E-9505-2014; Della Ricca,
Giuseppe/B-6826-2013; Fedorov, Andrei/E-9455-2014; Konovalova,
Nina/D-3882-2014; Cordonnier, Agnes/I-5083-2016; Paganoni,
Marco/A-4235-2016; Kirakosyan, Martin/N-2701-2015; Seixas,
Joao/F-5441-2013; Verwilligen, Piet/M-2968-2014; Vilela Pereira,
Antonio/L-4142-2016; Sznajder, Andre/L-1621-2016; Haj Ahmad,
Wael/E-6738-2016; My, Salvatore/I-5160-2015; Gumus, Kazim/G-2498-2013;
Muelmenstaedt, Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015;
Dremin, Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Altsybeev, Igor/K-6687-2013; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
Russ, James/P-3092-2014; Grandi, Claudio/B-5654-2015; Ahmed,
Ijaz/E-9144-2015; Sen, Sercan/C-6473-2014; D'Alessandro,
Raffaello/F-5897-2015; Trocsanyi, Zoltan/A-5598-2009; Konecki,
Marcin/G-4164-2015; Hernandez Calama, Jose Maria/H-9127-2015; Barcala,
JOSE MIGUEL/I-1105-2015; Bedoya, Cristina/K-8066-2014; Michelotto,
Michele/A-9571-2013; Matorras, Francisco/I-4983-2015; Molinero,
Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014; Scodellaro,
Luca/K-9091-2014; Josa, Isabel/K-5184-2014; Navarrete Marin, Jose
Javier/K-6412-2014; Marin, Jesus/K-6991-2014; Gonzalez Suarez,
Rebeca/L-6128-2014; Calvo Alamillo, Enrique/L-1203-2014; Paulini,
Manfred/N-7794-2014; Vogel, Helmut/N-8882-2014; Ferguson,
Thomas/O-3444-2014; Ragazzi, Stefano/D-2463-2009; Benussi,
Luigi/O-9684-2014; Oguri, Vitor/B-5403-2013; Janssen,
Xavier/E-1915-2013; Alves, Gilvan/C-4007-2013; Santoro,
Alberto/E-7932-2014; Codispoti, Giuseppe/F-6574-2014; Bellan,
Riccardo/G-2139-2014; Petrucci, Andrea/J-4207-2014; Gribushin,
Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Kadastik,
Mario/B-7559-2008; Mundim, Luiz/A-1291-2012; Santaolalla,
Javier/C-3094-2013; Gavrilov, Gennady/C-6260-2013; Rolandi, Luigi
(Gigi)/E-8563-2013; Zalewski, Piotr/H-7335-2013; Cavallo,
Nicola/F-8913-2012; Dvornikov, Oleg/I-7207-2013; Hill,
Christopher/B-5371-2012; Kuleshov, Sergey/D-9940-2013; Troitsky,
Sergey/C-1377-2014; Marlow, Daniel/C-9132-2014
OI Luukka, Panja/0000-0003-2340-4641; Goldstein, Joel/0000-0003-1591-6014;
Sogut, Kenan/0000-0002-9682-2855; de Jesus Damiao,
Dilson/0000-0002-3769-1680; Montanari, Alessandro/0000-0003-2748-6373;
Amapane, Nicola/0000-0001-9449-2509; Klyukhin,
Vyacheslav/0000-0002-8577-6531; Novaes, Sergio/0000-0003-0471-8549;
Tinoco Mendes, Andre David/0000-0001-5854-7699; Dudko,
Lev/0000-0002-4462-3192; Servoli, Leonello/0000-0003-1725-9185; Tomei,
Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267; Azzi,
Patrizia/0000-0002-3129-828X; Romaniuk, Ryszard/0000-0002-5710-4041;
Stahl, Achim/0000-0002-8369-7506; Hektor, Andi/0000-0001-7873-8118;
Wulz, Claudia-Elisabeth/0000-0001-9226-5812; Krammer,
Manfred/0000-0003-2257-7751; Korenkov, Vladimir/0000-0002-2342-7862;
Heath, Helen/0000-0001-6576-9740; Giubilato, Piero/0000-0003-4358-5355;
Gallinaro, Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Gutsche,
Oliver/0000-0002-8015-9622; Torassa, Ezio/0000-0003-2321-0599; Varela,
Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109; Toback,
David/0000-0003-3457-4144; Mackay, Catherine/0000-0003-4252-6740;
HSIUNG, YEE/0000-0003-4801-1238; Bonnett Del Alamo, Miguel
Reinaldo/0000-0002-1011-8411; Faccioli, Pietro/0000-0003-1849-6692;
Beuselinck, Raymond/0000-0003-2613-7446; Stober,
Fred/0000-0003-2620-3159; Martelli, Arabella/0000-0003-3530-2255;
Abbiendi, Giovanni/0000-0003-4499-7562; Levchenko,
Petr/0000-0003-4913-0538; Uliyanov, Alexey/0000-0001-6935-8949; Arneodo,
Michele/0000-0002-7790-7132; Sciacca, Crisostomo/0000-0002-8412-4072;
Dharmaraatna, Welathantri/0000-0002-6366-837X; Giacomelli,
Paolo/0000-0002-6368-7220; Fassi, Farida/0000-0002-6423-7213;
Leonidopoulos, Christos/0000-0002-7241-2114; Blekman,
Freya/0000-0002-7366-7098; Ghezzi, Alessio/0000-0002-8184-7953; Demaria,
Natale/0000-0003-0743-9465; Benaglia, Andrea Davide/0000-0003-1124-8450;
Covarelli, Roberto/0000-0003-1216-5235; Staiano,
Amedeo/0000-0003-1803-624X; Ciulli, Vitaliano/0000-0003-1947-3396;
Tonelli, Guido Emilio/0000-0003-2606-9156; Ligabue,
Franco/0000-0002-1549-7107; Diemoz, Marcella/0000-0002-3810-8530; Hamel
de Monchenault, Gautier/0000-0002-3872-3592; Landsberg,
Greg/0000-0002-4184-9380; Rizzi, Andrea/0000-0002-4543-2718; Gershtein,
Yuri/0000-0002-4871-5449; Tricomi, Alessia Rita/0000-0002-5071-5501;
CALZOLARI, FEDERICO/0000-0002-5510-3061; Malik,
Sudhir/0000-0002-6356-2655; Bargassa, Pedrame/0000-0001-8612-3332;
Mrenna, Stephen/0000-0001-8731-160X; Bilki, Burak/0000-0001-9515-3306;
Costa, Salvatore/0000-0001-9919-0569; Lloret Iglesias,
Lara/0000-0002-0157-4765; Kasemann, Matthias/0000-0002-0429-2448;
Donvito, Giacinto/0000-0002-0628-1080; Petragnani,
Giulio/0000-0002-0819-6509; Sguazzoni, Giacomo/0000-0002-0791-3350;
WANG, MIN-ZU/0000-0002-0979-8341; Bean, Alice/0000-0001-5967-8674;
Longo, Egidio/0000-0001-6238-6787; Baarmand, Marc/0000-0002-9792-8619;
Nervo, Marco/0000-0002-9898-7346; Boccali, Tommaso/0000-0002-9930-9299;
Menasce, Dario Livio/0000-0002-9918-1686; Xie, Si/0000-0003-2509-5731;
Leonardo, Nuno/0000-0002-9746-4594; Goh, Junghwan/0000-0002-1129-2083;
Govoni, Pietro/0000-0002-0227-1301; Tuominen, Eija/0000-0002-7073-7767;
Yazgan, Efe/0000-0001-5732-7950; Gerbaudo, Davide/0000-0002-4463-0878;
Vieira de Castro Ferreira da Silva, Pedro Manuel/0000-0002-5725-041X;
Actis, Oxana/0000-0001-8851-3983; Lazzizzera,
Ignazio/0000-0001-5092-7531; Della Ricca, Giuseppe/0000-0003-2831-6982;
Cordonnier, Agnes/0000-0002-4216-3524; Paganoni,
Marco/0000-0003-2461-275X; Seixas, Joao/0000-0002-7531-0842; Vilela
Pereira, Antonio/0000-0003-3177-4626; Sznajder,
Andre/0000-0001-6998-1108; Haj Ahmad, Wael/0000-0003-1491-0446; My,
Salvatore/0000-0002-9938-2680; Gumus, Kazim/0000-0002-1450-6868;
Muelmenstaedt, Johannes/0000-0003-1105-6678; Rovelli,
Tiziano/0000-0002-9746-4842; Altsybeev, Igor/0000-0002-8079-7026; TUVE',
Cristina/0000-0003-0739-3153; Gulmez, Erhan/0000-0002-6353-518X; KIM,
Tae Jeong/0000-0001-8336-2434; Flix, Josep/0000-0003-2688-8047; Ozdemir,
Kadri/0000-0002-0103-1488; Russ, James/0000-0001-9856-9155; Grandi,
Claudio/0000-0001-5998-3070; Sen, Sercan/0000-0001-7325-1087;
D'Alessandro, Raffaello/0000-0001-7997-0306; Trocsanyi,
Zoltan/0000-0002-2129-1279; Konecki, Marcin/0000-0001-9482-4841;
Hernandez Calama, Jose Maria/0000-0001-6436-7547; Barcala, JOSE
MIGUEL/0000-0002-1092-7091; Bedoya, Cristina/0000-0001-8057-9152;
Michelotto, Michele/0000-0001-6644-987X; Matorras,
Francisco/0000-0003-4295-5668; Scodellaro, Luca/0000-0002-4974-8330;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889;
Codispoti, Giuseppe/0000-0003-0217-7021; Petrucci,
Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Mundim, Luiz/0000-0001-9964-7805;
Rolandi, Luigi (Gigi)/0000-0002-0635-274X; Hill,
Christopher/0000-0003-0059-0779; Kuleshov, Sergey/0000-0002-3065-326X;
Troitsky, Sergey/0000-0001-6917-6600;
FU FMSR (Austria); FNRS (Belgium); FWO (Belgium); CNPq (Brazil); CAPES
(Brazil); FAPERJ (Brazil); FAPESP (Brazil); MES (Bulgaria); CERN; CAS
(China); MoST (China); NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences (Estonia); NICPB (Estonia);
Academy of Finland (Finland); ME (Finland); HIP (Finland); CEA (France);
CNRS/IN2P3 (France); BMBF (Germany); DFG (Germany); HGF (Germany); GSRT
(Greece); OTKA (Hungary); NKTH (Hungary); DAE (India); DST (India); IPM
(Iran); SFI (Ireland); INFN (Italy); NRF (Korea); LAS (Lithuania);
CINVESTAV (Mexico); CONACYT (Mexico); SEP (Mexico); UASLP-FAI (Mexico);
PAEC (Pakistan); SCSR (Poland); FCT (Portugal); MST (Russia); MAE
(Russia); MSTDS (Serbia); MICINN (Spain); CPAN (Spain); Swiss Funding
Agencies (Switzerland); NSC (Taipei); TUBITAK (Turkey); TAEK (Turkey);
STFC (United Kingdom); DOE (USA); NSF (USA); European Union; Leventis
Foundation; A. P. Sloan Foundation; Alexander von Humboldt Foundation;
JINR (Armenia); JINR (Belarus); JINR (Georgia); JINR (Ukraine); JINR
(Uzbekistan)
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 23
TC 28
Z9 28
U1 0
U2 56
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03015
DI 10.1088/1748-0221/5/03/T03015
PG 47
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100017
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
Litomin, A
Makarenko, V
Marfin, I
Mossolov, V
Shumeiko, N
Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
Fedorov, A
Karneyeu, A
Korzhik, M
Panov, V
Zuyeuski, R
Kuchinsky, P
Beaumont, W
Benucci, L
Cardaci, M
De Wolf, EA
Delmeire, E
Druzhkin, D
Hashemi, M
Janssen, X
Maes, T
Mucibello, L
Ochesanu, S
Rougny, R
Selvaggi, M
Van Haevermaet, H
Van Mechelen, P
Van Remortel, N
Adler, V
Beauceron, S
Blyweert, S
D'Hondt, J
De Weirdt, S
Devroede, O
Heyninck, J
Kalogeropoulos, A
Maes, J
Maes, M
Mozer, MU
Tavernier, S
Van Doninck, W
Van Mulders, P
Villella, I
Bouhali, O
Chabert, EC
Charaf, O
Clerbaux, B
De Lentdecker, G
Dero, V
Elgammal, S
Gay, APR
Hammad, GH
Marage, PE
Rugovac, S
Velde, CV
Vanlaer, P
Wickens, J
Grunewald, M
Klein, B
Marinov, A
Ryckbosch, D
Thyssen, F
Tytgat, M
Vanelderen, L
Verwilligen, P
Basegmez, S
Bruno, G
Caudron, J
Delaere, C
Demin, P
Favart, D
Giammanco, A
Gregoire, G
Lemaitre, V
Militaru, O
Ovyn, S
Piotrzkowski, K
Quertenmont, L
Schul, N
Beliy, N
Daubie, E
Alves, GA
Pol, ME
Souza, MHG
Carvalho, W
Damiao, DD
Martins, CD
De Souza, SF
Mundim, L
Oguri, V
Santoro, A
Do Amaral, SMS
Sznajder, A
Tomei, TRFP
Dias, MAF
Gregores, EM
Novaes, SF
Abadjiev, K
Anguelov, T
Damgov, J
Darmenov, N
Dimitrov, L
Genchev, V
Iaydjiev, P
Piperov, S
Stoykova, S
Sultanov, G
Trayanov, R
Vankov, I
Dimitrov, A
Dyulendarova, M
Kozhuharov, V
Litov, L
Marinova, E
Mateev, M
Pavlov, B
Petkov, P
Toteva, Z
Chen, GM
Chen, HS
Guan, W
Jiang, CH
Liang, D
Liu, B
Meng, X
Tao, J
Wang, J
Wang, Z
Xue, Z
Zhang, Z
Ban, Y
Cai, J
Ge, Y
Guo, S
Hu, Z
Mao, Y
Qian, SJ
Teng, H
Zhu, B
Avila, C
Ruiz, MB
Montoya, CAC
Gomez, A
Moreno, BG
Rios, AAO
Oliveros, AFO
Romero, DR
Sanabria, JC
Godinovic, N
Lelas, K
Plestina, R
Polic, D
Puljak, I
Antunovic, Z
Dzelalija, M
Brigljevic, V
Duric, S
Kadija, K
Morovic, S
Fereos, R
Galanti, M
Mousa, J
Papadakis, A
Ptochos, F
Razis, PA
Tsiakkouri, D
Zinonos, Z
Hektor, A
Kadastik, M
Kannike, K
Muntel, M
Raidal, M
Rebane, L
Anttila, E
Czellar, S
Harkonen, J
Heikkinen, A
Karimaki, V
Kinnunen, R
Klem, J
Kortelainen, MJ
Lampen, T
Lassila-Perini, K
Lehti, S
Linden, T
Luukka, P
Maenpaa, T
Nysten, J
Tuominen, E
Tuominiemi, J
Ungaro, D
Wendland, L
Banzuzi, K
Korpela, A
Tuuva, T
Nedelec, P
Sillou, D
Besancon, M
Chipaux, R
Dejardin, M
Denegri, D
Descamps, J
Fabbro, B
Faure, JL
Ferri, F
Ganjour, S
Gentit, FX
Givernaud, A
Gras, P
de Monchenault, GH
Jarry, P
Lemaire, MC
Locci, E
Malcles, J
Marionneau, M
Millischer, L
Rander, J
Rosowsky, A
Rousseau, D
Titov, M
Verrecchia, P
Baffioni, S
Bianchini, L
Bluj, M
Busson, P
Charlot, C
Dobrzynski, L
de Cassagnac, RG
Haguenauer, M
Mine, P
Paganini, P
Sirois, Y
Thiebaux, C
Zabi, A
Agram, JL
Besson, A
Bloch, D
Bodin, D
Brom, JM
Conte, E
Drouhin, F
Fontaine, JC
Gele, D
Goerlach, U
Gross, L
Juillot, P
Le Bihan, AC
Patois, Y
Speck, J
Van Hove, P
Baty, C
Bedjidian, M
Blaha, J
Boudoul, G
Brun, H
Chanon, N
Chierici, R
Contardo, D
Depasse, P
Dupasquier, T
El Mamouni, H
Fassi, F
Fay, J
Gascon, S
Ille, B
Kurca, T
Le Grand, T
Lethuillier, M
Lumb, N
Mirabito, L
Perries, S
Donckt, MV
Verdier, P
Djaoshvili, N
Roinishvili, N
Roinishvili, V
Amaglobeli, N
Adolphi, R
Anagnostou, G
Brauer, R
Braunschweig, W
Edelhoff, M
Esser, H
Feld, L
Karpinski, W
Khomich, A
Klein, K
Mohr, N
Ostaptchouk, A
Pandoulas, D
Pierschel, G
Raupach, F
Schael, S
von Dratzig, AS
Schwering, G
Sprenger, D
Thomas, M
Weber, M
Wittmer, B
Wlochal, M
Actis, O
Altenhofer, G
Bender, W
Biallass, P
Erdmann, M
Fetchenhauer, G
Frangenheim, J
Hebbeker, T
Hilgers, G
Hinzmann, A
Hoepfner, K
Hof, C
Kirsch, M
Klimkovich, T
Kreuzer, P
Lanske, D
Merschmeyer, M
Meyer, A
Philipps, B
Pieta, H
Reithler, H
Schmitz, SA
Sonnenschein, L
Sowa, M
Steggemann, J
Szczesny, H
Teyssier, D
Zeidler, C
Bontenackels, M
Davids, M
Duda, M
Flugge, G
Geenen, H
Giffels, M
Ahmad, WH
Hermanns, T
Heydhausen, D
Kalinin, S
Kress, T
Linn, A
Nowack, A
Perchalla, L
Poettgens, M
Pooth, O
Sauerland, P
Stahl, A
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Hollingsworth, M.
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Yang, Z. C.
York, A.
Asaadi, J.
Aurisano, A.
Eusebi, R.
Golyash, A.
Gurrola, A.
Kamon, T.
Nguyen, C. N.
Pivarski, J.
Safonov, A.
Sengupta, S.
Toback, D.
Weinberger, M.
Akchurin, N.
Berntzon, L.
Gumus, K.
Jeong, C.
Kim, H.
Lee, S. W.
Popescu, S.
Roh, Y.
Sill, A.
Volobouev, I.
Washington, E.
Wigmans, R.
Yazgan, E.
Engh, D.
Florez, C.
Johns, W.
Pathak, S.
Sheldon, P.
Andelin, D.
Arenton, M. W.
Balazs, M.
Boutle, S.
Buehler, M.
Conetti, S.
Cox, B.
Hirosky, R.
Ledovskoy, A.
Neu, C.
Phillips, D., II
Ronquest, M.
Yohay, R.
Gollapinni, S.
Gunthoti, K.
Harr, R.
Karchin, P. E.
Mattson, M.
Sakharov, A.
Anderson, M.
Bachtis, M.
Bellinger, J. N.
Carlsmith, D.
Crotty, I.
Dasu, S.
Dutta, S.
Efron, J.
Feyzi, F.
Flood, K.
Gray, L.
Grogg, K. S.
Grothe, M.
Hall-Wilton, R.
Jaworski, M.
Klabbers, P.
Klukas, J.
Lanaro, A.
Lazaridis, C.
Leonard, J.
Loveless, R.
de Abril, M. Magrans
Mohapatra, A.
Ott, G.
Polese, G.
Reeder, D.
Savin, A.
Smith, W. H.
Sourkov, A.
Swanson, J.
Weinberg, M.
Wenman, D.
Wensveen, M.
White, A.
CA CMS Collaboration
TI Performance study of the CMS barrel resistive plate chambers with cosmic
rays
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Large detector systems for particle and astroparticle physics; Trigger
detetectors
ID MONITORING-SYSTEM; TRIGGER
AB In October and November 2008, the CMS collaboration conducted a programme of cosmic ray data taking, which has recorded about 270 million events. The Resistive Plate Chamber system, which is part of the CMS muon detection system, was successfully operated in the full barrel. More than 98% of the channels were operational during the exercise with typical detection efficiency of 90%. In this paper, the performance of the detector during these dedicated runs is reported.
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[Adler, V.; Beauceron, S.; Blyweert, S.; D'Hondt, J.; De Weirdt, S.; Devroede, O.; Heyninck, J.; Kalogeropoulos, A.; Maes, J.; Maes, M.; Mozer, M. U.; Tavernier, S.; Van Doninck, W.; Van Mulders, P.; Villella, I.] Vrije Univ Brussel, Brussels, Belgium.
[Bouhali, O.; Chabert, E. C.; Charaf, O.; Clerbaux, B.; De Lentdecker, G.; Dero, V.; Elgammal, S.; Gay, A. P. R.; Hammad, G. H.; Marage, P. E.; Rugovac, S.; Velde, C. Vander; Vanlaer, P.; Wickens, J.] Univ Libre Brussels, Brussels, Belgium.
[Grunewald, M.; Klein, B.; Marinov, A.; Ryckbosch, D.; Thyssen, F.; Tytgat, M.; Vanelderen, L.; Verwilligen, P.] Univ Ghent, B-9000 Ghent, Belgium.
[Basegmez, S.; Bruno, G.; Caudron, J.; Delaere, C.; Demin, P.; Favart, D.; Giammanco, A.; Gregoire, G.; Lemaitre, V.; Militaru, O.; Ovyn, S.; Piotrzkowski, K.; Quertenmont, L.; Schul, N.] Catholic Univ Louvain, B-1348 Louvain, Belgium.
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[Fernandez Perez Tomei, T. R.; Ferreira Dias, M. A.; Gregores, E. M.; Novaes, S. F.] Univ Estadual Paulista, Inst Fis Teor, BR-01405 Sao Paulo, Brazil.
[Abadjiev, K.; Anguelov, T.; Damgov, J.; Darmenov, N.; Dimitrov, L.; Genchev, V.; Iaydjiev, P.; Piperov, S.; Stoykova, S.; Sultanov, G.; Trayanov, R.; Vankov, I.] Bulgarian Acad Sci, Inst Nucl Res & Nucl Energy, Sofia, Bulgaria.
[Dimitrov, A.; Dyulendarova, M.; Kozhuharov, V.; Litov, L.; Marinova, E.; Mateev, M.; Pavlov, B.; Petkov, P.; Toteva, Z.] Univ Sofia, BU-1126 Sofia, Bulgaria.
[Chen, G. M.; Chen, H. S.; Guan, W.; Jiang, C. H.; Liang, D.; Liu, B.; Meng, X.; Tao, J.; Wang, J.; Wang, Z.; Xue, Z.; Zhang, Z.; Lee, J.] Inst High Energy Phys, Beijing 100039, Peoples R China.
[Ban, Y.; Cai, J.; Ge, Y.; Guo, S.; Hu, Z.; Mao, Y.; Qian, S. J.; Teng, H.; Zhu, B.] Peking Univ, State Key Lab Nucl Phys & Tech, Beijing 100871, Peoples R China.
[Avila, C.; Baquero Ruiz, M.; Carrillo Montoya, C. A.; Gomez, A.; Gomez Moreno, B.; Ocampo Rios, A. A.; Osorio Oliveros, A. F.; Reyes Romero, D.; Sanabria, J. C.] Univ Los Andes, Bogota, Colombia.
[Godinovic, N.; Lelas, K.; Plestina, R.; Polic, D.; Puljak, I.] Tech Univ Split, Split, Croatia.
[Antunovic, Z.; Dzelalija, M.] Univ Split, Split, Croatia.
[Brigljevic, V.; Duric, S.; Kadija, K.; Morovic, S.] Rudjer Boskovic Inst, Zagreb, Croatia.
[Fereos, R.; Galanti, M.; Mousa, J.; Papadakis, A.; Ptochos, F.; Razis, P. A.; Tsiakkouri, D.; Zinonos, Z.] Univ Cyprus, Nicosia, Cyprus.
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[Nedelec, P.; Sillou, D.] CNRS, IN2P3, Lab Annecy Le Vieux Phys Particules, Annecy Le Vieux, France.
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[Baffioni, S.; Bianchini, L.; Bluj, M.; Busson, P.; Charlot, C.; Dobrzynski, L.; de Cassagnac, R. Granier; Haguenauer, M.; Mine, P.; Paganini, P.; Sirois, Y.; Thiebaux, C.; Zabi, A.] Ecole Polytech, CNRS, IN2P3, Lab Leprince Ringuet, F-91128 Palaiseau, France.
[Agram, J. -L.; Besson, A.; Bloch, D.; Bodin, D.; Brom, J. -M.; Conte, E.; Drouhin, F.; Fontaine, J. -C.; Gele, D.; Goerlach, U.; Gross, L.; Juillot, P.; Le Bihan, A. -C.; Patois, Y.; Speck, J.; Van Hove, P.] Univ Haute Alsace Mulhouse, Inst Pluridisciplinaire Hubert Curien, Univ Strasbourg, CNRS,IN2P3, Strasbourg, France.
[Baty, C.; Bedjidian, M.; Blaha, J.; Boudoul, G.; Brun, H.; Chanon, N.; Chierici, R.; Contardo, D.; Depasse, P.; Dupasquier, T.; El Mamouni, H.; Fassi, F.; Fay, J.; Gascon, S.; Ille, B.; Kurca, T.; Le Grand, T.; Lethuillier, M.; Lumb, N.; Mirabito, L.; Perries, S.; Donckt, M. Vander; Verdier, P.] Univ Lyon 1, CNRS, IN2P3, Inst Phys Nucl Lyon, F-69622 Villeurbanne, France.
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[Actis, O.; Altenhoefer, G.; Bender, W.; Biallass, P.; Erdmann, M.; Fetchenhauer, G.; Frangenheim, J.; Hebbeker, T.; Hilgers, G.; Hinzmann, A.; Hoepfner, K.; Hof, C.; Kirsch, M.; Klimkovich, T.; Kreuzer, P.; Lanske, D.; Merschmeyer, M.; Meyer, A.; Philipps, B.; Pieta, H.; Reithler, H.; Schmitz, S. A.; Sonnenschein, L.; Sowa, M.; Steggemann, J.; Szczesny, H.; Teyssier, D.; Zeidler, C.] Rhein Westfal TH Aachen, Phys Inst A 3, Aachen, Germany.
[Bontenackels, M.; Davids, M.; Duda, M.; Fluegge, G.; Geenen, H.; Giffels, M.; Ahmad, W. Haj; Hermanns, T.; Heydhausen, D.; Kalinin, S.; Kress, T.; Linn, A.; Nowack, A.; Perchalla, L.; Poettgens, M.; Pooth, O.; Sauerland, P.; Stahl, A.; Tornier, D.; Zoeller, M. H.] Rhein Westfal TH Aachen, Phys Inst B 3, Aachen, Germany.
[Martin, M. Aldaya; Behrens, U.; Borras, K.; Campbell, A.; Castro, E.; Dammann, D.; Eckerlin, G.; Flossdorf, A.; Flucke, G.; Geiser, A.; Hatton, D.; Hauk, J.; Jung, H.; Kasemann, M.; Katkov, I.; Kleinwort, C.; Kluge, H.; Knutsson, A.; Kuznetsova, E.; Lange, W.; Lohmann, W.; Mankel, R.; Marienfeld, M.; Meyer, A. B.; Miglioranzi, S.; Mnich, J.; Ohlerich, M.; Olzem, J.; Parenti, A.; Rosemann, C.; Schmidt, R.; Schoerner-Sadenius, T.; Volyanskyy, D.; Wissing, C.; Zeuner, W. D.] DESY, Hamburg, Germany.
[Autermann, C.; Bechtel, F.; Draeger, J.; Eckstein, D.; Gebbert, U.; Kaschube, K.; Kaussen, G.; Klanner, R.; Mura, B.; Naumann-Emme, S.; Nowak, F.; Pein, U.; Sander, C.; Schleper, P.; Schum, T.; Stadie, H.; Uck, G. Steinbr; Thomsen, J.; Wolf, R.] Univ Hamburg, Hamburg, Germany.
[Bauer, J.; Bluem, P.; Buege, V.; Cakir, A.; Chwalek, T.; De Boer, W.; Dierlamm, A.; Dirkes, G.; Feindt, M.; Felzmann, U.; Frey, M.; Furgeri, A.; Gruschke, J.; Hackstein, C.; Hartmann, F.; Heier, S.; Heinrich, M.; Held, H.; Hirschbuehl, D.; Hoffmann, K. H.; Honc, S.; Jung, C.; Kuhr, T.; Liamsuwan, T.; Martschei, D.; Mueller, S.; Mueller, Th.; Neuland, M. B.; Niegel, M.; Oberst, O.; Oehler, A.; Ott, J.; Peiffer, T.; Piparo, D.; Quast, G.; Rabbertz, K.; Ratnikov, F.; Ratnikova, N.; Renz, M.; Saout, C.; Sartisohn, G.; Scheurer, A.; Schieferdecker, P.; Schilling, F. -P.; Schott, G.; Simonis, H. J.; Stober, F. M.; Sturm, P.; Troendle, D.; Trunov, A.; Wagner, W.; Wagner-Kuhr, J.; Zeise, M.; Zhukov, V.; Ziebarth, E. B.] Univ Karlsruhe, Inst Expt Kernphys, D-7500 Karlsruhe, Germany.
[Daskalakis, G.; Geralis, T.; Karafasoulis, K.; Kyriakis, A.; Loukas, D.; Markou, A.; Markou, C.; Mavrommatis, C.; Petrakou, E.; Zachariadou, A.] Inst Nucl Phys Demokritos, Aghia Paraskevi, Greece.
[Gouskos, L.; Katsas, P.; Panagiotou, A.] Univ Athens, Athens, Greece.
[Evangelou, I.; Kokkas, P.; Manthos, N.; Papadopoulos, I.; Patras, V.; Triantis, F. A.] Univ Ioannina, GR-45110 Ioannina, Greece.
[Bencze, G.; Boldizsar, L.; Debreczeni, G.; Hajdu, C.; Hernath, S.; Hidas, P.; Horvath, D.; Krajczar, K.; Laszlo, A.; Patay, G.; Sikler, F.; Toth, N.; Vesztergombi, G.] KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
[Beni, N.; Christian, G.; Imrek, J.; Molnar, J.; Novak, D.; Palinkas, J.; Szekely, G.; Szillasi, Z.; Tokesi, K.; Veszpremi, V.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Kapusi, A.; Marian, G.; Raics, P.; Szabo, Z.; Trocsanyi, Z. L.; Ujvari, B.; Zilizi, G.] Univ Debrecen, Debrecen, Hungary.
[Bansal, S.; Bawa, H. S.; Beri, S. B.; Bhatnagar, V.; Jindal, M.; Kaur, M.; Kaur, R.; Kohli, J. M.; Mehta, M. Z.; Nishu, N.; Saini, L. K.; Sharma, A.; Singh, A.; Singh, J. B.; Singh, S. P.] Panjab Univ, Chandigarh 160014, India.
[Ahuja, S.; Arora, S.; Bhattacharya, S.; Chauhan, S.; Choudhary, B. C.; Gupta, P.; Jain, S.; Jha, M.; Kumar, A.; Ranjan, K.; Shivpuri, R. K.; Srivastava, A. K.] Univ Delhi, Delhi 110007, India.
[Choudhury, R. K.; Dutta, D.; Kailas, S.; Kataria, S. K.; Mohanty, A. K.; Pant, L. M.; Shukla, P.; Topkar, A.] Bhabha Atom Res Ctr, Mumbai 400085, Maharashtra, India.
[Aziz, T.; Guchait, M.; Gurtu, A.; Maity, M.; Majumder, D.; Majumder, G.; Mazumdar, K.; Nayak, A.; Saha, A.; Sudhakar, K.] Tata Inst Fundamental Res, EHEP, Bombay 400005, Maharashtra, India.
[Banerjee, S.; Dugad, S.; Mondal, N. K.] Tata Inst Fundamental Res, HECR, Bombay 400005, Maharashtra, India.
[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys Math IPM, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Univ Bari, Bari, Italy.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.; Benaglia, A.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Univ Florence, Florence, Italy.
[Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Fabbri, F.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.; Tonelli, G.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.; Tonelli, G.] Univ Naples Federico II, Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Venturi, A.; Verdini, P. G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Venturi, A.; Verdini, P. G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Univ Roma La Sapienza, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Turin, Turin, Italy.
[Bartoloni, A.; Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, CSIC, IFCA, E-39005 Santander, Spain.
[Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillo, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; St John, J.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Baggy, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcerding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Kukhann, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kyperos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smorin, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Agram, J. -L.; Conte, E.; Drouhin, F.; Fontaine, J. -C.] Univ Haute Alsace, Mulhouse, France.
[Fassi, F.] IN2P3, Ctr Calcul, Villeurbanne, France.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
[Biasotto, M.; Gulmini, M.] Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
[Lazzizzera, I.] Univ Trent, Trento, Italy.
[Baccaro, S.] ENEA Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
[Jovanovic, D.; Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade 11001, Serbia.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Rolandi, G.] Ist Nazl Fis Nucl, Scuola Normale & Sez, Pisa, Italy.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Cankocak, K.] Istanbul Tech Univ, TR-80626 Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Jeitler, Manfred/H-3106-2012; Venturi, Andrea/J-1877-2012; de Jesus
Damiao, Dilson/G-6218-2012; Montanari, Alessandro/J-2420-2012; Amapane,
Nicola/J-3683-2012; tosi, mia/J-5777-2012; Klyukhin,
Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012; Raidal,
Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Della Ricca, Giuseppe/B-6826-2013; Kadastik,
Mario/B-7559-2008; Lokhtin, Igor/D-7004-2012; Kodolova,
Olga/D-7158-2012; Dudko, Lev/D-7127-2012; Boos, Eduard/D-9748-2012;
Snigirev, Alexander/D-8912-2012; Chipaux, Remi/G-1145-2010; Servoli,
Leonello/E-6766-2012; Tomei, Thiago/E-7091-2012; Focardi,
Ettore/E-7376-2012; Fruhwirth, Rudolf/H-2529-2012; Azzi,
Patrizia/H-5404-2012; Torassa, Ezio/I-1788-2012; Giacomelli,
Paolo/B-8076-2009; Romaniuk, Ryszard/B-9140-2011; Ruiz,
Alberto/E-4473-2011; Stahl, Achim/E-8846-2011; Hektor, Andi/G-1804-2011;
Wulz, Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Tinoco Mendes, Andre
David/D-4314-2011; Horvath, Dezso/A-4009-2011; Langenegger,
Urs/A-4578-2008; Palinkas, Jozsef/B-2993-2011; Varela, Joao/K-4829-2016;
Fassi, Farida/F-3571-2016; Ligabue, Franco/F-3432-2014; Bargassa,
Pedrame/O-2417-2016; Sguazzoni, Giacomo/J-4620-2015; Menasce, Dario
Livio/A-2168-2016; Goh, Junghwan/Q-3720-2016; Govoni,
Pietro/K-9619-2016; Tuominen, Eija/A-5288-2017; Yazgan, Efe/C-4521-2014;
Gerbaudo, Davide/J-4536-2012; korzhik, Mikhail/E-9505-2014; Fedorov,
Andrei/E-9455-2014; Konovalova, Nina/D-3882-2014; Cordonnier,
Agnes/I-5083-2016; Paganoni, Marco/A-4235-2016; Kirakosyan,
Martin/N-2701-2015; Seixas, Joao/F-5441-2013; Verwilligen,
Piet/M-2968-2014; Vilela Pereira, Antonio/L-4142-2016; Sznajder,
Andre/L-1621-2016; Haj Ahmad, Wael/E-6738-2016; Xie, Si/O-6830-2016;
Leonardo, Nuno/M-6940-2016; Gumus, Kazim/G-2498-2013; Muelmenstaedt,
Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015; Dremin,
Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Altsybeev, Igor/K-6687-2013; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
Ahmed, Ijaz/E-9144-2015; Lazzizzera, Ignazio/E-9678-2015; Sen,
Sercan/C-6473-2014; D'Alessandro, Raffaello/F-5897-2015; Trocsanyi,
Zoltan/A-5598-2009; Konecki, Marcin/G-4164-2015; Hernandez Calama, Jose
Maria/H-9127-2015; Barcala, JOSE MIGUEL/I-1105-2015; Bedoya,
Cristina/K-8066-2014; Michelotto, Michele/A-9571-2013; Matorras,
Francisco/I-4983-2015; My, Salvatore/I-5160-2015; Scodellaro,
Luca/K-9091-2014; Josa, Isabel/K-5184-2014; Navarrete Marin, Jose
Javier/K-6412-2014; Marin, Jesus/K-6991-2014; Gonzalez Suarez,
Rebeca/L-6128-2014; Calvo Alamillo, Enrique/L-1203-2014; Paulini,
Manfred/N-7794-2014; Vogel, Helmut/N-8882-2014; Ferguson,
Thomas/O-3444-2014; Ragazzi, Stefano/D-2463-2009; Benussi,
Luigi/O-9684-2014; Russ, James/P-3092-2014; Grandi, Claudio/B-5654-2015;
Janssen, Xavier/E-1915-2013; Alves, Gilvan/C-4007-2013; Santoro,
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Riccardo/G-2139-2014; Petrucci, Andrea/J-4207-2014; Gribushin,
Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Molinero,
Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014; Mundim,
Luiz/A-1291-2012; Santaolalla, Javier/C-3094-2013; Gavrilov,
Gennady/C-6260-2013; Rolandi, Luigi (Gigi)/E-8563-2013; Zalewski,
Piotr/H-7335-2013; Cavallo, Nicola/F-8913-2012; Dvornikov,
Oleg/I-7207-2013; Hill, Christopher/B-5371-2012; Kuleshov,
Sergey/D-9940-2013; Troitsky, Sergey/C-1377-2014; Marlow,
Daniel/C-9132-2014; Oguri, Vitor/B-5403-2013
OI de Jesus Damiao, Dilson/0000-0002-3769-1680; Montanari,
Alessandro/0000-0003-2748-6373; Amapane, Nicola/0000-0001-9449-2509;
Klyukhin, Vyacheslav/0000-0002-8577-6531; Novaes,
Sergio/0000-0003-0471-8549; Della Ricca, Giuseppe/0000-0003-2831-6982;
Dudko, Lev/0000-0002-4462-3192; Servoli, Leonello/0000-0003-1725-9185;
Tomei, Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267;
Azzi, Patrizia/0000-0002-3129-828X; Romaniuk,
Ryszard/0000-0002-5710-4041; Ruiz, Alberto/0000-0002-3639-0368; Stahl,
Achim/0000-0002-8369-7506; Hektor, Andi/0000-0001-7873-8118; Wulz,
Claudia-Elisabeth/0000-0001-9226-5812; Krammer,
Manfred/0000-0003-2257-7751; Tinoco Mendes, Andre
David/0000-0001-5854-7699; Torassa, Ezio/0000-0003-2321-0599; Luukka,
Panja/0000-0003-2340-4641; Goldstein, Joel/0000-0003-1591-6014; Sogut,
Kenan/0000-0002-9682-2855; Korenkov, Vladimir/0000-0002-2342-7862;
Heath, Helen/0000-0001-6576-9740; Giubilato, Piero/0000-0003-4358-5355;
Gallinaro, Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Gutsche,
Oliver/0000-0002-8015-9622; Sciacca, Crisostomo/0000-0002-8412-4072;
Varela, Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109;
Toback, David/0000-0003-3457-4144; Mackay,
Catherine/0000-0003-4252-6740; HSIUNG, YEE/0000-0003-4801-1238; Bonnett
Del Alamo, Miguel Reinaldo/0000-0002-1011-8411; Faccioli,
Pietro/0000-0003-1849-6692; Tonelli, Guido Emilio/0000-0003-2606-9156;
Beuselinck, Raymond/0000-0003-2613-7446; Stober,
Fred/0000-0003-2620-3159; Martelli, Arabella/0000-0003-3530-2255;
Abbiendi, Giovanni/0000-0003-4499-7562; Levchenko,
Petr/0000-0003-4913-0538; Uliyanov, Alexey/0000-0001-6935-8949; Arneodo,
Michele/0000-0002-7790-7132; Dharmaraatna,
Welathantri/0000-0002-6366-837X; Giacomelli, Paolo/0000-0002-6368-7220;
Fassi, Farida/0000-0002-6423-7213; Leonidopoulos,
Christos/0000-0002-7241-2114; Blekman, Freya/0000-0002-7366-7098;
Ghezzi, Alessio/0000-0002-8184-7953; bianco,
stefano/0000-0002-8300-4124; Demaria, Natale/0000-0003-0743-9465;
Benaglia, Andrea Davide/0000-0003-1124-8450; Covarelli,
Roberto/0000-0003-1216-5235; Staiano, Amedeo/0000-0003-1803-624X;
Ciulli, Vitaliano/0000-0003-1947-3396; Ligabue,
Franco/0000-0002-1549-7107; Diemoz, Marcella/0000-0002-3810-8530; Hamel
de Monchenault, Gautier/0000-0002-3872-3592; Landsberg,
Greg/0000-0002-4184-9380; Rizzi, Andrea/0000-0002-4543-2718; Gershtein,
Yuri/0000-0002-4871-5449; Tricomi, Alessia Rita/0000-0002-5071-5501;
CALZOLARI, FEDERICO/0000-0002-5510-3061; Malik,
Sudhir/0000-0002-6356-2655; Bargassa, Pedrame/0000-0001-8612-3332;
Mrenna, Stephen/0000-0001-8731-160X; Bilki, Burak/0000-0001-9515-3306;
Costa, Salvatore/0000-0001-9919-0569; Lloret Iglesias,
Lara/0000-0002-0157-4765; Kasemann, Matthias/0000-0002-0429-2448;
Donvito, Giacinto/0000-0002-0628-1080; Petragnani,
Giulio/0000-0002-0819-6509; Sguazzoni, Giacomo/0000-0002-0791-3350;
WANG, MIN-ZU/0000-0002-0979-8341; Bean, Alice/0000-0001-5967-8674;
Longo, Egidio/0000-0001-6238-6787; Baarmand, Marc/0000-0002-9792-8619;
Nervo, Marco/0000-0002-9898-7346; Boccali, Tommaso/0000-0002-9930-9299;
Menasce, Dario Livio/0000-0002-9918-1686; Goh,
Junghwan/0000-0002-1129-2083; Govoni, Pietro/0000-0002-0227-1301;
Tuominen, Eija/0000-0002-7073-7767; Yazgan, Efe/0000-0001-5732-7950;
Gerbaudo, Davide/0000-0002-4463-0878; Vieira de Castro Ferreira da
Silva, Pedro Manuel/0000-0002-5725-041X; Actis,
Oxana/0000-0001-8851-3983; Cordonnier, Agnes/0000-0002-4216-3524;
Paganoni, Marco/0000-0003-2461-275X; Seixas, Joao/0000-0002-7531-0842;
Vilela Pereira, Antonio/0000-0003-3177-4626; Sznajder,
Andre/0000-0001-6998-1108; Haj Ahmad, Wael/0000-0003-1491-0446; Xie,
Si/0000-0003-2509-5731; Leonardo, Nuno/0000-0002-9746-4594; Gumus,
Kazim/0000-0002-1450-6868; Muelmenstaedt, Johannes/0000-0003-1105-6678;
Rovelli, Tiziano/0000-0002-9746-4842; Altsybeev,
Igor/0000-0002-8079-7026; TUVE', Cristina/0000-0003-0739-3153; Gulmez,
Erhan/0000-0002-6353-518X; KIM, Tae Jeong/0000-0001-8336-2434; Flix,
Josep/0000-0003-2688-8047; Ozdemir, Kadri/0000-0002-0103-1488;
Lazzizzera, Ignazio/0000-0001-5092-7531; Sen,
Sercan/0000-0001-7325-1087; D'Alessandro, Raffaello/0000-0001-7997-0306;
Trocsanyi, Zoltan/0000-0002-2129-1279; Konecki,
Marcin/0000-0001-9482-4841; Hernandez Calama, Jose
Maria/0000-0001-6436-7547; Barcala, JOSE MIGUEL/0000-0002-1092-7091;
Bedoya, Cristina/0000-0001-8057-9152; Michelotto,
Michele/0000-0001-6644-987X; Matorras, Francisco/0000-0003-4295-5668;
My, Salvatore/0000-0002-9938-2680; Scodellaro, Luca/0000-0002-4974-8330;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070;
Codispoti, Giuseppe/0000-0003-0217-7021; Petrucci,
Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Mundim, Luiz/0000-0001-9964-7805;
Rolandi, Luigi (Gigi)/0000-0002-0635-274X; Hill,
Christopher/0000-0003-0059-0779; Kuleshov, Sergey/0000-0002-3065-326X;
Troitsky, Sergey/0000-0001-6917-6600;
FU FMSR (Austria); FNRS (Belgium); FWO (Belgium); CNPq (Brazil); CAPES
(Brazil); FAPERJ (Brazil); FAPESP (Brazil); MES (Bulgaria); CERN; CAS
(China); MoST (China); NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences (Estonia); Academy of
Finland (Finland); ME (Finland); HIP (Finland); CEA (France); CNRS/IN2P3
(France); BMBF (Germany); DFG (Germany); HGF (Germany); GSRT (Greece);
OTKA (Hungary); NKTH (Hungary); DAE (India); DST (India); IPM (Iran);
SFI (Ireland); INFN (Italy); NRF (Korea); LAS (Lithuania); CINVESTAV
(Mexico); CONACYT (Mexico); SEP (Mexico); UASLP-FAI (Mexico); PAEC
(Pakistan); SCSR (Poland); FCT (Portugal); MST (Russia); MAE (Russia);
MSTDS (Serbia); MICINN (Spain); CPAN (Spain); Swiss Funding Agencies
(Switzerland); NSC (Taipei); TUBITAK (Turkey); TAEK (Turkey); STFC
(United Kingdom); DOE (USA); NSF (USA); European Union; Leventis
Foundation; A. P. Sloan Foundation; Alexander von Humboldt Foundation;
NICPB (Estonia); JINR (Armenia); JINR (Belarus); JINR (Georgia); JINR
(Ukraine); JINR (Uzbekistan)
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 17
TC 28
Z9 29
U1 1
U2 47
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03017
DI 10.1088/1748-0221/5/03/T03017
PG 33
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100016
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
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Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
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Strauss, J
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Wagner, P
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Litomin, A
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Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
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Karneyeu, A
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Kuchinsky, P
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Meng, X
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Natali, S
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Papagni, G
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Capiluppi, P
Castro, A
Cavallo, FR
Codispoti, G
Cuffiani, M
D'Antone, I
Dallavalle, GM
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Fasanella, D
Giacomelli, P
Giordano, V
Giunta, M
Grandi, C
Guerzoni, M
Marcellini, S
Masetti, G
Montanari, A
Navarria, FL
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Pellegrini, G
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Rossi, AM
Rovelli, T
Siroli, G
Torromeo, G
Travaglini, R
Albergo, S
Costa, S
Potenza, R
Tricomi, A
Tuve, C
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Ciulli, V
Civinini, C
D'Alessandro, R
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Frosali, S
Gallo, E
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Meschini, M
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Sguazzoni, G
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Colonna, D
Fabbri, F
Giardoni, M
Passamonti, L
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Ponzio, B
Russo, A
Fabbricatore, P
Musenich, R
Benaglia, A
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Cerati, GB
D'Angelo, P
De Guio, F
Farina, FM
Ghezzi, A
Govoni, P
Malberti, M
Malvezzi, S
Martelli, A
Menasce, D
Miccio, V
Moroni, L
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Paganoni, M
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Pullia, A
Ragazzi, S
Redaelli, N
Sala, S
Salerno, R
de Fatis, TT
Tancini, V
Taroni, S
Buontempo, S
Cavallo, N
Cimmino, A
De Gruttola, M
Fabozzi, F
Iorio, AOM
Lista, L
Lomidze, D
Noli, P
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CA CMS Collaboration
TI Performance of the CMS cathode strip chambers with cosmic rays
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Large detector systems for particle and astroparticle physics; Particle
tracking detectors (Gaseous detectors)
AB The Cathode Strip Chambers (CSCs) constitute the primary muon tracking device in the CMS endcaps. Their performance has been evaluated using data taken during a cosmic ray run in fall 2008. Measured noise levels are low, with the number of noisy channels well below 1%. Coordinate resolution was measured for all types of chambers, and fall in the range 47 mu m to 243 mu m. The efficiencies for local charged track triggers, for hit and for segments reconstruction were measured, and are above 99%. The timing resolution per layer is approximately 5 ns.
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[Basegmez, S.; Bruno, G.; Caudron, J.; Delaere, C.; Demin, P.; Favart, D.; Giammanco, A.; Gregoire, G.; Lemaitre, V.; Militaru, O.; Ovyn, S.; Piotrzkowski, K.; Quertenmont, L.; Schul, N.] Catholic Univ Louvain, B-1348 Louvain, Belgium.
[Beliy, N.; Daubie, E.] Univ Mons, B-7000 Mons, Belgium.
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[Fernandez Perez Tomei, T. R.; Ferreira Dias, M. A.; Gregores, E. M.; Novaes, S. F.] Univ Estadual Paulista, Inst Fis Teor, BR-01405 Sao Paulo, Brazil.
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[Dimitrov, A.; Dyulendarova, M.; Kozhuharov, V.; Litov, L.; Marinova, E.; Mateev, M.; Pavlov, B.; Petkov, P.; Toteva, Z.] Univ Sofia, BU-1126 Sofia, Bulgaria.
[Chen, G. M.; Chen, H. S.; Guan, W.; Jiang, C. H.; Liang, D.; Liu, B.; Meng, X.; Tao, J.; Wang, J.; Wang, Z.; Xue, Z.; Zhang, Z.] Inst High Energy Phys, Beijing 100039, Peoples R China.
[Ban, Y.; Cai, J.; Ge, Y.; Guo, S.; Hu, Z.; Mao, Y.; Qian, S. J.; Teng, H.; Zhu, B.] Peking Univ, State Key Lab Nucl Phys & Tech, Beijing 100871, Peoples R China.
[Avila, C.; Baquero Ruiz, M.; Carrillo Montoya, C. A.; Gomez, A.; Gomez Moreno, B.; Ocampo Rios, A. A.; Osorio Oliveros, A. F.; Reyes Romero, D.; Sanabria, J. C.] Univ Los Andes, Bogota, Colombia.
[Kastner, K.; Stark, R.; Godinovic, N.; Lelas, K.; Plestina, R.; Polic, D.; Puljak, I.] Tech Univ Split, Split, Croatia.
[Antunovic, Z.; Dzelalija, M.] Univ Split, Split, Croatia.
[Brigljevic, V.; Duric, S.; Kadija, K.; Morovic, S.] Rudjer Boskovic Inst, Zagreb, Croatia.
[Fereos, R.; Galanti, M.; Mousa, J.; Papadakis, A.; Ptochos, F.; Razis, P. A.; Tsiakkouri, D.; Zinonos, Z.] Univ Cyprus, Nicosia, Cyprus.
[Hektor, A.; Kadastik, M.; Kannike, K.; Muentel, M.; Raidal, M.; Rebane, L.] NICPB, Tallinn, Estonia.
[Anttila, E.; Czellar, S.; Harkonen, J.; Heikkinen, A.; Karimaki, V.; Kinnunen, R.; Klem, J.; Kortelainen, M. J.; Lampen, T.; Lassila-Perini, K.; Lehti, S.; Linden, T.; Luukka, P.; Maenpaa, T.; Nysten, J.; Tuominen, E.; Tuominiemi, J.; Ungaro, D.; Wendland, L.] Helsinki Inst Phys, Helsinki, Finland.
[Banzuzi, K.; Korpela, A.; Tuuva, T.] Lappeenranta Univ Technol, Lappeenranta, Finland.
[Nedelec, P.; Sillou, D.] CNRS, IN2P3, Lab Annecy Le Vieux Phys Particules, Annecy Le Vieux, France.
[Besancon, M.; Chipaux, R.; Dejardin, M.; Denegri, D.; Descamps, J.; Fabbro, B.; Faure, J. L.; Ferri, F.; Ganjour, S.; Gentit, F. X.; Givernaud, A.; Gras, P.; de Monchenault, G. Hamel; Jarry, P.; Lemaire, M. C.; Locci, E.; Malcles, J.; Marionneau, M.; Millischer, L.; Rander, J.; Rosowsky, A.; Rousseau, D.; Titov, M.; Verrecchia, P.] CEA Saclay, DSM, IRFU, F-91191 Gif Sur Yvette, France.
[Baffioni, S.; Bianchini, L.; Bluj, M.; Busson, P.; Charlot, C.; Dobrzynski, L.; de Cassagnac, R. Granier; Haguenauer, M.; Mine, P.; Paganini, P.; Sirois, Y.; Thiebaux, C.; Zabi, A.; Beaudette, F.] Ecole Polytech, CNRS, IN2P3, Lab Leprince Ringuet, F-91128 Palaiseau, France.
[Agram, J. -L.; Besson, A.; Bloch, D.; Bodin, D.; Brom, J. -M.; Conte, E.; Drouhin, F.; Fontaine, J. -C.; Gele, D.; Goerlach, U.; Gross, L.; Juillot, P.; Le Bihan, A. -C.; Patois, Y.; Speck, J.; Van Hove, P.] Univ Haute Alsace Mulhouse, Univ Strasbourg, Inst Pluridisciplinaire Hubert Curien, CNRS,IN2P3, Strasbourg, France.
[Baty, C.; Bedjidian, M.; Blaha, J.; Boudoul, G.; Brun, H.; Chanon, N.; Chierici, R.; Contardo, D.; Depasse, P.; Dupasquier, T.; El Mamouni, H.; Fassi, F.; Fay, J.; Gascon, S.; Ille, B.; Kurca, T.; Le Grand, T.; Lethuillier, M.; Lumb, N.; Mirabito, L.; Perries, S.; Donckt, M. Vander; Verdier, P.] Univ Lyon 1, CNRS, IN2P3, Inst Phys Nucl Lyon, F-69622 Villeurbanne, France.
[Djaoshvili, N.; Roinishvili, N.; Roinishvili, V.] Acad Sci, E Andronikashvili Inst Phys, Tbilisi, Rep of Georgia.
[Amaglobeli, N.] Tbilisi State Univ, Inst High Energy Phys & Informatizat, GE-380086 Tbilisi, Rep of Georgia.
[Adolphi, R.; Anagnostou, G.; Brauer, R.; Braunschweig, W.; Edelhoff, M.; Esser, H.; Feld, L.; Karpinski, W.; Khomich, A.; Klein, K.; Mohr, N.; Ostaptchouk, A.; Pandoulas, D.; Pierschel, G.; Raupach, F.; Schael, S.; von Dratzig, A. Schultz; Schwering, G.; Sprenger, D.; Thomas, M.; Weber, M.; Wittmer, B.; Wlochal, M.] Rhein Westfal TH Aachen, Inst Phys 1, Aachen, Germany.
[Actis, O.; Altenhoefer, G.; Bender, W.; Biallass, P.; Erdmann, M.; Fetchenhauer, G.; Frangenheim, J.; Hebbeker, T.; Hilgers, G.; Hinzmann, A.; Hoepfner, K.; Hof, C.; Kirsch, M.; Klimkovich, T.; Kreuzer, P.; Lanske, D.; Merschmeyer, M.; Meyer, A.; Philipps, B.; Pieta, H.; Reithler, H.; Schmitz, S. A.; Sonnenschein, L.; Sowa, M.; Steggemann, J.; Szczesny, H.; Teyssier, D.; Zeidler, C.] Rhein Westfal TH Aachen, Phys Inst A 3, Aachen, Germany.
[Bontenackels, M.; Davids, M.; Duda, M.; Fluegge, G.; Geenen, H.; Giffels, M.; Ahmad, W. Haj; Hermanns, T.; Heydhausen, D.; Kalinin, S.; Kress, T.; Linn, A.; Nowack, A.; Perchalla, L.; Poettgens, M.; Pooth, O.; Sauerland, P.; Stahl, A.; Tornier, D.; Zoeller, M. H.] Rhein Westfal TH Aachen, Phys Inst B 3, Aachen, Germany.
[Martin, M. Aldaya; Behrens, U.; Borras, K.; Campbell, A.; Castro, E.; Dammann, D.; Eckerlin, G.; Flossdorf, A.; Flucke, G.; Geiser, A.; Hatton, D.; Hauk, J.; Jung, H.; Kasemann, M.; Katkov, I.; Kleinwort, C.; Kluge, H.; Knutsson, A.; Kuznetsova, E.; Lange, W.; Lohmann, W.; Mankel, R.; Marienfeld, M.; Meyer, A. B.; Miglioranzi, S.; Mnich, J.; Ohlerich, M.; Olzem, J.; Parenti, A.; Rosemann, C.; Schmidt, R.; Schoerner-Sadenius, T.; Volyanskyy, D.; Wissing, C.; Zeuner, W. D.] Deutsch Elektronen Synchroton, Hamburg, Germany.
[Autermann, C.; Bechtel, F.; Draeger, J.; Eckstein, D.; Gebbert, U.; Kaschube, K.; Kaussen, G.; Klanner, R.; Mura, B.; Naumann-Emme, S.; Nowak, F.; Pein, U.; Sander, C.; Schleper, P.; Schum, T.; Stadie, H.; Steinbrueck, G.; Thomsen, J.; Wolf, R.] Univ Hamburg, Hamburg, Germany.
[Bauer, J.; Bluem, P.; Buege, V.; Cakir, A.; Chwalek, T.; De Boer, W.; Dierlamm, A.; Dirkes, G.; Feindt, M.; Felzmann, U.; Frey, M.; Furgeri, A.; Gruschke, J.; Hackstein, C.; Hartmann, F.; Heier, S.; Heinrich, M.; Held, H.; Hirschbuehl, D.; Hoffmann, K. H.; Honc, S.; Jung, C.; Kuhr, T.; Liamsuwan, T.; Martschei, D.; Mueller, S.; Mueller, Th.; Neuland, M. B.; Niegel, M.; Oberst, O.; Oehler, A.; Ott, J.; Peiffer, T.; Piparo, D.; Quast, G.; Rabbertz, K.; Ratnikov, F.; Ratnikova, N.; Renz, M.; Saout, C.; Sartisohn, G.; Scheurer, A.; Schieferdecker, P.; Schilling, F. -P.; Schott, G.; Simonis, H. J.; Stober, F. M.; Sturm, P.; Troendle, D.; Trunov, A.; Wagner, W.; Wagner-Kuhr, J.; Zeise, M.; Zhukov, V.; Ziebarth, E. B.] Univ Karlsruhe, Inst Expt Kernphys, D-7500 Karlsruhe, Germany.
[Daskalakis, G.; Geralis, T.; Karafasoulis, K.; Kyriakis, A.; Loukas, D.; Markou, A.; Markou, C.; Mavrommatis, C.; Petrakou, E.; Zachariadou, A.] Inst Nucl Phys Demokritos, Aghia Paraskevi, Greece.
[Gouskos, L.; Katsas, P.; Panagiotou, A.] Univ Athens, Athens, Greece.
[Evangelou, I.; Kokkas, P.; Manthos, N.; Papadopoulos, I.; Patras, V.; Triantis, F. A.] Univ Ioannina, GR-45110 Ioannina, Greece.
[Bencze, G.; Boldizsar, L.; Debreczeni, G.; Hajdu, C.; Hernath, S.; Hidas, P.; Horvath, D.; Krajczar, K.; Laszlo, A.; Patay, G.; Sikler, F.; Toth, N.; Vesztergombi, G.] KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
[Beni, N.; Christian, G.; Imrek, J.; Molnar, J.; Novak, D.; Palinkas, J.; Szekely, G.; Szillasi, Z.; Tokesi, K.; Veszpremi, V.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Kapusi, A.; Marian, G.; Raics, P.; Szabo, Z.; Trocsanyi, Z. L.; Ujvari, B.; Zilizi, G.] Univ Debrecen, Debrecen, Hungary.
[Bansal, S.; Bawa, H. S.; Beri, S. B.; Bhatnagar, V.; Jindal, M.; Kaur, M.; Kaur, R.; Kohli, J. M.; Mehta, M. Z.; Nishu, N.; Saini, L. K.; Sharma, A.; Singh, A.; Singh, J. B.; Singh, S. P.] Panjab Univ, Chandigarh 160014, India.
[Ahuja, S.; Arora, S.; Bhattacharya, S.; Chauhan, S.; Choudhary, B. C.; Gupta, P.; Jain, S.; Jha, M.; Kumar, A.; Ranjan, K.; Shivpuri, R. K.; Srivastava, A. K.; Lopez, A.] Univ Delhi, Delhi 110007, India.
[Choudhury, R. K.; Dutta, D.; Kailas, S.; Kataria, S. K.; Mohanty, A. K.; Pant, L. M.; Shukla, P.; Topkar, A.] Bhabha Atom Res Ctr, Bombay 400085, Maharashtra, India.
[Aziz, T.; Guchait, M.; Gurtu, A.; Maity, M.; Majumder, D.; Majumder, G.; Mazumdar, K.; Nayak, A.; Saha, A.; Sudhakar, K.] Tata Inst Fundamental Res, EHEP, Bombay 400005, Maharashtra, India.
[Banerjee, S.; Dugad, S.; Mondal, N. K.] Tata Inst Fundamental Res, HECR, Bombay 400005, Maharashtra, India.
[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys Math IPM, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Univ Bari, Bari, Italy.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Univ Florence, Florence, Italy.
[Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Fabbri, F.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.; Pozzobon, N.] Univ Naples Federico II, Naples, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.; Pozzobon, N.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.; Bartoloni, A.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Univ Roma La Sapienza, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Turin, Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, CSIC, IFCA, E-39005 Santander, Spain.
[Hammer, J.; Van Doninck, W.; Piotrzkowski, K.; Abadjiev, K.; Darmenov, N.; Genchev, V.; Toteva, Z.; Fetchenhauer, G.; Kreuzer, P.; Mankel, R.; Saout, C.; Panagiotou, A.; Bencze, G.; Hajdu, C.; Szillasi, Z.; Dallavalle, G. M.; Giunta, M.; Lenzi, P.; Malberti, M.; Cimmino, A.; De Gruttola, M.; Azzi, P.; Bellan, P.; Spagnolo, P.; Tenchini, R.; Tonelli, G.; Cavallari, F.; Trapani, P. P.; Kossov, M.; Grishin, V.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.; Sidiropoulos, G.; Virdee, T.; Erhan, S.; Afaq, M. A.; Lusin, S.; Tkaczyk, S.; Trentadue, R.; Crotty, I.; Hall-Wilton, R.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; St John, J.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Agram, J. -L.; Conte, E.; Drouhin, F.; Fontaine, J. -C.] Univ Haute Alsace, Mulhouse, France.
[Fassi, F.] IN2P3, Ctr Calcul, Villeurbanne, France.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
[Fabozzi, F.] Univ Basilicata, I-85100 Potenza, Italy.
[Biasotto, M.; Gulmini, M.] Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
[Lazzizzera, I.] Univ Trent, Trento, Italy.
[Baccaro, S.] ENEA, Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Jovanovic, D.; Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade 11001, Serbia.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Rolandi, G.] Ist Nazl Fis Nucl, Scuola Normale & Sez, Pisa, Italy.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Ozkorucuklu, S.] Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Cankocak, K.] Istanbul Tech Univ, TR-80626 Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Jeitler, Manfred/H-3106-2012; Venturi, Andrea/J-1877-2012; de Jesus
Damiao, Dilson/G-6218-2012; Montanari, Alessandro/J-2420-2012; Amapane,
Nicola/J-3683-2012; tosi, mia/J-5777-2012; Klyukhin,
Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012; Raidal,
Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Della Ricca, Giuseppe/B-6826-2013; Kadastik,
Mario/B-7559-2008; Lokhtin, Igor/D-7004-2012; Kodolova,
Olga/D-7158-2012; Dudko, Lev/D-7127-2012; Boos, Eduard/D-9748-2012;
Snigirev, Alexander/D-8912-2012; Chipaux, Remi/G-1145-2010; Servoli,
Leonello/E-6766-2012; Tomei, Thiago/E-7091-2012; Focardi,
Ettore/E-7376-2012; Fruhwirth, Rudolf/H-2529-2012; Azzi,
Patrizia/H-5404-2012; Torassa, Ezio/I-1788-2012; Giacomelli,
Paolo/B-8076-2009; Romaniuk, Ryszard/B-9140-2011; Ruiz,
Alberto/E-4473-2011; Stahl, Achim/E-8846-2011; Hektor, Andi/G-1804-2011;
Wulz, Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Tinoco Mendes, Andre
David/D-4314-2011; Horvath, Dezso/A-4009-2011; Langenegger,
Urs/A-4578-2008; Palinkas, Jozsef/B-2993-2011; Varela, Joao/K-4829-2016;
Fassi, Farida/F-3571-2016; Ligabue, Franco/F-3432-2014; Sguazzoni,
Giacomo/J-4620-2015; Menasce, Dario Livio/A-2168-2016; Bargassa,
Pedrame/O-2417-2016; Govoni, Pietro/K-9619-2016; Tuominen,
Eija/A-5288-2017; Yazgan, Efe/C-4521-2014; Gerbaudo, Davide/J-4536-2012;
Lazzizzera, Ignazio/E-9678-2015; Fedorov, Andrei/E-9455-2014;
Konovalova, Nina/D-3882-2014; Cordonnier, Agnes/I-5083-2016; Paganoni,
Marco/A-4235-2016; Kirakosyan, Martin/N-2701-2015; Seixas,
Joao/F-5441-2013; Verwilligen, Piet/M-2968-2014; Vilela Pereira,
Antonio/L-4142-2016; Sznajder, Andre/L-1621-2016; Haj Ahmad,
Wael/E-6738-2016; Xie, Si/O-6830-2016; Leonardo, Nuno/M-6940-2016; Goh,
Junghwan/Q-3720-2016; Muelmenstaedt, Johannes/K-2432-2015; Rovelli,
Tiziano/K-4432-2015; Dremin, Igor/K-8053-2015; Hoorani,
Hafeez/D-1791-2013; Vinogradov, Alexander/M-5331-2015; Altsybeev,
Igor/K-6687-2013; TUVE', Cristina/P-3933-2015; Gulmez,
Erhan/P-9518-2015; KIM, Tae Jeong/P-7848-2015; Flix, Josep/G-5414-2012;
Ozdemir, Kadri/P-8058-2014; korzhik, Mikhail/E-9505-2014; Ahmed,
Ijaz/E-9144-2015; Sen, Sercan/C-6473-2014; D'Alessandro,
Raffaello/F-5897-2015; Trocsanyi, Zoltan/A-5598-2009; Konecki,
Marcin/G-4164-2015; Hernandez Calama, Jose Maria/H-9127-2015; Barcala,
JOSE MIGUEL/I-1105-2015; Bedoya, Cristina/K-8066-2014; Michelotto,
Michele/A-9571-2013; Matorras, Francisco/I-4983-2015; My,
Salvatore/I-5160-2015; Gumus, Kazim/G-2498-2013; Scodellaro,
Luca/K-9091-2014; Josa, Isabel/K-5184-2014; Navarrete Marin, Jose
Javier/K-6412-2014; Marin, Jesus/K-6991-2014; Gonzalez Suarez,
Rebeca/L-6128-2014; Calvo Alamillo, Enrique/L-1203-2014; Paulini,
Manfred/N-7794-2014; Vogel, Helmut/N-8882-2014; Ferguson,
Thomas/O-3444-2014; Ragazzi, Stefano/D-2463-2009; Benussi,
Luigi/O-9684-2014; Russ, James/P-3092-2014; Grandi, Claudio/B-5654-2015;
Alves, Gilvan/C-4007-2013; Santoro, Alberto/E-7932-2014; Codispoti,
Giuseppe/F-6574-2014; Bellan, Riccardo/G-2139-2014; Petrucci,
Andrea/J-4207-2014; Gribushin, Andrei/J-4225-2012; Cerrada,
Marcos/J-6934-2014; Calderon, Alicia/K-3658-2014; Oller, Juan
Carlos/K-6445-2014; Molinero, Antonio/H-7347-2013; de la Cruz,
Begona/K-7552-2014; Janssen, Xavier/E-1915-2013; Mundim,
Luiz/A-1291-2012; Santaolalla, Javier/C-3094-2013; Gavrilov,
Gennady/C-6260-2013; Rolandi, Luigi (Gigi)/E-8563-2013; Zalewski,
Piotr/H-7335-2013; Cavallo, Nicola/F-8913-2012; Dvornikov,
Oleg/I-7207-2013; Hill, Christopher/B-5371-2012; Kuleshov,
Sergey/D-9940-2013; Troitsky, Sergey/C-1377-2014; Marlow,
Daniel/C-9132-2014; Oguri, Vitor/B-5403-2013
OI Luukka, Panja/0000-0003-2340-4641; Goldstein, Joel/0000-0003-1591-6014;
Sogut, Kenan/0000-0002-9682-2855; de Jesus Damiao,
Dilson/0000-0002-3769-1680; Montanari, Alessandro/0000-0003-2748-6373;
Amapane, Nicola/0000-0001-9449-2509; Klyukhin,
Vyacheslav/0000-0002-8577-6531; Novaes, Sergio/0000-0003-0471-8549;
Della Ricca, Giuseppe/0000-0003-2831-6982; Dudko,
Lev/0000-0002-4462-3192; Servoli, Leonello/0000-0003-1725-9185; Tomei,
Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267; Azzi,
Patrizia/0000-0002-3129-828X; Romaniuk, Ryszard/0000-0002-5710-4041;
Ruiz, Alberto/0000-0002-3639-0368; Stahl, Achim/0000-0002-8369-7506;
Hektor, Andi/0000-0001-7873-8118; Wulz,
Claudia-Elisabeth/0000-0001-9226-5812; Krammer,
Manfred/0000-0003-2257-7751; Tinoco Mendes, Andre
David/0000-0001-5854-7699; Heath, Helen/0000-0001-6576-9740; Giubilato,
Piero/0000-0003-4358-5355; Gallinaro, Michele/0000-0003-1261-2277;
Tabarelli de Fatis, Tommaso/0000-0001-6262-4685; Zabolotny,
Wojciech/0000-0002-6833-4846; Lenzi, Piergiulio/0000-0002-6927-8807;
Gutsche, Oliver/0000-0002-8015-9622; Torassa, Ezio/0000-0003-2321-0599;
Varela, Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109;
Toback, David/0000-0003-3457-4144; Mackay,
Catherine/0000-0003-4252-6740; HSIUNG, YEE/0000-0003-4801-1238; Bonnett
Del Alamo, Miguel Reinaldo/0000-0002-1011-8411; Faccioli,
Pietro/0000-0003-1849-6692; Korenkov, Vladimir/0000-0002-2342-7862;
Stober, Fred/0000-0003-2620-3159; Martelli,
Arabella/0000-0003-3530-2255; Abbiendi, Giovanni/0000-0003-4499-7562;
Levchenko, Petr/0000-0003-4913-0538; Uliyanov,
Alexey/0000-0001-6935-8949; Arneodo, Michele/0000-0002-7790-7132;
Sciacca, Crisostomo/0000-0002-8412-4072; Fassi,
Farida/0000-0002-6423-7213; Leonidopoulos, Christos/0000-0002-7241-2114;
Blekman, Freya/0000-0002-7366-7098; Ghezzi, Alessio/0000-0002-8184-7953;
bianco, stefano/0000-0002-8300-4124; Demaria,
Natale/0000-0003-0743-9465; Benaglia, Andrea Davide/0000-0003-1124-8450;
Covarelli, Roberto/0000-0003-1216-5235; Staiano,
Amedeo/0000-0003-1803-624X; Ciulli, Vitaliano/0000-0003-1947-3396;
Tonelli, Guido Emilio/0000-0003-2606-9156; Beuselinck,
Raymond/0000-0003-2613-7446; Ligabue, Franco/0000-0002-1549-7107;
Diemoz, Marcella/0000-0002-3810-8530; Hamel de Monchenault,
Gautier/0000-0002-3872-3592; Landsberg, Greg/0000-0002-4184-9380; Rizzi,
Andrea/0000-0002-4543-2718; Gershtein, Yuri/0000-0002-4871-5449;
Tricomi, Alessia Rita/0000-0002-5071-5501; CALZOLARI,
FEDERICO/0000-0002-5510-3061; Malik, Sudhir/0000-0002-6356-2655;
Dharmaraatna, Welathantri/0000-0002-6366-837X; Giacomelli,
Paolo/0000-0002-6368-7220; Mrenna, Stephen/0000-0001-8731-160X; Bilki,
Burak/0000-0001-9515-3306; Costa, Salvatore/0000-0001-9919-0569; Lloret
Iglesias, Lara/0000-0002-0157-4765; Kasemann,
Matthias/0000-0002-0429-2448; Donvito, Giacinto/0000-0002-0628-1080;
Petragnani, Giulio/0000-0002-0819-6509; Sguazzoni,
Giacomo/0000-0002-0791-3350; WANG, MIN-ZU/0000-0002-0979-8341; Longo,
Egidio/0000-0001-6238-6787; Baarmand, Marc/0000-0002-9792-8619; Nervo,
Marco/0000-0002-9898-7346; Boccali, Tommaso/0000-0002-9930-9299;
Menasce, Dario Livio/0000-0002-9918-1686; Bargassa,
Pedrame/0000-0001-8612-3332; Govoni, Pietro/0000-0002-0227-1301;
Tuominen, Eija/0000-0002-7073-7767; Yazgan, Efe/0000-0001-5732-7950;
Gerbaudo, Davide/0000-0002-4463-0878; Vieira de Castro Ferreira da
Silva, Pedro Manuel/0000-0002-5725-041X; Actis,
Oxana/0000-0001-8851-3983; Lazzizzera, Ignazio/0000-0001-5092-7531;
Bean, Alice/0000-0001-5967-8674; Cordonnier, Agnes/0000-0002-4216-3524;
Paganoni, Marco/0000-0003-2461-275X; Seixas, Joao/0000-0002-7531-0842;
Vilela Pereira, Antonio/0000-0003-3177-4626; Sznajder,
Andre/0000-0001-6998-1108; Haj Ahmad, Wael/0000-0003-1491-0446; Xie,
Si/0000-0003-2509-5731; Leonardo, Nuno/0000-0002-9746-4594; Goh,
Junghwan/0000-0002-1129-2083; Muelmenstaedt,
Johannes/0000-0003-1105-6678; Rovelli, Tiziano/0000-0002-9746-4842;
Altsybeev, Igor/0000-0002-8079-7026; TUVE',
Cristina/0000-0003-0739-3153; Gulmez, Erhan/0000-0002-6353-518X; KIM,
Tae Jeong/0000-0001-8336-2434; Flix, Josep/0000-0003-2688-8047; Ozdemir,
Kadri/0000-0002-0103-1488; Sen, Sercan/0000-0001-7325-1087;
D'Alessandro, Raffaello/0000-0001-7997-0306; Trocsanyi,
Zoltan/0000-0002-2129-1279; Konecki, Marcin/0000-0001-9482-4841;
Hernandez Calama, Jose Maria/0000-0001-6436-7547; Barcala, JOSE
MIGUEL/0000-0002-1092-7091; Bedoya, Cristina/0000-0001-8057-9152;
Michelotto, Michele/0000-0001-6644-987X; Matorras,
Francisco/0000-0003-4295-5668; My, Salvatore/0000-0002-9938-2680; Gumus,
Kazim/0000-0002-1450-6868; Scodellaro, Luca/0000-0002-4974-8330;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070;
Codispoti, Giuseppe/0000-0003-0217-7021; Petrucci,
Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Mundim, Luiz/0000-0001-9964-7805;
Rolandi, Luigi (Gigi)/0000-0002-0635-274X; Hill,
Christopher/0000-0003-0059-0779; Kuleshov, Sergey/0000-0002-3065-326X;
Troitsky, Sergey/0000-0001-6917-6600;
FU FMSR (Austria); FNRS (Belgium); CNPq (Brazil); CAPES (Brazil); FAPERJ
(Brazil); FAPESP (Brazil); MES (Bulgaria); CERN; CAS (China); MoST
(China); NSFC (China); COLCIENCIAS (Colombia); MSES (Croatia); RPF
(Cyprus); Academy of Sciences; NICPB (Estonia); Academy of Finland
(Finland); ME (Finland); HIP (Finland); CEA (France); CNRS/IN2P3
(France); BMBF (Germany); DFG (Germany); HGF (Germany); GSRT (Greece);
OTKA (Hungary); NKTH (Hungary); DAE (India); DST (India); IPM (Iran);
SFI (Ireland); INFN (Italy); NRF (Korea); LAS (Lithuania); CINVESTAV
(Mexico); CONACYT (Mexico); SEP (Mexico); UASLP-FAI (Mexico); PAEC
(Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia); JINR
(Belarus); JINR (Georgia); JINR (Ukraine); JINR (Uzbekistan); MST
(Russia); MAE (Russia); MSTDS (Serbia); MICINN (Spain); CPAN (Spain);
Swiss Funding Agencies (Switzerland); NSC (Taipei); TUBITAK (Turkey);
TAEK (Turkey); STFC (United Kingdom); DOE (USA); NSF (USA); European
Union; Leventis Foundation; A. P. Sloan Foundation; Alexander von
Humboldt Foundation; FWO (Belgium)
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 20
TC 28
Z9 28
U1 1
U2 47
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03018
DI 10.1088/1748-0221/5/03/T03018
PG 40
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100015
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
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de Abril, M. Magrans
Mohapatra, A.
Ott, G.
Polese, G.
Reeder, D.
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White, A.
CA CMS Collaboration
TI Aligning the CMS muon chambers with the muon alignment system during an
extended cosmic ray run
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Muon spectrometers; Large detector systems for particle and
astroparticle physics
AB The alignment system for the muon spectrometer of the CMS detector comprises three independent subsystems of optical and analog position sensors. It aligns muon chambers with respect to each other and to the central silicon tracker. System commissioning at full magnetic field began in 2008 during an extended cosmic ray run. The system succeeded in tracking muon detector movements of up to 18 mm and rotations of several milliradians under magnetic forces. Depending on coordinate and subsystem, the system achieved chamber alignment precisions of 140-350 mu m and 30-200 mu rad, close to the precision requirements of the experiment. Systematic errors on absolute positions are estimated to be 340-590 mu m based on comparisons with independent photogrammetry measurements.
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[Baffioni, S.; Bianchini, L.; Bluj, M.; Busson, P.; Charlot, C.; Dobrzynski, L.; de Cassagnac, R. Granier; Haguenauer, M.; Mine, P.; Paganini, P.; Sirois, Y.; Thiebaux, C.; Zabi, A.] Ecole Polytech, CNRS, Lab Leprince Ringuet, IN2P3, F-91128 Palaiseau, France.
[Agram, J. -L.; Besson, A.; Bloch, D.; Bodin, D.; Brom, J. -M.; Conte, E.; Drouhin, F.; Fontaine, J. -C.; Gele, D.; Goerlach, U.; Gross, L.; Juillot, P.; Le Bihan, A. -C.; Patois, Y.; Speck, J.; Van Hove, P.] Univ Haute Alsace Mulhouse, Univ Strasbourg, Inst Pluridisciplinaire Hubert Curien, CNRS,IN2P3, Strasbourg, France.
[Baty, C.; Bedjidian, M.; Blaha, J.; Boudoul, G.; Brun, H.; Chanon, N.; Chierici, R.; Contardo, D.; Depasse, P.; Dupasquier, T.; El Mamouni, H.; Fassi, F.; Fay, J.; Gascon, S.; Ille, B.; Kurca, T.; Le Grand, T.; Lethuillier, M.; Lumb, N.; Mirabito, L.; Perries, S.; Donckt, M. Vander; Verdier, P.] Univ Lyon 1, CNRS, IN2P3, Inst Phys Nucl Lyon, F-69622 Villeurbanne, France.
[Djaoshvili, N.; Roinishvili, N.; Roinishvili, V.] Acad Sci, E Andronikashvili Inst Phys, Tbilisi, Rep of Georgia.
[Amaglobeli, N.] Tbilisi State Univ, Inst High Energy Phys & Informatizat, GE-380086 Tbilisi, Rep of Georgia.
[Adolphi, R.; Anagnostou, G.; Brauer, R.; Braunschweig, W.; Edelhoff, M.; Esser, H.; Feld, L.; Karpinski, W.; Khomich, A.; Klein, K.; Mohr, N.; Ostaptchouk, A.; Pandoulas, D.; Pierschel, G.; Raupach, F.; Schael, S.; von Dratzig, A. Schultz; Schwering, G.; Sprenger, D.; Thomas, M.; Weber, M.; Wittmer, B.; Wlochal, M.] Rhein Westfal TH Aachen, Inst Phys 1, Aachen, Germany.
[Actis, O.; Altenhoefer, G.; Bender, W.; Biallass, P.; Erdmann, M.; Fetchenhauer, G.; Frangenheim, J.; Hebbeker, T.; Hilgers, G.; Hinzmann, A.; Hoepfner, K.; Hof, C.; Kirsch, M.; Klimkovich, T.; Kreuzer, P.; Lanske, D.; Merschmeyer, M.; Meyer, A.; Philipps, B.; Pieta, H.; Reithler, H.; Schmitz, S. A.; Sonnenschein, L.; Sowa, M.; Steggemann, J.; Szczesny, H.; Teyssier, D.; Zeidler, C.] Rhein Westfal TH Aachen, Phys Inst A 3, Aachen, Germany.
[Bontenackels, M.; Davids, M.; Duda, M.; Fluegge, G.; Geenen, H.; Giffels, M.; Ahmad, W. Haj; Hermanns, T.; Heydhausen, D.; Kalinin, S.; Kress, T.; Linn, A.; Nowack, A.; Perchalla, L.; Poettgens, M.; Pooth, O.; Sauerland, P.; Stahl, A.; Tornier, D.; Zoeller, M. H.] Rhein Westfal TH Aachen, Phys Inst B 3, Aachen, Germany.
[Martin, M. Aldaya; Behrens, U.; Borras, K.; Campbell, A.; Castro, E.; Dammann, D.; Eckerlin, G.; Flossdorf, A.; Flucke, G.; Geiser, A.; Hatton, D.; Hauk, J.; Jung, H.; Kasemann, M.; Katkov, I.; Kleinwort, C.; Kluge, H.; Knutsson, A.; Kuznetsova, E.; Lange, W.; Lohmann, W.; Mankel, R.; Marienfeld, M.; Meyer, A. B.; Miglioranzi, S.; Mnich, J.; Ohlerich, M.; Olzem, J.; Parenti, A.; Rosemann, C.; Schmidt, R.; Schoerner-Sadenius, T.; Volyanskyy, D.; Wissing, C.; Zeuner, W. D.] DESY, Hamburg, Germany.
[Autermann, C.; Bechtel, F.; Draeger, J.; Eckstein, D.; Gebbert, U.; Kaschube, K.; Kaussen, G.; Klanner, R.; Mura, B.; Naumann-Emme, S.; Nowak, F.; Pein, U.; Sander, C.; Schleper, P.; Schum, T.; Stadie, H.; Steinbrueck, G.; Thomsen, J.; Wolf, R.] Univ Hamburg, Hamburg, Germany.
[Bauer, J.; Bluem, P.; Buege, V.; Cakir, A.; Chwalek, T.; De Boer, W.; Dierlamm, A.; Dirkes, G.; Feindt, M.; Felzmann, U.; Frey, M.; Furgeri, A.; Gruschke, J.; Hackstein, C.; Hartmann, F.; Heier, S.; Heinrich, M.; Held, H.; Hirschbuehl, D.; Hoffmann, K. H.; Honc, S.; Jung, C.; Kuhr, T.; Liamsuwan, T.; Martschei, D.; Mueller, S.; Mueller, Th.; Neuland, M. B.; Niegel, M.; Oberst, O.; Oehler, A.; Ott, J.; Peiffer, T.; Piparo, D.; Quast, G.; Rabbertz, K.; Ratnikov, F.; Ratnikova, N.; Renz, M.; Saout, C.; Sartisohn, G.; Scheurer, A.; Schieferdecker, P.; Schilling, F. -P.; Schott, G.; Simonis, H. J.; Stober, F. M.; Sturm, P.; Troendle, D.; Trunov, A.; Wagner, W.; Wagner-Kuhr, J.; Zeise, M.; Zhukov, V.; Ziebarth, E. B.] Univ Karlsruhe, Inst Expt Kernphys, D-7500 Karlsruhe, Germany.
[Daskalakis, G.; Geralis, T.; Karafasoulis, K.; Kyriakis, A.; Loukas, D.; Markou, A.; Markou, C.; Mavrommatis, C.; Petrakou, E.; Zachariadou, A.] Inst Nucl Phys Demokritos, Aghia Paraskevi, Greece.
[Gouskos, L.; Katsas, P.; Panagiotou, A.] Univ Athens, Athens, Greece.
[Evangelou, I.; Kokkas, P.; Manthos, N.; Papadopoulos, I.; Patras, V.; Triantis, F. A.] Univ Ioannina, GR-45110 Ioannina, Greece.
[Bencze, G.; Boldizsar, L.; Debreczeni, G.; Hajdu, C.; Hernath, S.; Hidas, P.; Horvath, D.; Krajczar, K.; Laszlo, A.; Patay, G.; Sikler, F.; Toth, N.; Vesztergombi, G.] KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
[Beni, N.; Christian, G.; Imrek, J.; Molnar, J.; Novak, D.; Palinkas, J.; Szekely, G.; Szillasi, Z.; Tokesi, K.; Veszpremi, V.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Kapusi, A.; Marian, G.; Raics, P.; Szabo, Z.; Trocsanyi, Z. L.; Ujvari, B.; Zilizi, G.; Jha, M.] Univ Debrecen, Debrecen, Hungary.
[Bansal, S.; Bawa, H. S.; Beri, S. B.; Bhatnagar, V.; Jindal, M.; Kaur, M.; Kaur, R.; Kohli, J. M.; Mehta, M. Z.; Nishu, N.; Saini, L. K.; Sharma, A.; Singh, A.; Singh, J. B.; Singh, S. P.] Panjab Univ, Chandigarh 160014, India.
[Ahuja, S.; Arora, S.; Bhattacharya, S.; Chauhan, S.; Choudhary, B. C.; Gupta, P.; Jain, S.; Kumar, A.; Ranjan, K.; Shivpuri, R. K.; Srivastava, A. K.] Univ Delhi, Delhi 110007, India.
[Choudhury, R. K.; Dutta, D.; Kailas, S.; Kataria, S. K.; Mohanty, A. K.; Pant, L. M.; Shukla, P.; Topkar, A.] Bhabha Atom Res Ctr, Mumbai 400085, Maharashtra, India.
[Aziz, T.; Guchait, M.; Gurtu, A.; Maity, M.; Majumder, D.; Majumder, G.; Mazumdar, K.; Nayak, A.; Saha, A.; Sudhakar, K.] Tata Inst Fundamental Res, EHEP, Mumbai 400005, Maharashtra, India.
[Banerjee, S.; Dugad, S.; Mondal, N. K.] Tata Inst Fundamental Res, HECR, Mumbai 400005, Maharashtra, India.
[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys Math IPM, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Univ Bari, Bari, Italy.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.; Benaglia, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Univ Florence, Florence, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.; Bartoloni, A.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Univ Roma La Sapienza, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Turin, Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius Univ, Vilnius, Lithuania.
[Valdez, H. Castilla; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Pedro, L. Antunes; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.; Anisimov, A.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.; Adiguzel, A.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.; Adiguzel, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Otano, M. Blanco; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.; Anastassov, A.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, CSIC, IFCA, E-39005 Santander, Spain.
[Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimia, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Besson, A.; Artamonov, A.; Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; St John, J.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De la Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.; Anastassov, A.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.; Apresyan, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.; Apresyan, A.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Apresyan, A.; Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.; Aurisano, A.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Bean, A.; Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.] Univ Rochester, Rochester, NY 14627 USA.
[Zielinski, M.; Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Agram, J. -L.; Conte, E.; Drouhin, F.; Fontaine, J. -C.] IN2P3, Ctr Calcul, Villeurbanne, France.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
[Fabozzi, F.] Univ Basilicata, I-85100 Potenza, Italy.
[Biasotto, M.; Gulmini, M.] Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
[Lazzizzera, I.] Univ Trent, Trento, Italy.
[Baccaro, S.] ENEA, Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Jovanovic, D.; Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade 11001, Serbia.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Rolandi, G.] Ist Nazl Fis Nucl, Scuola Normale & Sez, Pisa, Italy.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Ozkorucuklu, S.] Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Benucci, L.; Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Fabbri, F.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronques, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Cankocak, K.] Istanbul Tech Univ, Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Torassa, Ezio/I-1788-2012; Giacomelli, Paolo/B-8076-2009; Jeitler,
Manfred/H-3106-2012; Venturi, Andrea/J-1877-2012; de Jesus Damiao,
Dilson/G-6218-2012; Montanari, Alessandro/J-2420-2012; Amapane,
Nicola/J-3683-2012; tosi, mia/J-5777-2012; Klyukhin,
Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012; Raidal,
Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Tinoco Mendes, Andre David/D-4314-2011; Lokhtin,
Igor/D-7004-2012; Kodolova, Olga/D-7158-2012; Dudko, Lev/D-7127-2012;
Boos, Eduard/D-9748-2012; Snigirev, Alexander/D-8912-2012; Chipaux,
Remi/G-1145-2010; Servoli, Leonello/E-6766-2012; Tomei,
Thiago/E-7091-2012; Focardi, Ettore/E-7376-2012; Fruhwirth,
Rudolf/H-2529-2012; Azzi, Patrizia/H-5404-2012; Romaniuk,
Ryszard/B-9140-2011; Ganjour, Serguei/D-8853-2011; Ruiz,
Alberto/E-4473-2011; Stahl, Achim/E-8846-2011; Hektor, Andi/G-1804-2011;
Wulz, Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Horvath,
Dezso/A-4009-2011; Langenegger, Urs/A-4578-2008; Palinkas,
Jozsef/B-2993-2011; Varela, Joao/K-4829-2016; Fassi, Farida/F-3571-2016;
Ligabue, Franco/F-3432-2014; Sguazzoni, Giacomo/J-4620-2015; Menasce,
Dario Livio/A-2168-2016; Bargassa, Pedrame/O-2417-2016; Goh,
Junghwan/Q-3720-2016; Govoni, Pietro/K-9619-2016; Tuominen,
Eija/A-5288-2017; Yazgan, Efe/C-4521-2014; Gerbaudo, Davide/J-4536-2012;
Lazzizzera, Ignazio/E-9678-2015; Hernandez Calama, Jose
Maria/H-9127-2015; korzhik, Mikhail/E-9505-2014; Fedorov,
Andrei/E-9455-2014; Konovalova, Nina/D-3882-2014; Cordonnier,
Agnes/I-5083-2016; Paganoni, Marco/A-4235-2016; Kirakosyan,
Martin/N-2701-2015; Seixas, Joao/F-5441-2013; Verwilligen,
Piet/M-2968-2014; Vilela Pereira, Antonio/L-4142-2016; Sznajder,
Andre/L-1621-2016; Haj Ahmad, Wael/E-6738-2016; Xie, Si/O-6830-2016;
Leonardo, Nuno/M-6940-2016; Gumus, Kazim/G-2498-2013; Muelmenstaedt,
Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015; Dremin,
Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Altsybeev, Igor/K-6687-2013; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
Benussi, Luigi/O-9684-2014; Russ, James/P-3092-2014; Grandi,
Claudio/B-5654-2015; Ahmed, Ijaz/E-9144-2015; Sen, Sercan/C-6473-2014;
D'Alessandro, Raffaello/F-5897-2015; Trocsanyi, Zoltan/A-5598-2009;
Konecki, Marcin/G-4164-2015; Barcala, JOSE MIGUEL/I-1105-2015; Bedoya,
Cristina/K-8066-2014; Michelotto, Michele/A-9571-2013; Matorras,
Francisco/I-4983-2015; My, Salvatore/I-5160-2015; Oller, Juan
Carlos/K-6445-2014; Molinero, Antonio/H-7347-2013; de la Cruz,
Begona/K-7552-2014; Scodellaro, Luca/K-9091-2014; Josa,
Isabel/K-5184-2014; Navarrete Marin, Jose Javier/K-6412-2014; Marin,
Jesus/K-6991-2014; Gonzalez Suarez, Rebeca/L-6128-2014; Calvo Alamillo,
Enrique/L-1203-2014; Paulini, Manfred/N-7794-2014; Vogel,
Helmut/N-8882-2014; Ferguson, Thomas/O-3444-2014; Ragazzi,
Stefano/D-2463-2009; Marlow, Daniel/C-9132-2014; Oguri,
Vitor/B-5403-2013; Janssen, Xavier/E-1915-2013; Alves,
Gilvan/C-4007-2013; Santoro, Alberto/E-7932-2014; Codispoti,
Giuseppe/F-6574-2014; Bellan, Riccardo/G-2139-2014; Petrucci,
Andrea/J-4207-2014; Gribushin, Andrei/J-4225-2012; Cerrada,
Marcos/J-6934-2014; Calderon, Alicia/K-3658-2014; Della Ricca,
Giuseppe/B-6826-2013; Kadastik, Mario/B-7559-2008; Mundim,
Luiz/A-1291-2012; Santaolalla, Javier/C-3094-2013; Gavrilov,
Gennady/C-6260-2013; Rolandi, Luigi (Gigi)/E-8563-2013; Zalewski,
Piotr/H-7335-2013; Cavallo, Nicola/F-8913-2012; Dvornikov,
Oleg/I-7207-2013; Hill, Christopher/B-5371-2012; Kuleshov,
Sergey/D-9940-2013; Troitsky, Sergey/C-1377-2014
OI de Jesus Damiao, Dilson/0000-0002-3769-1680; Montanari,
Alessandro/0000-0003-2748-6373; Amapane, Nicola/0000-0001-9449-2509;
Klyukhin, Vyacheslav/0000-0002-8577-6531; Novaes,
Sergio/0000-0003-0471-8549; Tinoco Mendes, Andre
David/0000-0001-5854-7699; Dudko, Lev/0000-0002-4462-3192; Servoli,
Leonello/0000-0003-1725-9185; Tomei, Thiago/0000-0002-1809-5226;
Focardi, Ettore/0000-0002-3763-5267; Azzi, Patrizia/0000-0002-3129-828X;
Romaniuk, Ryszard/0000-0002-5710-4041; Ruiz,
Alberto/0000-0002-3639-0368; Stahl, Achim/0000-0002-8369-7506; Hektor,
Andi/0000-0001-7873-8118; Wulz, Claudia-Elisabeth/0000-0001-9226-5812;
Krammer, Manfred/0000-0003-2257-7751; Luukka, Panja/0000-0003-2340-4641;
Goldstein, Joel/0000-0003-1591-6014; Sogut, Kenan/0000-0002-9682-2855;
Heath, Helen/0000-0001-6576-9740; Giubilato, Piero/0000-0003-4358-5355;
Gallinaro, Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Gutsche,
Oliver/0000-0002-8015-9622; Torassa, Ezio/0000-0003-2321-0599; Varela,
Joao/0000-0003-2613-3146; Jun, Soon Yung/0000-0003-3370-6109; Toback,
David/0000-0003-3457-4144; Mackay, Catherine/0000-0003-4252-6740;
HSIUNG, YEE/0000-0003-4801-1238; Bonnett Del Alamo, Miguel
Reinaldo/0000-0002-1011-8411; Faccioli, Pietro/0000-0003-1849-6692;
Korenkov, Vladimir/0000-0002-2342-7862; Stober,
Fred/0000-0003-2620-3159; Martelli, Arabella/0000-0003-3530-2255;
Abbiendi, Giovanni/0000-0003-4499-7562; Levchenko,
Petr/0000-0003-4913-0538; Uliyanov, Alexey/0000-0001-6935-8949; Arneodo,
Michele/0000-0002-7790-7132; Sciacca, Crisostomo/0000-0002-8412-4072;
Fassi, Farida/0000-0002-6423-7213; Leonidopoulos,
Christos/0000-0002-7241-2114; Blekman, Freya/0000-0002-7366-7098;
Ghezzi, Alessio/0000-0002-8184-7953; bianco,
stefano/0000-0002-8300-4124; Demaria, Natale/0000-0003-0743-9465;
Benaglia, Andrea Davide/0000-0003-1124-8450; Covarelli,
Roberto/0000-0003-1216-5235; Staiano, Amedeo/0000-0003-1803-624X;
Ciulli, Vitaliano/0000-0003-1947-3396; Tonelli, Guido
Emilio/0000-0003-2606-9156; Beuselinck, Raymond/0000-0003-2613-7446;
Ligabue, Franco/0000-0002-1549-7107; Diemoz,
Marcella/0000-0002-3810-8530; Hamel de Monchenault,
Gautier/0000-0002-3872-3592; Landsberg, Greg/0000-0002-4184-9380; Rizzi,
Andrea/0000-0002-4543-2718; Gershtein, Yuri/0000-0002-4871-5449;
Tricomi, Alessia Rita/0000-0002-5071-5501; CALZOLARI,
FEDERICO/0000-0002-5510-3061; Malik, Sudhir/0000-0002-6356-2655;
Dharmaraatna, Welathantri/0000-0002-6366-837X; Giacomelli,
Paolo/0000-0002-6368-7220; Mrenna, Stephen/0000-0001-8731-160X; Bilki,
Burak/0000-0001-9515-3306; Costa, Salvatore/0000-0001-9919-0569; Lloret
Iglesias, Lara/0000-0002-0157-4765; Kasemann,
Matthias/0000-0002-0429-2448; Donvito, Giacinto/0000-0002-0628-1080;
Petragnani, Giulio/0000-0002-0819-6509; Sguazzoni,
Giacomo/0000-0002-0791-3350; WANG, MIN-ZU/0000-0002-0979-8341; Longo,
Egidio/0000-0001-6238-6787; Baarmand, Marc/0000-0002-9792-8619; Nervo,
Marco/0000-0002-9898-7346; Boccali, Tommaso/0000-0002-9930-9299;
Menasce, Dario Livio/0000-0002-9918-1686; Bargassa,
Pedrame/0000-0001-8612-3332; Goh, Junghwan/0000-0002-1129-2083; Govoni,
Pietro/0000-0002-0227-1301; Tuominen, Eija/0000-0002-7073-7767; Yazgan,
Efe/0000-0001-5732-7950; Gerbaudo, Davide/0000-0002-4463-0878; Vieira de
Castro Ferreira da Silva, Pedro Manuel/0000-0002-5725-041X; Actis,
Oxana/0000-0001-8851-3983; Lazzizzera, Ignazio/0000-0001-5092-7531;
Hernandez Calama, Jose Maria/0000-0001-6436-7547; Bean,
Alice/0000-0001-5967-8674; Cordonnier, Agnes/0000-0002-4216-3524;
Paganoni, Marco/0000-0003-2461-275X; Seixas, Joao/0000-0002-7531-0842;
Vilela Pereira, Antonio/0000-0003-3177-4626; Sznajder,
Andre/0000-0001-6998-1108; Haj Ahmad, Wael/0000-0003-1491-0446; Xie,
Si/0000-0003-2509-5731; Leonardo, Nuno/0000-0002-9746-4594; Gumus,
Kazim/0000-0002-1450-6868; Muelmenstaedt, Johannes/0000-0003-1105-6678;
Rovelli, Tiziano/0000-0002-9746-4842; Altsybeev,
Igor/0000-0002-8079-7026; TUVE', Cristina/0000-0003-0739-3153; Gulmez,
Erhan/0000-0002-6353-518X; KIM, Tae Jeong/0000-0001-8336-2434; Flix,
Josep/0000-0003-2688-8047; Ozdemir, Kadri/0000-0002-0103-1488; Benussi,
Luigi/0000-0002-2363-8889; Russ, James/0000-0001-9856-9155; Grandi,
Claudio/0000-0001-5998-3070; Sen, Sercan/0000-0001-7325-1087;
D'Alessandro, Raffaello/0000-0001-7997-0306; Trocsanyi,
Zoltan/0000-0002-2129-1279; Konecki, Marcin/0000-0001-9482-4841;
Barcala, JOSE MIGUEL/0000-0002-1092-7091; Bedoya,
Cristina/0000-0001-8057-9152; Michelotto, Michele/0000-0001-6644-987X;
Matorras, Francisco/0000-0003-4295-5668; My,
Salvatore/0000-0002-9938-2680; Oller, Juan Carlos/0000-0002-2754-2788;
Scodellaro, Luca/0000-0002-4974-8330; Navarrete Marin, Jose
Javier/0000-0002-6220-8638; Marin, Jesus/0000-0002-9049-3667; Gonzalez
Suarez, Rebeca/0000-0002-6126-7230; Calvo Alamillo,
Enrique/0000-0002-1100-2963; Paulini, Manfred/0000-0002-6714-5787;
Vogel, Helmut/0000-0002-6109-3023; Ferguson, Thomas/0000-0001-5822-3731;
Ragazzi, Stefano/0000-0001-8219-2074; Codispoti,
Giuseppe/0000-0003-0217-7021; Petrucci, Andrea/0000-0003-2524-8355;
Cerrada, Marcos/0000-0003-0112-1691; Della Ricca,
Giuseppe/0000-0003-2831-6982; Mundim, Luiz/0000-0001-9964-7805; Rolandi,
Luigi (Gigi)/0000-0002-0635-274X; Hill, Christopher/0000-0003-0059-0779;
Kuleshov, Sergey/0000-0002-3065-326X; Troitsky,
Sergey/0000-0001-6917-6600
FU FMSR (Austria); FNRS (Belgium); CNPq (Brazil); MES (Bulgaria); CERN; CAS
(China); COLCIEN-CIAS (Colombia); MSES (Croatia); RPF (Cyprus); Academy
of Sciences (Estonia); Academy of Finland (Finland); CEA (France); BMBF
(Germany); GSRT (Greece); OTKA (Hungary); DAE (India); IPM (Iran); SFI
(Ireland); INFN (Italy); NRF (Korea); LAS (Lithuania); CINVESTAV
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR
(Armenia); MST (Russia); MSTDS (Serbia); MICINN (Spain); Swiss Funding
Agencies (Switzerland); NSC (Taipei); TUBITAK (Turkey); STFC (United
Kingdom); DOE (USA); European Union; Leventis Foundation; A. P. Sloan
Foundation; Alexander von Humboldt Foundation; FWO (Belgium); CAPES
(Brazil); FAPERJ (Brazil); FAPESP (Brazil); MoST (China); NSFC (China);
NICPB (Estonia); ME; HIP (Finland); CNRS/IN2P3 (France); DFG (Germany);
HGF (Germany); NKTH (Hungary); DST (India); CONACYT (Mexico); SEP
(Mexico); UASLP-FAI (Mexico); JINR (Belarus); JINR (Georgia); JINR
(Ukraine); JINR (Uzbekistan); MAE (Russia); CPAN (Spain); TAEK (Turkey);
NSF (USA)
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIEN-CIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 15
TC 28
Z9 28
U1 1
U2 53
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03019
DI 10.1088/1748-0221/5/03/T03019
PG 35
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100014
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
Litomin, A
Makarenko, V
Marfin, I
Mossolov, V
Shumeiko, N
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CA CMS Collaboration
TI Alignment of the CMS muon system with cosmic-ray and beam-halo muons
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Muon spectrometers; Large detector systems for particle and
astroparticle physics
AB The CMS muon system has been aligned using cosmic-ray muons collected in 2008 and beam-halo muons from the 2008 LHC circulating beam tests. After alignment, the resolution of the most sensitive coordinate is 80 microns for the relative positions of superlayers in the same barrel chamber and 270 microns for the relative positions of endcap chambers in the same ring structure. The resolution on the position of the central barrel chambers relative to the tracker is comprised between two extreme estimates, 200 and 700 microns, provided by two complementary studies. With minor modifications, the alignment procedures can be applied using muons from LHC collisions, leading to additional significant improvements.
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[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys & Math IPM, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Univ Bari, Bari, Italy.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Univ Florence, Florence, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Fabbri, F.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.; Bartoloni, A.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Rea, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Rea, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Univ Roma La Sapienza, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Turin, Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Univ Trieste, Trieste, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, CSIC, IFCA, E-39005 Santander, Spain.
[Penzo, A.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cattai, E. Cano A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Onig, S. K.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Phys & Technol Inst, Natl Sci Ctr, UA-310108 Kharkov, Ukraine.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.; Avetisyan, A.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; St John, J.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] CALTECH, Pasadena, CA 91125 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Univ Colorado, Boulder, CO 80309 USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Cornell Univ, Ithaca, NY USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fairfield Univ, Fairfield, CT 06430 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.; Adams, T.] Univ Florida, Gainesville, FL USA.
[Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida Int Univ, Miami, FL 33199 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida State Univ, Tallahassee, FL 32306 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Illinois, Chicago, IL USA.
[Cankocak, K.; Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Univ Iowa, Iowa City, IA USA.
[Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Johns Hopkins Univ, Baltimore, MD USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Univ Kansas, Lawrence, KS 66045 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Kansas State Univ, Manhattan, KS 66506 USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Kim, S. Jaditz Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] Univ Maryland, College Pk, MD 20742 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] MIT, Cambridge, MA 02139 USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Minnesota, Minneapolis, MN USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Mississippi, University, MS 38677 USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] Univ Nebraska, Lincoln, NE USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northeastern Univ, Boston, MA 02115 USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Northwestern Univ, Evanston, IL USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Agram, J. -L.; Conte, E.; Drouhin, F.; Fontaine, J. -C.] Univ Haute Alsace, Mulhouse, France.
[Fassi, F.] IN2P3, Ctr Calcul, Villeurbanne, France.
[Horvath, D.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
[Baccaro, S.] ENEA Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Jovanovic, D.; Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade 11001, Serbia.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Rolandi, G.] Ist Nazl Fis Nucl, Scuola Normale & Sez, Pisa, Italy.
[Sphicas, P.] Univ Athens, Athens, Greece.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Ozkorucuklu, S.] Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Cankocak, K.] Istanbul Tech Univ, Istanbul, Turkey.
RP Bouhali, O (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Varela, Joao/K-4829-2016; Fassi, Farida/F-3571-2016; Sguazzoni,
Giacomo/J-4620-2015; Ligabue, Franco/F-3432-2014; Menasce, Dario
Livio/A-2168-2016; Bargassa, Pedrame/O-2417-2016; Govoni,
Pietro/K-9619-2016; Tuominen, Eija/A-5288-2017; Yazgan, Efe/C-4521-2014;
Gerbaudo, Davide/J-4536-2012; Lazzizzera, Ignazio/E-9678-2015; Fedorov,
Andrei/E-9455-2014; Konovalova, Nina/D-3882-2014; Cordonnier,
Agnes/I-5083-2016; Paganoni, Marco/A-4235-2016; Kirakosyan,
Martin/N-2701-2015; Seixas, Joao/F-5441-2013; Verwilligen,
Piet/M-2968-2014; Vilela Pereira, Antonio/L-4142-2016; Sznajder,
Andre/L-1621-2016; Haj Ahmad, Wael/E-6738-2016; Xie, Si/O-6830-2016;
Leonardo, Nuno/M-6940-2016; Goh, Junghwan/Q-3720-2016; Muelmenstaedt,
Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015; Dremin,
Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Altsybeev, Igor/K-6687-2013; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
korzhik, Mikhail/E-9505-2014; Ahmed, Ijaz/E-9144-2015; Sen,
Sercan/C-6473-2014; D'Alessandro, Raffaello/F-5897-2015; Trocsanyi,
Zoltan/A-5598-2009; Konecki, Marcin/G-4164-2015; Hernandez Calama, Jose
Maria/H-9127-2015; Barcala, JOSE MIGUEL/I-1105-2015; Bedoya,
Cristina/K-8066-2014; Michelotto, Michele/A-9571-2013; Matorras,
Francisco/I-4983-2015; My, Salvatore/I-5160-2015; Gumus,
Kazim/G-2498-2013; Scodellaro, Luca/K-9091-2014; Josa,
Isabel/K-5184-2014; Navarrete Marin, Jose Javier/K-6412-2014; Marin,
Jesus/K-6991-2014; Gonzalez Suarez, Rebeca/L-6128-2014; Calvo Alamillo,
Enrique/L-1203-2014; Paulini, Manfred/N-7794-2014; Vogel,
Helmut/N-8882-2014; Ferguson, Thomas/O-3444-2014; Ragazzi,
Stefano/D-2463-2009; Benussi, Luigi/O-9684-2014; Russ,
James/P-3092-2014; Grandi, Claudio/B-5654-2015; Janssen,
Xavier/E-1915-2013; Alves, Gilvan/C-4007-2013; Santoro,
Alberto/E-7932-2014; Codispoti, Giuseppe/F-6574-2014; Bellan,
Riccardo/G-2139-2014; Petrucci, Andrea/J-4207-2014; Gribushin,
Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Molinero,
Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014; Mundim,
Luiz/A-1291-2012; Santaolalla, Javier/C-3094-2013; Gavrilov,
Gennady/C-6260-2013; Rolandi, Luigi (Gigi)/E-8563-2013; Zalewski,
Piotr/H-7335-2013; Cavallo, Nicola/F-8913-2012; Dvornikov,
Oleg/I-7207-2013; Hill, Christopher/B-5371-2012; Kuleshov,
Sergey/D-9940-2013; Troitsky, Sergey/C-1377-2014; Marlow,
Daniel/C-9132-2014; Oguri, Vitor/B-5403-2013; Ruiz, Alberto/E-4473-2011;
Stahl, Achim/E-8846-2011; Hektor, Andi/G-1804-2011; Wulz,
Claudia-Elisabeth/H-5657-2011; Chen, Jie/H-6210-2011; Bolton,
Tim/A-7951-2012; Krammer, Manfred/A-6508-2010; Horvath,
Dezso/A-4009-2011; Langenegger, Urs/A-4578-2008; Palinkas,
Jozsef/B-2993-2011; Romaniuk, Ryszard/B-9140-2011; Ganjour,
Serguei/D-8853-2011; Tinoco Mendes, Andre David/D-4314-2011; Lokhtin,
Igor/D-7004-2012; Kodolova, Olga/D-7158-2012; Dudko, Lev/D-7127-2012;
Snigirev, Alexander/D-8912-2012; Chipaux, Remi/G-1145-2010; Servoli,
Leonello/E-6766-2012; Tomei, Thiago/E-7091-2012; Focardi,
Ettore/E-7376-2012; Fruhwirth, Rudolf/H-2529-2012; Azzi,
Patrizia/H-5404-2012; Torassa, Ezio/I-1788-2012; Giacomelli,
Paolo/B-8076-2009; Jeitler, Manfred/H-3106-2012; Venturi,
Andrea/J-1877-2012; de Jesus Damiao, Dilson/G-6218-2012; Montanari,
Alessandro/J-2420-2012; Amapane, Nicola/J-3683-2012; tosi,
mia/J-5777-2012; Klyukhin, Vyacheslav/D-6850-2012; Petrushanko,
Sergey/D-6880-2012; Raidal, Martti/F-4436-2012; Vardanyan,
Irina/K-7981-2012; Novaes, Sergio/D-3532-2012; Della Ricca,
Giuseppe/B-6826-2013; Kadastik, Mario/B-7559-2008
OI Luukka, Panja/0000-0003-2340-4641; Goldstein, Joel/0000-0003-1591-6014;
Sogut, Kenan/0000-0002-9682-2855; Giubilato, Piero/0000-0003-4358-5355;
Gallinaro, Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Gutsche,
Oliver/0000-0002-8015-9622; Torassa, Ezio/0000-0003-2321-0599; Jun, Soon
Yung/0000-0003-3370-6109; Toback, David/0000-0003-3457-4144; Mackay,
Catherine/0000-0003-4252-6740; HSIUNG, YEE/0000-0003-4801-1238; Bonnett
Del Alamo, Miguel Reinaldo/0000-0002-1011-8411; Faccioli,
Pietro/0000-0003-1849-6692; Korenkov, Vladimir/0000-0002-2342-7862;
Heath, Helen/0000-0001-6576-9740; Martelli,
Arabella/0000-0003-3530-2255; Abbiendi, Giovanni/0000-0003-4499-7562;
Levchenko, Petr/0000-0003-4913-0538; Uliyanov,
Alexey/0000-0001-6935-8949; Arneodo, Michele/0000-0002-7790-7132;
Sciacca, Crisostomo/0000-0002-8412-4072; Varela,
Joao/0000-0003-2613-3146; Leonidopoulos, Christos/0000-0002-7241-2114;
Blekman, Freya/0000-0002-7366-7098; Ghezzi, Alessio/0000-0002-8184-7953;
bianco, stefano/0000-0002-8300-4124; Demaria,
Natale/0000-0003-0743-9465; Benaglia, Andrea Davide/0000-0003-1124-8450;
Covarelli, Roberto/0000-0003-1216-5235; Staiano,
Amedeo/0000-0003-1803-624X; Ciulli, Vitaliano/0000-0003-1947-3396;
Tonelli, Guido Emilio/0000-0003-2606-9156; Beuselinck,
Raymond/0000-0003-2613-7446; Stober, Fred/0000-0003-2620-3159; Diemoz,
Marcella/0000-0002-3810-8530; Hamel de Monchenault,
Gautier/0000-0002-3872-3592; Landsberg, Greg/0000-0002-4184-9380; Rizzi,
Andrea/0000-0002-4543-2718; Gershtein, Yuri/0000-0002-4871-5449;
Tricomi, Alessia Rita/0000-0002-5071-5501; CALZOLARI,
FEDERICO/0000-0002-5510-3061; Malik, Sudhir/0000-0002-6356-2655;
Dharmaraatna, Welathantri/0000-0002-6366-837X; Giacomelli,
Paolo/0000-0002-6368-7220; Fassi, Farida/0000-0002-6423-7213; Bilki,
Burak/0000-0001-9515-3306; Costa, Salvatore/0000-0001-9919-0569; Lloret
Iglesias, Lara/0000-0002-0157-4765; Kasemann,
Matthias/0000-0002-0429-2448; Donvito, Giacinto/0000-0002-0628-1080;
Petragnani, Giulio/0000-0002-0819-6509; Sguazzoni,
Giacomo/0000-0002-0791-3350; WANG, MIN-ZU/0000-0002-0979-8341; Ligabue,
Franco/0000-0002-1549-7107; Longo, Egidio/0000-0001-6238-6787; Baarmand,
Marc/0000-0002-9792-8619; Nervo, Marco/0000-0002-9898-7346; Boccali,
Tommaso/0000-0002-9930-9299; Menasce, Dario Livio/0000-0002-9918-1686;
Bargassa, Pedrame/0000-0001-8612-3332; Mrenna,
Stephen/0000-0001-8731-160X; Govoni, Pietro/0000-0002-0227-1301;
Tuominen, Eija/0000-0002-7073-7767; Yazgan, Efe/0000-0001-5732-7950;
Gerbaudo, Davide/0000-0002-4463-0878; Vieira de Castro Ferreira da
Silva, Pedro Manuel/0000-0002-5725-041X; Actis,
Oxana/0000-0001-8851-3983; Lazzizzera, Ignazio/0000-0001-5092-7531;
Bean, Alice/0000-0001-5967-8674; Cordonnier, Agnes/0000-0002-4216-3524;
Paganoni, Marco/0000-0003-2461-275X; Seixas, Joao/0000-0002-7531-0842;
Vilela Pereira, Antonio/0000-0003-3177-4626; Sznajder,
Andre/0000-0001-6998-1108; Haj Ahmad, Wael/0000-0003-1491-0446; Xie,
Si/0000-0003-2509-5731; Leonardo, Nuno/0000-0002-9746-4594; Goh,
Junghwan/0000-0002-1129-2083; Muelmenstaedt,
Johannes/0000-0003-1105-6678; Rovelli, Tiziano/0000-0002-9746-4842;
Altsybeev, Igor/0000-0002-8079-7026; TUVE',
Cristina/0000-0003-0739-3153; Gulmez, Erhan/0000-0002-6353-518X; KIM,
Tae Jeong/0000-0001-8336-2434; Flix, Josep/0000-0003-2688-8047; Ozdemir,
Kadri/0000-0002-0103-1488; Sen, Sercan/0000-0001-7325-1087;
D'Alessandro, Raffaello/0000-0001-7997-0306; Trocsanyi,
Zoltan/0000-0002-2129-1279; Konecki, Marcin/0000-0001-9482-4841;
Hernandez Calama, Jose Maria/0000-0001-6436-7547; Barcala, JOSE
MIGUEL/0000-0002-1092-7091; Bedoya, Cristina/0000-0001-8057-9152;
Michelotto, Michele/0000-0001-6644-987X; Matorras,
Francisco/0000-0003-4295-5668; My, Salvatore/0000-0002-9938-2680; Gumus,
Kazim/0000-0002-1450-6868; Scodellaro, Luca/0000-0002-4974-8330;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070;
Codispoti, Giuseppe/0000-0003-0217-7021; Petrucci,
Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Mundim, Luiz/0000-0001-9964-7805;
Rolandi, Luigi (Gigi)/0000-0002-0635-274X; Hill,
Christopher/0000-0003-0059-0779; Kuleshov, Sergey/0000-0002-3065-326X;
Troitsky, Sergey/0000-0001-6917-6600; Ruiz, Alberto/0000-0002-3639-0368;
Stahl, Achim/0000-0002-8369-7506; Hektor, Andi/0000-0001-7873-8118;
Wulz, Claudia-Elisabeth/0000-0001-9226-5812; Krammer,
Manfred/0000-0003-2257-7751; Romaniuk, Ryszard/0000-0002-5710-4041;
Tinoco Mendes, Andre David/0000-0001-5854-7699; Dudko,
Lev/0000-0002-4462-3192; Servoli, Leonello/0000-0003-1725-9185; Tomei,
Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267; Azzi,
Patrizia/0000-0002-3129-828X; de Jesus Damiao,
Dilson/0000-0002-3769-1680; Montanari, Alessandro/0000-0003-2748-6373;
Amapane, Nicola/0000-0001-9449-2509; Klyukhin,
Vyacheslav/0000-0002-8577-6531; Novaes, Sergio/0000-0003-0471-8549;
Della Ricca, Giuseppe/0000-0003-2831-6982;
FU FMSR (Austria); FNRS (Belgium); FWO (Belgium); CNPq (Brazil); CAPES
(Brazil); FAPERJ (Brazil); FAPESP (Brazil); MES (Bulgaria); CERN
(China); CAS (China); MoST (China); NSFC (China); COLCIEN-CIAS
(Colombia); MSES (Croatia); RPF (Cyprus); Academy of Sciences (Estonia);
NICPB (Estonia); Academy of Finland (Finland); ME (Finland); HIP
(Finland); CEA (France); CNRS/IN2P3 (France); BMBF (Germany); DFG
(Germany); HGF (Germany); GSRT (Greece); OTKA (Hungary); NKTH (Hungary);
DAE (India); DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV (Mexico); CONACYT (Mexico); SEP
(Mexico); UASLP-FAI (Mexico); PAEC (Pakistan); SCSR (Poland); FCT
(Portugal); JINR (Armenia); JINR (Belarus); JINR (Georgia); JINR
(Ukraine); JINR (Uzbekistan); MST (Russia); MAE (Russia); MSTDS
(Serbia); MICINN (Spain); CPAN (Spain); Swiss Funding Agencies
(Switzerland); NSC (Taipei); TUBITAK (Turkey); TAEK (Turkey); STFC
(United Kingdom); DOE (USA); NSF (USA); European Union; Leventis
Foundation; A. P. Sloan Foundation; Alexander von Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIEN-CIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 17
TC 28
Z9 28
U1 2
U2 52
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03020
DI 10.1088/1748-0221/5/03/T03020
PG 42
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100013
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Uhwirth, RF
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
De Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Ofbeck, RS
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
Litomin, A
Makarenko, V
Marfin, I
Mossolov, V
Shumeiko, N
Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
Fedorov, A
Karneyeu, A
Korzhik, M
Panov, V
Zuyeuski, R
Kuchinsky, P
Beaumont, W
Benucci, L
Cardaci, M
De Wolf, EA
Delmeire, E
Druzhkin, D
Hashemi, M
Janssen, X
Maes, T
Mucibello, L
Ochesanu, S
Rougny, R
Selvaggi, M
Van Haevermaet, H
Van Mechelen, P
Van Remortel, N
Adler, V
Beauceron, S
Blyweert, S
D'Hondt, J
De Weirdt, S
Devroede, O
Heyninck, J
Kalogeropoulos, A
Maes, J
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Mozer, MU
Tavernier, S
Van Doninck, W
Van Mulders, P
Villella, I
Bouhali, O
Chabert, EC
Charaf, O
Clerbaux, B
De Lentdecker, G
Dero, V
Elgammal, S
Gay, APR
Hammad, GH
Marage, PE
Rugovac, S
Velde, CV
Vanlaer, P
Wickens, J
Grunewald, M
Klein, B
Marinov, A
Ryckbosch, D
Thyssen, F
Tytgat, M
Vanelderen, L
Verwilligen, P
Basegmez, S
Bruno, G
Caudron, J
Delaere, C
Demin, P
Favart, D
Giammanco, A
Gregoire, G
Lemaitre, V
Militaru, O
Ovyn, S
Piotrzkowski, K
Quertenmont, L
Schul, N
Beliy, N
Daubie, E
Alves, GA
Pol, ME
Souza, MHG
Carvalho, W
Damiao, DD
Martins, CD
De Souza, SF
Mundim, L
Oguri, V
Santoro, A
Do Amaral, SMS
Sznajder, A
Tomei, TRFP
Dias, MAF
Gregores, EM
Novaes, SF
Abadjiev, K
Anguelov, T
Damgov, J
Darmenov, N
Dimitrov, L
Genchev, V
Iaydjiev, P
Piperov, S
Stoykova, S
Sultanov, G
Trayanov, R
Vankov, I
Dimitrov, A
Dyulendarova, M
Kozhuharov, V
Litov, L
Marinova, E
Mateev, M
Pavlov, B
Petkov, P
Toteva, Z
Chen, GM
Chen, HS
Guan, W
Jiang, CH
Liang, D
Liu, B
Meng, X
Tao, J
Wang, J
Wang, Z
Xue, Z
Zhang, Z
Ban, Y
Cai, J
Ge, Y
Guo, S
Hu, Z
Mao, Y
Qian, SJ
Teng, H
Zhu, B
Avila, C
Ruiz, MB
Montoya, CAC
Gomez, A
Moreno, BG
Rios, AAO
Oliveros, AFO
Romero, DR
Sanabria, JC
Godinovic, N
Lelas, K
Plestina, R
Polic, D
Puljak, I
Antunovic, Z
Dzelalija, M
Brigljevic, V
Duric, S
Kadija, K
Morovic, S
Fereos, R
Galanti, M
Mousa, J
Papadakis, A
Ptochos, F
Razis, PA
Tsiakkouri, D
Zinonos, Z
Hektor, A
Kadastik, M
Kannike, K
Muentel, M
Raidal, M
Rebane, L
Anttila, E
Czellar, S
Harkonen, J
Heikkinen, A
Karimaki, V
Kinnunen, R
Klem, J
Kortelainen, MJ
Lampen, T
Lassila-Perini, K
Lehti, S
Linden, T
Luukka, P
Maenpaa, T
Nysten, J
Tuominen, E
Tuominiemi, J
Ungaro, D
Wendland, L
Banzuzi, K
Korpela, A
Tuuva, T
Nedelec, P
Sillou, D
Besancon, M
Chipaux, R
Dejardin, M
Denegri, D
Descamps, J
Fabbro, B
Faure, JL
Ferri, F
Ganjour, S
Gentit, FX
Givernaud, A
Gras, P
De Monchenault, GH
Jarry, P
Lemaire, MC
Locci, E
Malcles, J
Marionneau, M
Millischer, L
Rander, J
Rosowsky, A
Rousseau, D
Titov, M
Verrecchia, P
Baffioni, S
Bianchini, L
Bluj, M
Busson, P
Charlot, C
Dobrzynski, L
de Cassagnac, RG
Haguenauer, M
Mine, P
Paganini, P
Sirois, Y
Thiebaux, C
Zabi, A
Agram, JL
Besson, A
Bloch, D
Bodin, D
Brom, JM
Conte, E
Drouhin, F
Fontaine, JC
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Goerlach, U
Gross, L
Juillot, P
Le Bihan, AC
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Baty, C
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Blaha, J
Boudoul, G
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Chierici, R
Contardo, D
Depasse, P
Dupasquier, T
El Mamouni, H
Fassi, F
Fay, J
Gascon, S
Ille, B
Kurca, T
Le Grand, T
Lethuillier, M
Lumb, N
Mirabito, L
Perries, S
Donckt, MV
Verdier, P
Djaoshvili, N
Roinishvili, N
Roinishvili, V
Amaglobeli, N
Adolphi, R
Anagnostou, G
Brauer, R
Braunschweig, W
Edelhoff, M
Esser, H
Feld, L
Karpinski, W
Khomich, A
Klein, K
Mohr, N
Ostaptchouk, A
Pandoulas, D
Pierschel, G
Raupach, F
Schael, S
von Dratzig, AS
Schwering, G
Sprenger, D
Thomas, M
Weber, M
Wittmer, B
Wlochal, M
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de Abril, M. Magrans
Mohapatra, A.
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Polese, G.
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Wenman, D.
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White, A.
CA CMS Collaboration
TI Precise mapping of the magnetic field in the CMS barrel yoke using
cosmic rays
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Muon spectrometers; Large detector systems for particle and
astroparticle physics
AB The CMS detector is designed around a large 4 T superconducting solenoid, enclosed in a 12 000-tonne steel return yoke. A detailed map of the magnetic field is required for the accurate simulation and reconstruction of physics events in the CMS detector, not only in the inner tracking region inside the solenoid but also in the large and complex structure of the steel yoke, which is instrumented with muon chambers. Using a large sample of cosmic muon events collected by CMS in 2008, the field in the steel of the barrel yoke has been determined with a precision of 3 to 8% depending on the location.
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[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Bhattacharya, S.; Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Bhattacharya, S.; Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Scuola Normale Super Pisa, Pisa, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.] Univ Perugia, I-06100 Perugia, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Univ Roma La Sapienza, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Turin, Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Univ Trieste, Trieste, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius Univ, Vilnius, Lithuania.
[Valdez, H. Castilla; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.; Gorski, M.; Kazana, M.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.; Smirnov, I.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.; Gavrilov, V.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Petrov, P.; Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; Troconiz, J. F. de; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, IFCA, CSIC, E-39005 Santander, Spain.
[Hammer, J.; Van Doninck, W.; Piotrzkowski, K.; Abadjiev, K.; Darmenov, N.; Genchev, V.; Toteva, Z.; Fetchenhauer, G.; Kreuzer, P.; Mankel, R.; Saout, C.; Panagiotou, A.; Bencze, G.; Hajdu, C.; Szillasi, Z.; Dallavalle, G. M.; Giunta, M.; Lenzi, P.; Malberti, M.; Cimmino, A.; De Gruttola, M.; Azzi, P.; Bellan, P.; Spagnolo, P.; Tenchini, R.; Tonelli, G.; Cavallari, F.; Trapani, P. P.; Kossov, M.; Grishin, V.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.; Adiguzel, A.; Sidiropoulos, G.; Virdee, T.; Erhan, S.; Afaq, M. A.; Lusin, S.; Tkaczyk, S.; Trentadue, R.; Crotty, I.; Hall-Wilton, R.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Weber, M.; Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Da Silva Di Calafiori, D. R.; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.] Natl Cent Univ, Chungli, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Hansen, M.; Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.; Murray, M.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; John, J. St.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Speer, T.; Tsang, K. V.; Nguyen, C. N.] Brown Univ, Providence, RI 02912 USA.
[Calderon, A.; Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Liu, H.; Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Gokce, A. Azman; Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Sharma, A.; Banerjee, S.; Evans, D.; Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Hufnagel, D.; James, E.; Jensen, H.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sexton-Kennedy, E.; Sfiligoi, I.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Yarba, J.; Yumiceva, F.; Yun, J. C.; Johnson, K. F.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Linn, A.; Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Wood, J. S.; Zhukova, V.; Sanders, D. A.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Rusakov, S. V.; Schroeder, M.; Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Kumar, A.; Baur, U.; Iashvili, I.; Kharchilava, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Osborne, D.; Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Schmitt, M.; Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhattacharya, S.; Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Bluj, M.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Agram, J. -L.; Conte, E.; Drouhin, F.; Fontaine, J. -C.] Univ Haute Alsace, Mulhouse, France.
[Fassi, F.] IN2P3, Ctr Calcul, Villeurbanne, France.
[Horvath, D.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
[Fabozzi, F.] Univ Basilicata, I-85100 Potenza, Italy.
[Baccaro, S.] ENEA, Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Jovanovic, D.; Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade 11001, Serbia.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Sphicas, P.] Univ Athens, Athens, Greece.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Ozkorucuklu, S.] Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cankocak, K.] Istanbul Tech Univ, Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
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Joao/K-4829-2016;
OI Cordonnier, Agnes/0000-0002-4216-3524; Paganoni,
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FU FMSR (Austria); FNRS (Belgium); CNPq (Brazil); CAPES (Brazil); FAPERJ
(Brazil); FAPESP (Brazil); MES (Bulgaria); CERN; CAS (China); MoST
(China); NSFC (China); COLCIENCIAS (Colombia); MSES (Croatia); RPF
(Cyprus); Academy of Sciences (Estonia); Academy of Finland (Finland);
ME (Finland); HIP (Finland); CEA (France); BMBF (Germany); DFG
(Germany); HGF (Germany); GSRT (Greece); OTKA (Hungary); DAE (India);
IPM (Iran); SFI (Ireland); INFN (Italy); NRF (Korea); LAS (Lithuania);
CINVESTAV (Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR
(Armenia); MST (Russia); MSTDS (Serbia); MICINN (Spain); Swiss Funding
Agencies (Switzerland); NSC (Taipei); TUBITAK (Turkey); STFC (United
Kingdom); DOE (USA); European Union; Leventis Foundation; A. P. Sloan
Foundation; Alexander von Humboldt Foundation; FWO (Belgium); NICPB
(Estonia); CNRS/IN2P3 (France); NKTH (Hungary); DST (India); SEP
(Mexico); UASLP-FAI (Mexico); JINR (Belarus); JINR (Georgia); JINR
(Ukraine); JINR (Uzbekistan); MAE (Russia); CPAN (Spain); TAEK (Turkey);
NSF (USA)
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIENCIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 18
TC 28
Z9 28
U1 2
U2 51
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03021
DI 10.1088/1748-0221/5/03/T03021
PG 37
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100012
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Ansel, SH
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
Kasieczka, G
Kastner, K
Krammer, M
Liko, D
de Abril, IM
Mikulec, I
Mittermayr, F
Neuherz, B
Oberegger, M
Padrta, M
Pernicka, M
Rohringer, H
Schmid, S
Schofbeck, R
Schreiner, T
Stark, R
Steininger, H
Strauss, J
Taurok, A
Teischinger, F
Themel, T
Uhl, D
Wagner, P
Waltenberger, W
Walzel, G
Widl, E
Wulz, CE
Chekhovsky, V
Dvornikov, O
Emeliantchik, I
Litomin, A
Makarenko, V
Marfin, I
Mossolov, V
Shumeiko, N
Solin, A
Stefanovitch, R
Gonzalez, JS
Tikhonov, A
Fedorov, A
Karneyeu, A
Korzhik, M
Panov, V
Zuyeuski, R
Kuchinsky, P
Beaumont, W
Benucci, L
Cardaci, M
De Wolf, EA
Delmeire, E
Druzhkin, D
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Van Haevermaet, H
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Do Amaral, SMS
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Dias, MAF
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Abadjiev, K
Anguelov, T
Damgov, J
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Genchev, V
Iaydjiev, P
Piperov, S
Stoykova, S
Sultanov, G
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Dyulendarova, M
Kozhuharov, V
Litov, L
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Mateev, M
Pavlov, B
Petkov, P
Toteva, Z
Chen, GM
Chen, HS
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Jiang, CH
Liang, D
Liu, B
Meng, X
Tao, J
Wang, J
Wang, Z
Xue, Z
Zhang, Z
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Cai, J
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Qian, SJ
Teng, H
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Gomez, A
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Oliveros, AFO
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de Monchenault, GH
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Manna, N
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Natali, S
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Papagni, G
Piccolomo, S
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Pinto, C
Pompili, A
Pugliese, G
Rajan, R
Ranieri, A
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Shinde, Y
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CA CMS Collaboration
TI Performance of CMS muon reconstruction in cosmic-ray events
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Muon spectrometers; Large detector systems for particle and
astroparticle physics
AB The performance of muon reconstruction in CMS is evaluated using a large data sample of cosmic-ray muons recorded in 2008. Efficiencies of various high-level trigger, identification, and reconstruction algorithms have been measured for a broad range of muon momenta, and were found to be in good agreement with expectations from Monte Carlo simulation. The relative momentum resolution for muons crossing the barrel part of the detector is better than 1% at 10 GeV/c and is about 8% at 500 GeV/c, the latter being only a factor of two worse than expected with ideal alignment conditions. Muon charge misassignment ranges from less than 0.01% at 10 GeV/c to about 1% at 500 GeV/c.
C1 [Chatrchyan, S.; Khachatryan, V.; Sirunyan, A. M.] Yerevan Phys Inst, Yerevan 375036, Armenia.
[Adam, W.; Arnold, B.; Bergauer, H.; Bergauer, T.; Dragicevic, M.; Eichberger, M.; Eroe, J.; Friedl, M.; Fruehwirth, R.; Ghete, V. M.; Hammer, J.; Ansel, S. H.; Hoch, M.; Hoermann, N.; Hrubec, J.; Jeitler, M.; Kasieczka, G.; Kastner, K.; Krammer, M.; Liko, D.; de Abril, I. Magrans; Mikulec, I.; Mittermayr, F.; Neuherz, B.; Oberegger, M.; Padrta, M.; Pernicka, M.; Rohringer, H.; Schmid, S.; Schoefbeck, R.; Schreiner, T.; Stark, R.; Steininger, H.; Strauss, J.; Taurok, A.; Teischinger, F.; Themel, T.; Uhl, D.; Wagner, P.; Waltenberger, W.; Walzel, G.; Widl, E.; Wulz, C. -E.] OeAW, Inst Hochenergiephys, Vienna, Austria.
[Chekhovsky, V.; Dvornikov, O.; Emeliantchik, I.; Litomin, A.; Makarenko, V.; Marfin, I.; Mossolov, V.; Shumeiko, N.; Solin, A.; Stefanovitch, R.; Gonzalez, J. Suarez; Tikhonov, A.] Natl Ctr Particle & High Energy Phys, Minsk, Byelarus.
[Fedorov, A.; Karneyeu, A.; Korzhik, M.; Panov, V.; Zuyeuski, R.] Res Inst Nucl Problems, Minsk, Byelarus.
[Kuchinsky, P.] Res Inst Appl Phys Problems, Minsk, Byelarus.
[Beaumont, W.; Benucci, L.; Cardaci, M.; De Wolf, E. A.; Delmeire, E.; Druzhkin, D.; Hashemi, M.; Janssen, X.; Maes, T.; Mucibello, L.; Ochesanu, S.; Rougny, R.; Selvaggi, M.; Van Haevermaet, H.; Van Mechelen, P.; Van Remortel, N.] Univ Antwerp, B-2020 Antwerp, Belgium.
[Adler, V.; Beauceron, S.; Blyweert, S.; D'Hondt, J.; De Weirdt, S.; Devroede, O.; Heyninck, J.; Kalogeropoulos, A.; Maes, J.; Maes, M.; Mozer, M. U.; Tavernier, S.; Van Doninck, W.; Van Mulders, P.; Villella, I.] Vrije Univ Brussel, Brussels, Belgium.
[Bouhali, O.; Chabert, E. C.; Charaf, O.; Clerbaux, B.; De Lentdecker, G.; Dero, V.; Elgammal, S.; Gay, A. P. R.; Hammad, G. H.; Marage, P. E.; Rugovac, S.; Velde, C. Vander; Vanlaer, P.; Wickens, J.] Univ Libre Brussels, Brussels, Belgium.
[Grunewald, M.; Klein, B.; Marinov, A.; Ryckbosch, D.; Thyssen, F.; Tytgat, M.; Vanelderen, L.; Verwilligen, P.] Univ Ghent, B-9000 Ghent, Belgium.
[Basegmez, S.; Bruno, G.; Caudron, J.; Delaere, C.; Demin, P.; Favart, D.; Giammanco, A.; Gregoire, G.; Lemaitre, V.; Militaru, O.; Ovyn, S.; Piotrzkowski, K.; Quertenmont, L.; Schul, N.] Catholic Univ Louvain, B-1348 Louvain, Belgium.
[Beliy, N.; Daubie, E.] Univ Mons, B-7000 Mons, Belgium.
[Alves, G. A.; Pol, M. E.; Souza, M. H. G.] Ctr Brasileiro Pesquisas Fis, Rio De Janeiro, Brazil.
[Carvalho, W.; De Jesus Damiao, D.; De Oliveira Martins, C.; Fonseca De Souza, S.; Mundim, L.; Oguri, V.; Santoro, A.; Silva Do Amaral, S. M.; Sznajder, A.] Univ Estado Rio de Janeiro, BR-20550011 Rio De Janeiro, Brazil.
[Fernandez Perez Tomei, T. R.; Ferreira Dias, M. A.; Gregores, E. M.; Novaes, S. F.] Univ Estadual Paulista, Inst Fis Teor, BR-01405 Sao Paulo, Brazil.
[Abadjiev, K.; Anguelov, T.; Damgov, J.; Darmenov, N.; Dimitrov, L.; Genchev, V.; Iaydjiev, P.; Piperov, S.; Stoykova, S.; Sultanov, G.; Trayanov, R.; Vankov, I.] Bulgarian Acad Sci, Inst Nucl Res & Nucl Energy, Sofia, Bulgaria.
[Dimitrov, A.; Dyulendarova, M.; Kozhuharov, V.; Litov, L.; Marinova, E.; Mateev, M.; Pavlov, B.; Petkov, P.; Toteva, Z.] Univ Sofia, BU-1126 Sofia, Bulgaria.
[Chen, G. M.; Chen, H. S.; Guan, W.; Jiang, C. H.; Liang, D.; Liu, B.; Meng, X.; Tao, J.; Wang, J.; Wang, Z.; Xue, Z.; Zhang, Z.] Inst High Energy Phys, Beijing 100039, Peoples R China.
[Ban, Y.; Cai, J.; Ge, Y.; Guo, S.; Hu, Z.; Mao, Y.; Qian, S. J.; Teng, H.; Zhu, B.] Peking Univ, State Key Lab Nucl Phys & Tech, Beijing 100871, Peoples R China.
[Avila, C.; Baquero Ruiz, M.; Carrillo Montoya, C. A.; Gomez, A.; Gomez Moreno, B.; Ocampo Rios, A. A.; Osorio Oliveros, A. F.; Reyes Romero, D.; Sanabria, C.] Univ Los Andes, Bogota, Colombia.
[Godinovic, N.; Lelas, K.; Plestina, R.; Polic, D.; Puljak, I.] Tech Univ Split, Split, Croatia.
[Antunovic, Z.; Dzelalija, M.] Univ Split, Split, Croatia.
[Brigljevic, V.; Duric, S.; Kadija, K.; Morovic, S.] Rudjer Boskovic Inst, Zagreb, Croatia.
[Fereos, R.; Galanti, M.; Mousa, J.; Papadakis, A.; Ptochos, F.; Razis, P. A.; Tsiakkouri, D.; Zinonos, Z.] Univ Cyprus, Nicosia, Cyprus.
[Hektor, A.; Kadastik, M.; Kannike, K.; Muentel, M.; Raidal, M.; Rebane, L.] NICPB, Tallinn, Estonia.
[Anttila, E.; Czellar, S.; Harkonen, J.; Heikkinen, A.; Karimaki, V.; Kinnunen, R.; Klem, J.; Kortelainen, M. J.; Lampen, T.; Lassila-Perini, K.; Lehti, S.; Linden, T.; Luukka, P.; Maenpaa, T.; Nysten, J.; Tuominen, E.; Tuominiemi, J.; Ungaro, D.; Wendland, L.] Helsinki Inst Phys, Helsinki, Finland.
[Banzuzi, K.; Korpela, A.; Tuuva, T.] Lappeenranta Univ Technol, Lappeenranta, Finland.
[Nedelec, P.; Sillou, D.] CNRS, IN2P3, Lab Annecy Le Vieux Phys Particules, Annecy Le Vieux, France.
[Besancon, M.; Chipaux, R.; Dejardin, M.; Denegri, D.; Descamps, J.; Fabbro, B.; Faure, J. L.; Ferri, F.; Ganjour, S.; Gentit, F. X.; Givernaud, A.; Gras, P.; de Monchenault, G. Hamel; Jarry, P.; Lemaire, M. C.; Locci, E.; Malcles, J.; Marionneau, M.; Millischer, L.; Rander, J.; Rosowsky, A.; Rousseau, D.; Titov, M.; Verrecchia, P.] CEA Saclay, DSM, IRFU, F-91191 Gif Sur Yvette, France.
[Baffioni, S.; Bianchini, L.; Bluj, M.; Busson, P.; Charlot, C.; Dobrzynski, L.; de Cassagnac, R. Granier; Haguenauer, M.; Mine, P.; Paganini, P.; Sirois, Y.; Thiebaux, C.; Zabi, A.] Ecole Polytech, CNRS, IN2P3, Lab Leprince Ringuet, F-91128 Palaiseau, France.
[Agram, J. -L.; Besson, A.; Bloch, D.; Bodin, D.; Brom, J. -M.; Conte, E.; Drouhin, F.; Fontaine, J. -C.; Gele, D.; Goerlach, U.; Gross, L.; Juillot, P.; Le Bihan, A. -C.; Patois, Y.; Speck, J.; Van Hove, P.] Univ Haute Alsace Mulhouse, Univ Strasbourg, Inst Pluridisciplinaire Hubert Curien, CNRS,IN2P3, Strasbourg, France.
[Baty, C.; Bedjidian, M.; Blaha, J.; Boudoul, G.; Brun, H.; Chanon, N.; Chierici, R.; Contardo, D.; Depasse, P.; Dupasquier, T.; El Mamouni, H.; Fassi, F.; Fay, J.; Gascon, S.; Ille, B.; Kurca, T.; Le Grand, T.; Lethuillier, M.; Lumb, N.; Mirabito, L.; Perries, S.; Donckt, M. Vander; Verdier, P.] Univ Lyon 1, CNRS, Inst Phys Nucl Lyon, IN2P3, F-69622 Villeurbanne, France.
[Djaoshvili, N.; Roinishvili, N.; Roinishvili, V.] Acad Sci, E Andronikashvili Inst Phys, Tbilisi, Rep of Georgia.
[Amaglobeli, N.] Tbilisi State Univ, Inst High Energy Phys & Informatizat, GE-380086 Tbilisi, Rep of Georgia.
[Adolphi, R.; Anagnostou, G.; Brauer, R.; Braunschweig, W.; Edelhoff, M.; Esser, H.; Feld, L.; Karpinski, W.; Khomich, A.; Klein, K.; Mohr, N.; Ostaptchouk, A.; Pandoulas, D.; Pierschel, G.; Raupach, F.; Schael, S.; von Dratzig, A. Schultz; Schwering, G.; Sprenger, D.; Thomas, M.; Weber, M.; Wittmer, B.; Wlochal, M.] Rhein Westfal TH Aachen, Inst Phys 1, Aachen, Germany.
[Actis, O.; Altenhoefer, G.; Bender, W.; Biallass, P.; Erdmann, M.; Fetchenhauer, G.; Frangenheim, J.; Hebbeker, T.; Hilgers, G.; Hinzmann, A.; Hoepfner, K.; Hof, C.; Kirsch, M.; Klimkovich, T.; Kreuzer, P.; Lanskey, D.; Merschmeyer, M.; Meyer, A.; Philipps, B.; Pieta, H.; Reithler, H.; Schmitz, S. A.; Sonnenschein, L.; Sowa, M.; Steggemann, J.; Szczesny, H.; Teyssier, D.; Zeidler, C.] Rhein Westfal TH Aachen, Phys Inst A 3, Aachen, Germany.
[Bontenackels, M.; Davids, M.; Duda, M.; Fluegge, G.; Geenen, H.; Giffels, M.; Ahmad, W. Haj; Hermanns, T.; Heydhausen, D.; Kalinin, S.; Kress, T.; Linn, A.; Nowack, A.; Perchalla, L.; Poettgens, M.; Pooth, O.; Sauerland, P.; Stahl, A.; Tornier, D.; Zoeller, M. H.] Rhein Westfal TH Aachen, Phys Inst B 3, Aachen, Germany.
[Martin, M. Aldaya; Behrens, U.; Borras, K.; Campbell, A.; Castro, E.; Dammann, D.; Eckerlin, G.; Flossdorf, A.; Flucke, G.; Geiser, A.; Hatton, D.; Hauk, J.; Jung, H.; Kasemann, M.; Katkov, I.; Kleinwort, C.; Kluge, H.; Knutsson, A.; Kuznetsova, E.; Lange, W.; Lohmann, W.; Mankel, R.; Marienfeld, M.; Meyer, A. B.; Miglioranzi, S.; Mnich, J.; Ohlerich, M.; Olzem, J.; Parenti, A.; Rosemann, C.; Schmidt, R.; Schoerner-Sadenius, T.; Volyanskyy, D.; Wissing, C.; Zeuner, W. D.] DESY, Hamburg, Germany.
[Autermann, C.; Bechtel, F.; Draeger, J.; Eckstein, D.; Gebbert, U.; Kaschube, K.; Kaussen, G.; Klanner, R.; Mura, B.; Naumann-Emme, S.; Nowak, F.; Pein, U.; Sander, C.; Schleper, P.; Schum, T.; Stadie, H.; Steinbrueck, G.; Thomsen, J.; Wolf, R.] Univ Hamburg, Hamburg, Germany.
[Bauer, J.; Bluem, P.; Buege, V.; Cakir, A.; Chwalek, T.; De Boer, W.; Dierlamm, A.; Dirkes, G.; Feindt, M.; Felzmann, U.; Frey, M.; Furgeri, A.; Gruschke, J.; Hackstein, C.; Hartmann, F.; Heier, S.; Heinrich, M.; Held, H.; Hirschbuehl, D.; Hoffmann, K. H.; Honc, S.; Jung, C.; Kuhr, T.; Liamsuwan, T.; Martschei, D.; Mueller, S.; Mueller, Th.; Neuland, M. B.; Niegel, M.; Oberst, O.; Oehler, A.; Ott, J.; Peiffer, T.; Piparo, D.; Quast, G.; Rabbertz, K.; Ratnikov, F.; Ratnikova, N.; Renz, M.; Saout, C.; Sartisohn, G.; Scheurer, A.; Schieferdecker, P.; Schilling, F. -P.; Schott, G.; Simonis, H. J.; Stober, F. M.; Sturm, P.; Troendle, D.; Trunov, A.; Wagner, W.; Wagner-Kuhr, J.; Zeise, M.; Zhukov, V.; Ziebarth, E. B.] Univ Karlsruhe, Inst Expt Kernphys, D-7500 Karlsruhe, Germany.
[Daskalakis, G.; Geralis, T.; Karafasoulis, K.; Kyriakis, A.; Loukas, D.; Markou, A.; Markou, C.; Mavrommatis, C.; Petrakou, E.; Zachariadou, A.] Inst Nucl Phys Demokritos, Aghia Paraskevi, Greece.
[Gouskos, L.; Katsas, P.; Panagiotou, A.] Univ Athens, Athens, Greece.
[Evangelou, I.; Kokkas, P.; Manthos, N.; Papadopoulos, I.; Patras, V.; Triantis, F. A.] Univ Ioannina, GR-45110 Ioannina, Greece.
[Bencze, G.; Boldizsar, L.; Debreczeni, G.; Hajdu, C.; Hernath, S.; Hidas, P.; Horvath, D.; Krajczar, K.; Laszlo, A.; Patay, G.; Sikler, F.; Toth, N.; Vesztergombi, G.] KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
[Beni, N.; Christian, G.; Imrek, J.; Molnar, J.; Novak, D.; Palinkas, J.; Szekely, G.; Szillasi, Z.; Tokesi, K.; Veszpremi, V.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Kapusi, A.; Marian, G.; Raics, P.; Szabo, Z.; Trocsanyi, Z. L.; Ujvari, B.; Zilizi, G.] Univ Debrecen, Debrecen, Hungary.
[Bansal, S.; Bawa, H. S.; Beri, S. B.; Bhatnagar, V.; Jindal, M.; Kaur, M.; Kaur, R.; Kohli, J. M.; Mehta, M. Z.; Nishu, N.; Saini, L. K.; Sharma, A.; Singh, A.; Singh, J. B.; Singh, S. P.] Panjab Univ, Chandigarh 160014, India.
[Ahuja, S.; Arora, S.; Bhattacharya, S.; Chauhan, S.; Choudhary, B. C.; Gupta, P.; Jain, S.; Jha, M.; Kumar, A.; Ranjan, K.; Shivpuri, R. K.; Srivastava, A. K.] Univ Delhi, Delhi 110007, India.
[Choudhury, R. K.; Dutta, D.; Kailas, S.; Kataria, S. K.; Mohanty, A. K.; Pant, L. M.; Shukla, P.; Topkar, A.] Bhabha Atom Res Ctr, Mumbai 400085, Maharashtra, India.
[Aziz, T.; Guchait, M.; Gurtu, A.; Maity, M.; Majumder, D.; Majumder, G.; Mazumdar, K.; Nayak, A.; Saha, A.; Sudhakar, K.] Tata Inst Fundamental Res, EHEP, Bombay 400005, Maharashtra, India.
[Banerjee, S.; Dugad, S.; Mondal, N. K.] Tata Inst Fundamental Res, HECR, Bombay 400005, Maharashtra, India.
[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys & Math IPM, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Univ Bari, Bari, Italy.
[Abbrescia, M.; Barbone, L.; Chiumarulo, F.; Clemente, A.; Colaleo, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Univ Florence, Florence, Italy.
[Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Fabbri, F.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Bicocca, I-20133 Milan, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.] Univ Perugia, I-06100 Perugia, Italy.
[Volpe, R.; Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Volpe, R.; Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Univ Pisa, Pisa, Italy.
[Volpe, R.; Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Univ Roma La Sapienza, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Turin, Turin, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Romero, A.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Andreev, Yu.; Anisimov, A.; Antipov, P.; Dermenev, A.; Gninenko, S.; Golubev, N.; Kirsanov, M.; Krasnikov, N.; Matveev, V.; Pashenkov, A.; Postoev, V. E.; Solovey, A.; Toropin, A.; Troitsky, S.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De La Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Otano, M. Blanco; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, CSIC, IFCA, E-39005 Santander, Spain.
[Hammer, J.; Van Doninck, W.; Piotrzkowski, K.; Abadjiev, K.; Darmenov, N.; Genchev, V.; Toteva, Z.; Fetchenhauer, G.; Kreuzer, P.; Mankel, R.; Saout, C.; Panagiotou, A.; Hajdu, C.; Szillasi, Z.; Dallavalle, G. M.; Giunta, M.; Lenzi, P.; Malberti, M.; Cimmino, A.; De Gruttola, M.; Azzi, P.; Bellan, P.; Spagnolo, P.; Tenchini, R.; Tonelli, G.; Cavallari, F.; Trapani, P. P.; Kossov, M.; Grishin, V.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Giordano, D.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.; Sidiropoulos, G.; Virdee, T.; Erhan, S.; Afaq, M. A.; Lusin, S.; Tkaczyk, S.; Trentadue, R.; Crotty, I.; Hall-Wilton, R.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.] Paul Scherrer Inst, Villigen, Switzerland.
[Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] ETH, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, L. N.; Vergili, M.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; John, J. St.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.; Bean, A.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Halyo, V.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Medvedeva, T.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Wildish, T.; Xie, Z.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Benaglia, A.; Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Agram, J. -L.; Conte, E.; Drouhin, F.; Fontaine, J. -C.] Univ Haute Alsace, Mulhouse, France.
[Fassi, F.] IN2P3, Ctr Calcul, Villeurbanne, France.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
[Fabozzi, F.] Univ Basilicata, I-85100 Potenza, Italy.
[Biasotto, M.; Gulmini, M.] Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
[Baccaro, S.] Casaccia Res Ctr, ENEA, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Jovanovic, D.; Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade 11001, Serbia.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Rolandi, G.] Scuola Normale, Pisa, Italy.
[Rolandi, G.] Sez INFN Pisa, Pisa, Italy.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Demir, D.] Izmir Inst Technol, Izmir, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Ozkorucuklu, S.] Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Cankocak, K.] Istanbul Tech Univ, Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Sznajder, Andre/L-1621-2016; Haj Ahmad, Wael/E-6738-2016; Xie,
Si/O-6830-2016; Leonardo, Nuno/M-6940-2016; Goh, Junghwan/Q-3720-2016;
Govoni, Pietro/K-9619-2016; Tuominen, Eija/A-5288-2017; Yazgan,
Efe/C-4521-2014; Gerbaudo, Davide/J-4536-2012; Flix, Josep/G-5414-2012;
Ozdemir, Kadri/P-8058-2014; korzhik, Mikhail/E-9505-2014; Della Ricca,
Giuseppe/B-6826-2013; Fedorov, Andrei/E-9455-2014; Konovalova,
Nina/D-3882-2014; Cordonnier, Agnes/I-5083-2016; Paganoni,
Marco/A-4235-2016; Kirakosyan, Martin/N-2701-2015; Seixas,
Joao/F-5441-2013; Verwilligen, Piet/M-2968-2014; Vilela Pereira,
Antonio/L-4142-2016; Matorras, Francisco/I-4983-2015; My,
Salvatore/I-5160-2015; Gumus, Kazim/G-2498-2013; Muelmenstaedt,
Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015; Dremin,
Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Altsybeev, Igor/K-6687-2013; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Russ, James/P-3092-2014; Grandi, Claudio/B-5654-2015;
Ahmed, Ijaz/E-9144-2015; Lazzizzera, Ignazio/E-9678-2015; Sen,
Sercan/C-6473-2014; D'Alessandro, Raffaello/F-5897-2015; Trocsanyi,
Zoltan/A-5598-2009; Konecki, Marcin/G-4164-2015; Hernandez Calama, Jose
Maria/H-9127-2015; Barcala, JOSE MIGUEL/I-1105-2015; Bedoya,
Cristina/K-8066-2014; Michelotto, Michele/A-9571-2013; Molinero,
Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014; Scodellaro,
Luca/K-9091-2014; Josa, Isabel/K-5184-2014; Navarrete Marin, Jose
Javier/K-6412-2014; Marin, Jesus/K-6991-2014; Gonzalez Suarez,
Rebeca/L-6128-2014; Calvo Alamillo, Enrique/L-1203-2014; Paulini,
Manfred/N-7794-2014; Vogel, Helmut/N-8882-2014; Ferguson,
Thomas/O-3444-2014; Ragazzi, Stefano/D-2463-2009; Benussi,
Luigi/O-9684-2014; Oguri, Vitor/B-5403-2013; Janssen,
Xavier/E-1915-2013; Alves, Gilvan/C-4007-2013; Santoro,
Alberto/E-7932-2014; Codispoti, Giuseppe/F-6574-2014; Bellan,
Riccardo/G-2139-2014; Petrucci, Andrea/J-4207-2014; Gribushin,
Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Kadastik,
Mario/B-7559-2008; Mundim, Luiz/A-1291-2012; Santaolalla,
Javier/C-3094-2013; Gavrilov, Gennady/C-6260-2013; Rolandi, Luigi
(Gigi)/E-8563-2013; Zalewski, Piotr/H-7335-2013; Cavallo,
Nicola/F-8913-2012; Dvornikov, Oleg/I-7207-2013; Hill,
Christopher/B-5371-2012; Kuleshov, Sergey/D-9940-2013; Troitsky,
Sergey/C-1377-2014; Marlow, Daniel/C-9132-2014; Torassa,
Ezio/I-1788-2012; Giacomelli, Paolo/B-8076-2009; Jeitler,
Manfred/H-3106-2012; Venturi, Andrea/J-1877-2012; de Jesus Damiao,
Dilson/G-6218-2012; Montanari, Alessandro/J-2420-2012; Amapane,
Nicola/J-3683-2012; tosi, mia/J-5777-2012; Klyukhin,
Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012; Raidal,
Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Krammer, Manfred/A-6508-2010; Horvath,
Dezso/A-4009-2011; Langenegger, Urs/A-4578-2008; Palinkas,
Jozsef/B-2993-2011; Romaniuk, Ryszard/B-9140-2011; kaya,
mithat/D-8062-2011; Ruiz, Alberto/E-4473-2011; Stahl, Achim/E-8846-2011;
Hektor, Andi/G-1804-2011; Wulz, Claudia-Elisabeth/H-5657-2011; Chen,
Jie/H-6210-2011; Bolton, Tim/A-7951-2012; Tinoco Mendes, Andre
David/D-4314-2011; Lokhtin, Igor/D-7004-2012; Kodolova,
Olga/D-7158-2012; Dudko, Lev/D-7127-2012; Boos, Eduard/D-9748-2012;
Snigirev, Alexander/D-8912-2012; Chipaux, Remi/G-1145-2010; Servoli,
Leonello/E-6766-2012; Tomei, Thiago/E-7091-2012; Focardi,
Ettore/E-7376-2012; Fruhwirth, Rudolf/H-2529-2012; Azzi,
Patrizia/H-5404-2012; Menasce, Dario Livio/A-2168-2016; Bargassa,
Pedrame/O-2417-2016; Sguazzoni, Giacomo/J-4620-2015; Ligabue,
Franco/F-3432-2014; Fassi, Farida/F-3571-2016; Varela, Joao/K-4829-2016;
OI Sznajder, Andre/0000-0001-6998-1108; Haj Ahmad,
Wael/0000-0003-1491-0446; Xie, Si/0000-0003-2509-5731; Leonardo,
Nuno/0000-0002-9746-4594; Goh, Junghwan/0000-0002-1129-2083; Govoni,
Pietro/0000-0002-0227-1301; Tuominen, Eija/0000-0002-7073-7767; Yazgan,
Efe/0000-0001-5732-7950; Gerbaudo, Davide/0000-0002-4463-0878; Vieira de
Castro Ferreira da Silva, Pedro Manuel/0000-0002-5725-041X; Actis,
Oxana/0000-0001-8851-3983; Flix, Josep/0000-0003-2688-8047; Ozdemir,
Kadri/0000-0002-0103-1488; Della Ricca, Giuseppe/0000-0003-2831-6982;
Cordonnier, Agnes/0000-0002-4216-3524; Paganoni,
Marco/0000-0003-2461-275X; Seixas, Joao/0000-0002-7531-0842; Vilela
Pereira, Antonio/0000-0003-3177-4626; Matorras,
Francisco/0000-0003-4295-5668; My, Salvatore/0000-0002-9938-2680; Gumus,
Kazim/0000-0002-1450-6868; Muelmenstaedt, Johannes/0000-0003-1105-6678;
Rovelli, Tiziano/0000-0002-9746-4842; Altsybeev,
Igor/0000-0002-8079-7026; TUVE', Cristina/0000-0003-0739-3153; Gulmez,
Erhan/0000-0002-6353-518X; KIM, Tae Jeong/0000-0001-8336-2434; Russ,
James/0000-0001-9856-9155; Grandi, Claudio/0000-0001-5998-3070;
Lazzizzera, Ignazio/0000-0001-5092-7531; Sen,
Sercan/0000-0001-7325-1087; D'Alessandro, Raffaello/0000-0001-7997-0306;
Trocsanyi, Zoltan/0000-0002-2129-1279; Konecki,
Marcin/0000-0001-9482-4841; Hernandez Calama, Jose
Maria/0000-0001-6436-7547; Barcala, JOSE MIGUEL/0000-0002-1092-7091;
Bedoya, Cristina/0000-0001-8057-9152; Michelotto,
Michele/0000-0001-6644-987X; Scodellaro, Luca/0000-0002-4974-8330;
Navarrete Marin, Jose Javier/0000-0002-6220-8638; Marin,
Jesus/0000-0002-9049-3667; Gonzalez Suarez, Rebeca/0000-0002-6126-7230;
Calvo Alamillo, Enrique/0000-0002-1100-2963; Paulini,
Manfred/0000-0002-6714-5787; Vogel, Helmut/0000-0002-6109-3023;
Ferguson, Thomas/0000-0001-5822-3731; Ragazzi,
Stefano/0000-0001-8219-2074; Benussi, Luigi/0000-0002-2363-8889;
Codispoti, Giuseppe/0000-0003-0217-7021; Petrucci,
Andrea/0000-0003-2524-8355; Cerrada, Marcos/0000-0003-0112-1691; Oller,
Juan Carlos/0000-0002-2754-2788; Mundim, Luiz/0000-0001-9964-7805;
Rolandi, Luigi (Gigi)/0000-0002-0635-274X; Hill,
Christopher/0000-0003-0059-0779; Kuleshov, Sergey/0000-0002-3065-326X;
Troitsky, Sergey/0000-0001-6917-6600; de Jesus Damiao,
Dilson/0000-0002-3769-1680; Montanari, Alessandro/0000-0003-2748-6373;
Amapane, Nicola/0000-0001-9449-2509; Klyukhin,
Vyacheslav/0000-0002-8577-6531; Novaes, Sergio/0000-0003-0471-8549;
Krammer, Manfred/0000-0003-2257-7751; Romaniuk,
Ryszard/0000-0002-5710-4041; Ruiz, Alberto/0000-0002-3639-0368; Stahl,
Achim/0000-0002-8369-7506; Hektor, Andi/0000-0001-7873-8118; Wulz,
Claudia-Elisabeth/0000-0001-9226-5812; Tinoco Mendes, Andre
David/0000-0001-5854-7699; Dudko, Lev/0000-0002-4462-3192; Servoli,
Leonello/0000-0003-1725-9185; Tomei, Thiago/0000-0002-1809-5226;
Focardi, Ettore/0000-0002-3763-5267; Azzi, Patrizia/0000-0002-3129-828X;
Bean, Alice/0000-0001-5967-8674; Longo, Egidio/0000-0001-6238-6787;
Baarmand, Marc/0000-0002-9792-8619; Nervo, Marco/0000-0002-9898-7346;
Boccali, Tommaso/0000-0002-9930-9299; Menasce, Dario
Livio/0000-0002-9918-1686; Bargassa, Pedrame/0000-0001-8612-3332;
Mrenna, Stephen/0000-0001-8731-160X; Bilki, Burak/0000-0001-9515-3306;
Costa, Salvatore/0000-0001-9919-0569; Lloret Iglesias,
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NR 23
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PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03022
DI 10.1088/1748-0221/5/03/T03022
PG 48
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100011
ER
PT J
AU Chatrchyan, S
Khachatryan, V
Sirunyan, AM
Adam, W
Arnold, B
Bergauer, H
Bergauer, T
Dragicevic, M
Eichberger, M
Ero, J
Friedl, M
Fruhwirth, R
Ghete, VM
Hammer, J
Hansel, S
Hoch, M
Hormann, N
Hrubec, J
Jeitler, M
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Krammer, M
Liko, D
de Abril, IM
Mikulec, I
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Neuherz, B
Oberegger, M
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Rohringer, H
Schmid, S
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Steininger, H
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Taurok, A
Teischinger, F
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Uhl, D
Wagner, P
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Litomin, A
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de Abril, M. Magrans
Mohapatra, A.
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CA CMS Collaboration
TI Time reconstruction and performance of the CMS electromagnetic
calorimeter
SO JOURNAL OF INSTRUMENTATION
LA English
DT Article
DE Calorimeters; Large detector systems for particle and astroparticle
physics
AB The resolution and the linearity of time measurements made with the CMS electromagnetic calorimeter are studied with samples of data from test beam electrons, cosmic rays, and beam-produced muons. The resulting time resolution measured by lead tungstate crystals is better than 100 ps for energy deposits larger than 10 GeV. Crystal-to-crystal synchronization with a precision of 500 ps is performed using muons produced with the first LHC beams in 2008.
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[Adolphi, R.; Anagnostou, G.; Brauer, R.; Braunschweig, W.; Edelhoff, M.; Esser, H.; Feld, L.; Karpinski, W.; Khomich, A.; Klein, K.; Mohr, N.; Ostaptchouk, A.; Pandoulas, D.; Pierschel, G.; Raupach, F.; Schael, S.; von Dratzig, A. Schultz; Schwering, G.; Sprenger, D.; Thomas, M.; Weber, M.; Wittmer, B.; Wlochal, M.] Rhein Westfal TH Aachen, Inst Phys 1, Aachen, Germany.
[Actis, O.; Altenhoefer, G.; Bender, W.; Biallass, P.; Erdmann, M.; Fetchenhauer, G.; Frangenheim, J.; Hebbeker, T.; Hilgers, G.; Hinzmann, A.; Hoepfner, K.; Hof, C.; Kirsch, M.; Klimkovich, T.; Kreuzer, P.; Lanske, D.; Merschmeyer, M.; Meyer, A.; Philipps, B.; Pieta, H.; Reithler, H.; Schmitz, S. A.; Sonnenschein, L.; Sowa, M.; Steggemann, J.; Szczesny, H.; Teyssier, D.; Zeidler, C.] Rhein Westfal TH Aachen, Phys Inst A 3, Aachen, Germany.
[Bontenackels, M.; Davids, M.; Duda, M.; Fluegge, G.; Geenen, H.; Giffels, M.; Ahmad, W. Haj; Hermanns, T.; Heydhausen, D.; Kalinin, S.; Kress, T.; Linn, A.; Nowack, A.; Perchalla, L.; Poettgens, M.; Pooth, O.; Sauerland, P.; Stahl, A.; Tornier, D.; Zoeller, M. H.] Rhein Westfal TH Aachen, Phys Inst B 3, Aachen, Germany.
[Martin, M. Aldaya; Behrens, U.; Borras, K.; Campbell, A.; Castro, E.; Dammann, D.; Eckerlin, G.; Flossdorf, A.; Flucke, G.; Geiser, A.; Hatton, D.; Hauk, J.; Jung, H.; Kasemann, M.; Katkov, I.; Kleinwort, C.; Kluge, H.; Knutsson, A.; Kuznetsova, E.; Lange, W.; Lohmann, W.; Mankel, R.; Marienfeld, M.; Meyer, A. B.; Miglioranzi, S.; Mnich, J.; Ohlerich, M.; Olzem, J.; Parenti, A.; Rosemann, C.; Schmidt, R.; Schoerner-Sadenius, T.; Volyanskyy, D.; Wissing, C.; Zeuner, W. D.] DESY, Hamburg, Germany.
[Autermann, C.; Bechtel, F.; Draeger, J.; Eckstein, D.; Gebbert, U.; Kaschube, K.; Kaussen, G.; Klanner, R.; Mura, B.; Naumann-Emme, S.; Nowak, F.; Pein, U.; Sander, C.; Schleper, P.; Schum, T.; Stadie, H.; Steinbrueck, G.; Thomsen, J.; Wolf, R.] Univ Hamburg, Hamburg, Germany.
[Bauer, J.; Bluem, P.; Buege, V.; Cakir, A.; Chwalek, T.; De Boer, W.; Dierlamm, A.; Dirkes, G.; Feindt, M.; Felzmann, U.; Frey, M.; Furgeri, A.; Gruschke, J.; Hackstein, C.; Hartmann, F.; Heier, S.; Heinrich, M.; Held, H.; Hirschbuehl, D.; Hoffmann, K. H.; Honc, S.; Jung, C.; Kuhr, T.; Liamsuwan, T.; Martschei, D.; Mueller, S.; Mueller, Th.; Neuland, M. B.; Niegel, M.; Oberst, O.; Oehler, A.; Ott, J.; Peiffer, T.; Piparo, D.; Quast, G.; Rabbertz, K.; Ratnikov, F.; Ratnikova, N.; Renz, M.; Saout, C.; Sartisohn, G.; Scheurer, A.; Schieferdecker, P.; Schilling, F. -P.; Schott, G.; Simonis, H. J.; Stober, F. M.; Sturm, P.; Troendle, D.; Trunov, A.; Wagner, W.; Wagner-Kuhr, J.; Zeise, M.; Zhukov, V.; Ziebarth, E. B.] Univ Karlsruhe, Inst Expt Kernphys, D-7500 Karlsruhe, Germany.
[Daskalakis, G.; Geralis, T.; Karafasoulis, K.; Kyriakis, A.; Loukas, D.; Markou, A.; Markou, C.; Mavrommatis, C.; Petrakou, E.; Zachariadou, A.] Inst Nucl Phys Demokritos, Aghia Paraskevi, Greece.
[Gouskos, L.; Katsas, P.; Panagiotou, A.] Univ Athens, Athens, Greece.
[Evangelou, I.; Kokkas, P.; Manthos, N.; Papadopoulos, I.; Patras, V.; Triantis, F. A.] Univ Ioannina, GR-45110 Ioannina, Greece.
[Bencze, G.; Boldizsar, L.; Debreczeni, G.; Hajdu, C.; Hernath, S.; Hidas, P.; Horvath, D.; Krajczar, K.; Laszlo, A.; Patay, G.; Sikler, F.; Toth, N.; Vesztergombi, G.; Pasztor, G.] KFKI Res Inst Particle & Nucl Phys, Budapest, Hungary.
[Horvath, D.; Beni, N.; Christian, G.; Imrek, J.; Molnar, J.; Novak, D.; Palinkas, J.; Szekely, G.; Szillasi, Z.; Tokesi, K.; Veszpremi, V.] Inst Nucl Res ATOMKI, Debrecen, Hungary.
[Kapusi, A.; Marian, G.; Raics, P.; Szabo, Z.; Trocsanyi, Z. L.; Ujvari, B.; Zilizi, G.] Univ Debrecen, Debrecen, Hungary.
[Bawa, H. S.; Jindal, M.; Kaur, M.; Kohli, J. M.; Mehta, M. Z.; Nishu, N.; Saini, L. K.; Sharma, A.; Singh, A.; Singh, J. B.] Panjab Univ, Chandigarh 160014, India.
[Ahuja, S.; Arora, S.; Bhattacharya, S.; Chauhan, S.; Choudhary, B. C.; Gupta, P.; Jain, S.; Jha, M.; Kumar, A.; Ranjan, K.; Shivpuri, R. K.; Srivastava, A. K.] Univ Delhi, Delhi 110007, India.
[Choudhury, R. K.; Dutta, D.; Kailas, S.; Kataria, S. K.; Mohanty, A. K.; Pant, L. M.; Shukla, P.; Topkar, A.] Bhabha Atom Res Ctr, Bombay 400085, Maharashtra, India.
[Aziz, T.; Guchait, M.; Gurtu, A.; Maity, M.; Majumder, D.; Majumder, G.; Mazumdar, K.; Nayak, A.; Saha, A.; Sudhakar, K.] Tata Inst Fundamental Res EHEP, Bombay, Maharashtra, India.
[Guchait, M.; Banerjee, S.; Dugad, S.; Mondal, N. K.] Tata Inst Fundamental Res HECR, Bombay, Maharashtra, India.
[Arfaei, H.; Bakhshiansohi, H.; Fahim, A.; Jafari, A.; Najafabadi, M. Mohammadi; Moshaii, A.; Mehdiabadi, S. Paktinat; Rouhani, S.; Safarzadeh, B.; Zeinali, M.] Inst Studies Theoret Phys & Math IPM, Tehran, Iran.
[Felcini, M.] Univ Coll Dublin, Dublin 2, Ireland.
[Abbrescia, M.; Barbonc, L.; Chiumarulo, F.; Clemente, A.; Colalco, A.; Creanza, D.; Cuscela, G.; De Filippis, N.; De Palma, M.; De Robertis, G.; Donvito, G.; Fedele, F.; Fiore, L.; Franco, M.; Iaselli, G.; Lacalamita, N.; Loddo, F.; Lusito, L.; Maggi, G.; Maggi, M.; Manna, N.; Marangelli, B.; My, S.; Natali, S.; Nuzzo, S.; Papagni, G.; Piccolomo, S.; Pierro, G. A.; Pinto, C.; Pompili, A.; Pugliese, G.; Rajan, R.; Ranieri, A.; Romano, F.; Roselli, G.; Selvaggi, G.; Shinde, Y.; Silvestris, L.; Tupputi, S.; Zito, G.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Abbrescia, M.; De Palma, M.; Lusito, L.; Manna, N.; Marangelli, B.; Natali, S.; Nuzzo, S.; Pompili, A.; Roselli, G.; Selvaggi, G.; Tupputi, S.] Univ Bari, Bari, Italy.
[Creanza, D.; Iaselli, G.; Maggi, G.; My, S.; Pugliese, G.; Romano, F.] Politecn Bari, Bari, Italy.
[Abbiendi, G.; Bacchi, W.; Benvenuti, A. C.; Boldini, M.; Bonacorsi, D.; Braibant-Giacomelli, S.; Cafaro, V. D.; Caiazza, S. S.; Capiluppi, P.; Castro, A.; Cavallo, F. R.; Codispoti, G.; Cuffiani, M.; D'Antone, I.; Dallavalle, G. M.; Fabbri, F.; Fanfani, A.; Fasanella, D.; Giacomelli, P.; Giordano, V.; Giunta, M.; Grandi, C.; Guerzoni, M.; Marcellini, S.; Masetti, G.; Montanari, A.; Navarria, F. L.; Odorici, F.; Pellegrini, G.; Perrotta, A.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Torromeo, G.; Travaglini, R.] Ist Nazl Fis Nucl, Sez Bologna, I-40126 Bologna, Italy.
[Bacchi, W.; Braibant-Giacomelli, S.; Capiluppi, P.; Castro, A.; Codispoti, G.; Cuffiani, M.; Fanfani, A.; Masetti, G.; Navarria, F. L.; Rossi, A. M.; Rovelli, T.; Siroli, G.; Travaglini, R.] Univ Bologna, Bologna, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.; Tuve, C.] Ist Nazl Fis Nucl, Sez Catania, I-95129 Catania, Italy.
[Albergo, S.; Costa, S.; Potenza, R.; Tricomi, A.] Univ Catania, Catania, Italy.
[Barbagli, G.; Broccolo, G.; Ciulli, V.; Civinini, C.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Gallo, E.; Genta, C.; Landi, G.; Lenzi, P.; Meschini, M.; Paoletti, S.; Sguazzoni, G.; Tropiano, A.] Ist Nazl Fis Nucl, Sez Firenze, I-50125 Florence, Italy.
[Broccolo, G.; Ciulli, V.; D'Alessandro, R.; Focardi, E.; Frosali, S.; Genta, C.; Landi, G.; Lenzi, P.] Univ Florence, Florence, Italy.
[Benussi, L.; Bertani, M.; Bianco, S.; Colafranceschi, S.; Colonna, D.; Fabbri, F.; Giardoni, M.; Passamonti, L.; Piccolo, D.; Pierluigi, D.; Ponzio, B.; Russo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Fabbricatore, P.; Musenich, R.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Benaglia, A.; Calloni, M.; Cerati, G. B.; D'Angelo, P.; De Guio, F.; Farina, F. M.; Ghezzi, A.; Govoni, P.; Malberti, M.; Malvezzi, S.; Martelli, A.; Menasce, D.; Miccio, V.; Moroni, L.; Negri, P.; Paganoni, M.; Pedrini, D.; Pullia, A.; Ragazzi, S.; Redaelli, N.; Sala, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Ist Nazl Fis Nucl, Sez Milano Biccoca, I-20133 Milan, Italy.
[Cerati, G. B.; Govoni, P.; Malberti, M.; Miccio, V.; Negri, P.; Paganoni, M.; Pullia, A.; Ragazzi, S.; Salerno, R.; de Fatis, T. Tabarelli; Tancini, V.; Taroni, S.] Univ Milano Bicocca, Milan, Italy.
[Buontempo, S.; Cavallo, N.; Cimmino, A.; De Gruttola, M.; Fabozzi, F.; Iorio, A. O. M.; Lista, L.; Lomidze, D.; Noli, P.; Paolucci, P.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80125 Naples, Italy.
[Cimmino, A.; De Gruttola, M.; Noli, P.; Sciacca, C.] Univ Naples Federico II, Naples, Italy.
[Azzi, P.; Bacchetta, N.; Barcellan, L.; Bellan, P.; Bellato, M.; Benettoni, M.; Biasotto, M.; Bisello, D.; Borsato, E.; Branca, A.; Carlin, R.; Castellani, L.; Checchia, P.; Conti, E.; Dal Corso, F.; De Mattia, M.; Dorigo, T.; Dosselli, U.; Fanzago, F.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Gonella, F.; Gresele, A.; Gulmini, M.; Kaminskiy, A.; Lacaprara, S.; Lazzizzera, I.; Margoni, M.; Maron, G.; Mattiazzo, S.; Mazzucato, M.; Meneghelli, M.; Meneguzzo, A. T.; Michelotto, M.; Montecassiano, F.; Nespolo, M.; Passaseo, M.; Pegoraro, M.; Perrozzi, L.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Toniolo, N.; Torassa, E.; Tosi, M.; Triossi, A.; Vanini, S.; Ventura, S.; Zotto, P.; Zumerle, G.] Ist Nazl Fis Nucl, Sez Padova, Padua, Italy.
[Bellan, P.; Bisello, D.; Borsato, E.; Carlin, R.; De Mattia, M.; Gasparini, F.; Gasparini, U.; Giubilato, P.; Kaminskiy, A.; Margoni, M.; Mattiazzo, S.; Meneguzzo, A. T.; Pozzobon, N.; Ronchese, P.; Simonetto, F.; Tosi, M.; Vanini, S.; Zotto, P.; Zumerle, G.] Univ Padua, Padua, Italy.
[Baesso, P.; Berzano, U.; Bricola, S.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vicini, A.; Vitulo, P.; Viviani, C.] Ist Nazl Fis Nucl, Sez Pavia, I-27100 Pavia, Italy.
[Baesso, P.; Necchi, M. M.; Pagano, D.; Ratti, S. P.; Riccardi, C.; Torre, P.; Vitulo, P.; Viviani, C.] Univ Pavia, I-27100 Pavia, Italy.
[Aisa, D.; Aisa, S.; Babucci, E.; Biasini, M.; Bilei, G. M.; Caponeri, B.; Checcucci, B.; Dinu, N.; Fano, L.; Farnesini, L.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Piluso, A.; Postolache, V.; Santocchia, A.; Servoli, L.; Tonoiu, D.; Vedaee, A.; Volpe, R.; Pioppi, M.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Biasini, M.; Caponeri, B.; Lariccia, P.; Lucaroni, A.; Mantovani, G.; Nappi, A.; Santocchia, A.; Volpe, R.; Pioppi, M.] Univ Perugia, I-06100 Perugia, Italy.
[Azzurri, P.; Bagliesi, G.; Bernardini, J.; Berretta, L.; Boccali, T.; Bocci, A.; Borrello, L.; Bosi, F.; Calzolari, F.; Castaldi, R.; Dell'Orso, R.; Fiori, F.; Foa, L.; Gennai, S.; Giassi, A.; Kraan, A.; Ligabue, F.; Lomtadze, T.; Mariani, F.; Martini, L.; Massa, M.; Messineo, A.; Moggi, A.; Palla, F.; Palmonari, F.; Petragnani, G.; Petrucciani, G.; Raffaelli, F.; Sarkar, S.; Segneri, G.; Serban, A. T.; Spagnolo, P.; Tenchini, R.; Tolaini, S.; Tonelli, G.; Venturi, A.; Verdini, P. G.] Ist Nazl Fis Nucl, Sez Pisa, Pisa, Italy.
[Bernardini, J.; Fiori, F.; Messineo, A.; Tonelli, G.] Univ Pisa, Pisa, Italy.
[Azzurri, P.; Bocci, A.; Borrello, L.; Foa, L.; Gennai, S.; Ligabue, F.; Petrucciani, G.] Scuola Normale Super Pisa, Pisa, Italy.
[Baccaro, S.; Barone, L.; Bartoloni, A.; Cavallari, F.; Dafinei, I.; Del Re, D.; Di Marco, E.; Diemoz, M.; Franci, D.; Longo, E.; Organtini, G.; Palma, A.; Pandolfi, F.; Paramatti, R.; Pellegrino, F.; Rahatlou, S.; Rovelli, C.] Ist Nazl Fis Nucl, Sez Roma, Rome, Italy.
[Colafranceschi, S.; Colonna, D.] Univ Roma La Sapienza, Fac Ingn, Rome, Italy.
[Alampi, G.; Amapane, N.; Arcidiacono, R.; Argiro, S.; Arneodo, M.; Biino, C.; Borgia, M. A.; Botta, C.; Cartiglia, N.; Castello, R.; Cerminara, G.; Costa, M.; Dattola, D.; Dellacasa, G.; Demaria, N.; Dughera, G.; Dumitrache, F.; Graziano, A.; Mariotti, C.; Marone, M.; Maselli, S.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Obertino, M. M.; Oggero, S.; Panero, R.; Pastrone, N.; Pelliccioni, M.; Ruspa, M.; Sacchi, R.; Solano, A.; Staiano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.; Zampieri, A.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Amapane, N.; Arcidiacono, R.; Argiro, S.; Borgia, M. A.; Botta, C.; Castello, R.; Cerminara, G.; Costa, M.; Graziano, A.; Marone, M.; Migliore, E.; Mila, G.; Monaco, V.; Musich, M.; Nervo, M.; Oggero, S.; Pelliccioni, M.; Romero, A.; Sacchi, R.; Solano, A.; Trapani, P. P.; Trocino, D.; Pereira, A. Vilela; Visca, L.] Univ Turin, Turin, Italy.
[Arneodo, M.; Obertino, M. M.; Ruspa, M.] Univ Piemonte Orientale Novara, Turin, Italy.
[Ambroglini, F.; Belforte, S.; Cossutti, F.; Della Ricca, G.; Gobbo, B.; Penzo, A.] Ist Nazl Fis Nucl, Sez Trieste, Trieste, Italy.
[Ambroglini, F.; Della Ricca, G.] Univ Trieste, Trieste, Italy.
[Chang, S.; Chung, J.; Kim, D. H.; Kim, G. N.; Kong, D. J.; Park, H.; Son, D. C.] Kyungpook Natl Univ, Taegu, South Korea.
[Bahk, S. Y.] Wonkwang Univ, Iksan, South Korea.
[Song, S.] Chonnam Natl Univ, Kwangju, South Korea.
[Jung, S. Y.] Konkuk Univ, Seoul, South Korea.
[Hong, B.; Kim, H.; Kim, J. H.; Lee, K. S.; Moon, D. H.; Park, S. K.; Rhee, H. B.; Sim, K. S.] Korea Univ, Seoul, South Korea.
[Kim, J.] Seoul Natl Univ, Seoul, South Korea.
[Choi, M.; Hahn, G.; Park, I. C.] Univ Seoul, Seoul, South Korea.
[Zhukov, V.; Choi, S.; Choi, Y.; Goh, J.; Jeong, H.; Kim, T. J.; Lee, J.; Lee, S.] Sungkyunkwan Univ, Suwon, South Korea.
[Janulis, M.; Martisiute, D.; Petrov, P.; Sabonis, T.] Vilnius Univ, Vilnius, Lithuania.
[Castilla Valdez, H.; Sanchez Hernandez, A.] IPN, Ctr Invest & Estudios Avanzados, Mexico City 07738, DF, Mexico.
[Carrillo Moreno, S.] Univ Iberoamer, Mexico City, DF, Mexico.
[Morelos Pineda, A.] Univ Autonoma San Luis Potosi, San Luis Potosi, Mexico.
[Allfrey, P.; Gray, R. N. C.; Krofcheck, D.] Univ Auckland, Auckland 1, New Zealand.
[Rodrigues, N. Bernardino; Butler, P. H.; Signal, T.; Williams, J. C.] Univ Canterbury, Christchurch 1, New Zealand.
[Ahmad, M.; Ahmed, I.; Ahmed, W.; Asghar, M. I.; Awan, M. I. M.; Hoorani, H. R.; Hussain, I.; Khan, W. A.; Khurshid, T.; Muhammad, S.; Qazi, S.; Shahzad, H.] Quaid I Azam Univ, Natl Ctr Phys, Islamabad, Pakistan.
[Cwiok, M.; Dabrowski, R.; Dominik, W.; Doroba, K.; Konecki, M.; Krolikowski, J.; Pozniak, K.; Romaniuk, R.; Zabolotny, W.; Zych, P.] Univ Warsaw, Inst Expt Phys, Warsaw, Poland.
[Bluj, M.; Frueboes, T.; Gokieli, R.; Goscilo, L.; Gorski, M.; Kazana, M.; Nawrocki, K.; Szleper, M.; Wrochna, G.; Zalewski, P.] Soltan Inst Nucl Studies, PL-00681 Warsaw, Poland.
[Almeida, N.; Antunes Pedro, L.; Bargassa, P.; David, A.; Faccioli, P.; Ferreira Parracho, P. G.; Freitas Ferreira, M.; Gallinaro, M.; Guerra Jordao, M.; Martins, P.; Mini, G.; Musella, P.; Pela, J.; Raposo, L.; Ribeiro, P. Q.; Sampaio, S.; Seixas, J.; Silva, J.; Silva, P.; Soares, D.; Sousa, M.; Varela, J.; Woehri, H. K.] Lab Instrumentacao & Fis Expt Particulas, Lisbon, Portugal.
[Altsybeev, I.; Belotelov, I.; Bunin, P.; Ershov, Y.; Filozova, I.; Finger, M.; Finger, M., Jr.; Golunov, A.; Golutvin, I.; Gorbounov, N.; Kalagin, V.; Kamenev, A.; Karjavin, V.; Konoplyanikov, V.; Korenkov, V.; Kozlov, G.; Kurenkov, A.; Lanev, A.; Makankin, A.; Mitsyn, V. V.; Moisenz, P.; Nikonov, E.; Oleynik, D.; Palichik, V.; Perelygin, V.; Petrosyan, A.; Semenov, R.; Shmatov, S.; Smirnov, V.; Smolin, D.; Tikhonenko, E.; Vasil'ev, S.; Vishnevskiy, A.; Volodko, A.; Zarubin, A.; Zhiltsov, V.] Joint Inst Nucl Res, Dubna, Russia.
[Bondar, N.; Chtchipounov, L.; Denisov, A.; Gavrikov, Y.; Gavrilov, G.; Golovtsov, V.; Ivanov, Y.; Kim, V.; Kozlov, V.; Levchenko, P.; Obrant, G.; Orishchin, E.; Petrunin, A.; Shcheglov, Y.; Shchetkovskiy, A.; Sknar, V.; Smirnov, I.; Sulimov, V.; Tarakanov, V.; Uvarov, L.; Vavilov, S.; Velichko, G.; Volkov, S.; Vorobyev, A.] Petersburg Nucl Phys Inst, St Petersburg, Russia.
[Anisimov, A.; Dermenev, A.; Pashenkov, A.; Solovey, A.] Russian Acad Sci, Inst Nucl Res, Moscow, Russia.
[Baud, A.; Epshteyn, V.; Gavrilov, V.; Ilina, N.; Kaftanov, V.; Kolosov, V.; Kossov, M.; Krokhotin, A.; Kuleshov, S.; Oulianov, A.; Safronov, G.; Semenov, S.; Shreyber, I.; Stolin, V.; Vlasov, E.; Zhokin, A.; Starodumov, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Zhukov, V.; Boos, E.; Dubinin, M.; Dudko, L.; Ershov, A.; Gribushin, A.; Klyukhin, V.; Kodolova, O.; Lokhtin, I.; Petrushanko, S.; Sarycheva, L.; Savrin, V.; Snigirev, A.; Vardanyan, I.] Moscow MV Lomonosov State Univ, Moscow, Russia.
[Dremin, I.; Kirakosyan, M.; Konovalova, N.; Rusakov, S. V.; Vinogradov, A.] PN Lebedev Phys Inst, Moscow 117924, Russia.
[Akimenko, S.; Artamonov, A.; Azhgirey, I.; Bitioukov, S.; Burtovoy, V.; Grishin, V.; Kachanov, V.; Konstantinov, D.; Krychkine, V.; Levine, A.; Lobov, I.; Lukanin, V.; Mel'nik, Y.; Petrov, V.; Ryutin, R.; Slabospitsky, S.; Sobol, A.; Sytine, A.; Tourtchanovitch, L.; Troshin, S.; Tyurin, N.; Uzunian, A.; Volkov, A.; Sourkov, A.] Inst High Energy Phys, State Res Ctr Russian Federat, Protvino, Russia.
[Adzic, P.; Djordjevic, M.; Jovanovic, D.; Krpic, D.; Maletic, D.; Puzovic, J.; Smiljkovic, N.; Nardulli, A.] Vinca Inst Nucl Sci, Belgrade, Serbia.
[Aguilar-Benitez, M.; Alberdi, J.; Alcaraz Maestre, J.; Arce, P.; Barcala, J. M.; Battilana, C.; Burgos Lazaro, C.; Caballero Bejar, J.; Calvo, E.; Cardenas Montes, M.; Cepeda, M.; Cerrada, M.; Chamizo Llatas, M.; Clemente, F.; Colino, N.; Daniel, M.; De la Cruz, B.; Delgado Peris, A.; Diez Pardos, C.; Fernandez Bedoya, C.; Fernandez Ramos, J. P.; Ferrando, A.; Flix, J.; Fouz, M. C.; Garcia-Abia, P.; Garcia-Bonilla, A. C.; Gonzalez Lopez, O.; Goy Lopez, S.; Hernandez, J. M.; Josa, M. I.; Marin, J.; Merino, G.; Molina, J.; Molinero, A.; Navarrete, J. J.; Oller, J. C.; Puerta Pelayo, J.; Romero, L.; Santaolalla, J.; Villanueva Munoz, C.; Willmott, C.; Yuste, C.] CIEMAT, E-28040 Madrid, Spain.
[Albajar, C.; Blanco Otano, M.; de Troconiz, J. F.; Garcia Raboso, A.; Lopez Berengueres, J. O.] Univ Autonoma Madrid, Madrid, Spain.
[Cuevas, J.; Fernandez Menendez, J.; Gonzalez Caballero, I.; Lloret Iglesias, L.; Naves Sordo, H.; Vizan Garcia, J. M.] Univ Oviedo, Oviedo, Spain.
[Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] Univ Cantabria, CSIC, Inst Fis Cantabria IFCA, E-39005 Santander, Spain.
[Fetchenhauer, G.; Mankel, R.; Zeuner, W. D.; Hartmann, F.; Saout, C.; Panagiotou, A.; Szillasi, Z.; Azzi, P.; Bellan, P.; Spagnolo, P.; Tenchini, R.; Tonelli, G.; Cavallari, F.; Kossov, M.; Grishin, V.; Abbaneo, D.; Albert, E.; Alidra, M.; Ashby, S.; Auffray, E.; Baechler, J.; Baillon, P.; Ball, A. H.; Bally, S. L.; Barney, D.; Beaudette, F.; Bellan, R.; Benedetti, D.; Benelli, G.; Bernet, C.; Bloch, P.; Bolognesi, S.; Bona, M.; Bos, J.; Bourgeois, N.; Bourrel, T.; Breuker, H.; Bunkowski, K.; Campi, D.; Camporesi, T.; Cano, E.; Cattai, A.; Chatelain, J. P.; Chauvey, M.; Christiansen, T.; Perez, J. A. Coarasa; Garcia, A. Conde; Covarelli, R.; Cure, B.; De Roeck, A.; Delachenal, V.; Deyrail, D.; Di Vincenzo, S.; Dos Santos, S.; Dupont, T.; Edera, L. M.; Elliott-Peisert, A.; Eppard, M.; Favre, M.; Frank, N.; Funk, W.; Gaddi, A.; Gastal, M.; Gateau, M.; Gerwig, H.; Gigi, D.; Gill, K.; Girod, J. P.; Glege, F.; Garrido, R. Gomez-Reino; Goudard, R.; Gowdy, S.; Guida, R.; Guiducci, L.; Gutleber, J.; Hansen, M.; Hartl, C.; Harvey, J.; Hegner, B.; Hoffmann, H. F.; Holzner, A.; Honma, A.; Huhtinen, M.; Innocente, V.; Janot, P.; Le Godec, G.; Lecoq, P.; Leonidopoulos, C.; Loos, R.; Lourenco, C.; Lyonnet, A.; Macpherson, A.; Magini, N.; Maillefaud, J. D.; Maire, G.; Maeki, T.; Malgeri, L.; Mannelli, M.; Masetti, L.; Meijers, F.; Meridiani, P.; Mersi, S.; Meschi, E.; Cordonnier, A. Meynet; Moser, R.; Mulders, M.; Mulon, J.; Noy, M.; Oh, A.; Olesen, G.; Onnela, A.; Orimoto, T.; Orsini, L.; Perez, E.; Perinic, G.; Pernot, J. F.; Petagna, P.; Petiot, P.; Petrilli, A.; Pfeiffer, A.; Pierini, M.; Pimiae, M.; Pintus, R.; Pirollet, B.; Postema, H.; Racz, A.; Ravat, S.; Rew, S. B.; Antunes, J. Rodrigues; Rolandi, G.; Rovere, M.; Ryjov, V.; Sakulin, H.; Samyn, D.; Sauce, H.; Schaefer, C.; Schlatter, W. D.; Schroeder, M.; Schwick, C.; Sciaba, A.; Segoni, I.; Sharma, A.; Siegrist, N.; Siegrist, P.; Sinanis, N.; Sobrier, T.; Sphicas, P.; Spiga, D.; Spiropulu, M.; Stoeckli, F.; Traczyk, P.; Tropea, P.; Troska, J.; Tsirou, A.; Veillet, L.; Veres, G. I.; Voutilainen, M.; Wertelaers, P.; Zanetti, M.; Afaq, M. A.; Tkaczyk, S.; Trentadue, R.] Univ Cantabria, CSIC, Inst Fis Cantabria IFCA, E-39005 Santander, Spain.
[Bertl, W.; Deiters, K.; Erdmann, W.; Gabathuler, K.; Horisberger, R.; Ingram, Q.; Kaestli, H. C.; Koenig, S.; Kotlinski, D.; Langenegger, U.; Meier, F.; Renker, D.; Rohe, T.; Sibille, J.; Starodumov, A.; Caminada, L.; Dambach, S.; Eggel, C.; Marchica, C.; Trueb, P.] Paul Scherrer Inst, Villigen, Switzerland.
[Betev, B.; Caminada, L.; Chen, Z.; Cittolin, S.; Di Calafiori, D. R. Da Silva; Dambach, S.; Dissertori, G.; Dittmar, M.; Eggel, C.; Eugster, J.; Faber, G.; Freudenreich, K.; Grab, C.; Herve, A.; Hintz, W.; Lecomte, P.; Luckey, P. D.; Lustermann, W.; Marchica, C.; Milenovic, P.; Moortgat, F.; Nardulli, A.; Nessi-Tedaldi, F.; Pape, L.; Pauss, F.; Punz, T.; Rizzi, A.; Ronga, F. J.; Sala, L.; Sanchez, A. K.; Sawley, M. -C.; Sordini, V.; Stieger, B.; Tauscher, L.; Thea, A.; Theofilatos, K.; Treille, D.; Trueb, P.; Weber, M.; Wehrli, L.; Weng, J.; Zelepoukine, S.] Swiss Fed Inst Technol, Inst Particle Phys, Zurich, Switzerland.
[Amsler, C.; Chiochia, V.; De Visscher, S.; Regenfus, C.; Robmann, P.; Rommerskirchen, T.; Schmidt, A.; Tsirigkas, D.; Wilke, L.] Univ Zurich, Zurich, Switzerland.
[Chang, Y. H.; Chen, E. A.; Chen, W. T.; Go, A.; Kuo, C. M.; Li, S. W.; Lin, W.] Natl Cent Univ, Chungli 32054, Taiwan.
[Bartalini, P.; Chang, P.; Chao, Y.; Chen, K. F.; Hou, W. -S.; Hsiung, Y.; Lei, Y. J.; Lin, S. W.; Lu, R. -S.; Schuemann, J.; Shiu, J. G.; Tzeng, Y. M.; Ueno, K.; Velikzhanin, Y.; Wang, C. C.; Wang, M.] Natl Taiwan Univ, Taipei 10764, Taiwan.
[Adiguzel, A.; Ayhan, A.; Gokce, A. Azman; Bakirci, M. N.; Cerci, S.; Dumanoglu, I.; Eskut, E.; Girgis, S.; Gurpinar, E.; Hos, I.; Karaman, T.; Topaksu, A. Kayis; Kurt, P.; Oenenguet, G.; Goekbulut, G. Oenenguet; Ozdemir, K.; Ozturk, S.; Polatoez, A.; Sogut, K.; Tali, B.; Topakli, H.; Uzun, D.; Vergili, N.; Vergili, M.; Avetisyan, A.] Cukurova Univ, Adana, Turkey.
[Akin, I. V.; Aliev, T.; Bilmis, S.; Deniz, M.; Gamsizkan, H.; Guler, A. M.; Oecalan, K.; Serin, M.; Sever, R.; Surat, U. E.; Zeyrek, M.] Middle E Tech Univ, Dept Phys, TR-06531 Ankara, Turkey.
[Deliomeroglu, M.; Demir, D.; Guelmez, E.; Halu, A.; Isildak, B.; Kaya, M.; Kaya, O.; Ozkorucuklu, S.; Sonmez, N.] Bogazici Univ, Dept Phys, Istanbul, Turkey.
[Levchuk, L.; Lukyanenko, S.; Soroka, D.; Zub, S.] Kharkov Inst Phys & Technol, Natl Sci Ctr, Kharkov, Ukraine.
[Bostock, F.; Brooke, J. J.; Cheng, T. L.; Cussans, D.; Frazier, R.; Goldstein, J.; Grant, N.; Hansen, M.; Heath, G. P.; Heath, H. F.; Hill, C.; Huckvale, B.; Jackson, J.; Mackay, C. K.; Metson, S.; Newbold, D. M.; Nirunpong, K.; Smith, V. J.; Velthuis, J.; Walton, R.] Univ Bristol, Bristol, Avon, England.
[Newbold, D. M.; Bell, K. W.; Brew, C.; Brown, R. M.; Camanzi, B.; Cockerill, D. J. A.; Coughlan, J. A.; Geddes, N. I.; Harder, K.; Harper, S.; Kennedy, B. W.; Murray, P.; Shepherd-Themistocleous, C. H.; Tomalin, I. R.; Williams, J. H.; Womersley, W. J.; Worm, S. D.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Bainbridge, R.; Ball, G.; Ballin, J.; Beuselinck, R.; Buchmuller, O.; Colling, D.; Cripps, N.; Davies, G.; Della Negra, M.; Foudas, C.; Fulcher, J.; Futyan, D.; Hall, G.; Hays, J.; Iles, G.; Karapostoli, G.; MacEvoy, B. C.; Magnan, A. -M.; Marrouche, J.; Nash, J.; Nikitenko, A.; Papageorgiou, A.; Pesaresi, M.; Petridis, K.; Pioppi, M.; Raymond, D. M.; Rompotis, N.; Rose, A.; Ryan, M. J.; Seez, C.; Sharp, P.; Sidiropoulos, G.; Stettler, M.; Stoye, M.; Takahashi, M.; Tapper, A.; Timlin, C.; Tourneur, S.; Acosta, M. Vazquez; Virdee, T.; Wakefield, S.; Wardrope, D.; Whyntie, T.; Wingham, M.] Univ London, Univ London Imperial Coll Sci Technol & Med, London, England.
[Cole, J. E.; Goitom, I.; Hobson, P. R.; Khan, A.; Kyberd, P.; Leslie, D.; Munro, C.; Reid, I. D.; Siamitros, C.; Taylor, R.; Teodorescu, L.; Yaselli, I.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Bose, T.; Carleton, M.; Hazen, E.; Heering, A. H.; Heister, A.; St John, J.; Lawson, P.; Lazic, D.; Osborne, D.; Rohlf, J.; Sulak, L.; Wu, S.] Boston Univ, Boston, MA 02215 USA.
[Andrea, J.; Avetisyan, A.; Bhattacharya, S.; Chou, J. P.; Cutts, D.; Esen, S.; Kukartsev, G.; Landsberg, G.; Narain, M.; Nguyen, D.; Speer, T.; Tsang, K. V.] Brown Univ, Providence, RI 02912 USA.
[Breedon, R.; Sanchez, M. Calderon De La Barca; Case, M.; Cebra, D.; Chertok, M.; Conway, J.; Cox, P. T.; Dolen, J.; Erbacher, R.; Friis, E.; Ko, W.; Kopecky, A.; Lander, R.; Lister, A.; Liu, H.; Maruyama, S.; Miceli, T.; Nikolic, M.; Pellett, D.; Robles, J.; Searle, M.; Smith, J.; Squires, M.; Stilley, J.; Tripathi, M.; Sierra, R. Vasquez; Veelken, C.] Univ Calif Davis, Davis, CA 95616 USA.
[Andreev, V.; Arisaka, K.; Cline, D.; Cousins, R.; Erhan, S.; Hauser, J.; Ignatenko, M.; Jarvis, C.; Mumford, J.; Plager, C.; Rakness, G.; Schlein, P.; Tucker, J.; Valuev, V.; Wallny, R.; Yang, X.] Univ Calif Los Angeles, Los Angeles, CA USA.
[Babb, J.; Bose, M.; Chandra, A.; Clare, R.; Ellison, J. A.; Gary, J. W.; Hanson, G.; Jeng, G. Y.; Kao, S. C.; Liu, F.; Liu, H.; Luthra, A.; Nguyen, H.; Pasztor, G.; Satpathy, A.; Shen, B. C.; Stringer, R.; Sturdy, J.; Sytnik, V.; Wilken, R.; Wimpenny, S.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Bhattacharya, S.; Bhattacharya, S.; Branson, J. G.; Dusinberre, E.; Evans, D.; Golf, F.; Kelley, R.; Lebourgeois, M.; Letts, J.; Lipeles, E.; Mangano, B.; Muelmenstaedt, J.; Norman, M.; Padhi, S.; Petrucci, A.; Pi, H.; Pieri, M.; Ranieri, R.; Sani, M.; Sharma, V.; Simon, S.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; D'Alfonso, M.; Danielson, T.; Garberson, J.; Incandela, J.; Justus, C.; Kalavase, P.; Koay, S. A.; Kovalskyi, D.; Krutelyov, V.; Lamb, J.; Lowette, S.; Pavlunin, V.; Rebassoo, F.; Ribnik, J.; Richman, J.; Rossin, R.; Stuart, D.; To, W.; Vlimant, J. R.; Witherell, M.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Dubinin, M.; Apresyan, A.; Bornheim, A.; Bunn, J.; Chiorboli, M.; Gataullin, M.; Kcira, D.; Litvine, V.; Ma, Y.; Newman, H. B.; Rogan, C.; Timciuc, V.; Veverka, J.; Wilkinson, R.; Yang, Y.; Zhang, L.; Zhu, K.; Zhu, R. Y.] CALTECH, Pasadena, CA 91125 USA.
[Akgun, B.; Carroll, R.; Ferguson, T.; Jang, D. W.; Jun, S. Y.; Paulini, M.; Russ, J.; Terentyev, N.; Vogel, H.; Vorobiev, I.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Cumalat, J. P.; Dinardo, M. E.; Drell, B. R.; Ford, W. T.; Heyburn, B.; Lopez, E. Luiggi; Nauenberg, U.; Stenson, K.; Ulmer, K.; Wagner, S. R.; Zang, S. L.] Univ Colorado, Boulder, CO 80309 USA.
[Agostino, L.; Alexander, J.; Blekman, F.; Cassel, D.; Chatterjee, A.; Das, S.; Gibbons, L. K.; Heltsley, B.; Hopkins, W.; Khukhunaishvili, A.; Kreis, B.; Kuznetsov, V.; Patterson, J. R.; Puigh, D.; Ryd, A.; Shi, X.; Stroiney, S.; Sun, W.; Teo, W. D.; Thom, J.; Vaughan, J.; Weng, Y.; Wittich, P.] Cornell Univ, Ithaca, NY USA.
[Beetz, C. P.; Cirino, G.; Sanzeni, C.; Winn, D.] Fairfield Univ, Fairfield, CT 06430 USA.
[Abdullin, S.; Afaq, M. A.; Albrow, M.; Ananthan, B.; Apollinari, G.; Atac, M.; Badgett, W.; Bagby, L.; Bakken, J. A.; Baldin, B.; Banerjee, S.; Banicz, K.; Bauerdick, L. A. T.; Beretvas, A.; Berryhill, J.; Bhat, P. C.; Biery, K.; Binkley, M.; Bloch, I.; Borcherding, F.; Brett, A. M.; Burkett, K.; Butler, J. N.; Chetluru, V.; Cheung, H. W. K.; Chlebana, F.; Churin, I.; Cihangir, S.; Crawford, M.; Dagenhart, W.; Demarteau, M.; Derylo, G.; Dykstra, D.; Eartly, D. P.; Elias, J. E.; Elvira, V. D.; Evans, D.; Feng, L.; Fischler, M.; Fisk, I.; Foulkes, S.; Freeman, J.; Gartung, P.; Gottschalk, E.; Grassi, T.; Green, D.; Guo, Y.; Gutsche, O.; Hahn, A.; Hanlon, J.; Harris, R. M.; Holzman, B.; Howell, J.; Hufnagel, D.; James, E.; Jensen, H.; Johnson, M.; Jones, C. D.; Joshi, U.; Juska, E.; Kaiser, J.; Klima, B.; Kossiakov, S.; Kousouris, K.; Kwan, S.; Lei, C. M.; Limon, P.; Perez, J. A. Lopez; Los, S.; Lueking, L.; Lukhanin, G.; Lusin, S.; Lykken, J.; Maeshima, K.; Marraffino, J. M.; Mason, D.; McBride, P.; Miao, T.; Mishra, K.; Moccia, S.; Mommsen, R.; Mrenna, S.; Muhammad, A. S.; Newman-Holmes, C.; Noeding, C.; O'Dell, V.; Prokofyev, O.; Rivera, R.; Rivetta, C. H.; Ronzhin, A.; Rossman, P.; Ryu, S.; Sekhri, V.; Sexton-Kennedy, E.; Sfiligoi, I.; Sharma, S.; Shaw, T. M.; Shpakov, D.; Skup, E.; Smith, R. P.; Soha, A.; Spalding, W. J.; Spiegel, L.; Suzuki, I.; Tan, P.; Tanenbaum, W.; Tkaczyk, S.; Trentadue, R.; Uplegger, L.; Vaandering, E. W.; Vidal, R.; Whitmore, J.; Wicklund, E.; Wu, W.; Yarba, J.; Yumiceva, F.; Yun, J. C.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Acosta, D.; Avery, P.; Barashko, V.; Bourilkov, D.; Chen, M.; Di Giovanni, G. P.; Dobur, D.; Drozdetskiy, A.; Field, R. D.; Fu, Y.; Furic, I. K.; Gartner, J.; Holmes, D.; Kim, B.; Klimenko, S.; Konigsberg, J.; Korytov, A.; Kotov, K.; Kropivnitskaya, A.; Kypreos, T.; Madorsky, A.; Matchev, K.; Mitselmakher, G.; Pakhotin, Y.; Gomez, J. Piedra; Prescott, C.; Rapsevicius, V.; Remington, R.; Schmitt, M.; Scurlock, B.; Wang, D.; Yelton, J.] Univ Florida, Gainesville, FL USA.
[Ceron, C.; Gaultney, V.; Kramer, L.; Lebolo, L. M.; Linn, S.; Markowitz, P.; Martinez, G.; Rodriguez, J. L.] Florida Int Univ, Miami, FL 33199 USA.
[Adams, T.; Askew, A.; Baer, H.; Bertoldi, M.; Chen, J.; Dharmaratna, W. G. D.; Gleyzer, S. V.; Haas, J.; Hagopian, S.; Hagopian, V.; Jenkins, M.; Johnson, K. F.; Prettner, E.; Prosper, H.; Sekmen, S.] Florida State Univ, Tallahassee, FL 32306 USA.
[Baarmand, M. M.; Guragain, S.; Hohlmann, M.; Kalakhety, H.; Mermerkaya, H.; Ralich, R.; Vodopiyanov, I.] Florida Inst Technol, Melbourne, FL 32901 USA.
[Abelev, B.; Adams, M. R.; Anghel, I. M.; Apanasevich, L.; Bazterra, V. E.; Betts, R. R.; Callner, J.; Castro, M. A.; Cavanaugh, R.; Dragoiu, C.; Garcia-Solis, E. J.; Gerber, C. E.; Hofman, D. J.; Khalatian, S.; Mironov, C.; Shabalina, E.; Smoron, A.; Varelas, N.] Univ Illinois, Chicago, IL USA.
[Akgun, U.; Albayrak, E. A.; Ayan, A. S.; Bilki, B.; Briggs, R.; Cankocak, K.; Chung, K.; Clarida, W.; Debbins, P.; Duru, F.; Ingram, F. D.; Lae, C. K.; McCliment, E.; Merlo, J. -P.; Mestvirishvili, A.; Miller, M. J.; Moeller, A.; Nachtman, J.; Newsom, C. R.; Norbeck, E.; Olson, J.; Onel, Y.; Ozok, F.; Parsons, J.; Schmidt, I.; Sen, S.; Wetzel, J.; Yetkin, T.; Yi, K.] Univ Iowa, Iowa City, IA USA.
[Barnett, B. A.; Blumenfeld, B.; Bonato, A.; Chien, C. Y.; Fehling, D.; Giurgiu, G.; Gritsan, A. V.; Guo, Z. J.; Maksimovic, P.; Rappoccio, S.; Swartz, M.; Tran, N. V.; Zhang, Y.] Johns Hopkins Univ, Baltimore, MD USA.
[Sibille, J.; Baringer, P.; Bean, A.; Grachov, O.; Murray, M.; Radicci, V.; Sanders, S.; Wood, J. S.; Zhukova, V.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D.; Bolton, T.; Kaadze, K.; Liu, A.; Maravin, Y.; Onoprienko, D.; Svintradze, I.; Wan, Z.] Kansas State Univ, Manhattan, KS 66506 USA.
[Gronberg, J.; Hollar, J.; Lange, D.; Wright, D.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Baden, D.; Bard, R.; Boutemeur, M.; Eno, S. C.; Ferencek, D.; Hadley, N. J.; Kellogg, R. G.; Kirn, M.; Kunori, S.; Rossato, K.; Rumerio, P.; Santanastasio, F.; Skuja, A.; Temple, J.; Tonjes, M. B.; Tonwar, S. C.; Toole, T.; Twedt, E.] Univ Maryland, College Pk, MD 20742 USA.
[Alver, B.; Bauer, G.; Bendavid, J.; Busza, W.; Butz, E.; Cali, I. A.; Chan, M.; D'Enterria, D.; Everaerts, P.; Ceballos, G. Gomez; Hahn, K. A.; Harris, P.; Jaditz, S.; Kim, Y.; Klute, M.; Lee, Y. -J.; Li, W.; Loizides, C.; Ma, T.; Miller, M.; Nahn, S.; Paus, C.; Roland, C.; Roland, G.; Rudolph, M.; Stephans, G.; Sumorok, K.; Sung, K.; Vaurynovich, S.; Wenger, E. A.; Wyslouch, B.; Xie, S.; Yilmaz, Y.; Yoon, A. S.] MIT, Cambridge, MA 02139 USA.
[Bailleux, D.; Cooper, S. I.; Cushman, P.; Dahmes, B.; De Benedetti, A.; Dolgopolov, A.; Dudero, P. R.; Egeland, R.; Franzoni, G.; Haupt, J.; Inyakin, A.; Klapoetke, K.; Kubota, Y.; Mans, J.; Mirman, N.; Petyt, D.; Rekovic, V.; Rusack, R.; Schroeder, M.; Singovsky, A.; Zhang, J.] Univ Minnesota, Minneapolis, MN USA.
[Cremaldi, L. M.; Godang, R.; Kroeger, R.; Perera, L.; Rahmat, R.; Sanders, D. A.; Sonnek, P.; Summers, D.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Bockelman, B.; Bose, S.; Butt, J.; Claes, D. R.; Dominguez, A.; Eads, M.; Keller, J.; Kelly, T.; Kravchenko, I.; Lazo-Flores, J.; Lundstedt, C.; Malbouisson, H.; Malik, S.; Snow, G. R.] Univ Nebraska Lincoln, Lincoln, NE USA.
[Baur, U.; Iashvili, I.; Kharchilava, A.; Kumar, A.; Smith, K.; Strang, M.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Alverson, G.; Barberis, E.; Boeriu, O.; Eulisse, G.; Govi, G.; McCauley, T.; Musienko, Y.; Muzaffar, S.; Osborne, I.; Paul, T.; Reucroft, S.; Swain, J.; Taylor, L.; Tuura, L.] Northeastern Univ, Boston, MA 02115 USA.
[Anastassov, A.; Gobbi, B.; Kubik, A.; Ofierzynski, R. A.; Pozdnyakov, A.; Schmitt, M.; Stoynev, S.; Velasco, M.; Won, S.] Northwestern Univ, Evanston, IL USA.
[Antonelli, L.; Berry, D.; Hildreth, M.; Jessop, C.; Karmgard, D. J.; Kolberg, T.; Lannon, K.; Lynch, S.; Marinelli, N.; Morse, D. M.; Ruchti, R.; Slaunwhite, J.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Bylsma, B.; Durkin, L. S.; Gilmore, J.; Gu, J.; Killewald, P.; Ling, T. Y.; Williams, G.] Ohio State Univ, Columbus, OH 43210 USA.
[Adam, N.; Berry, E.; Elmer, P.; Garmash, A.; Gerbaudo, D.; Hunt, A.; Jones, J.; Laird, E.; Marlow, D.; Mooney, M.; Olsen, J.; Piroue, P.; Stickland, D.; Tully, C.; Werner, J. S.; Zuranski, A.] Princeton Univ, Princeton, NJ 08544 USA.
[Acosta, J. G.; Del Alamo, M. Bonnett; Huang, X. T.; Lopez, A.; Mendez, H.; Oliveros, S.; Vargas, J. E. Ramirez; Santacruz, N.; Zatzerklyany, A.] Univ Puerto Rico, Mayaguez, PR USA.
[Alagoz, E.; Antillon, E.; Barnes, V. E.; Bolla, G.; Bortoletto, D.; Everett, A.; Garfinkel, A. F.; Gecse, Z.; Gutay, L.; Ippolito, N.; Jones, M.; Koybasi, O.; Laasanen, A. T.; Leonardo, N.; Liu, C.; Maroussov, V.; Merkel, P.; Miller, D. H.; Neumeister, N.; Sedov, A.; Shipsey, I.; Yoo, H. D.; Zheng, Y.] Purdue Univ, W Lafayette, IN 47907 USA.
[Jindal, P.; Parashar, N.] Purdue Univ Calumet, Hammond, LA USA.
[Cuplov, V.; Ecklund, K. M.; Geurts, F. J. M.; Liu, J. H.; Maronde, D.; Matveev, M.; Padley, B. P.; Redjimi, R.; Roberts, J.; Sabbatini, L.; Tumanov, A.] Rice Univ, Houston, TX USA.
[Betchart, B.; Bodek, A.; Budd, H.; Chung, Y. S.; de Barbaro, P.; Demina, R.; Flacher, H.; Gotra, Y.; Harel, A.; Korjenevski, S.; Miner, D. C.; Orbaker, D.; Petrillo, G.; Vishnevskiy, D.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Bhatti, A.; Demortier, L.; Goulianos, K.; Hatakeyama, K.; Lungu, G.; Mesropian, C.; Yan, M.] Rockefeller Univ, New York, NY 10021 USA.
[Atramentov, O.; Bartz, E.; Gershtein, Y.; Halkiadakis, E.; Hits, D.; Lath, A.; Rose, K.; Schnetzer, S.; Somalwar, S.; Stone, R.; Thomas, S.; Watts, T. L.] Rutgers State Univ, Piscataway, NJ USA.
[Cerizza, G.; Hollingsworth, M.; Spanier, S.; Yang, Z. C.; York, A.] Univ Tennessee, Knoxville, TN USA.
[Gilmore, J.; Asaadi, J.; Aurisano, A.; Eusebi, R.; Golyash, A.; Gurrola, A.; Kamon, T.; Nguyen, C. N.; Pivarski, J.; Safonov, A.; Sengupta, S.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX USA.
[Akchurin, N.; Berntzon, L.; Gumus, K.; Jeong, C.; Kim, H.; Lee, S. W.; Popescu, S.; Roh, Y.; Sill, A.; Volobouev, I.; Washington, E.; Wigmans, R.; Yazgan, E.] Texas Tech Univ, Lubbock, TX 79409 USA.
[Engh, D.; Florez, C.; Johns, W.; Pathak, S.; Sheldon, P.] Vanderbilt Univ, Nashville, TN USA.
[Andelin, D.; Arenton, M. W.; Balazs, M.; Boutle, S.; Buehler, M.; Conetti, S.; Cox, B.; Hirosky, R.; Ledovskoy, A.; Neu, C.; Phillips, D., II; Ronquest, M.; Yohay, R.] Univ Virginia, Charlottesville, VA USA.
[Gollapinni, S.; Gunthoti, K.; Harr, R.; Karchin, P. E.; Mattson, M.; Sakharov, A.] Wayne State Univ, Detroit, MI USA.
[Zelepoukine, S.; Anderson, M.; Bachtis, M.; Bellinger, J. N.; Carlsmith, D.; Crotty, I.; Dasu, S.; Dutta, S.; Efron, J.; Feyzi, F.; Flood, K.; Gray, L.; Grogg, K. S.; Grothe, M.; Hall-Wilton, R.; Jaworski, M.; Klabbers, P.; Klukas, J.; Lanaro, A.; Lazaridis, C.; Leonard, J.; Loveless, R.; de Abril, M. Magrans; Mohapatra, A.; Ott, G.; Polese, G.; Reeder, D.; Savin, A.; Smith, W. H.; Sourkov, A.; Swanson, J.; Weinberg, M.; Wenman, D.; Wensveen, M.; White, A.] Univ Wisconsin, Madison, WI 53706 USA.
[Gregores, E. M.] Univ Fed ABC, Santo Andre, Brazil.
[Agram, J. -L.; Conte, E.; Drouhin, F.; Fontaine, J. -C.] Univ Haute Alsace, Mulhouse, France.
[Maity, M.] Visva Bharati Univ, Santini Ketan, W Bengal, India.
[Van Doninck, W.; Abadjiev, K.; Darmenov, N.; Genchev, V.; Toteva, Z.; Zeuner, W. D.; Hartmann, F.; Saout, C.; Panagiotou, A.; Hajdu, C.; Szillasi, Z.; Lenzi, P.; Cimmino, A.; De Gruttola, M.; Bellan, P.; Spagnolo, P.; Tonelli, G.; Cavallari, F.; Trapani, P. P.; Grishin, V.; Cabrillo, I. J.; Calderon, A.; Chuang, S. H.; Diaz Merino, I.; Diez Gonzalez, C.; Duarte Campderros, J.; Fernandez, M.; Gomez, G.; Gonzalez Sanchez, J.; Gonzalez Suarez, R.; Jorda, C.; Lobelle Pardo, P.; Lopez Virto, A.; Marco, J.; Marco, R.; Martinez Rivero, C.; Martinez Ruiz del Arbol, P.; Matorras, F.; Rodrigo, T.; Ruiz Jimeno, A.; Scodellaro, L.; Sobron Sanudo, M.; Vila, I.; Vilar Cortabitarte, R.] CERN, European Org Nucl Res, CH-1211 Geneva, Switzerland.
[Fassi, F.] Inst Natl Phys Nucl & Phys Particules, IN2P3, Ctr Calcul, Villeurbanne, France.
[Fabozzi, F.] Univ Basilicata, I-85100 Potenza, Italy.
[Gulmini, M.; Lacaprara, S.; Maron, G.] Ist Nazl Fis Nucl, Lab Nazl Legnaro, I-35020 Legnaro, Italy.
[Gresele, A.; Lazzizzera, I.] Univ Trento, Trento, Italy.
[Baccaro, S.] ENEA, Casaccia Res Ctr, Santa Maria Di Galeria, Italy.
[Pozniak, K.; Zabolotny, W.] Warsaw Univ Technol, Inst Elect Syst, Warsaw, Poland.
[Jovanovic, D.; Krpic, D.; Puzovic, J.] Univ Belgrade, Fac Phys, Belgrade 11001, Serbia.
[Di Vincenzo, S.] Alstom Contracting, Geneva, Switzerland.
[Rolandi, G.] Ist Nazl Fis Nucl, Scuola Normale & Sez, Pisa, Italy.
[Sogut, K.] Mersin Univ, Mersin, Turkey.
[Kaya, M.; Kaya, O.] Kafkas Univ, Kars, Turkey.
[Ozkorucuklu, S.] Suleyman Demirel Univ, TR-32200 Isparta, Turkey.
[Sonmez, N.] Ege Univ, Izmir, Turkey.
[Cankocak, K.] Istanbul Tech Univ, Istanbul, Turkey.
RP Chatrchyan, S (reprint author), Yerevan Phys Inst, Yerevan 375036, Armenia.
RI Xie, Si/O-6830-2016; Leonardo, Nuno/M-6940-2016; Goh,
Junghwan/Q-3720-2016; Tuominen, Eija/A-5288-2017; Yazgan,
Efe/C-4521-2014; Gerbaudo, Davide/J-4536-2012; Jeitler,
Manfred/H-3106-2012; Venturi, Andrea/J-1877-2012; de Jesus Damiao,
Dilson/G-6218-2012; Montanari, Alessandro/J-2420-2012; Amapane,
Nicola/J-3683-2012; tosi, mia/J-5777-2012; Klyukhin,
Vyacheslav/D-6850-2012; Petrushanko, Sergey/D-6880-2012; Raidal,
Martti/F-4436-2012; Vardanyan, Irina/K-7981-2012; Novaes,
Sergio/D-3532-2012; Kadastik, Mario/B-7559-2008; Lokhtin,
Igor/D-7004-2012; Kodolova, Olga/D-7158-2012; Dudko, Lev/D-7127-2012;
Boos, Eduard/D-9748-2012; Snigirev, Alexander/D-8912-2012; Chipaux,
Remi/G-1145-2010; Servoli, Leonello/E-6766-2012; Tomei,
Thiago/E-7091-2012; Focardi, Ettore/E-7376-2012; Fruhwirth,
Rudolf/H-2529-2012; Azzi, Patrizia/H-5404-2012; Torassa,
Ezio/I-1788-2012; Giacomelli, Paolo/B-8076-2009; korzhik,
Mikhail/E-9505-2014; Della Ricca, Giuseppe/B-6826-2013; Fedorov,
Andrei/E-9455-2014; Konovalova, Nina/D-3882-2014; Cordonnier,
Agnes/I-5083-2016; Paganoni, Marco/A-4235-2016; Kirakosyan,
Martin/N-2701-2015; Seixas, Joao/F-5441-2013; Verwilligen,
Piet/M-2968-2014; Vilela Pereira, Antonio/L-4142-2016; Sznajder,
Andre/L-1621-2016; Haj Ahmad, Wael/E-6738-2016; My,
Salvatore/I-5160-2015; Gumus, Kazim/G-2498-2013; Muelmenstaedt,
Johannes/K-2432-2015; Rovelli, Tiziano/K-4432-2015; Dremin,
Igor/K-8053-2015; Hoorani, Hafeez/D-1791-2013; Vinogradov,
Alexander/M-5331-2015; Altsybeev, Igor/K-6687-2013; TUVE',
Cristina/P-3933-2015; Gulmez, Erhan/P-9518-2015; KIM, Tae
Jeong/P-7848-2015; Flix, Josep/G-5414-2012; Ozdemir, Kadri/P-8058-2014;
Grandi, Claudio/B-5654-2015; Ahmed, Ijaz/E-9144-2015; Lazzizzera,
Ignazio/E-9678-2015; Sen, Sercan/C-6473-2014; D'Alessandro,
Raffaello/F-5897-2015; Trocsanyi, Zoltan/A-5598-2009; Konecki,
Marcin/G-4164-2015; Hernandez Calama, Jose Maria/H-9127-2015; Barcala,
JOSE MIGUEL/I-1105-2015; Bedoya, Cristina/K-8066-2014; Michelotto,
Michele/A-9571-2013; Matorras, Francisco/I-4983-2015; Mundim,
Luiz/A-1291-2012; Santaolalla, Javier/C-3094-2013; Gavrilov,
Gennady/C-6260-2013; Rolandi, Luigi (Gigi)/E-8563-2013; Zalewski,
Piotr/H-7335-2013; Cavallo, Nicola/F-8913-2012; Dvornikov,
Oleg/I-7207-2013; Hill, Christopher/B-5371-2012; Kuleshov,
Sergey/D-9940-2013; Troitsky, Sergey/C-1377-2014; Marlow,
Daniel/C-9132-2014; Janssen, Xavier/E-1915-2013; Oguri,
Vitor/B-5403-2013; Alves, Gilvan/C-4007-2013; Santoro,
Alberto/E-7932-2014; Codispoti, Giuseppe/F-6574-2014; Bellan,
Riccardo/G-2139-2014; Petrucci, Andrea/J-4207-2014; Gribushin,
Andrei/J-4225-2012; Cerrada, Marcos/J-6934-2014; Calderon,
Alicia/K-3658-2014; Oller, Juan Carlos/K-6445-2014; Molinero,
Antonio/H-7347-2013; de la Cruz, Begona/K-7552-2014; Scodellaro,
Luca/K-9091-2014; Josa, Isabel/K-5184-2014; Navarrete Marin, Jose
Javier/K-6412-2014; Marin, Jesus/K-6991-2014; Gonzalez Suarez,
Rebeca/L-6128-2014; Calvo Alamillo, Enrique/L-1203-2014; Paulini,
Manfred/N-7794-2014; Vogel, Helmut/N-8882-2014; Ferguson,
Thomas/O-3444-2014; Ragazzi, Stefano/D-2463-2009; Benussi,
Luigi/O-9684-2014; Russ, James/P-3092-2014; Horvath, Dezso/A-4009-2011;
Palinkas, Jozsef/B-2993-2011; Romaniuk, Ryszard/B-9140-2011; kaya,
mithat/D-8062-2011; Ruiz, Alberto/E-4473-2011; Stahl, Achim/E-8846-2011;
Hektor, Andi/G-1804-2011; Wulz, Claudia-Elisabeth/H-5657-2011; Chen,
Jie/H-6210-2011; Bolton, Tim/A-7951-2012; Krammer, Manfred/A-6508-2010;
Tinoco Mendes, Andre David/D-4314-2011; Menasce, Dario
Livio/A-2168-2016; Bargassa, Pedrame/O-2417-2016; Sguazzoni,
Giacomo/J-4620-2015; Ligabue, Franco/F-3432-2014; Fassi,
Farida/F-3571-2016; Varela, Joao/K-4829-2016;
OI Xie, Si/0000-0003-2509-5731; Leonardo, Nuno/0000-0002-9746-4594; Goh,
Junghwan/0000-0002-1129-2083; Tuominen, Eija/0000-0002-7073-7767;
Yazgan, Efe/0000-0001-5732-7950; Gerbaudo, Davide/0000-0002-4463-0878;
Vieira de Castro Ferreira da Silva, Pedro Manuel/0000-0002-5725-041X;
Actis, Oxana/0000-0001-8851-3983; de Jesus Damiao,
Dilson/0000-0002-3769-1680; Montanari, Alessandro/0000-0003-2748-6373;
Amapane, Nicola/0000-0001-9449-2509; Klyukhin,
Vyacheslav/0000-0002-8577-6531; Novaes, Sergio/0000-0003-0471-8549;
Dudko, Lev/0000-0002-4462-3192; Servoli, Leonello/0000-0003-1725-9185;
Tomei, Thiago/0000-0002-1809-5226; Focardi, Ettore/0000-0002-3763-5267;
Azzi, Patrizia/0000-0002-3129-828X; Della Ricca,
Giuseppe/0000-0003-2831-6982; Cordonnier, Agnes/0000-0002-4216-3524;
Paganoni, Marco/0000-0003-2461-275X; Seixas, Joao/0000-0002-7531-0842;
Vilela Pereira, Antonio/0000-0003-3177-4626; Sznajder,
Andre/0000-0001-6998-1108; Haj Ahmad, Wael/0000-0003-1491-0446; My,
Salvatore/0000-0002-9938-2680; Gumus, Kazim/0000-0002-1450-6868;
Muelmenstaedt, Johannes/0000-0003-1105-6678; Rovelli,
Tiziano/0000-0002-9746-4842; Altsybeev, Igor/0000-0002-8079-7026; TUVE',
Cristina/0000-0003-0739-3153; Gulmez, Erhan/0000-0002-6353-518X; KIM,
Tae Jeong/0000-0001-8336-2434; Flix, Josep/0000-0003-2688-8047; Ozdemir,
Kadri/0000-0002-0103-1488; Grandi, Claudio/0000-0001-5998-3070;
Lazzizzera, Ignazio/0000-0001-5092-7531; Sen,
Sercan/0000-0001-7325-1087; D'Alessandro, Raffaello/0000-0001-7997-0306;
Trocsanyi, Zoltan/0000-0002-2129-1279; Konecki,
Marcin/0000-0001-9482-4841; Hernandez Calama, Jose
Maria/0000-0001-6436-7547; Barcala, JOSE MIGUEL/0000-0002-1092-7091;
Bedoya, Cristina/0000-0001-8057-9152; Michelotto,
Michele/0000-0001-6644-987X; Matorras, Francisco/0000-0003-4295-5668;
Mundim, Luiz/0000-0001-9964-7805; Rolandi, Luigi
(Gigi)/0000-0002-0635-274X; Hill, Christopher/0000-0003-0059-0779;
Kuleshov, Sergey/0000-0002-3065-326X; Troitsky,
Sergey/0000-0001-6917-6600; Codispoti, Giuseppe/0000-0003-0217-7021;
Petrucci, Andrea/0000-0003-2524-8355; Cerrada,
Marcos/0000-0003-0112-1691; Oller, Juan Carlos/0000-0002-2754-2788;
Scodellaro, Luca/0000-0002-4974-8330; Navarrete Marin, Jose
Javier/0000-0002-6220-8638; Marin, Jesus/0000-0002-9049-3667; Gonzalez
Suarez, Rebeca/0000-0002-6126-7230; Calvo Alamillo,
Enrique/0000-0002-1100-2963; Paulini, Manfred/0000-0002-6714-5787;
Vogel, Helmut/0000-0002-6109-3023; Ferguson, Thomas/0000-0001-5822-3731;
Ragazzi, Stefano/0000-0001-8219-2074; Benussi,
Luigi/0000-0002-2363-8889; Russ, James/0000-0001-9856-9155; Romaniuk,
Ryszard/0000-0002-5710-4041; Ruiz, Alberto/0000-0002-3639-0368; Stahl,
Achim/0000-0002-8369-7506; Hektor, Andi/0000-0001-7873-8118; Wulz,
Claudia-Elisabeth/0000-0001-9226-5812; Krammer,
Manfred/0000-0003-2257-7751; Tinoco Mendes, Andre
David/0000-0001-5854-7699; Bean, Alice/0000-0001-5967-8674; Longo,
Egidio/0000-0001-6238-6787; Baarmand, Marc/0000-0002-9792-8619; Nervo,
Marco/0000-0002-9898-7346; Boccali, Tommaso/0000-0002-9930-9299;
Menasce, Dario Livio/0000-0002-9918-1686; Bargassa,
Pedrame/0000-0001-8612-3332; Mrenna, Stephen/0000-0001-8731-160X; Bilki,
Burak/0000-0001-9515-3306; Costa, Salvatore/0000-0001-9919-0569; Lloret
Iglesias, Lara/0000-0002-0157-4765; Kasemann,
Matthias/0000-0002-0429-2448; Donvito, Giacinto/0000-0002-0628-1080;
Petragnani, Giulio/0000-0002-0819-6509; Sguazzoni,
Giacomo/0000-0002-0791-3350; WANG, MIN-ZU/0000-0002-0979-8341; Ligabue,
Franco/0000-0002-1549-7107; Diemoz, Marcella/0000-0002-3810-8530;
Landsberg, Greg/0000-0002-4184-9380; Rizzi, Andrea/0000-0002-4543-2718;
Gershtein, Yuri/0000-0002-4871-5449; Tricomi, Alessia
Rita/0000-0002-5071-5501; CALZOLARI, FEDERICO/0000-0002-5510-3061;
Malik, Sudhir/0000-0002-6356-2655; Dharmaraatna,
Welathantri/0000-0002-6366-837X; Giacomelli, Paolo/0000-0002-6368-7220;
Fassi, Farida/0000-0002-6423-7213; Leonidopoulos,
Christos/0000-0002-7241-2114; Blekman, Freya/0000-0002-7366-7098;
Ghezzi, Alessio/0000-0002-8184-7953; Demaria,
Natale/0000-0003-0743-9465; Benaglia, Andrea Davide/0000-0003-1124-8450;
Covarelli, Roberto/0000-0003-1216-5235; Staiano,
Amedeo/0000-0003-1803-624X; Ciulli, Vitaliano/0000-0003-1947-3396;
Tonelli, Guido Emilio/0000-0003-2606-9156; Beuselinck,
Raymond/0000-0003-2613-7446; Stober, Fred/0000-0003-2620-3159; Martelli,
Arabella/0000-0003-3530-2255; Abbiendi, Giovanni/0000-0003-4499-7562;
Levchenko, Petr/0000-0003-4913-0538; Uliyanov,
Alexey/0000-0001-6935-8949; Arneodo, Michele/0000-0002-7790-7132;
bianco, stefano/0000-0002-8300-4124; Sciacca,
Crisostomo/0000-0002-8412-4072; Varela, Joao/0000-0003-2613-3146; Jun,
Soon Yung/0000-0003-3370-6109; Toback, David/0000-0003-3457-4144;
Mackay, Catherine/0000-0003-4252-6740; HSIUNG, YEE/0000-0003-4801-1238;
Bonnett Del Alamo, Miguel Reinaldo/0000-0002-1011-8411; Faccioli,
Pietro/0000-0003-1849-6692; Korenkov, Vladimir/0000-0002-2342-7862;
Heath, Helen/0000-0001-6576-9740; Govoni, Pietro/0000-0002-0227-1301;
Giubilato, Piero/0000-0003-4358-5355; Gallinaro,
Michele/0000-0003-1261-2277; Tabarelli de Fatis,
Tommaso/0000-0001-6262-4685; Zabolotny, Wojciech/0000-0002-6833-4846;
Lenzi, Piergiulio/0000-0002-6927-8807; Gutsche,
Oliver/0000-0002-8015-9622; Torassa, Ezio/0000-0003-2321-0599; Luukka,
Panja/0000-0003-2340-4641; Goldstein, Joel/0000-0003-1591-6014; Sogut,
Kenan/0000-0002-9682-2855
FU FMSR (Austria); FNRS (Belgium); FWO (Belgium); CNPq (Brazil); CAPES
(Brazil); FAPERJ (Brazil); FAPESP (Brazil); MES (Bulgaria); CERN
(China); CAS (China); MoST (China); NSFC (China); COLCIEN-CIAS
(Colombia); MSES (Croatia); RPF (Cyprus); Academy of Sciences (Estonia);
NICPB (Estonia); Academy of Finland (Finland); ME (Finland); HIP
(Finland); CEA (France); CNRS/IN2P3 (France); BMBF (Germany); DFG
(Germany); HGF (Germany); GSRT (Greece); OTKA (Hungary); NKTH (Hungary);
DAE (India); DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV (Mexico); CONACYT (Mexico); SEP
(Mexico); UASLP-FAI (Mexico); PAEC (Pakistan); SCSR (Poland); FCT
(Portugal); JINR (Armenia); JINR (Belarus); JINR (Georgia); JINR
(Ukraine); JINR (Uzbekistan); MST (Russia); MAE (Russia); MSTDS
(Serbia); MICINN (Spain); CPAN (Spain); Swiss Funding Agencies
(Switzerland); NSC (Taipei); TUBITAK (Turkey); TAEK (Turkey); STFC
(United Kingdom); DOE (USA); NSF (USA); European Union; Leventis
Foundation; A. P. Sloan Foundation; Alexander von Humboldt Foundation
FX We thank the technical and administrative staff at CERN and other CMS
Institutes, and acknowledge support from: FMSR (Austria); FNRS and FWO
(Belgium); CNPq, CAPES, FAPERJ, and FAPESP (Brazil); MES (Bulgaria);
CERN; CAS, MoST, and NSFC (China); COLCIEN-CIAS (Colombia); MSES
(Croatia); RPF (Cyprus); Academy of Sciences and NICPB (Estonia);
Academy of Finland, ME, and HIP (Finland); CEA and CNRS/IN2P3 (France);
BMBF, DFG, and HGF (Germany); GSRT (Greece); OTKA and NKTH (Hungary);
DAE and DST (India); IPM (Iran); SFI (Ireland); INFN (Italy); NRF
(Korea); LAS (Lithuania); CINVESTAV, CONACYT, SEP, and UASLP-FAI
(Mexico); PAEC (Pakistan); SCSR (Poland); FCT (Portugal); JINR (Armenia,
Belarus, Georgia, Ukraine, Uzbekistan); MST and MAE (Russia); MSTDS
(Serbia); MICINN and CPAN (Spain); Swiss Funding Agencies (Switzerland);
NSC (Taipei); TUBITAK and TAEK (Turkey); STFC (United Kingdom); DOE and
NSF (USA). Individuals have received support from the Marie-Curie IEF
program (European Union); the Leventis Foundation; the A. P. Sloan
Foundation; and the Alexander von Humboldt Foundation.
NR 10
TC 36
Z9 36
U1 2
U2 50
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1748-0221
J9 J INSTRUM
JI J. Instrum.
PD MAR
PY 2010
VL 5
AR T03011
DI 10.1088/1748-0221/5/03/T03011
PG 27
WC Instruments & Instrumentation
SC Instruments & Instrumentation
GA 633SA
UT WOS:000280524100021
ER
PT J
AU Mao, K
Pruski, M
AF Mao, Kanmi
Pruski, Marek
TI Homonuclear dipolar decoupling under fast MAS: Resolution patterns and
simple optimization strategy
SO JOURNAL OF MAGNETIC RESONANCE
LA English
DT Article
DE Solid-state NMR; Fast MAS; CRAMPS; Homonuclear decoupling; PMLG;
optimization
ID SOLID-STATE NMR; NUCLEAR-MAGNETIC-RESONANCE; MULTIPLE-PULSE NMR;
ENHANCED RESOLUTION; PROTON NMR; 65 KHZ; SPECTROSCOPY; SEQUENCES;
ROTATION; H-1-NMR
AB A simple method is shown for optimization of H-1 homonuclear dipolar decoupling at MAS rates exceeding 10 kHz By monitoring the intensity of a spin-echo tinder the decoupling conditions. it is possible to optimize the amplitude of the RF magnetic field, the cycle time of the decoupling sequence and the resonance offset within minutes As a result, the decoupling efficiency can be quickly and reliably fine-tuned Without using a reference sample. The utility of this method has been confirmed by studying the resolution patterns for the supercycled PMLG scheme, which were found to be in excellent agreement with earlier theoretical predictions and verified in high-resolution 2D H-1-H-1 experiments (C) 2009 Elsevier Inc All rights reserved
C1 [Pruski, Marek] Iowa State Univ, Ames Lab, Ames, IA 50011 USA.
Iowa State Univ, Dept Chem, Ames, IA 50011 USA.
RP Pruski, M (reprint author), Iowa State Univ, Ames Lab, Ames, IA 50011 USA.
FU US Department of Energy, Office of Basic Energy Sciences
[DE-AC02-07CH11358]
FX The authors thank Drs S Vega and J -P Amoureux for helpful discussions
This research was supported at the Ames Laboratory by the US Department
of Energy, Office of Basic Energy Sciences, under Contract No.
DE-AC02-07CH11358
NR 30
TC 21
Z9 21
U1 2
U2 10
PU ACADEMIC PRESS INC ELSEVIER SCIENCE
PI SAN DIEGO
PA 525 B ST, STE 1900, SAN DIEGO, CA 92101-4495 USA
SN 1090-7807
EI 1096-0856
J9 J MAGN RESON
JI J. Magn. Reson.
PD MAR
PY 2010
VL 203
IS 1
BP 144
EP 149
DI 10.1016/j.jmr.2009.12.013
PG 6
WC Biochemical Research Methods; Physics, Atomic, Molecular & Chemical;
Spectroscopy
SC Biochemistry & Molecular Biology; Physics; Spectroscopy
GA 560RX
UT WOS:000274921000016
PM 20093059
ER
PT J
AU Anderson, GIR
Wei, HX
Porter, NA
Arena, DA
Dvorak, J
Han, XF
Marrows, CH
AF Anderson, G. I. R.
Wei, H. -X.
Porter, N. A.
Arena, D. A.
Dvorak, J.
Han, X. -F.
Marrows, C. H.
TI Structural and magnetic changes in MgO-based magnetic tunneling
junctions during the early stages of annealing
SO JOURNAL OF MAGNETISM AND MAGNETIC MATERIALS
LA English
DT Article
DE Magnetic tunnel junction; Tunneling magnetoresistance; Soft X-ray
magnetic scattering
ID ROOM-TEMPERATURE; MAGNETORESISTANCE; SCATTERING; ASYMMETRY; FILMS
AB We have studied the effects of the initial stages of the annealing on magnetic tunnel junctions with MgO barriers and CoFeB electrodes. We report changes in the resistance-voltage characteristics and tunneling magnetoresistance for patterned transport junctions, and correlate these with the observed changes in the structural and magnetic interface morphologies determined by soft X-ray resonant magnetic scattering from sheet films from the same wafer. An important feature of our experiment was that all measurements were carried out within the soft X-ray diffractometer on samples from the same wafer subjected to simultaneous annealing cycles, so that our magnetotransport and scattering data are directly comparable. The as-grown junction showed a tunneling magnetoresistance ratio of 5.5%, and a specific barrier resistance of 85.6 k Omega mu m(2). A 200 degrees C anneal for 1 h resulted in a small rise in barrier resistance and magnetoresistance coupled with a smoothing of the magnetic interfaces, consistent with the healing of barrier defects and removal of tunneling hot-spots. A subsequent 300 degrees C anneal for a further hour resulted in further smoothing, and a rise in the magnetoresistance ratio to 72%, and a much weaker dependence of the parallel state resistance upon voltage bias, indicating the development of (0 0 1) crystallographic texture in the electrodes. Annealing to 325 degrees C yielded a further decrease in magnetic interface width (the quadrature sum of roughness and intermixing length scales). The reduction in interface width for Co species occurred at higher temperatures than for Fe throughout the experiments. (C) 2009 Elsevier B.V. All rights reserved.
C1 [Anderson, G. I. R.; Porter, N. A.; Marrows, C. H.] Univ Leeds, Sch Phys & Astron, Leeds LS2 9JT, W Yorkshire, England.
[Wei, H. -X.; Han, X. -F.] Chinese Acad Sci, Inst Phys, State Key Lab Magnetism, Beijing 100080, Peoples R China.
[Arena, D. A.] Brookhaven Natl Lab, Natl Synchrotron Light Source, Upton, NY 11973 USA.
[Dvorak, J.] Montana State Univ, Dept Phys, Bozeman, MT 59717 USA.
RP Marrows, CH (reprint author), Univ Leeds, Sch Phys & Astron, Leeds LS2 9JT, W Yorkshire, England.
EM c.h.marrows@leeds.ac.uk
RI Marrows, Christopher/D-7980-2011;
OI Marrows, Christopher/0000-0003-4812-6393
FU EPSRC; Royal Society; Department of Energy Office of Basic Energy
Sciences; Chinese MOST [2006CB932200]; National Natural Science
Foundation of China [10874225, 50721001]
FX We would like to thank A.T. Hindmarch, C.J. Kinane, S. Roy, E.
Blackburn, and S. K. Sinha for useful discussions. We are grateful to
the EPSRC, the Royal Society, and the Department of Energy Office of
Basic Energy Sciences for support, as well as for partial support by the
Chinese MOST fund no. 2006CB932200, and the National Natural Science
Foundation of China fund nos. 10874225 and 50721001.
NR 42
TC 4
Z9 4
U1 2
U2 7
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0304-8853
EI 1873-4766
J9 J MAGN MAGN MATER
JI J. Magn. Magn. Mater.
PD MAR
PY 2010
VL 322
IS 6
BP 756
EP 761
DI 10.1016/j.jmmm.2009.10.056
PG 6
WC Materials Science, Multidisciplinary; Physics, Condensed Matter
SC Materials Science; Physics
GA 541QT
UT WOS:000273434300035
ER
PT J
AU Spencer, VA
Xu, R
Bissell, MJ
AF Spencer, Virginia A.
Xu, Ren
Bissell, Mina J.
TI Gene Expression in the Third Dimension: The ECM-nucleus Connection
SO JOURNAL OF MAMMARY GLAND BIOLOGY AND NEOPLASIA
LA English
DT Article
DE Extracellular matrix; Gene expression; Nuclear structure
ID MAMMARY EPITHELIAL-CELLS; EXTRACELLULAR-MATRIX; HUMAN BREAST; CHROMOSOME
TERRITORIES; TRANSCRIPTION FACTORS; HISTONE ACETYLATION; COLLAGEN
MEMBRANES; MALIGNANT BREAST; TISSUE PHENOTYPE; DOMAIN PROTEINS
AB Decades ago, we and others proposed that the dynamic interplay between a cell and its surrounding environment dictates cell phenotype and tissue structure. Whereas much has been discovered about the effects of extracellular matrix molecules on cell growth and tissue-specific gene expression, the nuclear mechanisms through which these molecules promote these physiological events remain unknown. Using mammary epithelial cells as a model, the purpose of this review is to discuss how the extracellular matrix influences nuclear structure and function in a three-dimensional context to promote epithelial morphogenesis and function in the mammary gland.
C1 [Spencer, Virginia A.; Xu, Ren; Bissell, Mina J.] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Life Sci, Berkeley, CA 94720 USA.
RP Spencer, VA (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, Div Life Sci, 1 Cyclotron Rd,MS 977R225A, Berkeley, CA 94720 USA.
EM vaspencer@lbl.gov; MJBissell@lbl.gov
FU U.S. Department of Energy, the Office of Biological and Environmental
Research [DE-AC02-05CH1123]; Office of Health and Environmental Research
Health Effects Division [03-76SF00098]; National Cancer Institute
[R01CA064786, U54CA126552, U54CA112970, R01CA057621]; U.S. Department of
Defense [W81XWH0810736, W81XWH0510338, W81XWH0410581]; Canadian
Institutes of Health Research; [DAMD17-02-1-0441]
FX We thank Rana Mroue and Joni Mott for their constructive comments in the
writing of this manuscript. This work was supported by grants from the
U.S. Department of Energy, the Office of Biological and Environmental
Research ( contract no. DE-AC02-05CH1123), a Low Dose Radiation Program
and a Distinguished Fellow Award from the Office of Health and
Environmental Research Health Effects Division ( contract no.
03-76SF00098) to MJB, the National Cancer Institute ( awards
R01CA064786, U54CA126552 and U54CA112970 to MJB and R01CA057621 to MJB
and Zena Werb), the U.S. Department of Defense Medical and Materiel
Command innovator award ( contract no. W81XWH0810736 and W81XWH0510338)
to MJB, and postdoctoral fellowships W81XWH0410581 to V. A. S and
DAMD17-02-1-0441 to R. X., and a post-doctoral fellowship to V. A. S.
from the Canadian Institutes of Health Research.
NR 76
TC 33
Z9 34
U1 0
U2 7
PU SPRINGER/PLENUM PUBLISHERS
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1083-3021
J9 J MAMMARY GLAND BIOL
JI J. Mammary Gland Biol. Neoplasia
PD MAR
PY 2010
VL 15
IS 1
SI SI
BP 65
EP 71
DI 10.1007/s10911-010-9163-3
PG 7
WC Oncology; Endocrinology & Metabolism; Physiology
SC Oncology; Endocrinology & Metabolism; Physiology
GA 557FZ
UT WOS:000274656300006
PM 20107877
ER
PT J
AU Kertesz, V
Van Berkel, GJ
AF Kertesz, Vilmos
Van Berkel, Gary J.
TI Fully automated liquid extraction-based surface sampling and ionization
using a chip-based robotic nanoelectrospray platform
SO JOURNAL OF MASS SPECTROMETRY
LA English
DT Article
DE surface sampling; nanoelectrospray; mass spectrometry; dried blood
spots; thin tissue sections; MALDI spots
ID TANDEM MASS-SPECTROMETRY; THIN TISSUE-SECTIONS; QUANTITATIVE-ANALYSIS;
PHARMACEUTICAL DRUGS; ELECTROSPRAY DEVICE; PROBE; SYSTEM;
AUTORADIOGRAPHY; NEWBORN; MALDI
AB A fully automated liquid extraction-based surface sampling device utilizing an Advion Nano Mate chip-based infusion nanoelectrospray ionization system is reported. Analyses were enabled for discrete spot sampling by using the Advanced User Interface of the current commercial control software. This software interface provided the parameter control necessary for the Nano Mate robotic pipettor to both form and withdraw a liquid microjunction for sampling from a surface. The system was tested with three types of analytically important sample surface types, viz., spotted sample arrays on a MALDI plate, dried blood spots on paper, and whole-body thin tissue sections from drug dosed mice. The qualitative and quantitative data were consistent with previous studies employing other liquid extraction-based surface sampling techniques. Published in 2009 by John Wiley & Sons, Ltd.
C1 [Kertesz, Vilmos; Van Berkel, Gary J.] Oak Ridge Natl Lab, Organ & Biol Mass Spectrometry Grp, Div Chem Sci, Oak Ridge, TN 37831 USA.
RP Kertesz, V (reprint author), Oak Ridge Natl Lab, Organ & Biol Mass Spectrometry Grp, Div Chem Sci, Oak Ridge, TN 37831 USA.
EM kerteszv@ornl.gov; vanberkelgj@ornl.gov
RI Kertesz, Vilmos/M-8357-2016
OI Kertesz, Vilmos/0000-0003-0186-5797
FU Division of Chemical Sciences, Geosciences and Biosciences, Office of
Basic Energy Sciences, United States Department of Energy; Battelle
Memorial Institute Technology Maturation Fund; US Department of Energy
[DE-AC05-00OR22725]
FX Marissa Vavrek and Kenneth A. Koeplinger (Merck Research Laboratories,
West Point, PA, USA) are thanked for the whole-body mouse thin tissue
sections. Neil Spooner and Paul Abu-Rabie (GlaxoSmithKline, Ware, UK)
are thanked for supplying the dried blood spot samples. Simon Prosser
(Advion) is thanked for access to and assistance with the Advanced User
Interface of the ChipSoftManager software. The study of the surface
sampling fundamentals using the nanoelectrospray system employed here
was supported by the Division of Chemical Sciences, Geosciences and
Biosciences, Office of Basic Energy Sciences, United States Department
of Energy. Investigation of the particular analytical surfaces reported
was funded by the Battelle Memorial Institute Technology Maturation
Fund. Oak Ridge National Laboratory is managed by UT-Battelle, LLC for
the US Department of Energy under contract DE-AC05-00OR22725.
NR 33
TC 138
Z9 138
U1 13
U2 72
PU JOHN WILEY & SONS LTD
PI CHICHESTER
PA THE ATRIUM, SOUTHERN GATE, CHICHESTER PO19 8SQ, W SUSSEX, ENGLAND
SN 1076-5174
J9 J MASS SPECTROM
JI J. Mass Spectrom.
PD MAR
PY 2010
VL 45
IS 3
BP 252
EP 260
DI 10.1002/jms.1709
PG 9
WC Biophysics; Chemistry, Organic; Spectroscopy
SC Biophysics; Chemistry; Spectroscopy
GA 577JT
UT WOS:000276219900003
PM 20020414
ER
PT J
AU Polat, O
Aytug, T
Paranthaman, MP
Leonard, KJ
Lupini, AR
Pennycook, SJ
Meyer, HM
Kim, K
Qiu, XF
Cook, S
Thompson, JR
Christen, DK
Goyal, A
Xiong, XM
Selvamanickam, V
AF Polat, Oezguer
Aytug, Tolga
Paranthaman, M. Parans
Leonard, Keith J.
Lupini, Andrew R.
Pennycook, Steve J.
Meyer, Harry M.
Kim, Kim
Qiu, Xiaofeng
Cook, Sylvester
Thompson, James R.
Christen, David K.
Goyal, Amit
Xiong, Xumin
Selvamanickam, Venkat
TI An evaluation of phase separated, self-assembled LaMnO(3)-MgO
nanocomposite films directly on IBAD-MgO as buffer layers for flux
pinning enhancements in YBa(2)Cu(3)O(7-delta) coated conductors
SO JOURNAL OF MATERIALS RESEARCH
LA English
DT Article
ID ASSISTED DEPOSITION MGO; THIN-FILMS; CENTERS; ISLANDS; GROWTH;
NANOSTRUCTURES; TEMPLATES; NANODOTS; YBCO; ER
AB Technological applications of high temperature superconductors (HTS) require high critical current density, J(c), under operation at high magnetic field strengths. This requires effective flux pinning by introducing artificial defects through creative processing. In this work, we evaluated the feasibility of mixed-phase LaMnO(3):MgO (LMO:MgO) films as a potential cap buffer layer for the epitaxial growth and enhanced performance of YBa(2)Cu(3)O(7-delta) (YBCO) films. Such composite films were sputter deposited directly on IBAD-MgO templates (with no additional homo-epitaxial MgO layer) and revealed the formation of two phase-separated, but at the same time vertically aligned, self-assembled composite nanostructures that extend throughout the entire thickness of the film. The YBCO coatings deposited on these nanostructured cap layers showed correlated c-axis pinning and improved in-field J(c) performance compared to those of YBCO films fabricated on standard LMO buffers. Microstructural characterization revealed additional extended disorder in the YBCO matrix. The present results demonstrate the feasibility of novel and potentially practical approaches in the pursuit of more efficient, economical, and high performance superconducting devices.
C1 [Polat, Oezguer; Aytug, Tolga; Paranthaman, M. Parans; Leonard, Keith J.; Lupini, Andrew R.; Pennycook, Steve J.; Meyer, Harry M.; Kim, Kim; Qiu, Xiaofeng; Cook, Sylvester; Thompson, James R.; Christen, David K.; Goyal, Amit] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
[Polat, Oezguer; Thompson, James R.] Univ Tennessee, Dept Phys & Astron, Knoxville, TN 37996 USA.
[Xiong, Xumin; Selvamanickam, Venkat] SuperPower Inc, Schenectady, NY 12304 USA.
RP Aytug, T (reprint author), Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
EM aytugt@ornl.gov
RI Paranthaman, Mariappan/N-3866-2015
OI Paranthaman, Mariappan/0000-0003-3009-8531
FU Office of Electricity Delivery and Energy Reliability, Advanced Cables
and Conductors; Division of Materials Sciences and Engineering, Office
of Basic Energy Sciences, United States Department of Energy
FX This work was supported by the Office of Electricity Delivery and Energy
Reliability, Advanced Cables and Conductors (T.A., M.P., K.K., D.K.C.,
J.R.T., S.C. A.G.), and Division of Materials Sciences and Engineering,
Office of Basic Energy Sciences, United States Department of Energy
(O.P., A.R.L., S.J.P.). Sample characterization (H.M.M., K.J.L.) was
conducted at the Shared Research Equipment (SHaRE) user facility, which
is sponsored at Oak Ridge National Laboratory by the Division of
Scientific User Facilities, United States Department of Energy.
NR 37
TC 5
Z9 5
U1 0
U2 19
PU MATERIALS RESEARCH SOC
PI WARRENDALE
PA 506 KEYSTONE DR, WARRENDALE, PA 15086 USA
SN 0884-2914
J9 J MATER RES
JI J. Mater. Res.
PD MAR
PY 2010
VL 25
IS 3
BP 437
EP 443
DI 10.1557/JMR.2010.0073
PG 7
WC Materials Science, Multidisciplinary
SC Materials Science
GA 564NG
UT WOS:000275221100004
ER
PT J
AU Han, J
Papalambros, PY
AF Han, Jeongwoo
Papalambros, Panos Y.
TI A Note on the Convergence of Analytical Target Cascading With Infinite
Norms
SO JOURNAL OF MECHANICAL DESIGN
LA English
DT Article
ID COLLABORATIVE OPTIMIZATION; LAGRANGIAN COORDINATION; DESIGN
AB Analytical target cascading (ATC) is a multidisciplinary design optimization method for multilevel hierarchical systems. To improve computational efficiency, especially fir problems under uncertainty or with strong monotonicity, a sequential linear programming (SLP) algorithm was previously employed as an alternate coordination strategy to solve ATC and probabilistic ATC problems. The SLP implementation utilizes L, norms to maintain the linearity of SLP subsequences. This note offers a proof that there exists a set of weights such that the ATC algorithm converges when L(infinity) norms are used. Examples are also provided to illustrate the effectiveness of using L norms as a penalty function to maintain the formulation linear and differentiable. The examples show that the proposed method provides more robust results for linearized ATC problems due to the robustness of the linear programming solver [DOI: 10.1115/1.4001001]
C1 [Han, Jeongwoo] Argonne Natl Lab, Argonne, IL 60439 USA.
[Papalambros, Panos Y.] Univ Michigan, Dept Mech Engn, Ann Arbor, MI 48104 USA.
RP Han, J (reprint author), Argonne Natl Lab, 9700 S Cass Ave,Bldg 362, Argonne, IL 60439 USA.
EM jhan@anl.gov; pyp@umich.edu
FU General Motors Corporation; U.S. Army Center of Excellence in Modeling
and Simulation of Ground Vehicle Systems; University of Michigan; NSF
[DMI-0503737]
FX This work was partially supported by the General Motors Corporation, the
Automotive Research Center, a U.S. Army Center of Excellence in Modeling
and Simulation of Ground Vehicle Systems, at the University of Michigan,
and NSF Grant No. DMI-0503737. This support is gratefully acknowledged.
NR 22
TC 3
Z9 3
U1 1
U2 6
PU ASME-AMER SOC MECHANICAL ENG
PI NEW YORK
PA THREE PARK AVE, NEW YORK, NY 10016-5990 USA
SN 1050-0472
J9 J MECH DESIGN
JI J. Mech. Des.
PD MAR
PY 2010
VL 132
IS 3
AR 034502
DI 10.1115/1.4001001
PG 6
WC Engineering, Mechanical
SC Engineering
GA 585QY
UT WOS:000276844400011
ER
PT J
AU O'Brien, CP
Howard, BH
Miller, JB
Morreale, BD
Gellman, AJ
AF O'Brien, Casey P.
Howard, Bret H.
Miller, James B.
Morreale, Bryan D.
Gellman, Andrew J.
TI Inhibition of hydrogen transport through Pd and Pd47Cu53 membranes by
H2S at 350 degrees C
SO JOURNAL OF MEMBRANE SCIENCE
LA English
DT Article
DE Palladium-copper membrane; Hydrogen sulfide; Palladium sulfide; Sulfur
poisoning
ID V-15NI COMPOSITE MEMBRANE; CU MEMBRANES; ALLOY MEMBRANES; PERMEATION;
TEMPERATURES; SULFIDE; SEGREGATION; ABSORPTION; PREDICTION; SEPARATION
AB In pure H-2 gas, hydrogen fluxes through pure Pd and Pd47Cu53 (mol%) foils at 350 degrees C are similar. In the presence of 1000 ppm H2S in H-2, the hydrogen fluxes through both foils are substantially reduced, but with significantly different decay patterns. Six hours after the start of H2S exposure, the Pd foil remained permeable to hydrogen, with the flux decreasing slowly over time. Analysis of the Pd foil by X-ray diffraction (XRD) and scanning electron microscopy (SEM) reveals that Pd reacts with H2S to form a palladium sulfide corrosion product, Pd4S, which is about 6.6 mu m thick. These observations are consistent with the slow growth of a low-permeability, but catalytically active, sulfide corrosion layer on the Pd surface. In contrast, the hydrogen flux through the Pd47Cu53 foil is undetectable within 5 min of the start of H2S exposure. XPS depth profiling of the Pd47Cu53 foil reveals that sulfur penetrates only similar to 3 nm into the Pd47Cu53 surface. Rapid formation of a Pd-Cu-S terminal layer, which is either inactive for hydrogen dissociation or impermeable to hydrogen atoms, is responsible for the deactivation of the Pd47Cu53 alloy membrane in H2S at 350 degrees C. (C) 2010 Published by Elsevier B.V.
C1 [O'Brien, Casey P.; Howard, Bret H.; Miller, James B.; Morreale, Bryan D.; Gellman, Andrew J.] US DOE, Natl Energy Technol Lab, Pittsburgh, PA 15236 USA.
[O'Brien, Casey P.; Miller, James B.; Gellman, Andrew J.] Carnegie Mellon Univ, Dept Mech Engn, Pittsburgh, PA 15213 USA.
RP Howard, BH (reprint author), US DOE, Natl Energy Technol Lab, POB 10940, Pittsburgh, PA 15236 USA.
EM bret.howard@netl.doe.gov
RI Gellman, Andrew/M-2487-2014
OI Gellman, Andrew/0000-0001-6618-7427
FU National Energy Technology [DE-AC26-04NT41817]
FX This technical effort was performed in support of the National Energy
Technology Laboratory's on-going research in Computational and Basic
Sciences under the RDS contract DE-AC26-04NT41817.
NR 35
TC 45
Z9 45
U1 4
U2 17
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0376-7388
J9 J MEMBRANE SCI
JI J. Membr. Sci.
PD MAR 1
PY 2010
VL 349
IS 1-2
BP 380
EP 384
DI 10.1016/j.memsci.2009.11.070
PG 5
WC Engineering, Chemical; Polymer Science
SC Engineering; Polymer Science
GA 560YY
UT WOS:000274943000044
ER
PT J
AU Ge, XX
Roux, B
AF Ge, Xiaoxia
Roux, Benoit
TI Calculation of the standard binding free energy of sparsomycin to the
ribosomal peptidyl-transferase P-site using molecular dynamics
simulations with restraining potentials
SO JOURNAL OF MOLECULAR RECOGNITION
LA English
DT Article
DE simulation; electrostatics; counterions
ID CONTINUUM ELECTROSTATICS CALCULATIONS; ANTITUMOR ANTIBIOTIC SPARSOMYCIN;
HISTOGRAM ANALYSIS METHOD; EMPIRICAL FORCE-FIELD; TRANSFER-RNA;
COMPUTER-SIMULATIONS; BOND FORMATION; NUCLEIC-ACIDS; 70S RIBOSOME;
STRUCTURAL INSIGHTS
AB The standard (absolute) binding free energy of the antibiotic sparsomycin with the SOS bacteria ribosomal subunit is calculated using molecular dynamics (MD) free energy perturbation (FEP) simulations with restraining potentials developed by Wang et al. [Biophys. J. 91:2798-2814 (2006)]. In the simulation protocol, restraining potentials are activated for the orientational and translational movements of the ligand relative to the binding site when it is decoupled from the binding pocket, and then released once the ligand fully interacts with the rest of the system. A reduced system is simulated to decrease the computational cost of the FEP/MD calculations and the effects of the surrounding atoms are incorporated using the generalized solvent boundary potential (GSBP) method. The loss of conformational freedom of the ligand upon binding is characterized using the potential of mean force (PMF) as a function of the root-mean-square deviation (RMSD) relative to the bound conformation. The number of water molecules in the binding pocket is allowed to fluctuate dynamically in response to the ligand during the calculations by combining FEP/MD with grand canonical Monte Carlo (GCMG) simulations. The calculated binding free energy is about -6 kcal/mol, which is in reasonable agreement with the experimental value. The information gleaned from this study provides new insight on the recognition of ribosome by sparsomycin and highlights the challenges in calculations of absolute binding free energies in these systems. Copyright (C) 2010 John Wiley & Sons, Ltd.
C1 [Roux, Benoit] Univ Chicago, Dept Biochem & Mol Biol, Chicago, IL 60637 USA.
[Roux, Benoit] Argonne Natl Lab, Biosci Div, Argonne, IL 60439 USA.
[Ge, Xiaoxia] Cornell Univ, Dept Physiol & Biophys, Weill Med Coll, New York, NY 10021 USA.
RP Roux, B (reprint author), Univ Chicago, Dept Biochem & Mol Biol, 929 E 57th St, Chicago, IL 60637 USA.
EM roux@uchicago.edu
FU National Science Foundation [MCB-0630140]
FX The authors are grateful to Yuqing Deng, Haibo Yu, and Albert Pan for
helpful discussions and suggestions. This work was supported by grant
MCB-0630140 from the National Science Foundation.
NR 72
TC 13
Z9 13
U1 1
U2 9
PU WILEY-BLACKWELL
PI HOBOKEN
PA 111 RIVER ST, HOBOKEN 07030-5774, NJ USA
SN 0952-3499
EI 1099-1352
J9 J MOL RECOGNIT
JI J. Mol. Recognit.
PD MAR-APR
PY 2010
VL 23
IS 2
SI SI
BP 128
EP 141
DI 10.1002/jmr.996
PG 14
WC Biochemistry & Molecular Biology; Biophysics
SC Biochemistry & Molecular Biology; Biophysics
GA 570LC
UT WOS:000275678100005
PM 20151411
ER
PT J
AU Lin, CX
Sekachev, M
Hu, ZY
Dareing, D
AF Lin, Cheng-Xian
Sekachev, Mikhail
Hu, Zhiyu
Dareing, Don
TI A computational DFT analysis of OH chemisorption on catalytic Pt(111)
nanoparticles
SO JOURNAL OF NANOPARTICLE RESEARCH
LA English
DT Article
DE Density functional theory; Pt clusters; Binding energy; Adsorption of
OH; Modeling and simulation
ID CORRELATION-ENERGY; PLATINUM; OXYGEN; FUNCTIONALS; GENERATOR; MOLECULES;
CLUSTERS; DENSITY; POWER
AB In this article, various energies and geometries of pure platinum nanoparticles and those of platinum nanoparticles with adsorbed OH were investigated. Fourteen different platinum clusters of 3-40 atoms were studied using spin-unrestricted density functional theory (DFT) with a double numerical plus polarization basis set. This range of sizes gave enough information for establishing the general trends that were the primary goal of the study. Three different shapes of platinum clusters were presented, and the effect of cluster size on binding energy, total energy, and HOMO-LUMO energy gap was investigated. Subsequently, same calculations were performed for those selected Pt clusters with OH adsorbate on the surface. The results show that the stability of both the pure clusters and the clusters with adsorbed OH molecule increases with an increase of cluster size. This fact indicates that direct influence of the size of Pt cluster on the reaction rate is possible, and the understanding of how cluster size would affect binding energy is important. As expected, the effect of cluster size on total energy of molecule was shown to be a linear function independent of cluster type. We also found that optimized (stable) Pt clusters were bigger in size than that of the initial clusters, or clusters with bulk geometry.
C1 [Lin, Cheng-Xian; Sekachev, Mikhail; Dareing, Don] Univ Tennessee, Dept Mech Aerosp & Biomed Engn, Knoxville, TN 37996 USA.
[Hu, Zhiyu] Oak Ridge Natl Lab, Biosci Div, Oak Ridge, TN 37831 USA.
RP Lin, CX (reprint author), Univ Tennessee, Dept Mech Aerosp & Biomed Engn, Perkins Hall,1506 Middle Dr, Knoxville, TN 37996 USA.
EM lincx@utk.edu
RI Lin, Cheng-Xian/N-2381-2016
OI Lin, Cheng-Xian/0000-0002-9239-0602
FU UTK/ORNL Science Alliance
FX The authors gratefully acknowledge financial support from the JDRD
program from the UTK/ORNL Science Alliance.
NR 26
TC 0
Z9 0
U1 0
U2 17
PU SPRINGER
PI DORDRECHT
PA VAN GODEWIJCKSTRAAT 30, 3311 GZ DORDRECHT, NETHERLANDS
SN 1388-0764
EI 1572-896X
J9 J NANOPART RES
JI J. Nanopart. Res.
PD MAR
PY 2010
VL 12
IS 3
BP 865
EP 876
DI 10.1007/s11051-009-9664-4
PG 12
WC Chemistry, Multidisciplinary; Nanoscience & Nanotechnology; Materials
Science, Multidisciplinary
SC Chemistry; Science & Technology - Other Topics; Materials Science
GA 586ED
UT WOS:000276883900017
ER
PT J
AU Li, Y
Xing, QF
Yan, Y
Zhou, WL
AF Li, Y.
Xing, Q. F.
Yan, Y.
Zhou, W. L.
TI A Large Quantity Synthesis of ZnO Nanoneedles and Their Polarity
Determination
SO JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY
LA English
DT Article
DE Nanoneedles; TEM; CBED; ZnO
ID FIELD-EMISSION; ZINC-OXIDE; THIN-FILMS; ARRAYS; TIP
AB A large quantity of uniform ZnO nanoneedles has been synthesized by thermal evaporation method. Both single and double tip ZnO nanoneedles were found coexistence in the as-synthesized products. The single tip nanoneedles are major products in the synthesis and a few double tip nanoneedles were also observed. The polarity of the nanoneedles was characterized by convergent beam electron diffraction (CBED) and the simulation results reveal that the polarity of the ZnO (0001) surface directs the preferential growth of the nanoneedles. It is also found that most of the double tip nanoneedles are originated from the joint growth of two single tip nanoneedles with a kink in the middle and smooth ones might be generated from forming thin layer of cubic structures in the double nanoneedle tips. A large quantity of ZnO nanorod building blocks without tips was also achieved by fast cooling. The formation of the nanoneedles and nanorods can be attributed to different cooling speeds in our experiments. The sharp single nanoneedle tip can be potentially used as scanning probe microscope or field-emission tips.
C1 [Li, Y.; Xing, Q. F.; Zhou, W. L.] Univ New Orleans, Adv Mat Res Inst, New Orleans, LA 70148 USA.
[Yan, Y.] Natl Renewable Energy Lab, Golden, CO 80401 USA.
RP Zhou, WL (reprint author), Univ New Orleans, Adv Mat Res Inst, New Orleans, LA 70148 USA.
RI Li, Ying/G-3908-2010
OI Li, Ying/0000-0003-3738-9307
FU DARPA [HR0011-07-1-0032]; Louisiana Board of Regents
[LEQSF(2007-12)-ENH-PKSFI-PRS-04]; Research Fund of Key Laboratory for
Nanomaterials, Ministry of Education [2007-1]
FX The partial experimental CBED work was performed at the Electron
Microscopy Center of Argonne National Laboratory. Dr. J. M. Zuo is
acknowledged for providing the program for the CBED simulation. This
work was supported by the DARPA Grant No. HR0011-07-1-0032 and a
research grant from Louisiana Board of Regents Contract No.
LEQSF(2007-12)-ENH-PKSFI-PRS-04. W. L. Zhou acknowledges the partial
support from the Research Fund of Key Laboratory for Nanomaterials,
Ministry of Education (No.2007-1).
NR 24
TC 0
Z9 0
U1 0
U2 9
PU AMER SCIENTIFIC PUBLISHERS
PI STEVENSON RANCH
PA 25650 NORTH LEWIS WAY, STEVENSON RANCH, CA 91381-1439 USA
SN 1533-4880
J9 J NANOSCI NANOTECHNO
JI J. Nanosci. Nanotechnol.
PD MAR
PY 2010
VL 10
IS 3
SI SI
BP 2023
EP 2027
DI 10.1166/jnn.2010.2129
PG 5
WC Chemistry, Multidisciplinary; Nanoscience & Nanotechnology; Materials
Science, Multidisciplinary; Physics, Applied; Physics, Condensed Matter
SC Chemistry; Science & Technology - Other Topics; Materials Science;
Physics
GA 548RV
UT WOS:000273984800089
PM 20355620
ER
PT J
AU Kikuchi, K
Mansur, LK
Kawai, M
AF Kikuchi, K.
Mansur, L. K.
Kawai, M.
TI Proceedings of the Ninth International Workshop on Spallation Materials
Technology (IWSMT-9) Preface
SO JOURNAL OF NUCLEAR MATERIALS
LA English
DT Editorial Material
C1 [Kikuchi, K.] Japan Atom Energy Agcy, Tokai, Ibaraki, Japan.
[Mansur, L. K.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
[Kawai, M.] High Energy Accelerator Res Org, Tsukuba, Ibaraki, Japan.
RP Kikuchi, K (reprint author), Japan Atom Energy Agcy, Tokai, Ibaraki, Japan.
EM kikuchik@mx.ibaraki.ac.jp
RI Kikuchi, Kenji/A-3714-2010
NR 10
TC 0
Z9 0
U1 2
U2 2
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0022-3115
J9 J NUCL MATER
JI J. Nucl. Mater.
PD MAR
PY 2010
VL 398
IS 1-3
BP IX
EP X
DI 10.1016/j.jnucmat.2009.10.001
PG 2
WC Materials Science, Multidisciplinary; Nuclear Science & Technology
SC Materials Science; Nuclear Science & Technology
GA 581OI
UT WOS:000276533100001
ER
PT J
AU McManamy, T
AF McManamy, T.
TI SNS October 2008 status
SO JOURNAL OF NUCLEAR MATERIALS
LA English
DT Article; Proceedings Paper
CT 9th International Workshop on Spallation Materials Technology (IWSMT-9)
CY OCT 19-24, 2008
CL Sapporo, JAPAN
AB The Spallation Neutron Source (SNS) completed construction in June, 2006. Since then the power has been ramped up and by October, 2008 has reached 620 kW with over 1200 MW-h of energy delivered to the target. During this period the complement of neutron scattering instruments has increased from the original 3-6 operational and 13 in varying stages of planning or construction. This paper will discuss the power ramp up history and availability with an emphasis on the target system components and operating experience. (C) 2009 Elsevier B.V. All rights reserved.
C1 Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
RP McManamy, T (reprint author), Oak Ridge Natl Lab, POB 2008,MS6476, Oak Ridge, TN 37831 USA.
EM mcmanamytj@ornl.gov
FU Oak Ridge National Laboratory; Department of Energy, Office of Science
FX This research is sponsored by the Office of Science under contract with
Oak Ridge National Laboratory managed by UT-Battelle, LLC, for the
Department of Energy.
NR 3
TC 3
Z9 3
U1 1
U2 3
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0022-3115
EI 1873-4820
J9 J NUCL MATER
JI J. Nucl. Mater.
PD MAR
PY 2010
VL 398
IS 1-3
BP 10
EP 14
DI 10.1016/j.jnucmat.2009.10.003
PG 5
WC Materials Science, Multidisciplinary; Nuclear Science & Technology
SC Materials Science; Nuclear Science & Technology
GA 581OI
UT WOS:000276533100003
ER
PT J
AU McManamy, T
Rennich, M
Gallmeier, F
Ferguson, P
Janney, J
AF McManamy, T.
Rennich, M.
Gallmeier, F.
Ferguson, P.
Janney, J.
TI 3 MW solid rotating target design
SO JOURNAL OF NUCLEAR MATERIALS
LA English
DT Article; Proceedings Paper
CT 9th International Workshop on Spallation Materials Technology (IWSMT-9)
CY OCT 19-24, 2008
CL Sapporo, JAPAN
AB A rotating solid target design concept is being developed for potential use at the second SNS target station (STS). A long pulse beam (similar to 1 ms) at 1.3 GeV and 20 Hz is planned with power levels at or above 1 MW. Since the long pulse may give future opportunities for higher power, this study is looking at 3 MW to compare the performance of a solid rotating target to a mercury target. Unlike the case for stationary solid targets at such powers this study indicates that a rotating solid target, when used with large coupled hydrogen moderators, has neutronic performance equal to or better than that with a mercury target, and the solid target has a greatly increased lifetime. Design studies have investigated water cooled tungsten targets with tantalum cladding approximately 1.2 m in diameter, and 70 mm thick. Operating temperatures are low (<150 degrees C) with mid-plane, top and bottom surface cooling. In case of cooling system failure, the diameter gives enough surface area to remove the decay heat by radiation to the surrounding reflector assemblies while keeping the peak temperatures below approximately 700 degrees C. This temperature should mitigate potential loss of coolant accidents and subsequent steam, tungsten interaction which has a threshold of approximately 800 degrees C. Design layouts for the sealing systems and potential target station concepts have been developed. (C) 2009 Elsevier B.V. All rights reserved.
C1 [McManamy, T.; Rennich, M.; Gallmeier, F.; Ferguson, P.; Janney, J.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
RP McManamy, T (reprint author), Oak Ridge Natl Lab, POB 2008,MS6473, Oak Ridge, TN 37831 USA.
EM mcmanamytj@ornl.gov
OI Rennich, Mark/0000-0001-6945-0075; Ferguson, Phillip/0000-0002-7661-4223
FU Oak Ridge National Laboratory
FX The authors would like to thank Dr. Gunter Bauer for many helpful
comments during this study and also for his early contributions to the
rotating target concept. Dr. R. Kent Crawford also helped to define the
requirements for the Second Target Station and gave many good comments.
This work was funded by Oak Ridge National Laboratory under the
Laboratory Research and Development (LDRD) program.
NR 12
TC 10
Z9 10
U1 1
U2 3
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0022-3115
EI 1873-4820
J9 J NUCL MATER
JI J. Nucl. Mater.
PD MAR
PY 2010
VL 398
IS 1-3
BP 35
EP 42
DI 10.1016/j.jnucmat.2009.10.007
PG 8
WC Materials Science, Multidisciplinary; Nuclear Science & Technology
SC Materials Science; Nuclear Science & Technology
GA 581OI
UT WOS:000276533100007
ER
PT J
AU McClintock, DA
Ferguson, PD
Mansur, LK
AF McClintock, D. A.
Ferguson, P. D.
Mansur, L. K.
TI Post-irradiation examination of the Spallation Neutron Source target
module
SO JOURNAL OF NUCLEAR MATERIALS
LA English
DT Article; Proceedings Paper
CT 9th International Workshop on Spallation Materials Technology (IWSMT-9)
CY OCT 19-24, 2008
CL Sapporo, JAPAN
ID RESEARCH-AND-DEVELOPMENT; SOURCE MERCURY TARGET; CAVITATION DAMAGE;
STAINLESS-STEEL; CONTAINER MATERIALS; TENSILE PROPERTIES; LANSCE-WNR;
IRRADIATION; RADIATION; EROSION
AB The Spallation Neutron Source (SNS) at Oak Ridge National Laboratory is an accelerator-based pulsed neutron source that produces high-energy spallation neutrons by bombarding liquid mercury flowing through a stainless steel target vessel. During operation the proton beam and spallation neutrons produce radiation damage in the AISI 316L austenitic stainless steel target vessel and water-cooled shroud. The beam pulses also cause rapid heating of the liquid mercury, which may produce cavitation erosion damage on the inner surface of the target vessel. The cavitation erosion rate is thought to be highly sensitive to beam power and predicted to be the primary life-limiting factor of the target module. Though cavitation erosion and radiation damage to the target vessel are expected to dictate its lifetime, the effects of radiation damage and cavitation erosion to target vessels in liquid metal spallation systems are not well known. Therefore preparations are being undertaken to perform post-irradiation examination (PIE) of the liquid mercury target vessel and water-cooled shroud after end-of-life occurs. An overview of the planned PIE for the SNS target vessel is presented here, including proposed techniques for specimen acquisition and subsequent material properties characterization. (C) 2009 Elsevier B.V. All rights reserved.
C1 [McClintock, D. A.; Mansur, L. K.] Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA.
[Ferguson, P. D.] Oak Ridge Natl Lab, Neutron Facil, Dev Div, Oak Ridge, TN 37831 USA.
RP McClintock, DA (reprint author), Oak Ridge Natl Lab, Div Mat Sci & Technol, POB 2008,Bldg 4500S,MS 6151, Oak Ridge, TN 37831 USA.
EM mcclintockda@ornl.gov
OI Ferguson, Phillip/0000-0002-7661-4223; McClintock,
David/0000-0002-9292-8951
FU Office of Science, US Department of Energy [DE-AC05-00OR22725]
FX The authors would like to thank Mark Rennich, Adam Carroll, and Jim
Janney for providing some of the figures presented in this paper. The
SNS is sponsored by the Office of Science, US Department of Energy, and
managed by UT-Battelle, LLC for the US Department of Energy under
Contract DE-AC05-00OR22725.
NR 24
TC 10
Z9 10
U1 1
U2 6
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0022-3115
EI 1873-4820
J9 J NUCL MATER
JI J. Nucl. Mater.
PD MAR
PY 2010
VL 398
IS 1-3
BP 73
EP 80
DI 10.1016/j.jnucmat.2009.10.013
PG 8
WC Materials Science, Multidisciplinary; Nuclear Science & Technology
SC Materials Science; Nuclear Science & Technology
GA 581OI
UT WOS:000276533100013
ER
PT J
AU Van den Bosch, J
Hosemann, P
Almazouzi, A
Maloy, SA
AF Van den Bosch, J.
Hosemann, P.
Almazouzi, A.
Maloy, S. A.
TI Liquid metal embrittlement of silicon enriched steel for nuclear
applications
SO JOURNAL OF NUCLEAR MATERIALS
LA English
DT Article; Proceedings Paper
CT 9th International Workshop on Spallation Materials Technology (IWSMT-9)
CY OCT 19-24, 2008
CL Sapporo, JAPAN
ID LEAD-BISMUTH; CORROSION-RESISTANCE; MARTENSITIC STEEL; PB-BI;
SUSCEPTIBILITY; PENETRATION; TOUGHNESS; LME
AB Lead-bismuth eutectic (LBE) liquid metal is considered to act as the coolant and as spallation neutron source for a future accelerator driven system (ADS). In addition to the highly corrosive effect of the liquid lead-bismuth eutectic, the liquid metal may also affect the mechanical integrity of the structural materials by a phenomenon called liquid metal embrittlement. Thus, although the addition of silicon to ferritic-martensitic steels has been found to strongly increase the material's resistance to corrosion in liquid lead-bismuth environment, their mechanical properties can be strongly affected by the liquid metal environment. This paper discusses the mechanical properties of an experimental silicon enriched high Cr/high creep resistant bainitic steel when in contact with LBE. The steel's mechanical properties were assessed by tensile testing as function of temperature in both liquid lead-bismuth eutectic and in an argon and hydrogen gas environment. It was found that the silicon enriched bainitic steel is very prone to liquid metal embrittlement between 300 and 375 degrees C with the transition in mechanical behaviour from ductile to predominantly brittle between 200 and 300 degrees C thus defining its the so-called ductility trough. (C) 2009 Elsevier B.V. All rights reserved.
C1 [Van den Bosch, J.] UGent, Dept Mat Sci & Engn, B-9000 Ghent, Belgium.
[Van den Bosch, J.; Hosemann, P.; Maloy, S. A.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
[Almazouzi, A.] CEN SCK, B-2400 Mol, Belgium.
RP Van den Bosch, J (reprint author), UGent, Dept Mat Sci & Engn, St Pietersnieuwstr 41, B-9000 Ghent, Belgium.
EM jvdbosch@sckcen.be
RI Maloy, Stuart/A-8672-2009;
OI Maloy, Stuart/0000-0001-8037-1319; Hosemann, Peter/0000-0003-2281-2213
NR 27
TC 11
Z9 11
U1 0
U2 18
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0022-3115
EI 1873-4820
J9 J NUCL MATER
JI J. Nucl. Mater.
PD MAR
PY 2010
VL 398
IS 1-3
BP 116
EP 121
DI 10.1016/j.jnucmat.2009.10.020
PG 6
WC Materials Science, Multidisciplinary; Nuclear Science & Technology
SC Materials Science; Nuclear Science & Technology
GA 581OI
UT WOS:000276533100020
ER
PT J
AU Chen, X
Stubbins, JF
Hosemann, P
Band, AM
AF Chen, Xiang
Stubbins, James F.
Hosemann, Peter
Band, Alan Michael
TI Analysis of corrosion scale structure of pre-oxidized stainless steel
316 in molten lead bismuth eutectic and the relation to impedance
spectroscopy response
SO JOURNAL OF NUCLEAR MATERIALS
LA English
DT Article; Proceedings Paper
CT 9th International Workshop on Spallation Materials Technology (IWSMT-9)
CY OCT 19-24, 2008
CL Sapporo, JAPAN
ID OXIDE LAYERS; COMPATIBILITY TESTS; FLOWING LBE; BEHAVIOR; TEMPERATURE
AB Stainless steel 316 is a candidate structural material for heavy liquid metal spallation neutron sources and fast reactor systems. Impedance spectroscopy (IS) provides a means of real-time measurements of the stability of protective oxide scales in these systems. The IS technique has been shown to yield quantitative results at lower temperatures, but does not yet yield quantitative results at temperatures of interest for engineering applications. To understand this, pre-oxidized stainless steel 316 samples were immersed in oxygen-saturated stagnant lead bismuth eutectic at 550 degrees C for 1335 h. During the exposure, real-time impedance spectroscopy was taken from different samples. Negligible impedance was observed from one sample at the end of 1335 h, indicating that the oxide scale was non-protective. A variety of microanalysis techniques revealed that oxide layers formed on the sample surface suffered corrosion attack from the LBE. A duplex oxide structure composed of outer iron oxide and inner iron chromium oxide was found on some sample surface area. The major phases of the duplex oxide scales were Fe3O4 and FeCr2O4. The high conductivity of this duplex scale explains the corrosion rate as well as the lack of IS response. (C) 2010 Elsevier B.V. All rights reserved.
C1 [Chen, Xiang; Stubbins, James F.; Band, Alan Michael] Univ Illinois, Dept Nucl Plasma & Radiol Engn, Urbana, IL 61801 USA.
[Hosemann, Peter] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Stubbins, JF (reprint author), Univ Illinois, Dept Nucl Plasma & Radiol Engn, 104 S Wright St, Urbana, IL 61801 USA.
EM jstubbin@illinois.edu
RI Chen, Xiang/D-4531-2013;
OI Hosemann, Peter/0000-0003-2281-2213; Chen, Xiang/0000-0002-8662-5209
FU U.S. Department of Energy's, Office of Nuclear Energy's, Nuclear Energy
Research Initiative (NERI) [DE-FC07-051D14667]; U.S. Department of
Energy [DEFG02-91-ER45439]
FX This study is funded by the U.S. Department of Energy's, Office of
Nuclear Energy's, Nuclear Energy Research Initiative (NERI) under the
contract DE-FC07-051D14667. Some experiments were carried out at the
Center for Microanalysis of Materials (CMM), University of Illinois at
Urbana-Champaign, which is partially supported by the U.S. Department of
Energy under grant DEFG02-91-ER45439. The authors would also like to
express their appreciation to Dr. Jim Mabon, Dr. Mauro Sardela, and Dr.
Scott MacLaren of CMM.
NR 23
TC 10
Z9 10
U1 0
U2 8
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0022-3115
EI 1873-4820
J9 J NUCL MATER
JI J. Nucl. Mater.
PD MAR
PY 2010
VL 398
IS 1-3
BP 172
EP 179
DI 10.1016/j.jnucmat.2009.10.029
PG 8
WC Materials Science, Multidisciplinary; Nuclear Science & Technology
SC Materials Science; Nuclear Science & Technology
GA 581OI
UT WOS:000276533100029
ER
PT J
AU Pawel, SJ
Mansur, LK
AF Pawel, S. J.
Mansur, L. K.
TI Preliminary evaluation of cavitation-erosion resistance of Ti-alloys in
mercury for the Spallation Neutron Source
SO JOURNAL OF NUCLEAR MATERIALS
LA English
DT Article; Proceedings Paper
CT 9th International Workshop on Spallation Materials Technology (IWSMT-9)
CY OCT 19-24, 2008
CL Sapporo, JAPAN
ID 316LN STAINLESS-STEEL; SNS TARGET TESTS; LANSCE-WNR
AB A number of Ti-based alloys in both the mill-annealed and 20% cold-worked conditions were subjected to sonication conditions in Hg using a vibratory horn to assess relative cavitation-erosion resistance. Weight loss as a function of exposure time decreased monotonically with increasing hardness for all alloys/conditions examined, with Ti-6Al-4V (Grade 5) and Ti-6Al-2Sn-4Zr-2Mo yielding the best resistance to cavitation-erosion as evidenced by low weight losses and little or no tendency to form pits on the exposed surface. Unalloyed Ti (Grade 4) and Ti-0.12Pd (Grade 7) exhibited greater weight losses by a factor of about two and about five, respectively, with Ti-0.12Pd particularly prone to pitting development. The mean erosion rates of the best two Ti-alloys examined were about a factor of three higher than identically tested 316LN stainless steel following a low temperature carburizing treatment, but this difference is considered minor given that the rate for both materials is very low/manageable and represents a through-thickness property for the Ti-alloys. A nitriding surface treatment was also evaluated as a potential method to further increase the cavitation-erosion resistance of these alloys in Hg, but the selected treatment proved largely ineffective as measured by rapid weight loss. Recommendations for further work to evaluate the efficacy of Ti-based alloys for use in high-powered targets for the Spallation Neutron Source are given. Published by Elsevier B.V.
C1 [Pawel, S. J.; Mansur, L. K.] Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA.
RP Pawel, SJ (reprint author), Oak Ridge Natl Lab, Div Mat Sci & Technol, 1 Bethel Valley Rd, Oak Ridge, TN 37831 USA.
EM pawelsj@ornl.gov
NR 21
TC 6
Z9 7
U1 2
U2 4
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0022-3115
EI 1873-4820
J9 J NUCL MATER
JI J. Nucl. Mater.
PD MAR
PY 2010
VL 398
IS 1-3
BP 180
EP 188
DI 10.1016/j.jnucmat.2009.10.030
PG 9
WC Materials Science, Multidisciplinary; Nuclear Science & Technology
SC Materials Science; Nuclear Science & Technology
GA 581OI
UT WOS:000276533100030
ER
PT J
AU Riemer, BW
Wendel, MW
Felde, DK
AF Riemer, B. W.
Wendel, M. W.
Felde, D. K.
TI Cavitation damage experiments for mercury spallation targets at the
LANSCE-WNR in 2008
SO JOURNAL OF NUCLEAR MATERIALS
LA English
DT Article; Proceedings Paper
CT 9th International Workshop on Spallation Materials Technology (IWSMT-9)
CY OCT 19-24, 2008
CL Sapporo, JAPAN
AB Proton beam experiments investigating cavitation damage in short pulse mercury spallation targets were performed at LANSCE - WNR in July of 2008. They included two main areas for investigation: damage dependence on mercury velocity using geometry more prototypic to the SNS target than previously employed and damage dependence on incident proton beam flux intensity. The flow dependence experiment employed six test targets with mercury velocity in the channel ranging from 0 to more than 4 m/s. Each was hit with 100 WNR beam pulses with peak proton flux equivalent to that of SNS operating at 2.7 MW.
Damage dependence on incident proton beam flux intensity was also investigated with three intensity levels used on simple rectangular shaped targets without mercury flow. Intensity variation was imposed by focusing the beam differently while maintaining protons per pulse. This kept total energy deposited in each target constant. A fourth test target was hit with various beams: constant protons and varied spot size; constant spot size and varied protons. No damage will be assessed in this case. Instead, acoustic emissions associated with cavitation collapse were measured by laser Doppler vibrometer (LDV) from readings of exterior vessel motions as well as by mercury wetted acoustic transducers.
This paper will provide a description of the experiment and present available results. Damage assessment will require several months before surface analysis can be completed and was not available in time for IWSMT-9. Published by Elsevier B.V.
C1 [Riemer, B. W.; Wendel, M. W.; Felde, D. K.] Oak Ridge Natl Lab, Spallat Neutron Source, Oak Ridge, TN 37831 USA.
RP Riemer, BW (reprint author), Oak Ridge Natl Lab, Spallat Neutron Source, POB 2008,Bldg 8600,MS 6476, Oak Ridge, TN 37831 USA.
EM riemerbw@ornl.gov
OI Riemer, Bernard/0000-0002-6922-3056
FU US Department of Energy
FX This work has benefited from the use of the Los Alamos Neutron Science
Center at the Los Alamos National Laboratory. This facility is funded by
the US Department of Energy.
NR 8
TC 3
Z9 3
U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0022-3115
EI 1873-4820
J9 J NUCL MATER
JI J. Nucl. Mater.
PD MAR
PY 2010
VL 398
IS 1-3
BP 207
EP 219
DI 10.1016/j.jnucmat.2009.10.034
PG 13
WC Materials Science, Multidisciplinary; Nuclear Science & Technology
SC Materials Science; Nuclear Science & Technology
GA 581OI
UT WOS:000276533100034
ER
PT J
AU Pan, X
Wu, XL
Chen, X
Mo, K
Almer, J
Haeffner, DR
Stubbins, JF
AF Pan, Xiao
Wu, Xianglin
Chen, Xiang
Mo, Kun
Almer, Jonathon
Haeffner, Dean R.
Stubbins, James F.
TI Temperature and particle size effects on flow localization of 9-12%Cr
ferritic/martensitic steel by in situ X-ray diffraction and small angle
scattering
SO JOURNAL OF NUCLEAR MATERIALS
LA English
DT Article; Proceedings Paper
CT 9th International Workshop on Spallation Materials Technology (IWSMT-9)
CY OCT 19-24, 2008
CL Sapporo, JAPAN
ID MODELING TENSILE RESPONSE; VOID NUCLEATION; MECHANICAL-PROPERTIES;
IRRADIATION; METALS; DEFORMATION; SPALLATION; AUSTENITE; FRACTURE;
FERRITE
AB Radiation-induced defect structures are known to elevate material yield strength and reduce material ductility so that small strains induce plastic instability. This process is commonly known as flow localization. Recent research indicates that the flow localization in face-centered cubic (FCC) materials is controlled by critical stress, the true stress at the onset of necking. Critical stress is found to be independent of irradiation dose, but have strong temperature dependence. Here simplified 9-12% ferritic/martinsetic steels are examined using X-ray diffraction and small angle scattering under in situ tensile deformation, in order to elucidate the controlling mechanisms and temperature dependence of critical stress. It is found that the critical stress for the onset of necking is linearly correlated with critical interfacial strength, which in turn determines the void nucleation. The effects of temperature and particle size on critical stress are correspondingly determined by how temperature and particle size influence the critical interfacial strength. (C) 2010 Elsevier B.V. All rights reserved.
C1 [Pan, Xiao; Wu, Xianglin; Chen, Xiang; Mo, Kun; Stubbins, James F.] Univ Illinois, Dept Nucl Plasma & Radiol Engn, Urbana, IL 61801 USA.
[Almer, Jonathon; Haeffner, Dean R.] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
RP Stubbins, JF (reprint author), Univ Illinois, Dept Nucl Plasma & Radiol Engn, Urbana, IL 61801 USA.
EM jstubbin@illinois.edu
RI Mo, Kun/A-9737-2011; Chen, Xiang/D-4531-2013;
OI Mo, Kun/0000-0003-0412-8987; Chen, Xiang/0000-0002-8662-5209
FU US Department of Energy [DE-FC07-051D14665, DE-FG07-02D14337,
DE-AC02-06CH11357]
FX The work was supported by the US Department of Energy under grants
DE-FC07-051D14665, DE-FG07-02D14337 and (APS) under DE-AC02-06CH11357.
NR 27
TC 8
Z9 8
U1 1
U2 8
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0022-3115
EI 1873-4820
J9 J NUCL MATER
JI J. Nucl. Mater.
PD MAR
PY 2010
VL 398
IS 1-3
BP 220
EP 226
DI 10.1016/j.jnucmat.2009.10.035
PG 7
WC Materials Science, Multidisciplinary; Nuclear Science & Technology
SC Materials Science; Nuclear Science & Technology
GA 581OI
UT WOS:000276533100035
ER
PT J
AU Ellis, ED
Watkins, J
Tankersley, W
Phillips, J
Girardi, D
AF Ellis, Elizabeth D.
Watkins, Janice
Tankersley, William
Phillips, Joyce
Girardi, David
TI Mortality Among Titanium Dioxide Workers at Three DuPont Plants
SO JOURNAL OF OCCUPATIONAL AND ENVIRONMENTAL MEDICINE
LA English
DT Article
ID CANCER; MONTREAL; EXPOSURE; RISK; RATS
AB Objective: To evaluate the mortality among workers employed at three titanium dioxide plants in the United States. Methods: We expanded and updated a cohort employed at titanium dioxide plants. Cause-specific standardized mortality ratios (SMRs) were calculated combined and stratified by plant for workers employed at least 6 months between 1935 and 2005. Results: No indications of excess mortality from any cause were found. All causes SMR increased with length of plant operation as did most cause-specific SMRs. With lung, the target organ of interest, no increases in malignant or nonmalignant respiratory disease were observed. Conclusions: The mortality rates are comparable with the general US population. Increasing SMRs with length of plant operation is indicative of waning healthy worker effect with time since first employment. The results are comparable with other titanium dioxide cohort studies.
C1 [Ellis, Elizabeth D.; Watkins, Janice; Tankersley, William; Phillips, Joyce; Girardi, David] Oak Ridge Associated Univ, Ctr Epidemiol Res, Oak Ridge, TN 37831 USA.
RP Ellis, ED (reprint author), Oak Ridge Associated Univ, Ctr Epidemiol Res, POB 117,MS 45, Oak Ridge, TN 37831 USA.
EM betsy.ellis@orau.org
FU E. I. du Pont de Nemours and Company
FX This work was funded in its entirety through a contract with E. I. du
Pont de Nemours and Company. Oak Ridge Associated Universities (ORAU) is
a university consortium leveraging the scientific strength of major
research institutions to advance science and education by partnering
with national laboratories, government agencies, and private industry.
ORAU manages the Oak Ridge Institute for Science and Education for the
US Department of Energy.
NR 20
TC 9
Z9 10
U1 2
U2 3
PU LIPPINCOTT WILLIAMS & WILKINS
PI PHILADELPHIA
PA 530 WALNUT ST, PHILADELPHIA, PA 19106-3621 USA
SN 1076-2752
J9 J OCCUP ENVIRON MED
JI J. Occup. Environ. Med.
PD MAR
PY 2010
VL 52
IS 3
BP 303
EP 309
DI 10.1097/JOM.0b013e3181d0bee2
PG 7
WC Public, Environmental & Occupational Health
SC Public, Environmental & Occupational Health
GA 567XA
UT WOS:000275480200009
PM 20190654
ER
PT J
AU Jang, JH
Kim, HS
Norton, DP
Craciun, V
AF Jang, J. H.
Kim, H. S.
Norton, D. P.
Craciun, V.
TI Investigations of microstructural evolutions after rapid thermal
annealing of phosphorus doped ZnO films grown by pulsed laser deposition
SO JOURNAL OF OPTOELECTRONICS AND ADVANCED MATERIALS
LA English
DT Article
DE Laser ablation; ZnO; Microstructure
ID MOLECULAR-BEAM EPITAXY; P-TYPE ZNO; ROOM-TEMPERATURE; SAPPHIRE; EMISSION
AB The microstructure of as-deposited and rapid thermal annealed (RTA) P-doped ZnO films grown by pulsed laser deposition (PLD) on c-plane sapphire substrates was investigated. Omega rocking curve (omega-RC) and pole figure investigations showed that the degree of texture and crystalline quality of films decreased with increasing phosphorus concentration. X-ray diffraction line profile analysis (LPA) and Warren-Averbach analysis showed that 0.5 at % P-doped ZnO film presented much higher microstrain values than 1.0 at % P-doped ZnO films, which indicated that phosphorus atoms are no longer incorporated into the ZnO lattice for such concentrations. After RTA at 900 degrees C for 3 min, the FWHM values of omega-RCs markedly decreased, indicating a significant improvement of crystallinity. In addition, the change of the conduction type from n to p simultaneously with a decrease of strain suggested that P atoms were incorporated back into the ZnO lattice.
C1 [Jang, J. H.; Norton, D. P.; Craciun, V.] Univ Florida, Dept Mat Sci & Engn, Gainesville, FL 32611 USA.
[Kim, H. S.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
[Craciun, V.] Natl Inst Laser Plasma & Radiat Phys, Laser Dept, Bucharest, Romania.
RP Craciun, V (reprint author), Univ Florida, Dept Mat Sci & Engn, Box 116400, Gainesville, FL 32611 USA.
EM vcrac@mse.ufl.edu
RI Craciun, Valentin/C-4789-2011
FU CNCSIS [421]
FX The authors would like to thank Major Analytical Instrumental Center
(MAIC), University of Florida for help with characterization. This work
was partially funded by CNCSIS Ideas project 421.
NR 19
TC 0
Z9 0
U1 0
U2 4
PU NATL INST OPTOELECTRONICS
PI BUCHAREST-MAGURELE
PA 1 ATOMISTILOR ST, PO BOX MG-5, BUCHAREST-MAGURELE 76900, ROMANIA
SN 1454-4164
J9 J OPTOELECTRON ADV M
JI J. Optoelectron. Adv. Mater.
PD MAR
PY 2010
VL 12
IS 3
BP 535
EP 537
PG 3
WC Materials Science, Multidisciplinary; Optics; Physics, Applied
SC Materials Science; Optics; Physics
GA 598IB
UT WOS:000277827900023
ER
PT J
AU Souza, L
Belote, RT
Kardol, P
Weltzin, JF
Norby, RJ
AF Souza, Lara
Belote, R. Travis
Kardol, Paul
Weltzin, Jake F.
Norby, Richard J.
TI CO2 enrichment accelerates successional development of an understory
plant community
SO JOURNAL OF PLANT ECOLOGY
LA English
DT Article
DE community composition; FACE; aboveground biomass; woody; herbaceous;
sweetgum; Microstegium vimineum; Lonicera japonica
ID ALTERS SPECIES COMPOSITION; ELEVATED ATMOSPHERIC CO2; GRASSLAND
RESPONSES; NITROGEN DEPOSITION; WATER AVAILABILITY; DECIDUOUS FOREST;
GROWTH; PRODUCTIVITY; ECOSYSTEM; BIOMASS
AB Aims
Rising concentrations of atmospheric carbon dioxide ([CO2]) may influence forest successional development and species composition of understory plant communities by altering biomass production of plant species of functional groups Here, we describe how elevated [CO2] (eCO(2)) affects aboveground biomass within the understory community of a temperate deciduous forest at the Oak Ridge National Laboratory sweetgum (Liquidambar styraciflua) free-air carbon dioxide enrichment (FACE) facility in eastern Tennesee, USA We asked if (i) CO2 enrichment affected total understory biomass and (ii) whether total biomass response could be explained by changes in understory species composition or changes in relative abundance of functional groups through time
Materials and methods
The FACE experiment started in 1998 with three rings receiving ambient [CO2] (aCO(2)) and two rings receiving eCO(2) From 2001 to 2003, we estimated species-specific, woody versus herbaceous and total aboveground biomass by harvesting four 1 x 0 5-m subplots within the established understory plant community in each FACE plot In 2008, we estimated herbaceous biomass as previously but used allometric relationships to estimate woody biomass across two 5 x 5-m quadrats in each FACE plot
Important findings
Across years, aboveground biomass of the understory community was on average 25% greater in eCO(2) than in aCO(2) plots We could not detect differences in plant species composition between aCO(2) and eCO(2) treatments However, we did observe shifts in the relative abundance of plant functional groups, which reflect important structural changes in the understory community In 2001-03, little of the understory biomass was in woody species, heibaceious species made up 94% of the total understory biomass across [CO2] treatments Through time, woody species increased in importance, mostly in eCO(2), and in 2008, the contribution of herbaceous species to total understory biomass was 61% in aCO(2) and only 33%, In eCO(2) treatments Our results suggest that rising atmospheric [CO2] could accelerate successional development and have longer term Impact on forest dynamics
C1 [Souza, Lara] Univ Tennessee, Dept Ecol & Evolutionary Biol, Knoxville, TN 37996 USA.
[Souza, Lara; Kardol, Paul; Norby, Richard J.] Oak Ridge Natl Lab, Div Environm Sci, Oak Ridge, TN 37831 USA.
[Belote, R. Travis] Wilderness Soc, Bozeman, MT 59715 USA.
[Weltzin, Jake F.] USA Natl Phenol Network, Natl Coordinating Off, Tucson, AZ 85721 USA.
RP Souza, L (reprint author), Univ Tennessee, Dept Ecol & Evolutionary Biol, 569 Dabney Hall, Knoxville, TN 37996 USA.
RI Kardol, Paul/A-2600-2010; Norby, Richard/C-1773-2012
OI Norby, Richard/0000-0002-0238-9828
NR 40
TC 21
Z9 24
U1 5
U2 29
PU OXFORD UNIV PRESS
PI OXFORD
PA GREAT CLARENDON ST, OXFORD OX2 6DP, ENGLAND
SN 1752-9921
J9 J PLANT ECOL-UK
JI J. Plant Ecol.
PD MAR
PY 2010
VL 3
IS 1
SI SI
BP 33
EP 39
DI 10.1093/jpe/rtp032
PG 7
WC Plant Sciences; Ecology
SC Plant Sciences; Environmental Sciences & Ecology
GA 570GM
UT WOS:000275660300005
ER
PT J
AU Priftis, D
Sakellariou, G
Mays, JW
Hadjichristidis, N
AF Priftis, Dimitrios
Sakellariou, Georgios
Mays, Jimmy W.
Hadjichristidis, Nikos
TI Novel Diblock Copolymer-Grafted Multiwalled Carbon Nanotubes via a
Combination of Living and Controlled/Living Surface Polymerizations
SO JOURNAL OF POLYMER SCIENCE PART A-POLYMER CHEMISTRY
LA English
DT Article
DE anionic polymerization; atom transfer radical polymerization; diblock
copolymers; thermogravimetric analysis
ID TRANSFER RADICAL POLYMERIZATION; ANIONIC-POLYMERIZATION; INITIATED
POLYMERIZATION; FUNCTIONALIZED SINGLE; POLYMERS; BRUSHES
AB Diels-Alder cycloaddition reactions were used to functionalize multiwalled carbon nanotubes (MWNTs) with 1-benzocylcobutene-1'-phenylethylene (BCB-PE) or 4-hydroxyethylbenzocyclobutene (BCB-EO). The covalent functionalization of the nanotubes with these initiator precursors was verified by FTIR and thermogravimetric analysis (TGA). After appropriate transformations/additions, the functionalized MWNTs were used for surface initiated anionic and ring opening polymerizations of ethylene oxide and epsilon-caprolactone (epsilon-CL), respectively. The OH-end groups were transformed to isopropyl bromide groups by reaction with 2-bromoisobutyryl bromide, for subsequent atom transfer radical polymerization of styrene or 2-dimethylaminoethyl methacrylate to afford the final diblock copolymers. (1)H NMR, differential scanning calorimetry (DSC), TGA, and transmission electron microscopy (TEM) were used for the characterization of the nanocomposite materials. TEM images showed the presence of a polymer layer around the MWNTs as well as the dissociation of MWNT bundles. Consequently, this general methodology, employing combinations of different polymerization techniques, increases the diversity of diblocks that can be grafted from MWNTs. (C) 2010 Wiley Periodicals, Inc. J Polym Sci Part A: Polym Chem 48: 1104-1112, 2010
C1 [Priftis, Dimitrios; Sakellariou, Georgios; Hadjichristidis, Nikos] Univ Athens, Dept Chem, Athens 15771, Greece.
[Mays, Jimmy W.] Univ Tennessee, Dept Chem, Knoxville, TN 37996 USA.
[Mays, Jimmy W.] Oak Ridge Natl Lab, Div Chem Sci, Oak Ridge, TN 37831 USA.
[Mays, Jimmy W.] Oak Ridge Natl Lab, Ctr Nanophase Mat Sci, Oak Ridge, TN 37831 USA.
RP Sakellariou, G (reprint author), Univ Athens, Dept Chem, Athens 15771, Greece.
EM gsakellariou@chem.uoa.gr; hadjichristidis@chem.uoa.gr
RI Sakellariou, Georgios/B-1752-2014
FU Ministry of Education; Research Committee of the University of Athens;
U.S. Department of Energy, Basic Energy Sciences, Division of Materials
Science and Engineering [DE-AC05-00OR22725]
FX The financial support of the Ministry of Education through the
Operational Program and Initial Educational Vocational Training on
"Polymer Science and its Applications" and the Research Committee of the
University of Athens is greatly appreciated. The authors also
acknowledge support by the U.S. Department of Energy, Basic Energy
Sciences, Division of Materials Science and Engineering
(DE-AC05-00OR22725) and through a user project to J.M. at the Center for
Nanophase Materials Sciences at Oak Ridge National Laboratory.
NR 38
TC 11
Z9 11
U1 2
U2 22
PU JOHN WILEY & SONS INC
PI HOBOKEN
PA 111 RIVER ST, HOBOKEN, NJ 07030 USA
SN 0887-624X
J9 J POLYM SCI POL CHEM
JI J. Polym. Sci. Pol. Chem.
PD MAR 1
PY 2010
VL 48
IS 5
BP 1104
EP 1112
DI 10.1002/pola.23865
PG 9
WC Polymer Science
SC Polymer Science
GA 560YP
UT WOS:000274942000011
ER
PT J
AU Corporan, E
DeWitt, MJ
Klingshirn, CD
Striebich, R
Cheng, MD
AF Corporan, Edwin
DeWitt, Matthew J.
Klingshirn, Christopher D.
Striebich, Richard
Cheng, Meng-Dawn
TI Emissions Characteristics of Military Helicopter Engines with JP-8 and
Fischer-Tropsch Fuels
SO JOURNAL OF PROPULSION AND POWER
LA English
DT Article
AB The rapid growth in aviation activities and more stringent U.S. Environmental Protection Agency regulations have increased concerns regarding aircraft emissions, due to their harmful health and environmental impacts, especially in the vicinity of airports and military bases. In this study, the gaseous and particulate-matter emissions of two General Electric T701C engines and one T700 engine were evaluated. The T700 series engines power the U.S. Army's Black Hawk and Apache helicopters. The engines were fueled with standard military JP-8 fuel and were tested at three power settings. In addition, one of the T701C engines was operated on a natural-gas-derived Fischer Tropsch synthetic paraffinic kerosene jet fuel. Test results show that the T701C engine emits significantly lower particulate-matter emissions than the T700 for all conditions tested. Particulate-matter mass emission indices ranged from 0.2-1.4 g/kg fuel for the T700 and 0.2-0.6 g/kg fuel for the T701C. Slightly higher NO(x) and lower CO emissions were observed for the T701C compared with the T700. Operation of the T701C with the Fischer Tropsch fuel rendered dramatic reductions in soot emissions relative to operation on JP-8, due primarily to the lack of aromatic compounds in the alternative fuel. The Fischer Tropsch fuel also produced smaller particles and slight reductions in CO emissions.
C1 [Corporan, Edwin] USAF, Res Lab, Prop Directorate, Wright Patterson AFB, OH 45433 USA.
[DeWitt, Matthew J.; Klingshirn, Christopher D.; Striebich, Richard] Univ Dayton, Res Inst, Dayton, OH 45469 USA.
[Cheng, Meng-Dawn] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
RP Corporan, E (reprint author), USAF, Res Lab, Prop Directorate, Wright Patterson AFB, OH 45433 USA.
EM edwin.corporan@wpafb.af.mil
RI Cheng, Meng-Dawn/C-1098-2012;
OI Cheng, Meng-Dawn/0000-0003-1407-9576
FU Department of Defense Strategic Environmental Research and Development
Program (SERDP) office [WP-1401]; U.S. Department of Energy
[DE-AC05-00OR22725]; U.S. Air Force Research Laboratory (AFRL)
[F33615-03-2-2347]
FX This work was funded by the Department of Defense Strategic
Environmental Research and Development Program (SERDP) office within the
Weapon Systems and Platforms focus area under the Project WP-1401 led by
Oak Ridge National Laboratory (ORNL). ORNL is managed by UT-Battelle,
LLC, for the U.S. Department of Energy under contract DE-AC05-00OR22725.
The work of the University of Dayton Research Institute (UDRI) was
supported by the U.S. Air Force Research Laboratory (AFRL) under the
cooperative research agreement F33615-03-2-2347. Special thanks to Joe
Lukas from the Aviation Branch Maintenance Division at Fort Stewart for
his support and coordination of these tests and to Daniel Houck, Robert
Henson, Jason Mikelonis, and Robert Shell for operating the test
facility. The authors are also very grateful to Joe Mainz from UDRI and
Tom Greene from Taitech, Inc., for their technical support during the
tests and to Linda Shafer and Rhonda Cook of UDRI for the polycyclic
aromatic hydrocarbon analysis.
NR 29
TC 27
Z9 27
U1 0
U2 12
PU AMER INST AERONAUT ASTRONAUT
PI RESTON
PA 1801 ALEXANDER BELL DRIVE, STE 500, RESTON, VA 22091-4344 USA
SN 0748-4658
J9 J PROPUL POWER
JI J. Propul. Power
PD MAR-APR
PY 2010
VL 26
IS 2
BP 317
EP 324
DI 10.2514/1.43928
PG 8
WC Engineering, Aerospace
SC Engineering
GA 583XA
UT WOS:000276712400013
ER
PT J
AU Zhang, X
Zhou, JY
Chin, MH
Schepmoes, AA
Petyuk, VA
Weitz, KK
Petritis, BO
Monroe, ME
Camp, DG
Wood, SA
Melega, WP
Bigelow, DJ
Smith, DJ
Qian, WJ
Smith, RD
AF Zhang, Xu
Zhou, Jian-Ying
Chin, Mark H.
Schepmoes, Athena A.
Petyuk, Vladislav A.
Weitz, Karl K.
Petritis, Brianne O.
Monroe, Matthew E.
Camp, David G., II
Wood, Stephen A.
Melega, William P.
Bigelow, Diana J.
Smith, Desmond J.
Qian, Wei-Jun
Smith, Richard D.
TI Region-Specific Protein Abundance Changes in the Brain of MPTP-Induced
Parkinson's Disease Mouse Model
SO JOURNAL OF PROTEOME RESEARCH
LA English
DT Article
DE mass spectrometry; mouse brain proteome; Parkinson's disease; MPTP;
LC-MS/MS; mouse model
ID TANDEM MASS-SPECTROMETRY; DEUBIQUITINATING ENZYME; MITOCHONDRIAL
DYSFUNCTION; SUBSTANTIA-NIGRA; OXIDATIVE STRESS; CELL-DEATH;
DOPAMINERGIC NEUROTOXICITY; EXPRESSION ANALYSIS; MESSENGER-RNA; LEWY
BODIES
AB Parkinson's disease (PD) is characterized by dopaminergic neurodegeneration in the nigrostriatal region of the brain; however, the neurodegeneration extends well beyond dopaminergic neurons. To gain a better understanding of the molecular changes relevant to PD, we applied two-dimensional LC-MS/MS to comparatively analyze the proteome changes in four brain regions (striatum, cerebellum, cortex, and the rest of brain) using a MPTP-induced PD mouse model with the objective to identify potential nigrostriatal-specific and other region-specific protein abundance changes. The combined analyses resulted in the identification of 4,895 nonredundant proteins with at least two unique peptides per protein. The relative abundance changes in each analyzed brain region were estimated based on the spectral count information. A total of 518 proteins were observed with substantial MPTP-induced abundance changes across different brain regions. A total of 270 of these proteins were observed with specific changes occurring either only in the striatum and/or in the rest of the brain region that contains substantia nigra, suggesting that these proteins are associated with the underlying nigrostriatal pathways. Many of the proteins that exhibit changes were associated with dopamine signaling, mitochondrial dysfunction, the ubiquitin system, calcium signaling, the oxidative stress response, and apoptosis. A set of proteins with either consistent change across all brain regions or with changes specific to the cortex and cerebellum regions were also detected. Ubiquitin specific protease (USP9X), a deubiquination enzyme involved in the protection of proteins from degradation and promotion of the TGF-beta pathway, exhibited altered abundance in all brain regions. Western blot validation showed similar spatial changes, suggesting that USP9X is potentially associated with neurodegeneration. Together, this study for the first time presents an overall picture of proteome changes underlying both nigrostriatal pathways and other brain regions potentially involved in MPTP-induced neurodegeneration. The observed molecular changes provide a valuable reference resource for future hypothesis-driven functional studies of PD.
C1 [Zhang, Xu; Zhou, Jian-Ying; Schepmoes, Athena A.; Petyuk, Vladislav A.; Weitz, Karl K.; Petritis, Brianne O.; Monroe, Matthew E.; Camp, David G., II; Bigelow, Diana J.; Qian, Wei-Jun; Smith, Richard D.] Pacific NW Natl Lab, Div Biol Sci, Richland, WA 99352 USA.
[Zhang, Xu; Zhou, Jian-Ying; Schepmoes, Athena A.; Petyuk, Vladislav A.; Weitz, Karl K.; Petritis, Brianne O.; Monroe, Matthew E.; Camp, David G., II; Bigelow, Diana J.; Qian, Wei-Jun; Smith, Richard D.] Pacific NW Natl Lab, Environm Mol Sci Lab, Richland, WA 99352 USA.
[Chin, Mark H.; Melega, William P.; Smith, Desmond J.] Univ Calif Los Angeles, Sch Med, Dept Mol & Med Pharmacol, Los Angeles, CA 90095 USA.
[Wood, Stephen A.] Griffith Univ, Natl Ctr Adult Stem Cell Res, Nathan, Qld 4111, Australia.
RP Qian, WJ (reprint author), Pacific NW Natl Lab, Div Biol Sci, POB 999, Richland, WA 99352 USA.
EM weijun.qian@pnl.gov
RI Zhou, Jian-Ying/B-1336-2011; Qian, Weijun/C-6167-2011; Wood,
Stephen/E-8357-2011; Zhou, Jian-Ying/D-1308-2012; Smith,
Richard/J-3664-2012
OI Petyuk, Vladislav/0000-0003-4076-151X; Wood,
Stephen/0000-0002-2576-7457; Smith, Richard/0000-0002-2381-2349
FU NIH [RR018522, R01 NS050148]; Pacific Northwest National Laboratory
(PNNL); U.S. Department of Energy (DOE); DOE [DF-AC05-76RLO 1830]
FX Portions of this research were Supported by the NIH Center of Proteomics
Research Resource for Integrative Biology RR018522 (to R.D.S.), NIH
grants R01 NS050148 (to D.J.S.) and the Pacific Northwest National
Laboratory (PNNL) Directed Research Development program (to W.J.Q.). The
experiment work was performed In the Environmental Molecular Sciences
Laboratory, a U.S. Department of Energy (DOE) national scientific user
facility on the PNNL campus. PNNL is multiprogram national laboratory
operated by Battelle for the DOE under Contract No. DF-AC05-76RLO 1830.
NR 80
TC 31
Z9 34
U1 1
U2 8
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 1535-3893
J9 J PROTEOME RES
JI J. Proteome Res.
PD MAR
PY 2010
VL 9
IS 3
BP 1496
EP 1509
DI 10.1021/pr901024z
PG 14
WC Biochemical Research Methods
SC Biochemistry & Molecular Biology
GA 562XC
UT WOS:000275088100030
PM 20155936
ER
PT J
AU Johnson, BM
Klein, RI
AF Johnson, Bryan M.
Klein, Richard I.
TI Numerical tests and properties of waves in radiating fluids
SO JOURNAL OF QUANTITATIVE SPECTROSCOPY & RADIATIVE TRANSFER
LA English
DT Article
DE Radiation hydrodynamics; Waves
ID ACOUSTIC-WAVES; PROPAGATION
AB We discuss the properties of an analytical solution for waves in radiating fluids, with a view towards its implementation as a quantitative test of radiation hydrodynamics codes. A homogeneous radiating fluid in local thermodynamic equilibrium is periodically driven at the boundary of a one-dimensional domain, and the solution describes the propagation of the waves thus excited Two modes are excited for a given driving frequency, generally referred to as a radiative acoustic wave and a radiative diffusion wave. While the analytical solution is well known, several features are highlighted here that require care during its numerical implementation We compare the solution in a wide range of parameter space to a numerical integration with a Lagrangian radiation hydrodynamics code. Our most significant observation is that flux-limited diffusion does not preserve causality for waves on a homogeneous background. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Johnson, Bryan M.; Klein, Richard I.] Lawrence Livermore Natl Lab, AX Div, Livermore, CA 94550 USA.
[Klein, Richard I.] Univ Calif Berkeley, Dept Astron, Berkeley, CA 94720 USA.
RP Johnson, BM (reprint author), Lawrence Livermore Natl Lab, AX Div, 7000 East Avenue, Livermore, CA 94550 USA.
NR 9
TC 3
Z9 3
U1 0
U2 1
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0022-4073
J9 J QUANT SPECTROSC RA
JI J. Quant. Spectrosc. Radiat. Transf.
PD MAR
PY 2010
VL 111
IS 5
BP 723
EP 741
DI 10.1016/j.jqsrt.2009.11.017
PG 19
WC Optics; Spectroscopy
SC Optics; Spectroscopy
GA 562RB
UT WOS:000275070100006
ER
PT J
AU Silver, GL
AF Silver, G. L.
TI What is the first hydrolysis constant of tetravalent Plutonium?
SO JOURNAL OF RADIOANALYTICAL AND NUCLEAR CHEMISTRY
LA English
DT Article
DE Plutonium; Disproportionation; Hydrolysis
ID DISPROPORTIONATION
AB Current literature suggests uncertainty about the numerical values of the hydrolysis constants for tetravalent plutonium. This letter uses recent data to propose that newer methods for estimating the hydrolysis constants are not necessarily more accurate than the traditional methods.
C1 Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Silver, GL (reprint author), Los Alamos Natl Lab, POB 1663,MS E502, Los Alamos, NM 87545 USA.
EM gsilver@lanl.gov
NR 9
TC 3
Z9 3
U1 0
U2 7
PU SPRINGER
PI DORDRECHT
PA VAN GODEWIJCKSTRAAT 30, 3311 GZ DORDRECHT, NETHERLANDS
SN 0236-5731
J9 J RADIOANAL NUCL CH
JI J. Radioanal. Nucl. Chem.
PD MAR
PY 2010
VL 283
IS 3
BP 555
EP 557
DI 10.1007/s10967-009-0386-y
PG 3
WC Chemistry, Analytical; Chemistry, Inorganic & Nuclear; Nuclear Science &
Technology
SC Chemistry; Nuclear Science & Technology
GA 552ZF
UT WOS:000274333100002
ER
PT J
AU Silver, GL
AF Silver, G. L.
TI Equilibrium method for estimating the first hydrolysis constant of
tetravalent plutonium
SO JOURNAL OF RADIOANALYTICAL AND NUCLEAR CHEMISTRY
LA English
DT Article
DE Plutonium; Oxidation states; Hydrolysis
AB A new method for estimating the numerical value of the first hydrolysis constant of tetravalent plutonium is illustrated by examples. It uses the pH and the equilibrium fractions of two of the Pu oxidation states. They are substituted into one or more of a choice of formulas that render explicit estimates of the hydrolysis constant.
C1 Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Silver, GL (reprint author), Los Alamos Natl Lab, POB 1663,MS E502, Los Alamos, NM 87545 USA.
EM gsilver@lanl.gov
FU U.S. Department of Energy [DE-AC52-06NA25396]
FX Los Alamos National Laboratory is operated by the Los Alamos National
Security, LLC for the National Nuclear Security Administration of the
U.S. Department of Energy contract DE-AC52-06NA25396.
NR 11
TC 4
Z9 4
U1 0
U2 2
PU SPRINGER
PI DORDRECHT
PA VAN GODEWIJCKSTRAAT 30, 3311 GZ DORDRECHT, NETHERLANDS
SN 0236-5731
J9 J RADIOANAL NUCL CH
JI J. Radioanal. Nucl. Chem.
PD MAR
PY 2010
VL 283
IS 3
BP 749
EP 751
DI 10.1007/s10967-009-0409-8
PG 3
WC Chemistry, Analytical; Chemistry, Inorganic & Nuclear; Nuclear Science &
Technology
SC Chemistry; Nuclear Science & Technology
GA 552ZF
UT WOS:000274333100032
ER
PT J
AU Silver, GL
AF Silver, G. L.
TI Nonequilibrium method for estimating the first hydrolysis constant of
tetravalent plutonium
SO JOURNAL OF RADIOANALYTICAL AND NUCLEAR CHEMISTRY
LA English
DT Article
DE Plutonium; Hydrolysis; Disproportionation
ID BEHAVIOR
AB Six discrete formulas are used to estimate the equilibrium constant of the first hydrolysis reaction of tetravalent plutonium. They apply the pH, the oxidation number, one equilibrium constant, and fractions of two of the plutonium oxidation states. The new formulas are not restricted to the equilibrium condition.
C1 Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Silver, GL (reprint author), Los Alamos Natl Lab, POB 1663,MS E502, Los Alamos, NM 87545 USA.
EM gsilver@lanl.gov
NR 9
TC 11
Z9 11
U1 0
U2 7
PU SPRINGER
PI DORDRECHT
PA VAN GODEWIJCKSTRAAT 30, 3311 GZ DORDRECHT, NETHERLANDS
SN 0236-5731
J9 J RADIOANAL NUCL CH
JI J. Radioanal. Nucl. Chem.
PD MAR
PY 2010
VL 283
IS 3
BP 815
EP 817
DI 10.1007/s10967-009-0417-8
PG 3
WC Chemistry, Analytical; Chemistry, Inorganic & Nuclear; Nuclear Science &
Technology
SC Chemistry; Nuclear Science & Technology
GA 552ZF
UT WOS:000274333100042
ER
PT J
AU Dols, WS
Persily, AK
Morrow, JB
Matzke, BD
Sego, LH
Nuffer, LL
Pulsipher, BA
AF Dols, W. Stuart
Persily, Andrew K.
Morrow, Jayne B.
Matzke, Brett D.
Sego, Landon H.
Nuffer, Lisa L.
Pulsipher, Brent A.
TI Development and Demonstration of a Method to Evaluate Bio-Sampling
Strategies Using Building Simulation and Sample Planning Software
(Reprinted from)
SO JOURNAL OF RESEARCH OF THE NATIONAL INSTITUTE OF STANDARDS AND
TECHNOLOGY
LA English
DT Reprint
DE agent; biological; modeling; planning; response; sampling
AB In an effort to validate and demonstrate response and recovery sampling approaches and technologies, the U. S. Department of Homeland Security (DHS), along with several other agencies, have simulated a biothreat agent release within a facility at Idaho National Laboratory (INL) on two separate occasions in the fall of 2007 and the fall of 2008. Because these events constitute only two realizations of many possible scenarios, increased understanding of sampling strategies can be obtained by virtually examining a wide variety of release and dispersion scenarios using computer simulations. This research effort demonstrates the use of two software tools, CONTAM, developed by the National Institute of Standards and Technology (NIST), and Visual Sample Plan (VSP), developed by Pacific Northwest National Laboratory (PNNL). The CONTAM modeling software was used to virtually contaminate a model of the INL test building under various release and dissemination scenarios as well as a range of building design and operation parameters. The results of these CONTAM simulations were then used to investigate the relevance and performance of various sampling strategies using VSP. One of the fundamental outcomes of this project was the demonstration of how CONTAM and VSP can be used together to effectively develop sampling plans to support the various stages of response to an airborne chemical, biological, radiological, or nuclear event. Following such an event (or prior to an event), incident details and the conceptual site model could be used to create an ensemble of CONTAM simulations which model contaminant dispersion within a building. These predictions could then be used to identify priority area zones within the building and then sampling designs and strategies could be developed based on those zones.
C1 [Dols, W. Stuart; Persily, Andrew K.] Natl Inst Stand & Technol, Bldg Environm Div, Bldg & Fire Res Lab, Gaithersburg, MD 20899 USA.
[Morrow, Jayne B.] Natl Inst Stand & Technol, Div Biochem Sci, Chem Sci & Technol Lab, Gaithersburg, MD 20899 USA.
[Matzke, Brett D.; Sego, Landon H.; Pulsipher, Brent A.] Pacific NW Natl Lab, Stat & Sensor Analyt Grp, Richland, WA 99352 USA.
[Nuffer, Lisa L.] Pacific NW Natl Lab, Data Intens & Sci Comp Grp, Richland, WA 99352 USA.
RP Dols, WS (reprint author), Natl Inst Stand & Technol, Bldg Environm Div, Bldg & Fire Res Lab, Gaithersburg, MD 20899 USA.
EM william.dols@nist.gov; andrew.persily@nist.gov; jayne.morrow@nist.gov;
brett.matzke@pnl.gov; landon.sego@pnl.gov; lisa.nuffer@pnl.gov;
brent.pulsipher@pnl.gov
NR 22
TC 0
Z9 0
U1 0
U2 4
PU US GOVERNMENT PRINTING OFFICE
PI WASHINGTON
PA SUPERINTENDENT DOCUMENTS,, WASHINGTON, DC 20402-9325 USA
SN 1044-677X
J9 J RES NATL INST STAN
JI J. Res. Natl. Inst. Stand. Technol.
PD MAR-APR
PY 2010
VL 115
IS 2
BP 113
EP 147
DI 0.6028/jres.115.008
PG 35
WC Instruments & Instrumentation; Physics, Applied
SC Instruments & Instrumentation; Physics
GA 584BV
UT WOS:000276725900004
PM 27134782
ER
PT J
AU Jin, GB
Raw, AD
Skanthakumar, S
Haire, RG
Soderholm, L
Ibers, JA
AF Jin, Geng Bang
Raw, Adam D.
Skanthakumar, S.
Haire, Richard G.
Soderholm, L.
Ibers, James A.
TI Single-crystal structures of uranium and neptunium oxychalcogenides AnOQ
(An=U, Np; Q=S, Se)
SO JOURNAL OF SOLID STATE CHEMISTRY
LA English
DT Article
DE Uranium oxychalcogenides; Neptunium oxychalcogenides; Single-crystal
X-ray structures
ID MAGNETIC-PROPERTIES; TRANSPORT-PROPERTIES; FIELD MODEL; CHALCOGENIDES;
UOS; TELLURIDES; SELENIDES
AB The compounds UOS, UOSe, NpOS, and NpOSe have been synthesized and their structures determined by means of single-crystal X-ray diffraction methods The results provide more detailed crystallographic information, including more precise interatomic distances, than earlier determinations from powder diffraction data. These isostructural compounds adopt the PbFCI structure type. Each An atom is surrounded by four O and five Q atoms in a distorted monocapped square-antiprismatic arrangement (C) 2009 Elsevier Inc All rights reserved
C1 [Jin, Geng Bang; Raw, Adam D.; Ibers, James A.] Northwestern Univ, Dept Chem, Evanston, IL 60208 USA.
[Skanthakumar, S.; Soderholm, L.] Argonne Natl Lab, Chem Sci & Engn Div, Argonne, IL 60439 USA.
[Haire, Richard G.] Oak Ridge Natl Lab, Div Chem Sci, Oak Ridge, TN 37831 USA.
RP Ibers, JA (reprint author), Northwestern Univ, Dept Chem, 2145 Sheridan Rd, Evanston, IL 60208 USA.
FU US Department of Energy, Basic Energy Sciences [ER-15522]; US Department
of Energy, OBES, Chemical Sciences Division [DEAC02-060-111357]
FX This research at Northwestern University was supported by the US
Department of Energy, Basic Energy Sciences Grant ER-15522 and at
Argonne National Laboratory by the US Department of Energy, OBES,
Chemical Sciences Division, under contract DEAC02-060-111357.
NR 38
TC 16
Z9 16
U1 0
U2 10
PU ACADEMIC PRESS INC ELSEVIER SCIENCE
PI SAN DIEGO
PA 525 B ST, STE 1900, SAN DIEGO, CA 92101-4495 USA
SN 0022-4596
J9 J SOLID STATE CHEM
JI J. Solid State Chem.
PD MAR
PY 2010
VL 183
IS 3
BP 547
EP 550
DI 10.1016/j.jssc.2009.12.013
PG 4
WC Chemistry, Inorganic & Nuclear; Chemistry, Physical
SC Chemistry
GA 569WU
UT WOS:000275634300009
ER
PT J
AU Wong-Ng, W
Yang, Z
Kaduk, JA
Cook, LP
Paranthaman, M
AF Wong-Ng, W.
Yang, Z.
Kaduk, J. A.
Cook, L. P.
Paranthaman, M.
TI Interactions of Ba2YCu3O6+y with the Gd3NbO7 buffer layer in coated
conductors
SO JOURNAL OF SOLID STATE CHEMISTRY
LA English
DT Article
DE Superconductors; Ba2YCu3O6z and Gd3NbO7 interactions; Structure of
Ba2(GdxY1-x)NbO6 and (GdxY3-x)NbO7; Reference X-ray powder patterns
ID SUBSOLIDUS PHASE-RELATIONSHIPS; TOTAL-ENERGY CALCULATIONS;
CARBONATE-FREE CONDITIONS; BOND-VALENCE PARAMETERS; EFFECTIVE
IONIC-RADII; WAVE BASIS-SET; M = NB; RARE-EARTH; CRYSTAL-CHEMISTRY; YBCO
FILMS
AB A systematic study of the chemical interaction of Ba2YCu3O6+y and Gd3NbO7 was conducted under two processing conditions: purified air (21% p(o2)) and 100 Pa p(o2) (0.1% P-o2) Phases present along the pseudo-binary join Ba2YCu3O6, and Gd3NbO7 were found to be in two five-phase volumes within the BaO-1/2 Y2O3-1/2Gd(2)O(3)-Nb2O5-CuOy system. Three common phases that are present in all samples are (Y, Gd)(2)Cu2O5. Ba(Y,Gd)(2)CuO5 and Cu2O or CuO (depending on the processing conditions) The assemblies of phases can be categorized in three regions, with Ba2YCu3O6+y Gd3NbO7 ratios of (I) <5.5:4.5: (II)=5.5:4.5, and (III) > 5.5.4.5. The lowest melting temperature of the system was determined to be 938 degrees C in air, and 850 degrees C at 100 Pa P-o2 Structure determinations of two selected phases. Ba-2(GdxY1-x)NbO6 (Fm (3) over barm, No. 225), and (GdxY3-x)NbO7 (G222(1), No 20 and Ccmm. No 63), were completed using the X-ray Rietveld refinement technique Reference X-ray powder diffraction patterns for selected phases of Ba-2(GdxY1-x)NbOG (x=0 2, 04, 0.6, and 0 8) and (GdxY3-x)NbO7 (x=0.6, 1 2, 1 8, 24 and 3) have been prepared for inclusion in the Powder Diffraction File (PDF) (C) 2010 Published by Elsevier Inc
C1 [Wong-Ng, W.; Yang, Z.; Cook, L. P.] NIST, Div Ceram, Gaithersburg, MD 20899 USA.
[Kaduk, J. A.] INEOS Technol, Naperville, IL 60566 USA.
[Paranthaman, M.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
RP Wong-Ng, W (reprint author), NIST, Div Ceram, Gaithersburg, MD 20899 USA.
RI Paranthaman, Mariappan/N-3866-2015
OI Paranthaman, Mariappan/0000-0003-3009-8531
FU US Department of Energy
FX The partial financial support from the Office of Electricity Delivery
and Energy Reliability of the US Department of Energy is acknowledged.
Mr. N. Swanson and Dr. P. Schenck are thanked for their assistance in
graphic presentations.
NR 35
TC 0
Z9 0
U1 1
U2 4
PU ACADEMIC PRESS INC ELSEVIER SCIENCE
PI SAN DIEGO
PA 525 B ST, STE 1900, SAN DIEGO, CA 92101-4495 USA
SN 0022-4596
J9 J SOLID STATE CHEM
JI J. Solid State Chem.
PD MAR
PY 2010
VL 183
IS 3
BP 649
EP 657
DI 10.1016/j.jssc.2010.01.006
PG 9
WC Chemistry, Inorganic & Nuclear; Chemistry, Physical
SC Chemistry
GA 569WU
UT WOS:000275634300025
ER
PT J
AU Tobash, PH
Ronning, F
Thompson, JD
Bobev, S
Bauer, ED
AF Tobash, Paul H.
Ronning, Filip
Thompson, J. D.
Bobev, Svilen
Bauer, Eric D.
TI Magnetic order and heavy fermion behavior in CePd1+xAl6-x: Synthesis,
structure, and physical properties
SO JOURNAL OF SOLID STATE CHEMISTRY
LA English
DT Article
DE Crystal structure; Flux growth; Magnetism; Heavy fermion; Specific heat
ID CRYSTAL-GROWTH; GROUND-STATE; SUPERCONDUCTIVITY; CE; HYBRIDIZATION;
CERHIN5; SYSTEMS; CEPDGA6
AB The physical properties including magnetic susceptibility, specific heat, and electrical resistivity of single crystals are reported for the compound CePd1+xAl6-x (x=0.5) which crystallizes in the tetragonal SrAu2Ga5-type structure (space group P4/mmm) The compound was grown from an excess of molten Al flux from the respective elements and the crystal structure was established from single-crystal X-ray diffraction Anomalies in the low temperature specific heat C-p(T) and electrical resistivity rho(T) show that the compound undergoes ferromagnetic order at T-C=2 8 K. In the ordered state, CePd15Al55 displays heavy fermion behavior with a Sommerfeld coefficient of ca. 500 mJ/mol-K-2. Published by Elsevier Inc
C1 [Tobash, Paul H.; Ronning, Filip; Thompson, J. D.; Bauer, Eric D.] Los Alamos Natl Lab, Mat Phys & Applicat Div, MPA 10, Los Alamos, NM 87545 USA.
[Tobash, Paul H.; Bobev, Svilen] Univ Delaware, Dept Chem & Biochem, Newark, DE 19716 USA.
RP Tobash, PH (reprint author), Los Alamos Natl Lab, Mat Phys & Applicat Div, MPA 10, POB 1663, Los Alamos, NM 87545 USA.
RI Bauer, Eric/D-7212-2011;
OI Ronning, Filip/0000-0002-2679-7957; Bauer, Eric/0000-0003-0017-1937
FU Los Alamos National Laboratory; US DOE; NSF [DMR-0743916]
FX Paul H. Tobash acknowledges financial support from Los Alamos National
Laboratory through the Seaborg Fellowship. Work at Los Alamos was
performed under the auspices of the US DOE and is also funded in part by
the Los Alamos Laboratory Directed Research and Development program.
Work at University of Delaware was supported by a NSF CAREER grant
(DMR-0743916)
NR 35
TC 3
Z9 3
U1 4
U2 7
PU ACADEMIC PRESS INC ELSEVIER SCIENCE
PI SAN DIEGO
PA 525 B ST, STE 1900, SAN DIEGO, CA 92101-4495 USA
SN 0022-4596
J9 J SOLID STATE CHEM
JI J. Solid State Chem.
PD MAR
PY 2010
VL 183
IS 3
BP 707
EP 711
DI 10.1016/j.jssc.2009.12.010
PG 5
WC Chemistry, Inorganic & Nuclear; Chemistry, Physical
SC Chemistry
GA 569WU
UT WOS:000275634300034
ER
PT J
AU Sampath, RS
Barai, P
Nukala, PKVV
AF Sampath, Rahul S.
Barai, Pallab
Nukala, Phani K. V. V.
TI A parallel multigrid preconditioner for the simulation of large fracture
networks
SO JOURNAL OF STATISTICAL MECHANICS-THEORY AND EXPERIMENT
LA English
DT Article
DE fracture (theory); heterogeneous materials (theory)
AB Computational modeling of a fracture in disordered materials using discrete lattice models requires the solution of a linear system of equations every time a new lattice bond is broken. Solving these linear systems of equations successively is the most expensive part of fracture simulations using large three-dimensional networks. In this paper, we present a parallel multigrid preconditioned conjugate gradient algorithm to solve these linear systems. Numerical experiments demonstrate that this algorithm performs significantly better than the algorithms previously used to solve this problem.
C1 [Sampath, Rahul S.; Barai, Pallab; Nukala, Phani K. V. V.] Oak Ridge Natl Lab, Div Math & Comp Sci, Oak Ridge, TN 37831 USA.
RP Sampath, RS (reprint author), Oak Ridge Natl Lab, Div Math & Comp Sci, Oak Ridge, TN 37831 USA.
EM sampathrs@ornl.gov; baraip@ornl.gov; nukalapk@ornl.gov
RI Sampath, Rahul/G-3396-2011
FU Oak Ridge National Laboratory (ORNL) [DE-AC05-00OR22725,
DE-AC05-00OR22750]; Office of Advanced Scientific Computing Research, US
Department of Energy with UT-Battelle, LLC [DE-AC05-00OR22725]
FX RSS and PB are supported by Oak Ridge National Laboratory's (ORNL)
Postdoctoral Research Associates and Postmaster's Research Participation
Programs under contract nos. DE-AC05-00OR22725 and DE-AC05-00OR22750,
respectively. PKVVN is sponsored by the Office of Advanced Scientific
Computing Research, US Department of Energy under contract no.
DE-AC05-00OR22725 with UT-Battelle, LLC.
NR 20
TC 0
Z9 0
U1 0
U2 7
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 1742-5468
J9 J STAT MECH-THEORY E
JI J. Stat. Mech.-Theory Exp.
PD MAR
PY 2010
AR P03029
DI 10.1088/1742-5468/2010/03/P03029
PG 9
WC Mechanics; Physics, Mathematical
SC Mechanics; Physics
GA 589UV
UT WOS:000277180600009
ER
PT J
AU Tarasevich, BJ
Lea, S
Shaw, WJ
AF Tarasevich, Barbara J.
Lea, Scott
Shaw, Wendy J.
TI The leucine rich amelogenin protein (LRAP) adsorbs as monomers or dimers
onto surfaces
SO JOURNAL OF STRUCTURAL BIOLOGY
LA English
DT Article
DE Amelogenin; LRAP; Adsorption; Quaternary structure
ID DYNAMIC LIGHT-SCATTERING; ATOMIC-FORCE MICROSCOPY; SELF-ASSEMBLED
MONOLAYERS; GENE SPLICE PRODUCTS; X-RAY-SCATTERING; IN-VITRO; ENAMEL
MATRIX; HYDROXYAPATITE CRYSTALS; POLYMERIC BIOMATERIALS; TRANSLATION
PRODUCT
AB Amelogenin is believed to be involved in controlling the formation of the highly anisotropic and ordered hydroxyapatite crystallites that form enamel. The adsorption behavior of amelogenin proteins onto substrates is very important because protein-surface interactions are critical to its function. We have previously used LRAP, a splice variant of amelogenin, as a model protein for the full-length amelogenin in solid-state NMR and neutron reflectivity studies at interfaces. In this work, we examined the adsorption behavior of LRAP in greater detail using model self-assembled monolayers containing COOH, CH(3), and NH(2) end groups as substrates. Dynamic light scattering (DLS) experiments indicated that LRAP in phosphate buffered saline and solutions containing low concentrations of calcium and phosphate consisted of aggregates of nanospheres. Null ellipsometry and atomic force microscopy (AFM) were used to study protein adsorption amounts and quaternary structures on the surfaces. Relatively high amounts of adsorption occurred onto the CH(3) and NH(2) surfaces from both buffer solutions. Adsorption was also promoted onto COOH surfaces only when calcium was present in the solutions suggesting an interaction that involves calcium bridging with the negatively charged C-terminus. The ellipsometry and AFM studies revealed that LRAP adsorbed onto the surfaces as small subnanosphere-sized structures such as monomers or dinners. We propose that the monomers/dimers were present in solution even though they were not detected by DLS or that they adsorbed onto the surfaces by disassembling or "shedding" from the nanospheres that are present in solution. This work reveals the importance of small subnanosphere-sized structures of LRAP at interfaces. (C) 2009 Published by Elsevier Inc.
C1 [Tarasevich, Barbara J.; Lea, Scott; Shaw, Wendy J.] Pacific NW Natl Lab, Richland, WA 99352 USA.
RP Shaw, WJ (reprint author), Pacific NW Natl Lab, 908 Battelle Blvd, Richland, WA 99352 USA.
EM barbara.tarasevich@pnl.gov; wendy.shaw@pnl.gov
OI Lea, Alan/0000-0002-4232-1553
FU NIH-NIDCR [DE-015347]
FX This work was supported by NIH-NIDCR Grant DE-015347. This research was
performed at Pacific Northwest National Laboratory, operated by Battelle
for the US-DOE. A portion of the research was performed in the EMSL, a
national scientific user facility sponsored by the DOE-OBER at PNNL.
NR 64
TC 16
Z9 17
U1 1
U2 11
PU ACADEMIC PRESS INC ELSEVIER SCIENCE
PI SAN DIEGO
PA 525 B ST, STE 1900, SAN DIEGO, CA 92101-4495 USA
SN 1047-8477
J9 J STRUCT BIOL
JI J. Struct. Biol.
PD MAR
PY 2010
VL 169
IS 3
BP 266
EP 276
DI 10.1016/j.jsb.2009.10.007
PG 11
WC Biochemistry & Molecular Biology; Biophysics; Cell Biology
SC Biochemistry & Molecular Biology; Biophysics; Cell Biology
GA 565MB
UT WOS:000275296100002
PM 19850130
ER
PT J
AU Thieme, J
Sedlmair, J
Gleber, SC
Prietzel, J
Coates, J
Eusterhues, K
Abbt-Braun, G
Salome, M
AF Thieme, J.
Sedlmair, J.
Gleber, S. -C.
Prietzel, J.
Coates, J.
Eusterhues, K.
Abbt-Braun, G.
Salome, M.
TI X-ray spectromicroscopy in soil and environmental sciences
SO JOURNAL OF SYNCHROTRON RADIATION
LA English
DT Article
DE X-ray microscopy; spectromicroscopy; XANES; NEXAFS; environmental
sciences; colloids; nanoparticles
ID EDGE XANES SPECTROSCOPY; ADVANCED LIGHT-SOURCE; BESSY-II;
SPATIAL-RESOLUTION; SULFUR SPECIATION; NM RESOLUTION; MICROSCOPY;
TRANSMISSION; TOMOGRAPHY; PHOSPHORUS
AB X-ray microscopy is capable of imaging particles in the nanometer size range directly with sub-micrometer spatial resolution and can be combined with high spectral resolution for spectromicroscopy studies. Two types of microscopes are common in X-ray microscopy: the transmission X-ray microscope and the scanning transmission X-ray microscope; their set-ups are explained in this paper. While the former takes high-resolution images from an object with exposure times of seconds or faster, the latter is very well suited as an analytical instrument for spectromicroscopy. The morphology of clusters or particles from soil and sediment samples has been visualized using a transmission X-ray microscope. Images are shown from a cryo-tomography experiment based on X-ray microscopy images to obtain information about the three-dimensional structure of clusters of humic substances. The analysis of a stack of images taken with a scanning transmission X-ray microscope to combine morphology and chemistry within a soil sample is shown. X-ray fluorescence is a method ideally applicable to the study of elemental distributions and binding states of elements even on a trace level using X-ray energies above 1 keV.
C1 [Sedlmair, J.; Gleber, S. -C.] Brookhaven Natl Lab, NSLS Project 2, Upton, NY 11973 USA.
[Prietzel, J.] Tech Univ Munich, Chair Soil Sci, D-85350 Freising Weihenstephan, Germany.
[Coates, J.] Univ Calif Berkeley, Dept Plant & Microbial Biol, Berkeley, CA 94720 USA.
[Eusterhues, K.] Univ Jena, Inst Geosci, D-07749 Jena, Germany.
[Abbt-Braun, G.] Univ Karlsruhe, Chair Water Chem, D-76131 Karlsruhe, Germany.
[Salome, M.] European Synchrotron Radiat Facil, F-38043 Grenoble, France.
RP Thieme, J (reprint author), Brookhaven Natl Lab, NSLS Project 2, Bldg 817, Upton, NY 11973 USA.
EM jthieme@bnl.gov
RI Thieme, Juergen/D-6814-2013;
OI Eusterhues, Karin/0000-0003-1754-2298
FU Federal Minister of Education and Research (BMBF) [05KS1MG1/9,
02WU9893/0]; Office of Naval Research [N00014-99-10371]; DFG [Th
445/8-1, Th 445/8-2]
FX The work presented here has been supported by the Federal Minister of
Education and Research (BMBF) under contract numbers 05KS1MG1/9 and
02WU9893/0, by the Office of Naval Research under contract number
N00014-99-10371, by DFG under contract numbers Th 445/8-1 and Th 445/8-2
and within the SFB755 'Nanoscale Photonic Imaging'. We would like to
thank the staff of ALS, ESRF and BESSY II for providing excellent
working conditions when performing experiments.
NR 51
TC 21
Z9 21
U1 1
U2 35
PU WILEY-BLACKWELL PUBLISHING, INC
PI MALDEN
PA COMMERCE PLACE, 350 MAIN ST, MALDEN 02148, MA USA
SN 0909-0495
J9 J SYNCHROTRON RADIAT
JI J. Synchrot. Radiat.
PD MAR
PY 2010
VL 17
BP 149
EP 157
DI 10.1107/S0909049509049905
PN 2
PG 9
WC Instruments & Instrumentation; Optics; Physics, Applied
SC Instruments & Instrumentation; Optics; Physics
GA 554OM
UT WOS:000274444300002
PM 20157265
ER
PT J
AU Specht, ED
Walker, FJ
Liu, WJ
AF Specht, E. D.
Walker, F. J.
Liu, Wenjun
TI X-ray microdiffraction analysis of radiation-induced defects in single
grains of polycrystalline Fe
SO JOURNAL OF SYNCHROTRON RADIATION
LA English
DT Article
DE microdiffraction; irradiation; diffuse scattering
ID POINT-DEFECTS; SCATTERING; CLUSTERS; DIFFRACTION; IRON
AB Single-crystal diffuse X-ray scattering was used to characterize radiation-induced defects in individual grains of a polycrystalline proton-irradiated Fe foil. The grains were probed with an intense 1 mu m X-ray beam to demonstrate that both polycrystalline and micrometer-scale samples can be studied with single-crystal- like signal-to-noise. Scattering was measured with an X-ray-sensitive area detector, which measures intensity over a surface in reciprocal space. By scanning the X-ray energy, the intensity was measured over reciprocal-space volumes. Since the sample is not rotated, the real-space scattering volume does not change. Methods to minimize experimental artifacts arising from the use of an area detector are described.
C1 [Specht, E. D.] Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA.
[Walker, F. J.] Yale Univ, Dept Appl Phys, New Haven, CT 06520 USA.
[Liu, Wenjun] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
RP Specht, ED (reprint author), Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA.
EM spechted@ornl.gov
RI Specht, Eliot/A-5654-2009;
OI Specht, Eliot/0000-0002-3191-2163; Walker, Frederick/0000-0002-8094-249X
FU US Department of Energy; US Department of Energy, Office of Science,
Office of Basic Energy Sciences, [DE-AC02-06CH11357]
FX Proton irradiation was performed by Gary Was and Ovidiu Toader at the
Michigan Ion Beam Laboratory. Research was sponsored by the Laboratory
Directed Research and Development Program of Oak Ridge National
Laboratory, managed by UT-Battelle, LLC, for the US Department of
Energy. Use of the Advanced Photon Source was supported by the US
Department of Energy, Office of Science, Office of Basic Energy
Sciences, under Contract No. DE-AC02-06CH11357.
NR 19
TC 3
Z9 3
U1 0
U2 7
PU WILEY-BLACKWELL PUBLISHING, INC
PI MALDEN
PA COMMERCE PLACE, 350 MAIN ST, MALDEN 02148, MA USA
SN 0909-0495
J9 J SYNCHROTRON RADIAT
JI J. Synchrot. Radiat.
PD MAR
PY 2010
VL 17
BP 250
EP 256
DI 10.1107/S0909049509052078
PN 2
PG 7
WC Instruments & Instrumentation; Optics; Physics, Applied
SC Instruments & Instrumentation; Optics; Physics
GA 554OM
UT WOS:000274444300016
PM 20157279
ER
PT J
AU Chou, YS
Stevenson, JW
Meinhardt, KD
AF Chou, Yeong-Shyung
Stevenson, Jeffry W.
Meinhardt, K. D.
TI Electrical Stability of a Novel Refractory Sealing Glass in a Dual
Environment for Solid Oxide Fuel Cell Applications
SO JOURNAL OF THE AMERICAN CERAMIC SOCIETY
LA English
DT Article
AB A novel refractory alkaline-earth silicate (Sr-Ca-Y-B-Si) sealing glass was developed for solid oxide fuel cell (SOFC) applications. The glass was sealed between two metallic interconnect plates and tested for electrical stability at elevated temperatures and dual environments under dc loading. The isothermal aging results showed very stable electrical resistivity with values 5-9 orders of magnititudes higher than typical SOFC function materials at 850 degrees C for similar to 700 h. For comparison, a state-of-the-art sealing glass (G18, Ba-Ca-Al-B-Si) was also evaluated in a similar condition and showed a less stable condition in accelerated tests at 830 degrees C for similar to 100 h. Interfacial microstructure was characterized and possible reactions are discussed.
C1 [Chou, Yeong-Shyung; Stevenson, Jeffry W.; Meinhardt, K. D.] Pacific NW Natl Lab, Energy & Efficiency Div, Richland, WA 99354 USA.
RP Chou, YS (reprint author), Pacific NW Natl Lab, Energy & Efficiency Div, K2-44, Richland, WA 99354 USA.
EM yeong-shyung.chou@pnl.gov
FU US Department of Energy [DE-AC06-76RLO 1830]
FX This work was supported by the US Department of Energy's Solid-State
Energy Conversion Alliance (SECA) Core Technology Program. Pacific
Northwest National Laboratory is operated by Battelle Memorial Institute
for the US Department of Energy under Contract no. DE-AC06-76RLO 1830.
NR 25
TC 14
Z9 14
U1 3
U2 9
PU WILEY-BLACKWELL PUBLISHING, INC
PI MALDEN
PA COMMERCE PLACE, 350 MAIN ST, MALDEN 02148, MA USA
SN 0002-7820
J9 J AM CERAM SOC
JI J. Am. Ceram. Soc.
PD MAR
PY 2010
VL 93
IS 3
BP 618
EP 623
DI 10.1111/j.1551-2916.2009.03466.x
PG 6
WC Materials Science, Ceramics
SC Materials Science
GA 561BR
UT WOS:000274950900005
ER
PT J
AU Pepe, A
Mayernik, M
Borgman, CL
Van de Sompel, H
AF Pepe, Alberto
Mayernik, Matthew
Borgman, Christine L.
Van de Sompel, Herbert
TI From Artifacts to Aggregations: Modeling Scientific Life Cycles on the
Semantic Web
SO JOURNAL OF THE AMERICAN SOCIETY FOR INFORMATION SCIENCE AND TECHNOLOGY
LA English
DT Article
ID JOURNAL ARTICLES; COMMUNICATION; PSYCHOLOGY; NETWORKS; SCIENCE; SYSTEM
AB In the process of scientific research, many information objects are generated, all of which may remain valuable indefinitely. However, artifacts such as instrument data and associated calibration information may have little value in isolation; their meaning is derived from their relationships to each other. Individual artifacts are best represented as components of a life cycle that is specific to a scientific research domain or project. Current cataloging practices do not describe objects at a sufficient level of granularity nor do they offer the globally persistent identifiers necessary to discover and manage scholarly products with World Wide Web standards. The Open Archives Initiative's Object Reuse and Exchange data model (OAI-ORE) meets these requirements. We demonstrate a conceptual implementation of OAI-ORE to represent the scientific life cycles of embedded networked sensor applications in seismology and environmental sciences. By establishing relationships between publications, data, and contextual research information, we illustrate how to obtain a richer and more realistic view of scientific practices. That view can facilitate new forms of scientific research and learning. Our analysis is framed by studies of scientific practices in a large, multidisciplinary, multi-university science and engineering research center, the Center for Embedded Networked Sensing.
C1 [Pepe, Alberto; Mayernik, Matthew; Borgman, Christine L.] Univ Calif Los Angeles, Ctr Embedded Networked Sensing, Los Angeles, CA 90095 USA.
[Pepe, Alberto; Mayernik, Matthew; Borgman, Christine L.] Univ Calif Los Angeles, Dept Informat Studies, Los Angeles, CA 90095 USA.
[Van de Sompel, Herbert] Los Alamos Natl Lab, Digital Lib Res & Prototyping Team, Los Alamos, NM 87545 USA.
RP Pepe, A (reprint author), Univ Calif Los Angeles, Ctr Embedded Networked Sensing, Los Angeles, CA 90095 USA.
EM apepe@ucla.edu
OI Mayernik, Matthew/0000-0002-4122-0910; Van de Sompel,
Herbert/0000-0002-0715-6126
FU National Science Foundation [CCR-0120778]; CENS Deployment Center;
Microsoft Research Technical Computing Initiative
FX CENS is funded by National Science Foundation Cooperative Agreement
CCR-0120778, Deborah L. Estrin, UCLA, Principal Investigator; Christine
L. Borgman is a founding Co-Principal Investigator and research lead of
the Data Practices Team. The CENS Deployment Center is supported by core
CENS funding. Alberto Pepe and Matthew Mayernik's participation in this
research is supported by a gift from the Microsoft Research Technical
Computing Initiative.
NR 66
TC 5
Z9 5
U1 2
U2 14
PU WILEY-BLACKWELL
PI HOBOKEN
PA 111 RIVER ST, HOBOKEN 07030-5774, NJ USA
SN 1532-2882
EI 1532-2890
J9 J AM SOC INF SCI TEC
JI J. Am. Soc. Inf. Sci. Technol.
PD MAR
PY 2010
VL 61
IS 3
BP 567
EP 582
DI 10.1002/asi.21263
PG 16
WC Computer Science, Information Systems; Information Science & Library
Science
SC Computer Science; Information Science & Library Science
GA 560TO
UT WOS:000274926000010
ER
PT J
AU Hill, M
Calhoun, R
Fernando, HJS
Wieser, A
Dornbrack, A
Weissmann, M
Mayr, G
Newsom, R
AF Hill, Michael
Calhoun, Ron
Fernando, H. J. S.
Wieser, Andreas
Doernbrack, Andreas
Weissmann, Martin
Mayr, Georg
Newsom, Robert
TI Coplanar Doppler Lidar Retrieval of Rotors from T-REX
SO JOURNAL OF THE ATMOSPHERIC SCIENCES
LA English
DT Article
ID TURBULENT-FLOW; WAVY SURFACE; LEE WAVES; DISPERSION; MOUNTAIN; DYNAMICS;
TERRAIN; FIELDS; WIND
AB Dual-Doppler analysis of data from two coherent lidars during the Terrain-Induced Rotor Experiment (T-REX) allows the retrieval of flow structures, such as vortices, during mountain-wave events. The spatial and temporal resolution of this approach is sufficient to identify and track vortical motions on an elevated, cross-barrier plane in clear air. Assimilation routines or additional constraints such as two-dimensional continuity are not required. A relatively simple and quick least squares method forms the basis of the retrieval. Vortices are shown to evolve and advect in the flow field, allowing analysis of their behavior in the mountain wave boundary layer system. The locations, magnitudes, and evolution of the vortices can be studied through calculated fields of velocity, vorticity, streamlines, and swirl. Generally, observations suggest two classes of vortical motions: rotors and small-scale vortical structures. These two structures differ in scale and behavior. The level of coordination of the two lidars and the nature of the output (i.e., in range gates) creates inherent restrictions on the spatial and temporal resolution of retrieved fields.
C1 [Hill, Michael; Calhoun, Ron; Fernando, H. J. S.] Arizona State Univ, Dept Mech & Aerosp Engn, Tempe, AZ 85287 USA.
[Wieser, Andreas] Forschungszentrum Karlsruhe, Inst Meteorol & Klimaforsch, Karlsruhe, Germany.
[Doernbrack, Andreas; Weissmann, Martin] Deutsch Zentrum Luft & Raumfahrt, Inst Atmospher Phys, Oberpfaffenhofen, Germany.
[Mayr, Georg] Univ Innsbruck, Inst Meteorol & Geophys, A-6020 Innsbruck, Austria.
[Newsom, Robert] Pacific NW Natl Lab, Richland, WA 99352 USA.
RP Calhoun, R (reprint author), Arizona State Univ, Dept Mech & Aerosp Engn, Main Campus,POB 876106, Tempe, AZ 85287 USA.
EM ron.calhoun@asu.edu
RI Wieser, Andreas/A-3533-2013; Weissmann, Martin/C-9084-2013
NR 42
TC 24
Z9 24
U1 1
U2 10
PU AMER METEOROLOGICAL SOC
PI BOSTON
PA 45 BEACON ST, BOSTON, MA 02108-3693 USA
SN 0022-4928
EI 1520-0469
J9 J ATMOS SCI
JI J. Atmos. Sci.
PD MAR
PY 2010
VL 67
IS 3
BP 713
EP 729
DI 10.1175/2009JAS3016.1
PG 17
WC Meteorology & Atmospheric Sciences
SC Meteorology & Atmospheric Sciences
GA 575WS
UT WOS:000276101400009
ER
PT J
AU Ko, YH
Kim, KJ
Han, CK
Petrovic, C
Hu, RW
Lee, HH
Lee, Y
AF Ko, Young Ho
Kim, Kwang Joo
Han, Chung Kyu
Petrovic, Cedomir
Hu, Rongwei
Lee, Hyun Hee
Lee, Yongjae
TI Static Compression of epsilon-FeSi
SO JOURNAL OF THE KOREAN PHYSICAL SOCIETY
LA English
DT Article
DE Equation of state; Diamond anvil cell; epsilon-FeSi
ID NEUTRON POWDER DIFFRACTION; HIGH-PRESSURE; CALIBRATION; SILICON; EARTH;
GPA
AB X-ray diffraction patterns of epsilon-FeSi have been measured at pressures up to similar to 53 GPa with good signal-to-noise ratio and high resolution by using synchrotron radiation. In order to refine the crystal structure, a Rietveld analysis has been performed. The structure of epsilon-FeSi is Cubic with space group P2(1)3 and a = 4.4781 +/- 0.0026 angstrom. A third-order Birch-Murnaghan equation of state I fit to the experimental data yields V-0 = 89.80 +/- 0.15 angstrom(3); with a B-0 of 204.7 +/- 4.9 GPa and B-0' = 5.6 +/- 0.3. The bulk modulus obtained from this study is not only in very good agreement with those of some previous experimental studies but also in good agreement with those obtained from first-principles calculations.
C1 [Ko, Young Ho; Kim, Kwang Joo; Han, Chung Kyu] Agcy Def Dev, Taejon 305600, South Korea.
[Petrovic, Cedomir; Hu, Rongwei] Brookhaven Natl Lab, Dept Condensed Matter Phys, Upton, NY 11973 USA.
[Hu, Rongwei] Brown Univ, Dept Phys, Providence, RI 02912 USA.
[Lee, Hyun Hee] Pohang Accelerator Lab, Pohang 790784, South Korea.
[Lee, Yongjae] Yonsei Univ, Dept Earth Syst Sci, Seoul 120749, South Korea.
RP Ko, YH (reprint author), Agcy Def Dev, Taejon 305600, South Korea.
EM yhko@add.re.kr; yongjaelee@yonsei.ac.kr
RI Hu, Rongwei/E-7128-2012; Petrovic, Cedomir/A-8789-2009; Lee,
Yongjae/K-6566-2016
OI Petrovic, Cedomir/0000-0001-6063-1881;
FU Ministry of Education, Science and Technology (MEST); Pohang University
of Science and Technology (POSTECH); Korea government, Ministry of
Education, Science and Technology (MEST) [R01-2008-000-20745-0]; U.S.
Department of Energy [DE-Ac02-98CH10886]; Agency for Defense Development
(ADD)
FX Experiments at Pohang Light Source (PLS) were supported in part by
Ministry of Education, Science and Technology (MEST) and Pohang
University of Science and Technology (POSTECH). Y. Lee appreciates the
support by Korea Science and Engineering Foundation (KOSEF) grant funded
by the Korea government, Ministry of Education, Science and Technology
(MEST), R01-2008-000-20745-0. Brookhaven National Laboratory is operated
for the U.S. Department of Energy by Brookhaven Science Associates,
Grant No. DE-Ac02-98CH10886. This work was also supported by Agency for
Defense Development (ADD).
NR 20
TC 5
Z9 5
U1 0
U2 2
PU KOREAN PHYSICAL SOC
PI SEOUL
PA 635-4, YUKSAM-DONG, KANGNAM-KU, SEOUL 135-703, SOUTH KOREA
SN 0374-4884
EI 1976-8524
J9 J KOREAN PHYS SOC
JI J. Korean Phys. Soc.
PD MAR
PY 2010
VL 56
IS 3
BP 832
EP 835
DI 10.3938/jkps.56.832
PG 4
WC Physics, Multidisciplinary
SC Physics
GA 569TJ
UT WOS:000275624200026
ER
PT J
AU Mulholland, PJ
Webster, JR
AF Mulholland, Patrick J.
Webster, Jackson R.
TI Nutrient dynamics in streams and the role of J-NABS
SO JOURNAL OF THE NORTH AMERICAN BENTHOLOGICAL SOCIETY
LA English
DT Article
DE nutrient dynamics; nutrient cycling; streams; nitrogen; phosphorus
ID N-15 TRACER ADDITION; NORTHERN CALIFORNIA STREAMS; SURFACE-SUBSURFACE
EXCHANGE; SALMON ONCORHYNCHUS-NERKA; COASTAL RAINFOREST STREAM;
DISSOLVED ORGANIC-CARBON; HYPORHEIC ZONE; FOREST STREAM; DESERT STREAM;
PERIPHYTON GROWTH
AB Nutrient dynamics in streams has been an important topic of research since the 1960s Here we review this topic and the significant role played by J-NABS in its development. We limit this review almost exclusively to Studies of N and P because these elements have been shown to limit productivity in streams. We use the expression nutrient dynamics for Studies that Included some measures of biological processes occurring within streams Prior to the 1970s, instream biological processes were little studied, but through 1985 conceptual advances were made, and 4 types of studies made important contributions to Our understanding of instream processes 1) evidence of increased plant production and decomposition in response to nutrient addition, 2) studies showing a downstream decrease in nutrient concentrations, 3) studies using radioisotopes, and 4) budget studies Beginning with the first paper printed in its first Issue, J-NABS has been the outlet for key papers advancing our understanding of rates and controls of nutrient dynamics in streams. In the first few years, an important review and a conceptual model for conducting experiments to study nutrient dynamics in streams were published in J-NABS In the 1990s, J-NABS published a number of papers on nutrient recycling within algal communities, the role of the hyporheic zone, the role of spawning fish, and the coupling of data from field (15)N additions and a N-cycling model to provide a synoptic view of N dynamics in streams Since 2000, J-NABS has published influential studies on nutrient criteria for streams, rates of and controls on nitrification and denitrification, uptake of stream nutrients by riparian vegetation, and nutrient dynamics in urban streams Nutrient dynamics will certainly continue to be an important topic in J-NABS Topics needing further study include. techniques for study in nutrient dynamics, nutrient dynamics in larger streams and rivers, the ultimate fate of nutrients taken up by plants and microbes in streams, ecological stoichiometry, the effects of climate change, and the role of streams and rivers in nutrient transformation and retention at the landscape scale.
C1 [Mulholland, Patrick J.] Oak Ridge Natl Lab, Div Environm Sci, Oak Ridge, TN 37831 USA.
[Webster, Jackson R.] Virginia Polytech Inst & State Univ, Dept Biol Sci, Blacksburg, VA 24061 USA.
RP Mulholland, PJ (reprint author), Oak Ridge Natl Lab, Div Environm Sci, POB 2008, Oak Ridge, TN 37831 USA.
RI Mulholland, Patrick/C-3142-2012
FU US Department of Energy, Office of Science, Biological and Environmental
Research [DE-AC05-00OR22725]
FX Partial support for PJM during manuscript preparation was provided by
the US Department of Energy, Office of Science, Biological and
Environmental Research under contract DE-AC05-00OR22725 with
UT-Battelle.
NR 198
TC 53
Z9 55
U1 11
U2 80
PU NORTH AMER BENTHOLOGICAL SOC
PI LAWRENCE
PA 1041 NEW HAMSPHIRE STREET, LAWRENCE, KS 66044 USA
SN 0887-3593
J9 J N AM BENTHOL SOC
JI J. N. Am. Benthol. Soc.
PD MAR
PY 2010
VL 29
IS 1
BP 100
EP 117
DI 10.1899/08-035.1
PG 18
WC Ecology; Marine & Freshwater Biology
SC Environmental Sciences & Ecology; Marine & Freshwater Biology
GA 562BJ
UT WOS:000275023500007
ER
PT J
AU Patterson, WM
Seletskiy, DV
Sheik-Bahae, M
Epstein, RI
Hehlen, MP
AF Patterson, W. M.
Seletskiy, D. V.
Sheik-Bahae, M.
Epstein, R. I.
Hehlen, M. P.
TI Measurement of solid-state optical refrigeration by two-band
differential luminescence thermometry
SO JOURNAL OF THE OPTICAL SOCIETY OF AMERICA B-OPTICAL PHYSICS
LA English
DT Article
AB We present a non-contact optical technique for the measurement of laser-induced temperature changes in solids. Two-band differential luminescence thermometry (TBDLT) achieves a sensitivity of similar to 7 mK and enables a precise measurement of the net quantum efficiency of optical refrigerator materials. The TBDLT detects internal temperature changes by decoupling surface and bulk heating effects via time-resolved luminescence spectroscopy. Several Yb(3+)-doped fluorozirconate (ZrF(4)-BaF(2)-LaF(3)-AlF(3)-NaF-InF(3), ZBLANI) glasses fabricated from precursors of varying purity and by different processes are analyzed in detail. A net quantum efficiency of (97.39 +/- 0.01)% at 238 K ( at a pump wavelength of 1020.5 nm) is found for a ZBLANI:1% Yb(3+) laser-cooling sample produced from metal fluoride precursors that were purified by chelate-assisted solvent extraction and dried in hydrofluoric gas. In comparison, a ZBLANI:1% Yb(3+) sample produced from commercial-grade metal fluoride precursors showed pronounced laser-induced heating that is indicative of a substantially higher impurity concentration. The TBDLT enables rapid and sensitive benchmarking of laser-cooling materials and provides critical feedback to the development and optimization of high-performance optical cryocooler materials. (C) 2010 Optical Society of America
C1 [Patterson, W. M.; Seletskiy, D. V.; Sheik-Bahae, M.] Univ New Mexico, Albuquerque, NM 87131 USA.
[Epstein, R. I.; Hehlen, M. P.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Patterson, WM (reprint author), Univ New Mexico, 800 Yale Blvd NE, Albuquerque, NM 87131 USA.
EM wendy5@unm.edu
RI Seletskiy, Denis/G-5523-2011; Seletskiy, Denis/C-1372-2011;
OI Seletskiy, Denis/0000-0003-3480-4595; Seletskiy,
Denis/0000-0003-3480-4595; Patterson, Wendy/0000-0002-8761-8457
FU U.S. Air Force Office of Scientific Research (AFOSR); U.S. Department of
Energy (DOE); National Nuclear Security Administration of the U.S. DOE
[DE-AC52-06NA25396]
FX We thank Dr. Scott R. Greenfield, Los Alamos National Laboratory (LANL),
for useful discussions on the DLT. We thank Dr. Karl Kramer at the
Department of Chemistry and Biochemistry, University of Bern,
Switzerland, for his assistance with the hydrogen fluoride gas drying
apparatus used in the synthesis of the ZBLANI samples and for providing
the sublimated ZrF4 used for the synthesis of sample 6. We
gratefully acknowledge the support of the U.S. Air Force Office of
Scientific Research (AFOSR) under the Multidisciplinary University
Research Initiative (MURI) program and the U.S. Department of Energy
(DOE) through the LANL/Laboratory Directed Research and Development
Program for this work. Los Alamos National Laboratory, an affirmative
action equal opportunity employer, is operated by Los Alamos National
Security, LLC, for the National Nuclear Security Administration of the
U.S. DOE under contract DE-AC52-06NA25396.
NR 14
TC 10
Z9 10
U1 1
U2 4
PU OPTICAL SOC AMER
PI WASHINGTON
PA 2010 MASSACHUSETTS AVE NW, WASHINGTON, DC 20036 USA
SN 0740-3224
J9 J OPT SOC AM B
JI J. Opt. Soc. Am. B-Opt. Phys.
PD MAR
PY 2010
VL 27
IS 3
BP 611
EP 618
PG 8
WC Optics
SC Optics
GA 564SS
UT WOS:000275238100036
ER
PT J
AU Tomiyasu, K
Kageyama, H
Lee, C
Whangbo, MH
Tsujimoto, Y
Yoshimura, K
Taylor, JW
Llobet, A
Trouw, F
Kakurai, K
Yamada, K
AF Tomiyasu, Keisuke
Kageyama, Hiroshi
Lee, Changhoon
Whangbo, Mike H.
Tsujimoto, Yoshihiro
Yoshimura, Kazuyoshi
Taylor, Jon W.
Llobet, Anna
Trouw, Frans
Kakurai, Kazuhisa
Yamada, Kazuyoshi
TI Magnetic Excitations in Infinite-Layer Antiferromagnetic Insulator
SO JOURNAL OF THE PHYSICAL SOCIETY OF JAPAN
LA English
DT Article
DE spin wave; orbital wave; orbital angular momentum; Mott insulator
ID SQUARE-PLANAR COORDINATION; IRON-OXIDE; SPIN-WAVES; TRANSITION;
SCATTERING
AB The magnetic excitations of an infinite-layer antiferromagnetic insulator SrFeO2 were examined by powder inelastic neutron scattering to find dispersive magnetic excitations from similar to 15 up to 63 meV. The scattering intensity distribution is well described by a spin wave model, confirming that the out-of-plane direct Fe center dot center dot center dot Fe exchange is comparable in strength to the in-plane Fe-O-Fe superexchange. SrFeO2 shows an additional magnetic excitation mode around 30 meV, which is suggestive of an orbital magnon arising from small orbital moment on Fe2+ brought about by spin-orbit coupling.
C1 [Tomiyasu, Keisuke] Tohoku Univ, Dept Phys, Sendai, Miyagi 9808578, Japan.
[Kageyama, Hiroshi; Tsujimoto, Yoshihiro; Yoshimura, Kazuyoshi] Kyoto Univ, Grad Sch Sci, Dept Chem, Kyoto 6068502, Japan.
[Lee, Changhoon; Whangbo, Mike H.] N Carolina State Univ, Dept Chem, Raleigh, NC 27695 USA.
[Taylor, Jon W.] Rutherford Appleton Lab, ISIS Facil, Didcot OX11 0QX, Oxon, England.
[Llobet, Anna; Trouw, Frans] Los Alamos Natl Lab, LANSCE, Los Alamos, NM 87545 USA.
[Kakurai, Kazuhisa] Japan Atom Energy Agcy, Quantum Beam Sci Directorate, Tokai, Ibaraki 3191195, Japan.
[Yamada, Kazuyoshi] Tohoku Univ, WPI Adv Inst Mat Res, Sendai, Miyagi 9808577, Japan.
RP Tomiyasu, K (reprint author), Tohoku Univ, Dept Phys, Sendai, Miyagi 9808578, Japan.
EM tomiyasu@m.tains.tohoku.ac.jp
RI Llobet, Anna/B-1672-2010; Kageyama, Hiroshi/A-4602-2010; Yamada,
Kazuyoshi/C-2728-2009; Lujan Center, LANL/G-4896-2012; Tsujimoto,
Yoshihiro/H-6034-2012
OI Tsujimoto, Yoshihiro/0000-0003-2140-3362
FU Ministry of Education, Culture, Sports, Science and Technology, Japan
[19052004]; DOE Office of Basic Energy Sciences [DE-AC52-06NA25396,
DE-FG02-86ER45259]
FX This work was supported by Grants-in-Aid for Scientific Research on
Priority Areas (19052004) and Scientific Research (B) and (S), Japan-UK
Collaboration Program on Neutron Scattering, Quantum Beam Technology
Program, World Premier International Research Center Initiative (WPI
Initiative), the Ministry of Education, Culture, Sports, Science and
Technology, Japan. This work has benefited from the use of Pharos at the
Lujan Center at LANSCE, funded by DOE Office of Basic Energy Sciences.
Los Alamos National Laboratory is operated by Los Alamos National
Security LLC under DOE Contract DE-AC52-06NA25396. M.-H. W. thanks U.S.
Department of Energy for the financial support (Grant No.
DE-FG02-86ER45259). We thank Mr. Masaki Morita and Ms. Aya Sakaiguchi
for assisting in the synthesis of samples.
NR 20
TC 12
Z9 12
U1 0
U2 14
PU PHYSICAL SOC JAPAN
PI TOKYO
PA YUSHIMA URBAN BUILDING 5F, 2-31-22 YUSHIMA, BUNKYO-KU, TOKYO, 113-0034,
JAPAN
SN 0031-9015
J9 J PHYS SOC JPN
JI J. Phys. Soc. Jpn.
PD MAR
PY 2010
VL 79
IS 3
AR 034707
DI 10.1143/JPSJ.79.034707
PG 4
WC Physics, Multidisciplinary
SC Physics
GA 569PQ
UT WOS:000275610400029
ER
PT J
AU Patterson, MM
Cochran, A
Ferina, J
Rui, X
Zimmerman, TA
Sun, Z
Kramer, MJ
Sellmyer, DJ
Shield, JE
AF Patterson, M. M.
Cochran, A.
Ferina, J.
Rui, X.
Zimmerman, T. A.
Sun, Z.
Kramer, M. J.
Sellmyer, D. J.
Shield, J. E.
TI Early stages of direct L1(0) FePt nanocluster formation: The effects of
plasma characteristics
SO JOURNAL OF VACUUM SCIENCE & TECHNOLOGY B
LA English
DT Article
DE coercive force; condensation; electron microscopy; ion density; iron
alloys; magnetic structure; metal clusters; nanostructured materials;
platinum alloys
ID GAS AGGREGATION SOURCE; MAGNETIC-PROPERTIES; PERMANENT-MAGNETS; FILMS;
CONSTRUCTION
AB The formation of FePt nanoclusters via gas condensation has attracted a great deal of attention. The clusters normally form with the magnetically soft A1 structure rather than the desired L1(0) structure with high magnetocrystalline anisotropy. This work has examined the effects of plasma characteristics on the early stages of order in the formation L1(0) FePt nanoclusters via inert gas condensation. The plasma characteristics have been modified to control ion density in the nanocluster condensation region. Increased ion density results in more cluster-ion collisions. The energy imparted to the clusters as a result of these collisions allows atomic rearrangements to form the ordered structure. The results indicate that controlled ion density directly impacts the early stages of FePt nanocluster ordering, according to high-resolution electron microscopy structure observations and coercivity measurements.
C1 [Patterson, M. M.; Cochran, A.; Ferina, J.; Rui, X.; Zimmerman, T. A.; Sun, Z.; Sellmyer, D. J.; Shield, J. E.] Univ Nebraska, Nebraska Ctr Mat & Nanosci, Lincoln, NE 68588 USA.
[Patterson, M. M.; Cochran, A.] Stout Polytech, Dept Phys, Menomonie, WI 54751 USA.
[Ferina, J.] Madison Area Tech Coll, Dept Phys, Madison, WI 53704 USA.
[Rui, X.; Shield, J. E.] Univ Nebraska, Dept Mech Engn, Lincoln, NE 68588 USA.
[Zimmerman, T. A.] Gustavus Adolphus, Dept Phys, St Peter, MN 56082 USA.
[Kramer, M. J.] US DOE, Ames Lab, Ames, IA 50011 USA.
[Sellmyer, D. J.] Univ Nebraska, Dept Phys & Astron, Lincoln, NE 68588 USA.
RP Patterson, MM (reprint author), Univ Nebraska, Nebraska Ctr Mat & Nanosci, Lincoln, NE 68588 USA.
EM marlann.patterson@gmail.com
RI Patterson, Marlann/M-9875-2014
OI Patterson, Marlann/0000-0003-2717-6068
FU NSF [DMR-0213808, DMR-0820521]; Department of Energy, Office of Basic
Energy Sciences [DE-AC02-07CH11358]
FX The authors thank Pam Rasmussen for her scientific contributions, and
David Booth and Ryan Kraft for HRTEM Fourier Transform image analysis.
They also acknowledge the NSF Materials Research Science and Engineering
program under Grant Nos. DMR-0213808 and DMR-0820521, and the
faculty-student pair summer program. Work at the Ames Laboratory was
supported by the Department of Energy, Office of Basic Energy Sciences,
under Contract No. DE-AC02-07CH11358.
NR 15
TC 9
Z9 9
U1 0
U2 7
PU A V S AMER INST PHYSICS
PI MELVILLE
PA STE 1 NO 1, 2 HUNTINGTON QUADRANGLE, MELVILLE, NY 11747-4502 USA
SN 1071-1023
J9 J VAC SCI TECHNOL B
JI J. Vac. Sci. Technol. B
PD MAR
PY 2010
VL 28
IS 2
BP 273
EP 276
DI 10.1116/1.3298888
PG 4
WC Engineering, Electrical & Electronic; Nanoscience & Nanotechnology;
Physics, Applied
SC Engineering; Science & Technology - Other Topics; Physics
GA 578EA
UT WOS:000276275100007
ER
PT J
AU Imre, A
Ocola, LE
Rich, L
Klingfus, J
AF Imre, Alexandra
Ocola, Leonidas E.
Rich, Lauren
Klingfus, Joseph
TI Large area direct-write focused ion-beam lithography with a dual-beam
microscope
SO JOURNAL OF VACUUM SCIENCE & TECHNOLOGY B
LA English
DT Article
AB The authors have investigated the performance of focused ion-beam (FIB) direct-write lithography for large area (multiple write-field) patterning in an FEI Nova Nanolab 600 dual-beam microscope. Their system is configured with a 100 nm resolution X-Y stage and a RAITH ELPHY LITHOGRAPHY control interface, with its own integrated 16 bit DAC pattern generator and software. Key issues with regard to configuration, process parameters, and procedures have been addressed. Characterization of stitching errors, pattern repeatability, and drift were performed. Offset lithography (multiple exposures with offset write fields) and in-field registration marks were evaluated for correcting stitching errors, and a test microfluidic device covering an area of 1 x 1.4 mm(2) was successfully fabricated. The authors found that by using a combination of offset lithography and in-field registration mark correction methods, the stitching errors can be kept well below 100 nm. They also found that due to higher beam deflection speed provided by the electrostatic scanning in FIB systems versus the wide-spread electron-beam systems with electromagnetic scanning, FIB lithography can be just as fast as electron-beam lithography for typical mill depths down to about 200-500 nm (material dependent). This opens the door for a large suite of applications for materials where pattern transfer is difficult or impossible by reactive methods. (C) 2010 American Vacuum Society. [DOI: 10.1116/1.3308974]
C1 [Imre, Alexandra; Ocola, Leonidas E.] Argonne Natl Lab, Ctr Nanoscale Mat, Argonne, IL 60439 USA.
[Rich, Lauren] Missouri Univ Sci & Technol, Dept Phys, Rolla, MO 65409 USA.
[Klingfus, Joseph] Raith USA, Ronkonkoma, NY 11779 USA.
RP Imre, A (reprint author), Argonne Natl Lab, Ctr Nanoscale Mat, 9700 S Cass Ave, Argonne, IL 60439 USA.
EM imre@anl.gov
RI Joshi-Imre, Alexandra/A-2912-2010;
OI Joshi-Imre, Alexandra/0000-0002-4271-1623; Ocola,
Leonidas/0000-0003-4990-1064
FU UChicago Argonne, LLC; Department of Energy [DE-AC02-06CH11357]; U.S.
Department of Energy, Office of Science, Office of Basic Energy Sciences
[DE-AC0206-CH11357]
FX The authors would like to thank Oliver Wilhelmi, Paul Anzalone, Laurent
Roussel, Steve Neptune, and Lucille Giannuzzi from FEI Co., and Jason
Sanabria from Raith USA for insightful discussions on FIB milling. This
work was supported by the UChicago Argonne, LLC and the Department of
Energy under Contract No. DE-AC02-06CH11357. Use of the Center for
Nanoscale Materials was supported by the U.S. Department of Energy,
Office of Science, Office of Basic Energy Sciences, under Contract No.
DE-AC02-06CH11357.
NR 6
TC 9
Z9 9
U1 0
U2 7
PU A V S AMER INST PHYSICS
PI MELVILLE
PA STE 1 NO 1, 2 HUNTINGTON QUADRANGLE, MELVILLE, NY 11747-4502 USA
SN 1071-1023
J9 J VAC SCI TECHNOL B
JI J. Vac. Sci. Technol. B
PD MAR
PY 2010
VL 28
IS 2
BP 304
EP 309
DI 10.1116/1.3308974
PG 6
WC Engineering, Electrical & Electronic; Nanoscience & Nanotechnology;
Physics, Applied
SC Engineering; Science & Technology - Other Topics; Physics
GA 578EA
UT WOS:000276275100012
ER
PT J
AU Fan, YJ
Yankulin, L
Antohe, A
Thomas, P
Mbanaso, C
Garg, R
Wang, YF
Wust, A
Goodwin, F
Huh, S
Naulleau, P
Goldberg, K
Mochi, I
Denbeaux, G
AF Fan, Yu-Jen
Yankulin, Leonid
Antohe, Alin
Thomas, Petros
Mbanaso, Chimaobi
Garg, Rashi
Wang, Yunfei
Wuest, Andrea
Goodwin, Frank
Huh, Sungmin
Naulleau, Patrick
Goldberg, Kenneth
Mochi, Iacopo
Denbeaux, Gregory
TI Effect of carbon contamination on the printing performance of extreme
ultraviolet masks
SO JOURNAL OF VACUUM SCIENCE & TECHNOLOGY B
LA English
DT Article
DE carbon; masks; photoresists; surface contamination; ultraviolet
lithography
AB Carbon contamination is a significant issue with extreme ultraviolet (EUV) masks because it lowers throughput and has potential effects on imaging performance. Current carbon contamination research is primarily focused on the lifetime of the multilayer surfaces, determined by reflectivity loss and reduced throughput in EUV exposure tools. However, contamination on patterned EUV masks can cause additional effects on absorbing features and can affect the printed images. In this work, various carbon contamination experiments were performed to study the impact between contamination topography and observed imaging performance. Lithographic simulation using calculated aerial images and experimentally determined resist parameters was performed and compared to the printing results to estimate the allowed carbon thickness with critical dimension compensation applied to the mask.
C1 [Fan, Yu-Jen; Yankulin, Leonid; Antohe, Alin; Thomas, Petros; Mbanaso, Chimaobi; Garg, Rashi; Wang, Yunfei; Denbeaux, Gregory] SUNY Albany, Coll Nanoscale Sci & Engn, Albany, NY 12203 USA.
[Wuest, Andrea; Goodwin, Frank; Huh, Sungmin] SEMATECH, Albany, NY 12203 USA.
[Naulleau, Patrick; Goldberg, Kenneth; Mochi, Iacopo] Univ Calif Berkeley, Lawrence Berkeley Lab, Ctr Xray Opt, Berkeley, CA 94720 USA.
RP Fan, YJ (reprint author), SUNY Albany, Coll Nanoscale Sci & Engn, Albany, NY 12203 USA.
EM yfan@uamail.albany.edu
FU SEMATECH
FX The author would like to thank Paul Denham, Gideon Jones, Brian Hoef,
and Lorie-Mae Baclea-an from Berkeley MET team for great help. Financial
support from SEMATECH is also gratefully acknowledged.
NR 14
TC 4
Z9 4
U1 0
U2 0
PU A V S AMER INST PHYSICS
PI MELVILLE
PA STE 1 NO 1, 2 HUNTINGTON QUADRANGLE, MELVILLE, NY 11747-4502 USA
SN 1071-1023
J9 J VAC SCI TECHNOL B
JI J. Vac. Sci. Technol. B
PD MAR
PY 2010
VL 28
IS 2
BP 321
EP 328
DI 10.1116/1.3333434
PG 8
WC Engineering, Electrical & Electronic; Nanoscience & Nanotechnology;
Physics, Applied
SC Engineering; Science & Technology - Other Topics; Physics
GA 578EA
UT WOS:000276275100015
ER
PT J
AU Wang, SL
Singer, MA
AF Wang, Stephen L.
Singer, Michael A.
TI Toward an Optimal Position for Inferior Vena Cava Filters: Computational
Modeling of the Impact of Renal Vein Inflow with Celect and TrapEase
Filters
SO JOURNAL OF VASCULAR AND INTERVENTIONAL RADIOLOGY
LA English
DT Article
ID PULMONARY-EMBOLISM; BLOOD-FLOW; HEMODYNAMICS; THROMBOSIS
AB PURPOSE: To evaluate the hemodynamic effects of renal vein inflow and filter position on unoccluded and partially occluded inferior vena cava (IVC) filters with use of three-dimensional computational fluid dynamics.
MATERIALS AND METHODS: Three-dimensional models of the Trap Ease and Gunther Celect IVC filters, spherical thrombi, and an IVC with renal veins were constructed. Hemodynamics of steady-state flow was examined for unoccluded and partially occluded Trap Ease and Gunther Celect IVC filters in varying proximity to the renal veins.
RESULTS: Flow past the unoccluded filters demonstrated minimal disruption. Natural regions of stagnant/recirculating flow in the IVC were observed superior to the bilateral renal vein inflows. High flow velocities and elevated shear stresses were observed in the vicinity of renal inflow. Spherical thrombi induce stagnant/recirculating flow downstream of the thrombus. Placement of the Trap Ease filter in the suprarenal position resulted in a large area of low shear stress/stagnant flow within the filter just downstream of thrombus trapped in the upstream trapping position.
CONCLUSIONS: Filter position with respect to renal vein inflow influences filter trapping hemodynamics. Placement of the Trap Ease filter in a suprarenal location may be thrombogenic, with redundant areas of stagnant/recirculating flow and low shear stress along the caval wall caused by the upstream trapping position and the naturally occurring region of stagnant flow from the renal veins. Infrarenal vein placement of IVC filters in a near-juxtarenal position with the downstream cone near the renal vein inflow likely confers increased levels of mechanical lysis of trapped thrombi from increased shear stress from renal vein inflow.
C1 [Wang, Stephen L.] Kaiser Permanente Santa Clara Med Ctr, Div Vasc & Intervent Radiol, Santa Clara, CA 95051 USA.
[Singer, Michael A.] Lawrence Livermore Natl Lab, Ctr Appl Sci Comp, Livermore, CA USA.
RP Wang, SL (reprint author), Kaiser Permanente Santa Clara Med Ctr, Div Vasc & Intervent Radiol, 700 Lawrence Expwy, Santa Clara, CA 95051 USA.
EM stephen.wang@alumni.duke.edu
FU United States Department of Energy, National Nuclear Security
Administration [DEAC5207NA27344]
FX Computer time on the Lawrence Livermore National Laboratory's Yana
cluster was provided under Livermore Computing's Multiprogrammatic and
Institutional Computing Initiative. The Lawrence Livermore National
Laboratory is operated by Lawrence Livermore National Security for the
United States Department of Energy, National Nuclear Security
Administration, under Contract DEAC5207NA27344.
NR 22
TC 6
Z9 6
U1 1
U2 1
PU ELSEVIER SCIENCE INC
PI NEW YORK
PA 360 PARK AVE SOUTH, NEW YORK, NY 10010-1710 USA
SN 1051-0443
J9 J VASC INTERV RADIOL
JI J. Vasc. Interv. Radiol.
PD MAR
PY 2010
VL 21
IS 3
BP 367
EP 374
DI 10.1016/j.jvir.2009.11.013
PG 8
WC Radiology, Nuclear Medicine & Medical Imaging; Peripheral Vascular
Disease
SC Radiology, Nuclear Medicine & Medical Imaging; Cardiovascular System &
Cardiology
GA 592GZ
UT WOS:000277367700009
PM 20171559
ER
PT J
AU Duwe, KN
Reefhuis, J
Honein, MA
Schieve, LA
Rasmussen, SA
AF Duwe, Kara N.
Reefhuis, Jennita
Honein, Margaret A.
Schieve, Laura A.
Rasmussen, Sonja A.
CA Natl Birth Defects Prevention Stud
TI Epidemiology of Fertility Treatment Use Among US Women with Liveborn
Infants, 1997-2004
SO JOURNAL OF WOMENS HEALTH
LA English
DT Article
ID ASSISTED REPRODUCTIVE TECHNOLOGY; IN-VITRO FERTILIZATION;
INTRACYTOPLASMIC SPERM INJECTION; BIRTH-DEFECTS PREVENTION; INSURANCE
MANDATES; PRENATAL-DIAGNOSIS; MULTIPLE GESTATION; PERINATAL OUTCOMES;
UNITED-STATES; INFERTILITY
AB Objective: This study assessed reported use of assisted reproductive technology (ART) and other (non-ART) fertility treatments among a population-based sample and examined factors related to use.
Methods: The data for this study were collected as part of the National Birth Defects Prevention Study (NBDPS), limited to women from the control group who delivered liveborn infants with no major birth defects. We described prevalence of the use of ART and clomiphene citrate (the most commonly used non-ART treatment) by demographic and lifestyle factors and examined associations among use of fertility treatments and pregnancy outcomes, timing of prenatal care initiation, and use of prenatal testing technologies.
Results: Overall, 4.2% of women reported any type of maternal fertility treatment use; 1.0% reported ART use, 1.6% reported clomiphene citrate use without ART, and 1.7% reported other fertility treatments. Women who reported any fertility treatment type were more likely than women with an unassisted conception to be non-Hispanic white, >30 years of age, and more highly educated. Overall, women who reported ART use were more likely than women who reported unassisted pregnancy to have an amniocentesis; however, this association was no longer evident after adjustment for maternal age.
Conclusions: Fertility treatment use and type of treatment vary by maternal characteristics. This information may be useful to inform a broad maternal and child health audience about the growing use of fertility treatments, including who is using the treatments and the choices they are making about prenatal care.
C1 [Duwe, Kara N.; Reefhuis, Jennita; Honein, Margaret A.; Schieve, Laura A.; Rasmussen, Sonja A.] Ctr Dis Control & Prevent, Natl Ctr Birth Defects & Dev Disabil, Atlanta, GA 30333 USA.
[Duwe, Kara N.] Oak Ridge Inst Sci & Educ, Oak Ridge, TN USA.
RP Duwe, KN (reprint author), Ctr Dis Control & Prevent, Natl Ctr Birth Defects & Dev Disabil, 1600 Clifton Rd,MS E-86, Atlanta, GA 30333 USA.
EM Kduwe@cdc.gov
RI Reefhuis, Jennita/E-1793-2011; Publications, NBDPS/B-7692-2013
OI Reefhuis, Jennita/0000-0002-4747-4831;
FU Research Participation Program for the Centers for Disease Control
FX We thank all collaborators from the Centers for Birth Defects Research
and Prevention in Arkansas, California, Georgia, Iowa, Massachusetts,
New Jersey, New York, North Carolina, Texas, and Utah for their
significant contributions. We also thank the families that participated
in the NBDPS. This project was supported in part by an appointment to
the Research Participation Program for the Centers for Disease Control
and Prevention administered by the Oak Ridge Institute for Science and
Education through an agreement between the Department of Energy and CDC.
The findings and conclusions in this report are those of the authors and
do not necessarily represent the official position of the Centers for
Disease Control and Prevention.; K.N.D. was supported by an appointment
to the Research Participation Program for the Centers for Disease
Control and Prevention administered by the Oak Ridge Institute for
Science and Education through an agreement between the Department of
Energy and CDC.
NR 57
TC 13
Z9 13
U1 0
U2 4
PU MARY ANN LIEBERT INC
PI NEW ROCHELLE
PA 140 HUGUENOT STREET, 3RD FL, NEW ROCHELLE, NY 10801 USA
SN 1540-9996
J9 J WOMENS HEALTH
JI J. Womens Health
PD MAR
PY 2010
VL 19
IS 3
BP 407
EP 416
DI 10.1089/jwh.2009.1499
PG 10
WC Public, Environmental & Occupational Health; Medicine, General &
Internal; Obstetrics & Gynecology; Women's Studies
SC Public, Environmental & Occupational Health; General & Internal
Medicine; Obstetrics & Gynecology; Women's Studies
GA 574IS
UT WOS:000275983200006
PM 20141369
ER
PT J
AU Davidson, MW
AF Davidson, Michael W.
TI Robert Hooke Physics, Architecture, Astronomy, Paleontology, Biology
SO LABMEDICINE
LA English
DT Biographical-Item
C1 [Davidson, Michael W.] Univ Florida, Opt Microscopy Div, Natl High Magnet Field Lab, Tallahassee, FL USA.
[Davidson, Michael W.] Los Alamos Natl Lab, Tallahassee, FL USA.
RP Davidson, MW (reprint author), Univ Florida, Opt Microscopy Div, Natl High Magnet Field Lab, Tallahassee, FL USA.
NR 0
TC 1
Z9 1
U1 0
U2 0
PU AMER SOC CLINICAL PATHOLOGY
PI CHICAGO
PA 2100 W HARRISON ST, CHICAGO, IL 60612 USA
SN 0007-5027
J9 LABMEDICINE
JI Labmedicine
PD MAR
PY 2010
VL 41
IS 3
BP 180
EP 182
PG 3
WC Medical Laboratory Technology
SC Medical Laboratory Technology
GA 560BM
UT WOS:000274876800012
ER
PT J
AU Bieniosek, FM
Henestroza, E
Ni, P
AF Bieniosek, F. M.
Henestroza, E.
Ni, P.
TI Funnel cone for focusing intense ion beams on a target
SO LASER AND PARTICLE BEAMS
LA English
DT Article
DE Beam focusing; Grazing incidence; Ion beam; Target; Warm dense matter
ID CAPILLARY OPTICS; LASER-PULSES; TRANSPORT; GENERATION; ELECTRONS
AB We describe a funnel cone for concentrating an on beam on a target. The cone utilizes the reflection characteristic of ion beams on solid walls to focus the incident beam and increase beam intensity on target. The cone has been modeled with the TRIM code. A prototype has been tested and installed for use in the 350-keV K+ NDCX target chamber.
C1 [Bieniosek, F. M.] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
Heavy Ion Fus Sci Virtual Natl Lab, Berkeley, CA 94720 USA.
RP Bieniosek, FM (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, 1 Cyclotron Rd, Berkeley, CA 94720 USA.
EM fmbieniosek@lbl.gov
FU Office of Science; Office of Fusion Energy Sciences; U.S. Department of
Energy [DE-AC02-05CH11231]
FX The authors thank Jed Duersch for assistance in TRIM calculations, J.
van Kan (National University of Singapore) for helpful discussions. W.
Greenway for fabrication of the gold cones. and S.M. Lidia. P.K. Roy,
and P.A. Seidl for operation of NDCX-I for the experimental tests of the
cone. This work was supported by the Director, Office of Science, Office
of Fusion Energy Sciences, of the U.S. Department of Energy under
Contract No. DE-AC02-05CH11231.
NR 18
TC 4
Z9 4
U1 0
U2 3
PU CAMBRIDGE UNIV PRESS
PI NEW YORK
PA 32 AVENUE OF THE AMERICAS, NEW YORK, NY 10013-2473 USA
SN 0263-0346
J9 LASER PART BEAMS
JI Laser Part. Beams
PD MAR
PY 2010
VL 28
IS 1
BP 209
EP 214
DI 10.1017/S0263034610000108
PG 6
WC Physics, Applied
SC Physics
GA 586EX
UT WOS:000276886700025
ER
PT J
AU Steinke, S
Henig, A
Schnurer, M
Sokollik, T
Nickles, PV
Jung, D
Kiefer, D
Horlein, R
Schreiber, J
Tajima, T
Yan, XQ
Hegelich, M
Meyer-Ter-Vehn, J
Sandner, W
Habs, D
AF Steinke, S.
Henig, A.
Schnuerer, M.
Sokollik, T.
Nickles, P. V.
Jung, D.
Kiefer, D.
Hoerlein, R.
Schreiber, J.
Tajima, T.
Yan, X. Q.
Hegelich, M.
Meyer-Ter-Vehn, J.
Sandner, W.
Habs, D.
TI Efficient ion acceleration by collective laser-driven electron dynamics
with ultra-thin foil targets
SO LASER AND PARTICLE BEAMS
LA English
DT Article
DE Laser-driven acceleration; Laser-plasma interactions; Laser-produced
plasma; Particle-in-cell method; Plasma simulation
ID PULSES; PLASMA
AB Experiments on ion acceleration by irradiation of ultra-thin diamond-like carbon (DLC) foils, with thicknesses well below the skin depth, irradiated with laser pulses of ultra-high contrast and linear polarization, are presented. A maximum energy of 13 MeV for protons and 71 MeV for carbon ions is observed with a conversion efficiency of similar to 10%. Two-dimensional particle-in-cell (PIC) simulations reveal that the increase in ion energies can be attributed to a dominantly collective rather than thermal motion of the foil electrons. when the target becomes transparent for the incident laser pulse.
C1 [Steinke, S.; Schnuerer, M.; Sokollik, T.; Nickles, P. V.; Sandner, W.] Max Born Inst, D-12489 Berlin, Germany.
[Henig, A.; Kiefer, D.; Hoerlein, R.; Schreiber, J.; Yan, X. Q.; Meyer-Ter-Vehn, J.; Habs, D.] Max Planck Inst Quantum Opt, D-85748 Garching, Germany.
[Henig, A.; Jung, D.; Kiefer, D.; Hoerlein, R.; Schreiber, J.; Tajima, T.; Hegelich, M.; Habs, D.] LMU Munchen, Fak Phys, D-85748 Garching, Germany.
[Nickles, P. V.] GIST, Kwangju 500712, South Korea.
[Jung, D.; Hegelich, M.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
[Schreiber, J.] Univ London Imperial Coll Sci Technol & Med, London SW7 2BZ, England.
[Tajima, T.] JAEA, Photomed Res Ctr, Kyoto, Japan.
[Yan, X. Q.] Peking Univ, State Key Lab Nucl Phys & Technol, Beijing 100871, Peoples R China.
RP Steinke, S (reprint author), Max Born Inst, D-12489 Berlin, Germany.
EM steinke@mbi-berlin.de
RI Steinke, Sven/D-8086-2011; Hegelich, Bjorn/J-2689-2013; Sokollik,
Thomas/P-2584-2015
OI Steinke, Sven/0000-0003-0507-698X;
FU Deutsche Forschungsucrneinschaft; DFG-Cluster of Excellence
Munich-Centre for Advanced Photonics; Humboldt foundation; NSFC
FX This work was partly supported by Deutsche Forschungsucrneinschaft
through Transregio SFB TR IS and the DFG-Cluster of Excellence
Munich-Centre for Advanced Photonics (MAP). A. Henig, D. Kiefer and D.
Jung acknowledge financial support from IMPRS-APS, J. Schreiber from
DAAD, X.Q. Yan horn the Humboldt foundation and NSFC(10855001).
NR 35
TC 53
Z9 53
U1 2
U2 23
PU CAMBRIDGE UNIV PRESS
PI NEW YORK
PA 32 AVENUE OF THE AMERICAS, NEW YORK, NY 10013-2473 USA
SN 0263-0346
J9 LASER PART BEAMS
JI Laser Part. Beams
PD MAR
PY 2010
VL 28
IS 1
BP 215
EP 221
DI 10.1017/S0263034610000157
PG 7
WC Physics, Applied
SC Physics
GA 586EX
UT WOS:000276886700026
ER
PT J
AU Campbell, IH
AF Campbell, Ian H.
TI Low-cost organic photodiodes reach into the infrared
SO LASER FOCUS WORLD
LA English
DT Article
AB Strides are being made to extend the sensitivity of organic photodiodes into the infrared region for solar energy, communications, and imaging applications that can take advantage of their low-cost, low-temperature processing, and compatibility with flexible and large-area substrates.
C1 Los Alamos Natl Lab, Mat Phys & Applicat Div, Los Alamos, NM 87545 USA.
RP Campbell, IH (reprint author), Los Alamos Natl Lab, Mat Phys & Applicat Div, MS D429, Los Alamos, NM 87545 USA.
EM campbell@lanl.gov
NR 6
TC 0
Z9 0
U1 1
U2 2
PU PENNWELL PUBL CO
PI NASHUA
PA 98 SPIT BROOK RD, NASHUA, NH 03062-2801 USA
SN 1043-8092
J9 LASER FOCUS WORLD
JI Laser Focus World
PD MAR
PY 2010
VL 46
IS 3
BP 45
EP 48
PG 4
WC Optics
SC Optics
GA 575SF
UT WOS:000276087300016
ER
PT J
AU Twining, BS
Nunez-Milland, D
Vogt, S
Johnson, RS
Sedwick, PN
AF Twining, Benjamin S.
Nunez-Milland, Daliangelis
Vogt, Stefan
Johnson, Rodney S.
Sedwick, Peter N.
TI Variations in Synechococcus cell quotas of phosphorus, sulfur,
manganese, iron, nickel, and zinc within mesoscale eddies in the
Sargasso Sea
SO LIMNOLOGY AND OCEANOGRAPHY
LA English
DT Article
ID ATLANTIC TIME-SERIES; ELEMENTAL COMPOSITION; NORTH-ATLANTIC;
MARINE-PHYTOPLANKTON; EXPERIMENT SOFEX; NITROGEN-SOURCE; TRACE-ELEMENTS;
CO-LIMITATION; OCEAN; GROWTH
AB The quotas of P, S, Mn, Fe, Ni, and Zn in individual Synechococcus cells collected from the surface and deep chlorophyll maximum (DCM) layer of three mesoscale eddies in the Sargasso Sea were measured using synchrotron X-ray fluorescence microscopy. Cells in a mode-water eddy had significantly higher P (57 +/- 10 amol) and Mn (28 +/- 7 zmol) cell quotas than cells collected from a cyclone (22 +/- 2 amol and 10 +/- 1 zmol, respectively) or anticyclone (25 +/- 3 amol and 18 +/- 3 zmol, respectively). Conversely, Ni and Zn quotas were significantly higher in the cells from the anticyclone (92 +/- 19 and 561 +/- 150 zmol, respectively) than in cells from the cyclonic (25 +/- 4 and 35 +/- 7 zmol, respectively) or mode-water (30 +/- 9 and 21 +/- 8 zmol, respectively) eddies. These changes may reflect biochemical responses (e. g., production of urease and alkaline phosphatase) to gradients in inorganic N and P supplies. Cellular quotas of Fe (111 +/- 17 zmol in the cyclone) and S (52 +/- 6 amol in the cyclone) did not vary significantly among eddies despite two-to threefold higher dissolved and particulate Fe concentrations in the anticylone. Cells collected from 10-m depth contained approximately 80% more Ni and S than cells collected from the DCM, potentially reflecting cell responses to heightened oxidative stress. Depth-related trends varied by eddy for the other elements. Cellular P and Zn varied significantly during repeated samplings of the cyclone, with quotas of both elements dropping as bulk chlorophyll biomass in the DCM increased. These data demonstrate the dynamic responses of phytoplankton elemental composition to physical and chemical environmental gradients.
C1 [Twining, Benjamin S.; Nunez-Milland, Daliangelis] Univ S Carolina, Dept Chem & Biochem, Columbia, SC 29208 USA.
[Vogt, Stefan] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
[Johnson, Rodney S.] Bermuda Inst Ocean Sci, St Georges, Bermuda.
[Sedwick, Peter N.] Old Dominion Univ, Dept Ocean Earth & Atmospher Sci, Norfolk, VA USA.
RP Twining, BS (reprint author), Bigelow Lab Ocean Sci, W Boothbay Harbor, ME USA.
EM btwining@bigelow.org
RI Vogt, Stefan/B-9547-2009; Vogt, Stefan/J-7937-2013;
OI Vogt, Stefan/0000-0002-8034-5513; Vogt, Stefan/0000-0002-8034-5513;
Twining, Benjamin/0000-0002-1365-9192
FU U.S. National Science Foundation [OCE-0527062, CBET0730061,
OCE-0550594]; University of South Carolina; U.S. Department of Energy,
Office of Science, Office of Basic Energy Sciences [DE-AC02-06CH11357]
FX The authors thank Dennis McGillicuddy and Valery Kosnyrev for providing
the sea-level altimetry analyses that guided our sampling during the
cruise as well as the officers and crew of R/V Atlantic Explorer and our
colleagues who participated in the FeAST-2 cruise. We thank Stephen
Baines for assistance with X-ray fluorescence analyses and for
statistical advice. Brandon Bozard, Sara Rauschenberg, and MikeHandley
provided assistance with the particulate analyses. The paper was
improved by the comments of two anonymous reviewers. This work was
supported by grants from the U.S. National Science Foundation
(OCE-0527062 and CBET0730061 to B. S. T. and OCE-0550594 to P. N. S.)
and by start-up funds from the University of South Carolina to B. S. T.
Use of the Advanced Photon Source was supported by the U.S. Department
of Energy, Office of Science, Office of Basic Energy Sciences, under
contract no. DE-AC02-06CH11357.
NR 64
TC 30
Z9 30
U1 1
U2 31
PU AMER SOC LIMNOLOGY OCEANOGRAPHY
PI WACO
PA 5400 BOSQUE BLVD, STE 680, WACO, TX 76710-4446 USA
SN 0024-3590
J9 LIMNOL OCEANOGR
JI Limnol. Oceanogr.
PD MAR
PY 2010
VL 55
IS 2
BP 492
EP 506
DI 10.4319/lo.2009.55.2.0492
PG 15
WC Limnology; Oceanography
SC Marine & Freshwater Biology; Oceanography
GA 580HY
UT WOS:000276440000003
ER
PT J
AU Demas, NG
Erck, RA
Fenske, GR
AF Demas, Nicholaos G.
Erck, Robert A.
Fenske, George R.
TI Tribological evaluation of piston skirt/cylinder liner contact
interfaces under boundary lubrication conditions
SO LUBRICATION SCIENCE
LA English
DT Article
DE piston skirt; cylinder liner; coatings; temperature; friction
ID MIXED LUBRICATION; CYLINDER BORE; WEAR; RINGS; COATINGS; FRICTION;
ALUMINUM; ENGINE
AB The friction and wear between the piston and cylinder liner significantly affects the performance of internal combustion engines. In this paper, segments from a commercial piston/cylinder system were tribologically tested using reciprocating motion. The tribological contact consisted of aluminium alloy piston segments, either uncoated, coated with a graphite/resin coating, or an amorphous hydrogenated carbon (a-C: H) coating, in contact with gray cast iron liner segments. Tests were conducted in commercial synthetic motor oils and base stocks at temperatures up to 120 degrees C with a 2 cm stroke length at reciprocating speeds up to 0.15 m s(-1). The friction dependence of these piston skirt and cylinder liner materials was studied as a function of load, sliding speed and temperature. Specifically, an increase in the sliding speed led to a decrease in the friction coefficient below approximately 70 degrees C, while above this temperature, an increase in sliding speed led to an increase in the friction coefficient. The presence of a coating played an important role. It was found that the graphite/resin coating wore quickly, preventing the formation of a beneficial tribochemical film, while the a-C: H coating exhibited a low friction coefficient and provided significant improvement over the uncoated samples. The effect of additives in the oils was also studied. The tribological behaviour of the interface was explained based on viscosity effects and subsequent changes in the lubrication regime, formation of chemical and tribochemical films. Copyright (C) 2010 John Wiley & Sons, Ltd.
C1 [Demas, Nicholaos G.; Erck, Robert A.; Fenske, George R.] Argonne Natl Lab, Div Energy Syst, Argonne, IL 60439 USA.
RP Demas, NG (reprint author), Argonne Natl Lab, Div Energy Syst, 9700 S Cass Ave, Argonne, IL 60439 USA.
EM ndemas@anl.gov
FU U.S. Department of Energy [DE-AC02-06CH11357]
FX This work was supported by U.S. Department of Energy, Energy Efficiency
and Renewable Energy, Office of Vehicle Technologies. under contract
DE-AC02-06CH11357.
NR 16
TC 8
Z9 9
U1 2
U2 17
PU JOHN WILEY & SONS LTD
PI CHICHESTER
PA THE ATRIUM, SOUTHERN GATE, CHICHESTER PO19 8SQ, W SUSSEX, ENGLAND
SN 0954-0075
J9 LUBR SCI
JI Lubr. Sci.
PD MAR
PY 2010
VL 22
IS 3
BP 73
EP 87
DI 10.1002/ls.106
PG 15
WC Engineering, Chemical; Engineering, Mechanical
SC Engineering
GA 567WS
UT WOS:000275479200001
ER
PT J
AU Kelly, RT
Tolmachev, AV
Page, JS
Tang, KQ
Smith, RD
AF Kelly, Ryan T.
Tolmachev, Aleksey V.
Page, Jason S.
Tang, Keqi
Smith, Richard D.
TI THE ION FUNNEL: THEORY, IMPLEMENTATIONS, AND APPLICATIONS
SO MASS SPECTROMETRY REVIEWS
LA English
DT Review
DE ion optics; rf focusing; ion guide; multipole ion guide; stacked ring
ion guide; ESI
ID IONIZATION MASS-SPECTROMETRY; SENSITIVITY ELECTROSPRAY-IONIZATION;
SOLVENT-FREE ENVIRONMENT; TREATED METAL-SURFACE; ATMOSPHERIC-PRESSURE;
GAS-PHASE; MOBILITY SPECTROMETRY; MULTICAPILLARY INLET;
RAMAN-SPECTROSCOPY; EMITTER ARRAYS
AB The electrodynamic ion funnel enabled the manipulation and focusing of ions in a pressure regime (0.1-30 Torr) that has challenged traditional appraoches, and provided the basis for much greater mass spectrometer ion transmission efficiencies. The initial ion funnel implementations aimed to efficiently capture ions in the expanding gas jet of an electrospray ionization interface and radially focus them for efficient transfer through a conductance limiting orifice. We review the improvements in fundamental understanding of ion motion in ion funnels, the evolution in its implementations that have brought the ion funnel to its current state of refinement, as well as applications of the ion funnel for purposes such as ion trapping, ion cooling. low pressure electrospray, and ion mobility spectrometry. (C) 2009 Wiley periodicals. Inc., Mass Spec Rev 29: 294-312, 2010
C1 [Kelly, Ryan T.; Tolmachev, Aleksey V.; Page, Jason S.; Tang, Keqi; Smith, Richard D.] Pacific NW Natl Lab, Div Biol Sci, Richland, WA 99352 USA.
RP Smith, RD (reprint author), Pacific NW Natl Lab, Div Biol Sci, POB 999, Richland, WA 99352 USA.
EM rds@pnl.gov
RI Smith, Richard/J-3664-2012; Kelly, Ryan/B-2999-2008
OI Smith, Richard/0000-0002-2381-2349; Kelly, Ryan/0000-0002-3339-4443
FU U.S. Department of Energy (DOE) Office of Biological and Environmental
Research [DE-AC05-76RLO 1830]; NIH National Center of Research Resources
[RR018522]; NIH National Cancer Institute; National Institute of Allergy
and Infectious Diseases NIH/DHHS [Yl-Al-4894-01NIH]
FX Contract grant sponsor: U.S. Department of Energy (DOE) Office of
Biological and Environmental Research: Contract grant sponsor: NIH
National Center of Research Resources: Contract grant number: RR018522
Contract grant sponsor NIH National Cancer Institute: Contract grant
sponsor: National Institute of Allergy and Infectious Diseases NIH/DHHS:
Contract grant number: Yl-Al-4894-01NIH.; Portions of this research were
Supported by the U.S. Department of Energy (DOE) Office of Biological
and Environmental Research, the NIH National Center for Research
Resources (RR018522), the NIH National Cancer Institute, and the
National Institute of Allergy and Infectious Diseases NAH/DHHS through
interagency agreement Yl-Al-4894-01NIH. This research was performed in
the Environmental Molecular Sciences Laboratory, a U.S. DOE national
scientific user facility located at the Pacific Northwest National
Laboratory (PNNL) in Richland. Washington. PNNL is A multiprogram
national laboratory operated by Battelle for the DOE under Contract No.
DE-AC05-76RLO 1830.
NR 88
TC 99
Z9 100
U1 14
U2 142
PU WILEY-BLACKWELL
PI HOBOKEN
PA 111 RIVER ST, HOBOKEN 07030-5774, NJ USA
SN 0277-7037
EI 1098-2787
J9 MASS SPECTROM REV
JI Mass Spectrom. Rev.
PD MAR-APR
PY 2010
VL 29
IS 2
BP 294
EP 312
DI 10.1002/mas.20232
PG 19
WC Spectroscopy
SC Spectroscopy
GA 569IZ
UT WOS:000275591100004
PM 19391099
ER
PT J
AU Narayan, RJ
Adiga, SP
Pellin, MJ
Curtiss, LA
Stafslien, S
Chisholm, B
Monteiro-Riviere, NA
Brigmon, RL
Elam, JW
AF Narayan, Roger J.
Adiga, Shashishekar P.
Pellin, Michael J.
Curtiss, Larry A.
Stafslien, Shane
Chisholm, Bret
Monteiro-Riviere, Nancy A.
Brigmon, Robin L.
Elam, Jeffrey W.
TI Atomic layer deposition of nanoporous biomaterials
SO MATERIALS TODAY
LA English
DT Article
ID POROUS ALUMINA MEMBRANES; ANODIC ALUMINA; THIN-FILMS; DEVICES; SILICON;
BIOCOMPATIBILITY; DELIVERY; ZNO
AB Due to its chemical stability, uniform pore size, and high pore density, nanoporous alumina is being investigated for use in biosensing, drug delivery, hemodialysis, and other medical applications. In recent work, we have examined the use of atomic layer deposition for coating the surfaces of nanoporous alumina membranes. Zinc oxide coatings were deposited on nanoporous alumina membranes using atomic layer deposition. The zinc oxide-coated nanoporous alumina membranes demonstrated antimicrobial activity against Escherichia coli and Staphylococcus aureus bacteria. These results suggest that atomic layer deposition is an attractive technique for modifying the surfaces of nanoporous alumina membranes and other nanostructured biomaterials.
C1 [Narayan, Roger J.; Monteiro-Riviere, Nancy A.] Univ N Carolina, Joint Dept Biomed Engn, Raleigh, NC 27695 USA.
[Narayan, Roger J.; Monteiro-Riviere, Nancy A.] N Carolina State Univ, Burlington Engn Labs 2147, Raleigh, NC 27695 USA.
[Adiga, Shashishekar P.] Eastman Kodak Co, Kodak Res Labs, Rochester, NY 14650 USA.
[Pellin, Michael J.; Curtiss, Larry A.] Argonne Natl Lab, Div Mat Sci, Argonne, IL 60439 USA.
[Stafslien, Shane; Chisholm, Bret] N Dakota State Univ, Ctr Nanoscale Sci & Engn, Fargo, ND 58102 USA.
[Monteiro-Riviere, Nancy A.] N Carolina State Univ, Ctr Chem Toxicol Res & Pharmacokinet, Raleigh, NC 27606 USA.
[Brigmon, Robin L.] Savannah River Natl Lab, Aiken, SC 29808 USA.
[Elam, Jeffrey W.] Argonne Natl Lab, Energy Sci Div, Argonne, IL 60439 USA.
RP Narayan, RJ (reprint author), Univ N Carolina, Joint Dept Biomed Engn, Raleigh, NC 27695 USA.
EM roger_narayan@msn.com
RI Adiga, Shashishekar/A-8353-2008; Pellin, Michael/B-5897-2008; Narayan,
Roger/J-2789-2013
OI Pellin, Michael/0000-0002-8149-9768; Narayan, Roger/0000-0002-4876-9869
FU U.S. Department of Energy [DE-AC09-08SR22470]
FX This document was prepared in conjunction with work accomplished under
Contract No. DE-AC09-08SR22470 with the U.S. Department of Energy.
NR 32
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PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1369-7021
J9 MATER TODAY
JI Mater. Today
PD MAR
PY 2010
VL 13
IS 3
BP 60
EP 64
PG 5
WC Materials Science, Multidisciplinary
SC Materials Science
GA 572GH
UT WOS:000275815100017
ER
PT J
AU Khavinson, D
Mineev-Weinstein, M
Putinar, M
Teodorescu, R
AF Khavinson, D.
Mineev-Weinstein, M.
Putinar, M.
Teodorescu, R.
TI LEMNISCATES DO NOT SURVIVE LAPLACIAN GROWTH
SO MATHEMATICAL RESEARCH LETTERS
LA English
DT Article
ID QUADRATURE DOMAINS
C1 [Khavinson, D.] Univ S Florida, Dept Math & Stat, Tampa, FL 33620 USA.
Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
Univ Calif Santa Barbara, Dept Math, Santa Barbara, CA 93106 USA.
RP Khavinson, D (reprint author), Univ S Florida, Dept Math & Stat, Tampa, FL 33620 USA.
EM razvan@cas.usf.edu
FU National Science Foundation; LDRD [20070483]
FX Part of this work was done during the first and third authors' visit to
LANL and was supported by the LDRD project 20070483 "Minimal Description
of Complex 2D Shapes" at LANL. Also, D. Khavinson and M. Putinar
gratefully acknowledge partial support by the National Science
Foundation.
NR 14
TC 4
Z9 4
U1 0
U2 1
PU INT PRESS BOSTON, INC
PI SOMERVILLE
PA PO BOX 43502, SOMERVILLE, MA 02143 USA
SN 1073-2780
EI 1945-001X
J9 MATH RES LETT
JI Math. Res. Lett.
PD MAR
PY 2010
VL 17
IS 2
BP 335
EP 341
PG 7
WC Mathematics
SC Mathematics
GA 748EP
UT WOS:000289373100012
ER
PT J
AU Markidis, S
Lapenta, G
Rizwan-uddin
AF Markidis, Stefano
Lapenta, Giovanni
Rizwan-uddin
TI Multi-scale simulations of plasma with iPIC3D
SO MATHEMATICS AND COMPUTERS IN SIMULATION
LA English
DT Article; Proceedings Paper
CT Workshop on Multiscale Modeling of Moving Interfaces in Materials
CY JUL 02-04, 2008
CL Louvain, BELGIUM
DE Particle-in-Cell; Computational plasma physics; Implicit PIC; 3D
Magnetic reconnection
ID HYBRID DRIFT INSTABILITY; MAGNETIC RECONNECTION; PARTICLE SIMULATION;
NUMERICAL-SOLUTION; CURRENT SHEETS; IMPLICIT; FIELD; EQUATION; SOLVER;
ONSET
AB The implicit Particle-in-Cell method for the computer simulation of plasma, and its implementation in a three-dimensional parallel code, called iPIC3D. are presented. The implicit integration in time of the Vlasov-Maxwell system, removes the numerical stability constraints and it enables kinetic plasma simulations at magnetohydrodynamics time scales Simulations of magnetic reconnection in plasma are presented to show the effectiveness of the algorithm (C) 2009 IMACS Published by Elsevier B V All rights reserved
C1 [Lapenta, Giovanni] Catholic Univ Louvain, Dept Wiskunde, Ctr Plasma Astrofys, B-3001 Louvain, Belgium.
[Lapenta, Giovanni] Catholic Univ Louvain, Dept Wiskunde, Leuven Math Modeling & Computat Sci Ctr, B-3001 Louvain, Belgium.
[Markidis, Stefano] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
[Rizwan-uddin] Univ Illinois, Natl Ctr Supercomp Applicat, Urbana, IL 61801 USA.
RP Lapenta, G (reprint author), Catholic Univ Louvain, Dept Wiskunde, Ctr Plasma Astrofys, B-3001 Louvain, Belgium.
OI Lapenta, Giovanni/0000-0002-3123-4024
NR 38
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U1 0
U2 9
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0378-4754
J9 MATH COMPUT SIMULAT
JI Math. Comput. Simul.
PD MAR
PY 2010
VL 80
IS 7
SI SI
BP 1509
EP 1519
DI 10.1016/j.matcom.2009.08.038
PG 11
WC Computer Science, Interdisciplinary Applications; Computer Science,
Software Engineering; Mathematics, Applied
SC Computer Science; Mathematics
GA 599IT
UT WOS:000277905600013
ER
PT J
AU Phan, AV
Gray, LJ
Salvadori, A
AF Phan, A-V.
Gray, L. J.
Salvadori, A.
TI Symmetric-Galerkin boundary element analysis of the dynamic stress
intensity factors in the frequency domain
SO MECHANICS RESEARCH COMMUNICATIONS
LA English
DT Article
DE Symmetric-Galerkin boundary element method; Elastodynamics; Frequency
domain analysis; Dynamic stress intensity factors
ID FRACTURE-ANALYSIS; CRACK; COMPUTATION; INTEGRALS
AB A two-dimensional symmetric-Galerkin boundary integral formulation for the analysis of the dynamic stress intensity factors (DSIFs) in the frequency domain is described. A quadratic element is employed, allowing the use of the modified quarter-point element at the crack tip. For singular and hypersingular integrals, this formulation is decomposed into two parts: the first part is identical to those for elastostatics while the second part, at most, contains only logarithmic singularities. The treatment of the elastostatic singular and hypersingular integrals is carried out by means of an exterior limit to the boundary, while the weakly singular integrals in the second part are handled by Gauss quadrature. Test examples are presented for the calculation of the DSIFs due to harmonic loading as well as wave scattering from a crack. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Phan, A-V.] Univ S Alabama, Dept Mech Engn, Mobile, AL 36688 USA.
[Gray, L. J.] Oak Ridge Natl Lab, Div Math & Comp Sci, Oak Ridge, TN 37831 USA.
[Salvadori, A.] Univ Brescia, Dept Civil Engn, I-25123 Brescia, Italy.
RP Phan, AV (reprint author), Univ S Alabama, Dept Mech Engn, Mobile, AL 36688 USA.
EM vphan@jaguar1.usouthal.edu
RI Salvadori, Alberto/C-7225-2008
OI Salvadori, Alberto/0000-0002-4875-7059
FU NSF [CMMI-0653796]; Office of Advanced Scientific Computing Research, US
Department of Energy [DE-AC05-000R22725]
FX This research was supported in part by the NSF Grant CMMI-0653796, and
by the Office of Advanced Scientific Computing Research, US Department
of Energy, under contract DE-AC05-000R22725 with UT-Battelle, LLC.
NR 28
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U1 0
U2 2
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 0093-6413
J9 MECH RES COMMUN
JI Mech. Res. Commun.
PD MAR
PY 2010
VL 37
IS 2
BP 177
EP 183
DI 10.1016/j.mechrescom.2009.11.009
PG 7
WC Mechanics
SC Mechanics
GA 584DU
UT WOS:000276731500011
ER
PT J
AU Mostov, K
Liptsen, E
Boutchko, R
AF Mostov, K.
Liptsen, E.
Boutchko, R.
TI Medical applications of shortwave FM radar: Remote monitoring of cardiac
and respiratory motion
SO MEDICAL PHYSICS
LA English
DT Article
DE biomedical communication; cardiology; CW radar; FM radar; medical signal
detection; microwave imaging; patient monitoring; pneumodynamics; radar
antennas; radar detection; time series
AB Methods: Gigahertz frequency radar measures the electromagnetic wave signal reflected from the surface of a human body and from tissue boundaries. Time series analysis of the measured signal provides simultaneous information on range, size, and reflective properties of multiple targets in the field of view of the radar. This information is used to extract the respiratory and cardiac rates of the patient in real time.
Results: The results from several preliminary human subject experiments are provided. The heart and respiration rate frequencies extracted from the radar signal match those measured independently for all the experiments, including a case when additional targets are simultaneously resolved in the field of view and a case when only the patient's extremity is visible to the radar antennas.
Conclusions: Micropower continuous wave FM radar is a reliable, robust, inexpensive, and harmless tool for real-time monitoring of the cardiac and respiratory rates. Additionally, it opens a range of new and exciting opportunities in diagnostic and critical care medicine. Differences between the presented approach and other types of radars used for biomedical applications are discussed.
C1 [Mostov, K.; Liptsen, E.] Syst Micro Technol, Berkeley, CA 94704 USA.
[Boutchko, R.] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
RP Mostov, K (reprint author), Syst Micro Technol, 2614 Warring St,Suite 3, Berkeley, CA 94704 USA.
EM rbuchko@lbl.gov
FU National Institutes of Health of the U.S. Department of Health and Human
Services [R01-EB00121, R01-HL71253]; Office of Science, Office of
Biological and Environmental Research of the U.S. Department of Energy
[DE-AC02-05CH11231]
FX Experimental, theoretical, and research works on the MFMR technology
described in this paper was supported by Systems Micro Technologies,
Kirsen Medical Technology, and Kirsen Technologies capital, as well as
private investments. The theoretical and research work of Dr. Boutchko
related to respiratory gating and other related aspects were supported
in part by the National Institutes of Health of the U.S. Department of
Health and Human Services under Grant Nos. R01-EB00121 and R01-HL71253
and by the Director, Office of Science, Office of Biological and
Environmental Research of the U.S. Department of Energy under Contract
No. DE-AC02-05CH11231. The authors would like to thank Dr. Grant
Gullberg for useful suggestions and for providing the Jaszczak dynamic
cardiac phantom for early experiments, and Dr. Thomas Budinger and Dr.
Eugene Mishchenko for helpful discussions.
NR 17
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U2 2
PU AMER ASSOC PHYSICISTS MEDICINE AMER INST PHYSICS
PI MELVILLE
PA STE 1 NO 1, 2 HUNTINGTON QUADRANGLE, MELVILLE, NY 11747-4502 USA
SN 0094-2405
J9 MED PHYS
JI Med. Phys.
PD MAR
PY 2010
VL 37
IS 3
BP 1332
EP 1338
DI 10.1118/1.3267038
PG 7
WC Radiology, Nuclear Medicine & Medical Imaging
SC Radiology, Nuclear Medicine & Medical Imaging
GA 563UL
UT WOS:000275160300040
PM 20384270
ER
PT J
AU Sugimoto, M
Hirayama, A
Ishikawa, T
Robert, M
Baran, R
Uehara, K
Kawai, K
Soga, T
Tomita, M
AF Sugimoto, Masahiro
Hirayama, Akiyoshi
Ishikawa, Takamasa
Robert, Martin
Baran, Richard
Uehara, Keizo
Kawai, Katsuya
Soga, Tomoyoshi
Tomita, Masaru
TI Differential metabolomics software for capillary electrophoresis-mass
spectrometry data analysis
SO METABOLOMICS
LA English
DT Article
DE Capillary electrophoresis-mass spectrometry; Metabolome; Data analysis;
Software
ID OVERLAPPED CHROMATOGRAPHIC SIGNALS; SUPPORT VECTOR MACHINES; PEAK
DETECTION; PREPROCESSING TOOL; WAVELET TRANSFORM; AUTOMATIC PROGRAM;
PROFILE DATA; TIME; IDENTIFICATION; ALIGNMENT
AB In metabolomics, the rapid identification of quantitative differences between multiple biological samples remains a major challenge. While capillary electrophoresis-mass spectrometry (CE-MS) is a powerful tool to simultaneously quantify charged metabolites, reliable and easy-to-use software that is well suited to analyze CE-MS metabolic profiles is still lacking. Optimized software tools for CE-MS are needed because of the sometimes large variation in migration time between runs and the wider variety of peak shapes in CE-MS data compared with LC-MS or GC-MS. Therefore, we implemented a stand-alone application named JDAMP (Java application for Differential Analysis of Metabolite Profiles), which allows users to identify the metabolites that vary between two groups. The main features include fast calculation modules and a file converter using an original compact file format, baseline subtraction, dataset normalization and alignment, visualization on 2D plots (m/z and time axis) with matching metabolite standards, and the detection of significant differences between metabolite profiles. Moreover, it features an easy-to-use graphical user interface that requires only a few mouse-actions to complete the analysis. The interface also enables the analyst to evaluate the semiautomatic processes and interactively tune options and parameters depending on the input datasets. The confirmation of findings is available as a list of overlaid electropherograms, which is ranked using a novel difference-evaluation function that accounts for peak size and distortion as well as statistical criteria for accurate difference-detection. Overall, the JDAMP software complements other metabolomics data processing tools and permits easy and rapid detection of significant differences between multiple complex CE-MS profiles.
C1 [Sugimoto, Masahiro; Hirayama, Akiyoshi; Robert, Martin; Baran, Richard; Kawai, Katsuya; Soga, Tomoyoshi; Tomita, Masaru] Keio Univ, Inst Adv Biosci, Yamagata 9970017, Japan.
[Sugimoto, Masahiro; Uehara, Keizo; Kawai, Katsuya] Mitsubishi Space Software Co Ltd, Dept Bioinformat, Amagasaki, Hyogo 6610001, Japan.
[Ishikawa, Takamasa; Soga, Tomoyoshi; Tomita, Masaru] Human Metabolome Technol Inc, Yamagata 9970052, Japan.
[Baran, Richard] Lawrence Berkeley Natl Lab, Div Life Sci, Berkeley, CA 94720 USA.
RP Sugimoto, M (reprint author), Keio Univ, Inst Adv Biosci, Yamagata 9970017, Japan.
EM msugi@sfc.keio.ac.jp
RI Robert, Martin/B-3970-2009; Sugimoto, Masahiro/B-7391-2014; Soga,
Tomoyoshi/B-8105-2014
OI Robert, Martin/0000-0002-7082-5142; Soga, Tomoyoshi/0000-0001-9502-2509
FU Yamagata Prefectural Government; City of Tsuruoka
FX We thank Dr. Yusuke Tanigawara and Dr. Akito Nishimuta of the School of
Medicine, Keio University, Dr. Satoshi Yoshida and Dr. Hideki Koizumi of
Kirin Holdings, Dr. Akira Oikawa of Riken, and Dr. Eri Shimizu and Dr.
Tadahiro Ozawa of Kao Corporation, for valuable discussions. We also
thank Maki Sugawara, Hiroko Ueda, Shinobu Abe, and Kazuki Sugisaki of
IAB for measurement, data analyses, and programming, and Dr. Ursula
Petralia for editing the manuscript. This work was supported by research
grants from the Yamagata Prefectural Government and the City of
Tsuruoka.
NR 56
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U1 1
U2 17
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 1573-3882
EI 1573-3890
J9 METABOLOMICS
JI Metabolomics
PD MAR
PY 2010
VL 6
IS 1
BP 27
EP 41
DI 10.1007/s11306-009-0175-1
PG 15
WC Endocrinology & Metabolism
SC Endocrinology & Metabolism
GA 567KF
UT WOS:000275444800003
ER
PT J
AU Sandford, SA
Bajt, S
Clemett, SJ
Cody, GD
Cooper, G
Degregorio, BT
de Vera, V
Dworkin, JP
Elsila, JE
Flynn, GJ
Glavin, DP
Lanzirotti, A
Limero, T
Martin, MP
Snead, CJ
Spencer, MK
Stephan, T
Westphal, A
Wirick, S
Zare, RN
Zolensky, ME
AF Sandford, Scott A.
Bajt, Sasa
Clemett, Simon J.
Cody, George D.
Cooper, George
Degregorio, Bradley T.
de Vera, Vanessa
Dworkin, Jason P.
Elsila, Jamie E.
Flynn, George J.
Glavin, Daniel P.
Lanzirotti, Antonio
Limero, Thomas
Martin, Mildred P.
Snead, Christopher J.
Spencer, Maegan K.
Stephan, Thomas
Westphal, Andrew
Wirick, Sue
Zare, Richard N.
Zolensky, Michael E.
TI Assessment and control of organic and other contaminants associated with
the Stardust sample return from comet 81P/Wild 2
SO METEORITICS & PLANETARY SCIENCE
LA English
DT Article
ID POLYCYCLIC AROMATIC-HYDROCARBONS; INFRARED-SPECTROSCOPY; DEUTERIUM
ENRICHMENT; AEROGEL; IMPACT; MATTER; MOLECULES; DUST; MICROSCOPE; TRACKS
AB Numerous potential sources of organic contaminants could have greatly complicated the interpretation of the organic portions of the samples returned from comet 81P/Wild 2 by the Stardust spacecraft. Measures were taken to control and assess potential organic (and other) contaminants during the design, construction, and flight of the spacecraft, and during and after recovery of the sample return capsule. Studies of controls and the returned samples suggest that many of these potential sources did not contribute any significant material to the collectors. In particular, contamination from soils at the recovery site and materials associated with the ablation of the heatshield do not appear to be significant problems. The largest source of concern is associated with the C present in the original aerogel. The relative abundance of this carbon can vary between aerogel tiles and even within individual tiles. This C was fortunately not distributed among a complex mixture of organics, but was instead largely present in a few simple forms (mostly as Si-CH(3) groups). In most cases, the signature of returned cometary organics can be readily distinguished from contaminants through their different compositions, nonterrestrial isotopic ratios, and/or association with other cometary materials. However, some conversion of the carbon indigenous to the flight aerogel appears to have happened during particle impact, and some open issues remain regarding how this C may be processed into new forms during the hypervelocity impact collection of the comet dust.
C1 [Sandford, Scott A.] NASA, Ames Res Ctr, Astrophys Branch, Moffett Field, CA 94035 USA.
[Bajt, Sasa] Lawrence Livermore Natl Lab, Inst Geophys & Planetary Phys, Livermore, CA 94550 USA.
[Clemett, Simon J.] NASA, Lyndon B Johnson Space Ctr, ERC Inc, Houston, TX 77058 USA.
[Cody, George D.] Carnegie Inst Washington, Geophys Lab, Washington, DC 20015 USA.
[Cooper, George] NASA, Ames Res Ctr, Astrobiol Branch, Moffett Field, CA 94035 USA.
[Degregorio, Bradley T.] USN, Res Lab, Washington, DC 20375 USA.
[de Vera, Vanessa; Limero, Thomas] Wyle Integrated Sci & Engn, Houston, TX 77058 USA.
[Dworkin, Jason P.; Elsila, Jamie E.; Glavin, Daniel P.; Martin, Mildred P.] NASA, Goddard Space Flight Ctr, Goddard Ctr Astrobiol, Greenbelt, MD 20771 USA.
[Flynn, George J.] SUNY Coll Plattsburgh, Dept Phys, Plattsburgh, NY 12901 USA.
[Lanzirotti, Antonio] Univ Chicago, CARS, Chicago, IL 60637 USA.
[Martin, Mildred P.] Catholic Univ Amer, Washington, DC 20064 USA.
[Snead, Christopher J.] Univ Calif Los Angeles, Dept Earth & Space Sci, Los Angeles, CA 90095 USA.
[Spencer, Maegan K.] Stanford Univ, Dept Chem, Stanford, CA 94305 USA.
[Stephan, Thomas] Univ Chicago, Dept Geophys Sci, Chicago, IL 60637 USA.
[Westphal, Andrew] Univ Calif Berkeley, Space Sci Lab, Berkeley, CA 94720 USA.
[Wirick, Sue] SUNY Stony Brook, Dept Phys & Astron, Stony Brook, NY 11794 USA.
[Zare, Richard N.] Stanford Univ, Dept Chem, Stanford, CA 94305 USA.
[Zolensky, Michael E.] NASA, Lyndon B Johnson Space Ctr, Houston, TX 77058 USA.
RP Sandford, SA (reprint author), NASA, Ames Res Ctr, Astrophys Branch, Mail Stop 245-6, Moffett Field, CA 94035 USA.
EM scott.a.sandford@nasa.gov
RI De Gregorio, Bradley/B-8465-2008; Bajt, Sasa/G-2228-2010; Elsila,
Jamie/C-9952-2012; Glavin, Daniel/D-6194-2012; Dworkin,
Jason/C-9417-2012
OI De Gregorio, Bradley/0000-0001-9096-3545; Glavin,
Daniel/0000-0001-7779-7765; Dworkin, Jason/0000-0002-3961-8997
FU NASA; NASA Astrobiology Institute and the Goddard Center for
Astrobiology; W. M. Keck Solid State NMR Facility at the Geophysical
Laboratory; U.S. Department of Energy by the Lawrence Livermore National
Laboratory [W-7405-ENG-48]; Office of Science, Office of Basic Energy
Sciences, Materials Sciences Division, of the U.S. Department of Energy
[DE-AC03-76F00098]; Deutsche Forschungsgemeinschaft [STE 576/17-2]
FX The efforts reported in this paper spanned more than ten years of the
Stardust project and benefited from the support of numerous individuals
and funding sources. The authors are grateful to all the many people
associated with the Stardust project who assisted with the design and
implementation of the spacecraft's contamination control and assessment
activities. The authors also gratefully acknowledge key financial
support from the following sources: the NASA Origins of Solar System
Program, the NASA Astrobiology Institute and the Goddard Center for
Astrobiology, the NASA Sample Return Instruments and Data Analysis
Program, the W. M. Keck Solid State NMR Facility at the Geophysical
Laboratory, the U.S. Department of Energy by the Lawrence Livermore
National Laboratory under Contract No. W-7405-ENG-48, the Advanced Light
Source, Lawrence Berkeley National Laboratory, which is supported by the
Director, Office of Science, Office of Basic Energy Sciences, Materials
Sciences Division, of the U.S. Department of Energy under Contract No.
DE-AC03-76F00098, and the Deutsche Forschungsgemeinschaft (STE
576/17-2). The authors are grateful to Dr. J. Borg and an anonymous
reviewer for their helpful comments on the original version of this
paper, and to Dr. D. Brownlee for efficient handling of the paper's
submission.
NR 50
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U1 2
U2 18
PU WILEY-BLACKWELL
PI MALDEN
PA COMMERCE PLACE, 350 MAIN ST, MALDEN 02148, MA USA
SN 1086-9379
J9 METEORIT PLANET SCI
JI Meteorit. Planet. Sci.
PD MAR
PY 2010
VL 45
IS 3
BP 406
EP 433
DI 10.1111/j.1945-5100.2010.01031.x
PG 28
WC Geochemistry & Geophysics
SC Geochemistry & Geophysics
GA 625OM
UT WOS:000279904700006
ER
PT J
AU Morris, SM
Horton, JA
Jaroniec, M
AF Morris, Stacy M.
Horton, Joe A.
Jaroniec, Mietek
TI Soft-templating synthesis and properties of mesoporous alumina-titania
SO MICROPOROUS AND MESOPOROUS MATERIALS
LA English
DT Article
DE Alumina; Titania; Alumina-titania; Ordered mesoporous oxide;
Soft-templating
ID SOL-GEL SYNTHESIS; AL2O3-TIO2 MIXED OXIDES; HIGH-SURFACE-AREA;
GAMMA-ALUMINA; METAL-OXIDES; MESOSTRUCTURED FORMS; PORE-SIZE; TIO2;
TEMPERATURE; GAMMA-AL2O3
AB Mesoporous alumina-titania materials, having various molar compositions of aluminum and titanium, were synthesized via cooperative self-assembly of the corresponding metal alkoxides and Pluronic (R) P123 triblock copolymer (soft template) in ethanolic solution under acidic conditions. The resulting mixed metal oxides possess ordered mesopores at low to equal molar compositions of titanium in relation to aluminum (up to 50%) and worm-like mesostructures at higher molar compositions of titanium (50-75%). In addition, these mesoporous oxides exhibit high BET surface areas (up to 438 m(2)/g), large pore widths (from 7.37 to 18.55 nm) and pore volumes (from 0.16 to 0.64 cm(3)/g), narrow pore size distributions, crystalline pore walls and high thermal stability. (C) 2009 Elsevier Inc. All rights reserved.
C1 [Morris, Stacy M.; Jaroniec, Mietek] Kent State Univ, Dept Chem, Kent, OH 44242 USA.
[Horton, Joe A.] Oak Ridge Natl Lab, Ctr Nanophase Mat Sci, Oak Ridge, TN 37831 USA.
RP Jaroniec, M (reprint author), Kent State Univ, Dept Chem, Kent, OH 44242 USA.
EM jaroniec@kent.edu
RI Jaroniec, Mietek/A-9733-2008
OI Jaroniec, Mietek/0000-0002-1178-5611
FU Oak Ridge National Laboratory, Division of Scientific User Facilities,
US Department of Energy
FX The authors wish to thank Professor S. Pikus of M. Curie-Sklodowska
University (Poland) for assisting with wide angle powder XRD analysis
and Dr. Ajayan Vinu from the World Premier International Research
Center, National Institute for Materials Science, Tsukuba, Japan for
performing elemental mapping. The TEM analysis for the samples studied
was conducted at the Center for Nanophase Materials Sciences, which is
sponsored at Oak Ridge National Laboratory, Division of Scientific User
Facilities, US Department of Energy. The authors thank the BASF Co. for
providing the triblock polymer.
NR 45
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U1 5
U2 53
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 1387-1811
J9 MICROPOR MESOPOR MAT
JI Microporous Mesoporous Mat.
PD MAR
PY 2010
VL 128
IS 1-3
BP 180
EP 186
DI 10.1016/j.micromeso.2009.08.018
PG 7
WC Chemistry, Applied; Chemistry, Physical; Nanoscience & Nanotechnology;
Materials Science, Multidisciplinary
SC Chemistry; Science & Technology - Other Topics; Materials Science
GA 537IF
UT WOS:000273105800024
ER
PT J
AU Anento, N
Serra, A
Osetsky, YN
AF Anento, N.
Serra, A.
Osetsky, Yu N.
TI Atomistic study of multimechanism diffusion by self-interstitial defects
in alpha-Fe
SO MODELLING AND SIMULATION IN MATERIALS SCIENCE AND ENGINEERING
LA English
DT Article
ID COMPUTER-SIMULATION; DISLOCATION LOOPS; ATOM CLUSTERS; IRON; KINETICS;
MIGRATION; EVOLUTION; MOBILITY; TRANSPORT; ALLOYS
AB We present the results of an extensive molecular dynamics study of self-interstitial atom (SIA) clusters containing up to 37 defects over a wide range of temperatures in iron. A long simulation time and high statistics of defect jumps allowed a detailed treatment of the data to be performed. Diffusion exhibits a change in mechanism from three-dimensional to one-dimensional for clusters of 4-7 SIAs. Stable sessile configurations present in the diffusion process are described and their influence on the diffusion parameters is discussed. Diffusion coefficients, correlation factors estimated, and mechanisms observed, are compared with previously published results, and the influence of the interatomic potential is considered.
C1 [Anento, N.; Serra, A.] UPC, Dept Matemat Aplicada 3, E-08034 Barcelona, Spain.
[Osetsky, Yu N.] ORNL, Mat Sci & Technol Div, Oak Ridge, TN 37831 USA.
RP Serra, A (reprint author), UPC, Dept Matemat Aplicada 3, Jordi Girona 1-3 C-2, E-08034 Barcelona, Spain.
EM a.serra@upc.edu
RI Anento, Napoleon/H-7022-2015
OI Anento, Napoleon/0000-0002-4643-7270
FU European Commission [PERFORM60: 232612]; Spanish Ministry of Science and
Innovation [FIS2006-12436-C02-02]; Catalan Government [CIRIT 2009SGR
1003]; Division of Materials Sciences and Engineering, US Department of
Energy
FX The authors acknowledge Professor D J Bacon for discussions and help in
the preparation of the manuscript. This work was supported by the
European Commission (7th FWP, PERFORM60: 232612), the Spanish Ministry
of Science and Innovation (FIS2006-12436-C02-02), the Catalan Government
(CIRIT 2009SGR 1003) and the Division of Materials Sciences and
Engineering, US Department of Energy (YNO). The computing was partly
made in CESCA (http://www.cesca.es).
NR 33
TC 24
Z9 24
U1 0
U2 13
PU IOP PUBLISHING LTD
PI BRISTOL
PA DIRAC HOUSE, TEMPLE BACK, BRISTOL BS1 6BE, ENGLAND
SN 0965-0393
J9 MODEL SIMUL MATER SC
JI Model. Simul. Mater. Sci. Eng.
PD MAR
PY 2010
VL 18
IS 2
AR 025008
DI 10.1088/0965-0393/18/2/025008
PG 18
WC Materials Science, Multidisciplinary; Physics, Applied
SC Materials Science; Physics
GA 573HC
UT WOS:000275898800008
ER
PT J
AU Jackson, DJ
McDougall, C
Woodcroft, B
Moase, P
Rose, RA
Kube, M
Reinhardt, R
Rokhsar, DS
Montagnani, C
Joubert, C
Piquemal, D
Degnan, BM
AF Jackson, Daniel J.
McDougall, Carmel
Woodcroft, Ben
Moase, Patrick
Rose, Robert A.
Kube, Michael
Reinhardt, Richard
Rokhsar, Daniel S.
Montagnani, Caroline
Joubert, Caroline
Piquemal, David
Degnan, Bernard M.
TI Parallel Evolution of Nacre Building Gene Sets in Molluscs
SO MOLECULAR BIOLOGY AND EVOLUTION
LA English
DT Article
DE biomineralization; nacre; EST; evolution; mollusc; pearl
ID SEA-URCHIN EMBRYO; CARBONIC-ANHYDRASE; PINCTADA-FUCATA; MATRIX PROTEIN;
ORGANIC MATRIX; PEARL OYSTER; SHELL-MATRIX; CIONA-INTESTINALIS;
ARAGONITIC TABLET; PRISMATIC LAYER
AB The capacity to biomineralize is closely linked to the rapid expansion of animal life during the early Cambrian, with many skeletonized phyla first appearing in the fossil record at this time. The appearance of disparate molluscan forms during this period leaves open the possibility that shells evolved independently and in parallel in at least some groups. To test this proposition and gain insight into the evolution of structural genes that contribute to shell fabrication, we compared genes expressed in nacre (mother-of-pearl) forming cells in the mantle of the bivalve Pinctada maxima and the gastropod Haliotis asinina. Despite both species having highly lustrous nacre, we find extensive differences in these expressed gene sets. Following the removal of housekeeping genes, less than 10% of all gene clusters are shared between these molluscs, with some being conserved biomineralization genes that are also found in deuterostomes. These differences extend to secreted proteins that may localize to the organic shell matrix, with less than 15% of this secretome being shared. Despite these differences, H. asinina and P. maxima both secrete proteins with repetitive low-complexity domains (RLCDs). Pinctada maxima RLCD proteins-for example, the shematrins-are predominated by silk/fibroin-like domains, which are absent from the H. asinina data set. Comparisons of shematrin genes across three species of Pinctada indicate that this gene family has undergone extensive divergent evolution within pearl oysters. We also detect fundamental bivalve-gastropod differences in extracellular matrix proteins involved in mollusc-shell formation. Pinctada maxima expresses a chitin synthase at high levels and several chitin deacetylation genes, whereas only one protein involved in chitin interactions is present in the H. asinina data set, suggesting that the organic matrix on which calcification proceeds differs fundamentally between these species. Large-scale differences in genes expressed in nacre-forming cells of Pinctada and Haliotis are compatible with the hypothesis that gastropod and bivalve nacre is the result of convergent evolution. The expression of novel biomineralizing RLCD proteins in each of these two molluscs and, interestingly, sea urchins suggests that the evolution of such structural proteins has occurred independently multiple times in the Metazoa.
C1 [Jackson, Daniel J.; McDougall, Carmel; Woodcroft, Ben; Degnan, Bernard M.] Univ Queensland, Sch Biol Sci, Brisbane, Qld, Australia.
[Jackson, Daniel J.] Univ Gottingen, Courant Res Ctr Geobiol, Gottingen, Germany.
[Moase, Patrick] Clipper Pearls & Autore Pearling, Broome, WA, Australia.
[Rose, Robert A.] Pearl Oyster Propagators, Darwin, NT, Australia.
[Kube, Michael; Reinhardt, Richard] Max Planck Inst Mol Genet, Berlin, Germany.
[Rokhsar, Daniel S.] Univ Calif Berkeley, Ctr Integrat Genom, Berkeley, CA 94720 USA.
[Rokhsar, Daniel S.] Univ Calif Berkeley, Dept Mol & Cell Biol, Berkeley, CA 94720 USA.
[Rokhsar, Daniel S.] Joint Genome Inst, Dept Energy, Walnut Creek, CA USA.
[Montagnani, Caroline; Joubert, Caroline] IFREMER, Ctr Pacifique, Biotechnol & Pearl Qual Lab, Tahiti, French Polynesi, France.
[Piquemal, David] Amarante, Skuldtech, Montpellier, France.
RP Degnan, BM (reprint author), Univ Queensland, Sch Biol Sci, Brisbane, Qld, Australia.
EM b.degnan@uq.edu.au
RI McDougall, Carmel/G-3512-2010; Jackson, Daniel/J-5158-2012; Montagnani,
Caroline/O-3693-2014
OI McDougall, Carmel/0000-0002-2116-5651; Jackson,
Daniel/0000-0001-9045-381X; Montagnani, Caroline/0000-0002-0861-7967
FU Australian Research Council; Deutsche Forschungsgemeinschaft; German
Initiative of Excellence
FX We acknowledge the JGI Community Sequencing Program for providing public
access to a draft assembly of the L. gigantea genome and Eric Edsinger
Gonzales for discussions regarding Lottia sequence data. This work was
supported by funding from the Australian Research Council to B.M.D. and
the Deutsche Forschungsgemeinschaft to D.J.J. through the Courant
Research Centre for Geobiology (Gottingen) and the German Initiative of
Excellence.
NR 84
TC 107
Z9 138
U1 3
U2 40
PU OXFORD UNIV PRESS
PI OXFORD
PA GREAT CLARENDON ST, OXFORD OX2 6DP, ENGLAND
SN 0737-4038
J9 MOL BIOL EVOL
JI Mol. Biol. Evol.
PD MAR
PY 2010
VL 27
IS 3
BP 591
EP 608
DI 10.1093/molbev/msp278
PG 18
WC Biochemistry & Molecular Biology; Evolutionary Biology; Genetics &
Heredity
SC Biochemistry & Molecular Biology; Evolutionary Biology; Genetics &
Heredity
GA 558ZA
UT WOS:000274786900010
PM 19915030
ER
PT J
AU Petyuk, VA
Mayampurath, AM
Monroe, ME
Polpitiya, AD
Purvine, SO
Anderson, GA
Camp, DG
Smith, RD
AF Petyuk, Vladislav A.
Mayampurath, Anoop M.
Monroe, Matthew E.
Polpitiya, Ashoka D.
Purvine, Samuel O.
Anderson, Gordon A.
Camp, David G., II
Smith, Richard D.
TI DtaRefinery, a Software Tool for Elimination of Systematic Errors from
Parent Ion Mass Measurements in Tandem Mass Spectra Data Sets
SO MOLECULAR & CELLULAR PROTEOMICS
LA English
DT Article
ID PROTEIN IDENTIFICATION; CYCLOTRON RESONANCE; INTERNAL CALIBRATION;
MEASUREMENT ACCURACY; MODIFIED PEPTIDES; COMPLEX-MIXTURES; SPECTROMETRY;
PROTEOMICS; RECALIBRATION; REGRESSION
AB Hybrid two-stage mass spectrometers capable of both highly accurate mass measurement and high throughput MS/MS fragmentation have become widely available in recent years, allowing for significantly better discrimination between true and false MS/MS peptide identifications by the application of a relatively narrow window for maximum allowable deviations of measured parent ion masses. To fully gain the advantage of highly accurate parent ion mass measurements, it is important to limit systematic mass measurement errors. Based on our previous studies of systematic biases in mass measurement errors, here, we have designed an algorithm and software tool that eliminates the systematic errors from the peptide ion masses in MS/MS data. We demonstrate that the elimination of the systematic mass measurement errors allows for the use of tighter criteria on the deviation of measured mass from theoretical monoisotopic peptide mass, resulting in a reduction of both false discovery and false negative rates of peptide identification. A software implementation of this algorithm called DtaRefinery reads a set of fragmentation spectra, searches for MS/MS peptide identifications using a FASTA file containing expected protein sequences, fits a regression model that can estimate systematic errors, and then corrects the parent ion mass entries by removing the estimated systematic error components. The output is a new file with fragmentation spectra with updated parent ion masses. The software is freely available. Molecular & Cellular Proteomics 9: 486-496, 2010.
C1 [Smith, Richard D.] Pacific NW Natl Lab, Div Biol Sci, Richland, WA 99352 USA.
Pacific NW Natl Lab, Environm Mol Sci Lab, Richland, WA 99352 USA.
RP Smith, RD (reprint author), Pacific NW Natl Lab, Div Biol Sci, POB 999,MSIN K8-98, Richland, WA 99352 USA.
EM rds@pnl.gov
RI Smith, Richard/J-3664-2012;
OI Smith, Richard/0000-0002-2381-2349; Petyuk,
Vladislav/0000-0003-4076-151X
FU National Institutes of Health, National Center for Research Resources
[RR18522]
FX This work was supported, in whole or in part, by National Institutes of
Health Grant RR18522 (to R.D.S.) from the National Center for Research
Resources.
NR 36
TC 24
Z9 24
U1 0
U2 8
PU AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
PI BETHESDA
PA 9650 ROCKVILLE PIKE, BETHESDA, MD 20814-3996 USA
SN 1535-9476
J9 MOL CELL PROTEOMICS
JI Mol. Cell. Proteomics
PD MAR
PY 2010
VL 9
IS 3
BP 486
EP 496
DI 10.1074/mcp.M900217-MCP200
PG 11
WC Biochemical Research Methods
SC Biochemistry & Molecular Biology
GA 568FB
UT WOS:000275506600005
PM 20019053
ER
PT J
AU Achyuthan, KE
Adams, PD
Datta, S
Simmons, BA
Singh, AK
AF Achyuthan, Komandoor Elayavalli
Adams, Paul David
Datta, Supratim
Simmons, Blake Alexander
Singh, Anup Kumar
TI Hitherto Unrecognized Fluorescence Properties of Coniferyl Alcohol
SO MOLECULES
LA English
DT Article
DE coniferyl alcohol; fluorescence; laccase; peroxidase; high throughput
screening; lignin; biofuels
ID BLUE-GREEN; LIGNIN; OXIDATION; PRODUCTS; SPECTRA; LACCASE; DESIGN;
ASSAYS
AB We instituted a quasi-quality assurance program for demonstrating coniferyl alcohol's fluorescence and fluorescence diminishment following enzymatic oxidation. The magnitude of diminishment was a measure of catalysis. High throughput screening was performed in pseudo-kinetic and endpoint modes by measuring the fluorescence at 416 nm following excitation at 290, 310 or 340 nm. Dose-response tracings were linear between two and three orders of magnitude with average limits of detection and quantitation of 1.8 and 6.9 mu M coniferyl alcohol, respectively. Oxidation was evident with 0.025 mu g/mL laccase or 0.003 mu g/mL peroxidase or inside 5 min using 0.5 mu g/mL laccase or 5 mu M substrate. Sodium chloride inhibited (IC(50), 25 mM) laccase oxidation of coniferyl alcohol. Fluorescence from 10 concentrations (1 to 1000 mu M) of coniferyl alcohol was stable for 24 hours over 14 excitation/emission cycles at 3 different combinations of excitation and emission wavelengths. In conclusion, coniferyl alcohol absorption and fluorescence assays should facilitate biomass lignin analyses and improve delignification.
C1 [Achyuthan, Komandoor Elayavalli; Adams, Paul David; Datta, Supratim; Simmons, Blake Alexander; Singh, Anup Kumar] Joint BioEnergy Inst, Livermore, CA 94550 USA.
[Achyuthan, Komandoor Elayavalli] Sandia Natl Labs, Biosensors & Nanomat Dept, Albuquerque, NM 87185 USA.
[Adams, Paul David] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
[Datta, Supratim; Simmons, Blake Alexander; Singh, Anup Kumar] Sandia Natl Labs, Livermore, CA 94550 USA.
RP Achyuthan, KE (reprint author), Joint BioEnergy Inst, Livermore, CA 94550 USA.
EM kachyut@sandia.gov; pdadams@lbl.gov; sdatta2@lbl.gov;
basimmo@sandia.gov; aksingh@sandia.gov
RI Adams, Paul/A-1977-2013;
OI Adams, Paul/0000-0001-9333-8219; Simmons, Blake/0000-0002-1332-1810
FU U.S. Department of Energy, Office of Science, Office of Biological and
Environmental Research [DE-AC02-05CH11231, AC04-94AL85000]
FX The DOE's JBEI (http://www.jbei.org) is supported by the U.S. Department
of Energy, Office of Science, Office of Biological and Environmental
Research, through Contract DE-AC02-05CH11231 between Lawrence Berkeley
National Laboratory and the U.S. Department of Energy. Sandia is a
multiprogram laboratory operated by Sandia Corp., a Lockheed Martin
Company, for the United States Department of Energy under Contract
DE-AC04-94AL85000.
NR 22
TC 3
Z9 3
U1 1
U2 6
PU MOLECULAR DIVERSITY PRESERVATION INTERNATIONAL-MDPI
PI BASEL
PA KANDERERSTRASSE 25, CH-4057 BASEL, SWITZERLAND
SN 1420-3049
J9 MOLECULES
JI Molecules
PD MAR
PY 2010
VL 15
IS 3
BP 1645
EP 1667
DI 10.3390/molecules15031645
PG 23
WC Chemistry, Organic
SC Chemistry
GA 573ZJ
UT WOS:000275956900041
PM 20336005
ER
PT J
AU Lemone, MA
Chen, F
Tewari, M
Dudhia, J
Geerts, B
Miao, Q
Coulter, RL
Grossman, RL
AF Lemone, Margaret A.
Chen, Fei
Tewari, Mukul
Dudhia, Jimy
Geerts, Bart
Miao, Qun
Coulter, Richard L.
Grossman, Robert L.
TI Simulating the IHOP_2002 Fair-Weather CBL with the WRF-ARW-Noah Modeling
System. Part I: Surface Fluxes and CBL Structure and Evolution along the
Eastern Track
SO MONTHLY WEATHER REVIEW
LA English
DT Article
ID CONVECTIVE BOUNDARY-LAYER; HETEROGENEOUS SOIL-MOISTURE; SOUTHERN
GREAT-PLAINS; MESOSCALE ETA-MODEL; LAND-SURFACE; HEAT FLUXES;
PREDICTION; AIRCRAFT; KANSAS; CLOUD
AB Fair-weather data from the May June 2002 International H(2)O Project (IHOP_2002) 46-km eastern flight track in southeast Kansas are compared to simulations using the advanced research version of the Weather Research and Forecasting model coupled to the Noah land surface model (LSM), to gain insight into how the surface influences convective boundary layer (CBL) fluxes and structure, and to evaluate the success of the modeling system in representing CBL structure and evolution. This offers a unique look at the capability of the model on scales the length of the flight track (46 km) and smaller under relatively uncomplicated meteorological conditions.
It is found that the modeled sensible heat flux H is significantly larger than observed, while the latent heat flux (LE) is much closer to observations. The slope of the best-fit line Delta LE/Delta H to a plot of LE as a function of H. an indicator of horizontal variation in available energy H + LE, for the data along the flight track, was shallower than observed. In a previous study of the IHOP_2002 western track, similar results were explained by too small a value of the parameter C in the Zilitinkevich equation used in the Noah LSM to compute the roughness length for heat and moisture flux from the roughness length for momentum, which is supplied in an input table; evidence is presented that this is true for the eastern track as well. The horizontal variability in modeled fluxes follows the soil moisture pattern rather than vegetation type, as is observed; because the input land use map does not capture the observed variation in vegetation. The observed westward rise in CBL depth is successfully modeled for 3 of the 4 days, but the actual depths are too high, largely because modeled H is too high. The model reproduces the timing of observed cumulus cloudiness for 3 of the 4 days.
Modeled clouds lead to departures from the typical clear-sky straight line relating surface H to LE for a given model time, making them easy to detect. With spatial filtering, a straight slope line can be recovered. Similarly, larger filter lengths are needed to produce a stable slope for observed fluxes when there are clouds than for clear skies.
C1 [Lemone, Margaret A.] NCAR, Foothills Lab, Boulder, CO 80301 USA.
[Geerts, Bart; Miao, Qun] Univ Wyoming, Dept Atmospher Sci, Laramie, WY 82071 USA.
[Coulter, Richard L.] Argonne Natl Lab, Chicago, IL USA.
[Grossman, Robert L.] Colorado Res Associates, Boulder, CO USA.
RP Lemone, MA (reprint author), NCAR, Foothills Lab, 3450 Mitchell Lane, Boulder, CO 80301 USA.
EM lemone@ucar.edu
RI Dudhia, Jimy/B-1287-2008; Chen, Fei/B-1747-2009
OI Dudhia, Jimy/0000-0002-2394-6232;
FU USWRP [NSF 01]; NASA THP [NNG06GH17G]; NSF [ATM-0296159]; U.S.
Department of Energy, Office of Biological and Environmental Research
[W-31-109-Eng-38]
FX This work would not have been possible without the commitment,
enthusiasm, and expertise of the Wyoming King Air aircrew, the staff
maintaining the Wyoming Cloud Radar, the National Center for Atmospheric
Research (NCAR) staff maintaining the surface flux instruments, and the
students taking the manual observations at the flux sites. We gratefully
acknowledge Stan Trier of NCAR for reviewing the manuscript, and George
Bryan and Chin-Hoh Moeng for giving us advice on model sensitivity
tests, and four reviewers whose detailed comments greatly improved the
text and figures. The NCAR portion of this research was supported by
USWRP Grant NSF 01, the NCAR Water Cycle Initiative, and NASA THP (Dr.
J. Entin NNG06GH17G). RLG's participation in IHOP_2002 was supported by
NSF Grant ATM-0296159. RC's work was supported by the U.S. Department of
Energy, Office of Biological and Environmental Research, under Contract
W-31-109-Eng-38.
NR 52
TC 17
Z9 17
U1 0
U2 18
PU AMER METEOROLOGICAL SOC
PI BOSTON
PA 45 BEACON ST, BOSTON, MA 02108-3693 USA
SN 0027-0644
J9 MON WEATHER REV
JI Mon. Weather Rev.
PD MAR
PY 2010
VL 138
IS 3
BP 722
EP 744
DI 10.1175/2009MWR3003.1
PG 23
WC Meteorology & Atmospheric Sciences
SC Meteorology & Atmospheric Sciences
GA 579BZ
UT WOS:000276342900005
ER
PT J
AU Lemone, MA
Chen, F
Tewari, M
Dudhia, J
Geerts, B
Mia, Q
Coulter, RL
Grossman, RL
AF Lemone, Margaret A.
Chen, Fei
Tewari, Mukul
Dudhia, Jimy
Geerts, Bart
Mia, Qun
Coulter, Richard L.
Grossman, Robert L.
TI Simulating the IHOP_2002 Fair-Weather CBL with the WRF-ARW Noah Modeling
System. Part II: Structures from a Few Kilometers to 100 km across
SO MONTHLY WEATHER REVIEW
LA English
DT Article
ID CONVECTIVE BOUNDARY-LAYER; LARGE-EDDY SIMULATIONS; HETEROGENEOUS
SOIL-MOISTURE; SOUTHERN GREAT-PLAINS; LAND-SURFACE; MESOSCALE
CIRCULATIONS; FLUXES; DYNAMICS; ROLLS; IMPLEMENTATION
AB Fair-weather data along the May June 2002 International H(2)O Project (IHOP_2002) eastern track and the nearby Argonne Boundary Layer Experiments (ABLE) facility in southeast Kansas are compared to numerical simulations to gain insight into how the surface influences convective boundary layer (CBL) structure, and to evaluate the success of the modeling system in replicating the observed behavior. Simulations are conducted for 4 days, using the Advanced Research version of the Weather Research and Forecasting (WRF) model coupled to the Noah land surface model (LSM), initialized using the High-Resolution Land Data Assimilation System (HRLDAS). Because the observations focus on phenomena less than 60 km in scale, the model is run with 1-km grid spacing, offering a critical look at high-resolution model behavior in an environment uncomplicated by precipitation.
The model replicates the type of CBL structure on scales from a few kilometers to 100 km, but some features at the kilometer scales depend on the grid spacing. Mesoscale (tens of kilometers) circulations were clearly evident on 2 of the 4 days (30 May and 20 June), clearly not evident on 1 day (22 June), with the situation for the fourth day (17 June) ambiguous. Both observed and modeled surface-heterogeneity-generated mesoscale circulations are evident for 30 May. On the other hand, 20 June satellite images show north-northwest south-southeast cloud streets (rolls) modulated longitudinally, presumably by tropospheric gravity waves oriented normal to the roll axis, creating northeast southwest ridges and valleys spaced 50-100 km apart. Modeled cloud streets showed similar longitudinal modulation, with the associated two-dimensional structure having maximum amplitude above the CBL and no relationship to the CBL temperature distribution; although there were patches of mesoscale vertical velocity correlated with CBL temperature. On 22 June, convective rolls were the dominant structure in both model and observations.
For the 3 days for which satellite images show cloud streets, WRF produces rolls with the right orientation and wavelength, which grows with CBL depth. Modeled roll structures appeared for the range of CBL depth to Obukhov length ratios (z(i)/L) associated with rolls. However, sensitivity tests show that the roll wavelength is also related to the grid spacing, and the modeled convection becomes more cellular with smaller grid spacing.
C1 [Lemone, Margaret A.] NCAR, Foothills Lab, Boulder, CO 80301 USA.
[Geerts, Bart; Mia, Qun] Univ Wyoming, Dept Atmospher Sci, Laramie, WY 82071 USA.
[Coulter, Richard L.] Argonne Natl Lab, Chicago, IL USA.
[Grossman, Robert L.] Colorado Res Associates, Boulder, CO USA.
RP Lemone, MA (reprint author), NCAR, Foothills Lab, 3450 Mitchell Lane, Boulder, CO 80301 USA.
EM lemone@ucar.edu
RI Dudhia, Jimy/B-1287-2008; Chen, Fei/B-1747-2009
OI Dudhia, Jimy/0000-0002-2394-6232;
FU USWRP [NSF 01]; NASA-THP [NNGO6GH17G]; NOAA/JCSDA [NA06NES4400013]; NSF
[ATM-0296159]
FX This work would not have been possible without the commitment,
enthusiasm, and expertise of the Wyoming King Air aircrew, the staff
maintaining the Wyoming Cloud Radar, the National Center for Atmospheric
Research (NCAR) staff maintaining the surface flux instruments, and the
students taking the manual observations at the flux sites. We gratefully
acknowledge the four reviewers whose thorough reviews improved the
manuscript and Stan Trier of NCAR for supplying filtering software for
the ARW-WRF data, and for reviewing the manuscript, as well as
discussions with George Bryan and Chin-Hoh Moeng in designing and
interpreting our sensitivity studies. The NCAR portion of this research
was supported by USWRP Grant NSF 01, the NCAR Water Cycle Initiative,
and NASA-THP (Grant NNGO6GH17G) and NOAA/JCSDA (Grant NA06NES4400013),
as well as NCAR base funding. RLG's participation in IHOP_2002 was
supported by NSF Grant ATM-0296159. RC's work was supported by the U.S.
Department of Energy, Office of Biological and Environmental Research,
under Contract W-31-109-Eng-38.
NR 59
TC 23
Z9 23
U1 0
U2 17
PU AMER METEOROLOGICAL SOC
PI BOSTON
PA 45 BEACON ST, BOSTON, MA 02108-3693 USA
SN 0027-0644
J9 MON WEATHER REV
JI Mon. Weather Rev.
PD MAR
PY 2010
VL 138
IS 3
BP 745
EP 764
DI 10.1175/2009MWR3004.1
PG 20
WC Meteorology & Atmospheric Sciences
SC Meteorology & Atmospheric Sciences
GA 579BZ
UT WOS:000276342900006
ER
PT J
AU Lundquist, KA
Chow, FK
Lundquist, JK
AF Lundquist, Katherine A.
Chow, Fotini Katopodes
Lundquist, Julie K.
TI An Immersed Boundary Method for the Weather Research and Forecasting
Model
SO MONTHLY WEATHER REVIEW
LA English
DT Article
ID NAVIER-STOKES EQUATIONS; LARGE-EDDY SIMULATIONS; INCOMPRESSIBLE FLOWS;
COMPLEX BOUNDARIES; COORDINATE SYSTEM; NUMERICAL-METHOD; CARTESIAN
GRIDS; DISPERSION; REPRESENTATION; FIELD
AB This paper describes an immersed boundary method that facilitates the explicit resolution of complex terrain within the Weather Research and Forecasting (WRF) model. Mesoscale models, such as WRF, are increasingly used for high-resolution simulations, particularly in complex terrain, but errors associated with terrain-following coordinates degrade the accuracy of the solution. The use of an alternative-gridding technique, known as an immersed boundary method, alleviates coordinate transformation errors and eliminates restrictions on terrain slope that currently limit mesoscale models to slowly varying terrain. Simulations are presented for canonical cases with shallow terrain slopes, and comparisons between simulations with the native terrain-following coordinates and those using the immersed boundary method show excellent agreement. Validation cases demonstrate the ability of the immersed boundary method to handle both Dirichlet and Neumann boundary conditions. Additionally, realistic surface forcing can be provided at the immersed boundary by atmospheric physics parameterizations, which are modified to include the effects of the immersed terrain. Using the immersed boundary method, the WRF model is capable of simulating highly complex terrain, as demonstrated by a simulation of flow over an urban skyline.
C1 [Lundquist, Katherine A.; Chow, Fotini Katopodes] Univ Calif Berkeley, Berkeley, CA 94720 USA.
[Lundquist, Julie K.] Lawrence Livermore Natl Lab, Livermore, CA USA.
RP Lundquist, KA (reprint author), Univ Calif Berkeley, 6189 Etcheverry Hall, Berkeley, CA 94720 USA.
EM katielundquist@berkeley.edu
OI LUNDQUIST, JULIE/0000-0001-5490-2702
FU LLNL Laboratory-Driven Research and Development program; National
Science Foundation [ATM-0645784]; Lawrence Livermore National Laboratory
[DEAC52-07NA27344]
FX Thanks are extended to Jeff Mirocha and Branko Kosovie for many useful
discussions regarding this work. The authors are grateful for the
support of a Lawrence Scholars Program Fellowship from Lawrence
Livermore National Laboratory (LLNL). This project was partially funded
by the LLNL Laboratory-Driven Research and Development program. The
support of National Science Foundation Grant ATM-0645784 [FKC] (Physical
Meteorology Program: S. Nelson, Program Director) is also gratefully
acknowledged. This work was performed under the auspices of the U.S.
Department of Energy by Lawrence Livermore National Laboratory under
Contract DEAC52-07NA27344.
NR 39
TC 29
Z9 30
U1 1
U2 20
PU AMER METEOROLOGICAL SOC
PI BOSTON
PA 45 BEACON ST, BOSTON, MA 02108-3693 USA
SN 0027-0644
J9 MON WEATHER REV
JI Mon. Weather Rev.
PD MAR
PY 2010
VL 138
IS 3
BP 796
EP 817
DI 10.1175/2009MWR2990.1
PG 22
WC Meteorology & Atmospheric Sciences
SC Meteorology & Atmospheric Sciences
GA 579BZ
UT WOS:000276342900009
ER
PT J
AU Rybanska, I
Gursky, J
Faskova, M
Salazar, EP
Kimlickova-Polakovicova, E
Kleibl, K
Thompson, LH
Pirsel, M
AF Rybanska, Ivana
Gursky, Jan
Faskova, Miriam
Salazar, Edmund P.
Kimlickova-Polakovicova, Erika
Kleibl, Karol
Thompson, Larry H.
Pirsel, Miroslav
TI Newly identified CHO ERCC3/XPB mutations and phenotype characterization
SO MUTAGENESIS
LA English
DT Article
ID NUCLEOTIDE EXCISION-REPAIR; OXIDATIVE DNA-DAMAGE; HAMSTER OVARY CELLS;
TRANSCRIPTION-COUPLED REPAIR; RNA-POLYMERASE-II; XERODERMA-PIGMENTOSUM;
COCKAYNE-SYNDROME; FUNCTIONAL HEMIZYGOSITY; SACCHAROMYCES-CEREVISIAE;
BASE DAMAGE
AB Nucleotide excision repair (NER) is a complex multistage process involving many interacting gene products to repair a wide range of DNA lesions. Genetic defects in NER cause human hereditary diseases including xeroderma pigmentosum (XP), Cockayne syndrome (CS), trichothiodystrophy and a combined XP/CS overlapping symptom. One key gene product associated with all these disorders is the excision repair cross-complementing 3/xeroderma pigmentosum B (ERCC3/XPB) DNA helicase, a subunit of the transcription factor IIH complex. ERCC3 is involved in initiation of basal transcription and global genome repair as well as in transcription-coupled repair (TCR). The hamster ERCC3 gene shows high degree of homology with the human ERCC3/XPB gene. We identified new mutations in the Chinese hamster ovary cell ERCC3 gene and characterized the role of hamster ERCC3 protein in DNA repair of ultraviolet (UV)-induced and oxidative DNA damage. All but one newly described mutations are located in the protein C-terminal region around the last intron-exon boundary. Due to protein truncations or frameshifts, they lack amino acid Ser751, phosphorylation of which prevents the 5' incision of the UV-induced lesion during NER. Thus, despite the various locations of the mutations, their phenotypes are similar. All ercc3 mutants are extremely sensitive to UV-C light and lack recovery of RNA synthesis (RRS), confirming a defect in TCR of UV-induced damage. Their limited global genome NER capacity averages similar to 8%. We detected modest sensitivity of ercc3 mutants to the photosensitizer Ro19-8022, which primarily introduces 8-oxoguanine lesions into DNA. Ro19-8022-induced damage interfered with RRS, and some of the ercc3 mutants had delayed kinetics. All ercc3 mutants showed efficient base excision repair (BER). Thus, the positions of the mutations have no effect on the sensitivity to, and repair of, Ro19-8022-induced DNA damage, suggesting that the ERCC3 protein is not involved in BER.
C1 [Rybanska, Ivana; Gursky, Jan; Faskova, Miriam; Kimlickova-Polakovicova, Erika; Kleibl, Karol; Pirsel, Miroslav] Slovak Acad Sci, Canc Res Inst, Mol Genet Lab, Bratislava 83391 37, Slovakia.
[Salazar, Edmund P.; Thompson, Larry H.] Lawrence Livermore Natl Lab, Biol & Biotechnol Div, Livermore, CA 94551 USA.
RP Pirsel, M (reprint author), Slovak Acad Sci, Canc Res Inst, Mol Genet Lab, Vlarska 7, Bratislava 83391 37, Slovakia.
EM miroslav.pirsel@savba.sk
RI Pirsel, Miroslav/A-9996-2008
FU Science and Technology Assistance Agency (Slovakia) [APVT-51-003202,
APVV-0208-07]; Slovak Scientific Grant Agency [VEGA-2/4007/24,
VEGA-2/7014/27]; US-Slovak Science and Technology Joint Fund [031/2001];
European Social Fund Project [13120200038]; US Department of Energy,
University of California; Lawrence Livermore National Laboratory
[DE-AC52-07NA27344]; National Cancer Institute/National Institutes of
Health [CA89405, CA112566]
FX Science and Technology Assistance Agency (Slovakia) (APVT-51-003202,
APVV-0208-07); Slovak Scientific Grant Agency (VEGA-2/4007/24,
VEGA-2/7014/27); US-Slovak Science and Technology Joint Fund (031/2001);
European Social Fund Project (13120200038) to E.K.P.; US Department of
Energy, University of California; Lawrence Livermore National Laboratory
(DE-AC52-07NA27344); National Cancer Institute/National Institutes of
Health (CA89405, CA112566).
NR 57
TC 4
Z9 5
U1 3
U2 5
PU OXFORD UNIV PRESS
PI OXFORD
PA GREAT CLARENDON ST, OXFORD OX2 6DP, ENGLAND
SN 0267-8357
J9 MUTAGENESIS
JI Mutagenesis
PD MAR
PY 2010
VL 25
IS 2
BP 179
EP 185
DI 10.1093/mutage/gep059
PG 7
WC Genetics & Heredity; Toxicology
SC Genetics & Heredity; Toxicology
GA 561OA
UT WOS:000274986100011
PM 19942596
ER
PT J
AU Lee, H
Ihm, J
Cohen, ML
Louie, SG
AF Lee, Hoonkyung
Ihm, Jisoon
Cohen, Marvin L.
Louie, Steven G.
TI Calcium-Decorated Graphene-Based Nanostructures for Hydrogen Storage
SO NANO LETTERS
LA English
DT Article
DE Calcium; graphene nanoribbons; hydrogen storage
ID WALLED CARBON NANOTUBES; AB-INITIO; NANORIBBONS; TI; ADSORPTION; ENERGY;
MEDIA
AB We report a first-principles study of hydrogen storage media consisting of calcium atoms and graphene-based nanostructures. We find that Ca atoms prefer to be individually adsorbed on the zigzag edge of graphene with a Ca-Ca distance of 10 angstrom without clustering of the Ca atoms, and up to six H(2) molecules can bind to a Ca atom with a binding energy of similar to 0.2 eV/H(2). A Ca-decorated zigzag graphene nanoribbon (ZGNR) can reach the gravimetric capacity of similar to 5 wt% hydrogen. We also consider various edge geometries of the graphene for Ca dispersion.
C1 [Lee, Hoonkyung; Cohen, Marvin L.; Louie, Steven G.] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
[Lee, Hoonkyung; Cohen, Marvin L.; Louie, Steven G.] Lawrence Berkeley Natl Lab, Div Sci Mat, Berkeley, CA 94720 USA.
[Ihm, Jisoon] Seoul Natl Univ, Dept Phys & Astron, Seoul 151747, South Korea.
RP Louie, SG (reprint author), Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
EM sglouie@berkeley.edu
RI Lee, Hoonkyung/C-9869-2010
FU National Science Foundation [DMR07-05941]; Office of Science; Office of
Basic Energy Sciences; Materials Sciences and Engineering Division; U.S.
Department of Energy [DE-AC0205CH11231]; Korean Government
[KRF-2006-341-C000015]
FX This research was supported by the National Science Foundation Grant
DMR07-05941 and by the Director, Office of Science, Office of Basic
Energy Sciences, Materials Sciences and Engineering Division, U.S.
Department of Energy under Contract No. DE-AC0205CH11231. Computational
resources were provided by NPACI and NERSC. J.I. was supported by the
Center for Nanotubes and Nanostructured Composites funded by the Korean
Government MOST/KOSEF, and the Korean Government MOEHRD, Basic Research
Fund No. KRF-2006-341-C000015.
NR 43
TC 182
Z9 188
U1 10
U2 95
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 1530-6984
J9 NANO LETT
JI Nano Lett.
PD MAR
PY 2010
VL 10
IS 3
BP 793
EP 798
DI 10.1021/nl902822s
PG 6
WC Chemistry, Multidisciplinary; Chemistry, Physical; Nanoscience &
Nanotechnology; Materials Science, Multidisciplinary; Physics, Applied;
Physics, Condensed Matter
SC Chemistry; Science & Technology - Other Topics; Materials Science;
Physics
GA 565GR
UT WOS:000275278200008
PM 20104855
ER
PT J
AU Jiang, Z
Lin, XM
Sprung, M
Narayanan, S
Wang, J
AF Jiang, Zhang
Lin, Xiao-Min
Sprung, Michael
Narayanan, Suresh
Wang, Jin
TI Capturing the Crystalline Phase of Two-Dimensional Nanocrystal
Superlattices in Action
SO NANO LETTERS
LA English
DT Article
DE Nanoparticles; nanocrystal superlattices; self-assembly; two-dimensional
crystals; phase transition; in situ grazing-incidence X-ray scattering
ID 2 DIMENSIONS; NANOPARTICLE SUPERLATTICES; BLOCK-COPOLYMERS; MONOLAYER
XENON; ORDER; GRAPHITE; TRANSITIONS; LATTICE
AB Critical photonic, electronic, and magnetic applications of two-dimensional nanocrystal superlattices often require nanostructures in perfect single-crystal phases with long-range order and limited defects. Here we discovered a crystalline phase with quasi-long-range positional order for two-dimensional nanocrystal superlattice domains self-assembled at the liquid-air interface during droplet evaporation, using in situ time-resolved X-ray scattering along with rigorous theories on two dimensional crystal structures. Surprisingly, it was observed that drying these superlattice domains preserved only an orientational order but not a long-range positional order, also supported by quantitative analysis of transmission electron microscopy images.
C1 [Jiang, Zhang; Sprung, Michael; Narayanan, Suresh; Wang, Jin] Argonne Natl Lab, Xray Sci Div, Argonne, IL 60439 USA.
[Lin, Xiao-Min] Argonne Natl Lab, Ctr Nanoscale Mat, Argonne, IL 60439 USA.
RP Wang, J (reprint author), Argonne Natl Lab, Xray Sci Div, 9700 S Cass Ave, Argonne, IL 60439 USA.
EM wangj@aps.anl.gov
RI Jiang, Zhang/A-3297-2012
OI Jiang, Zhang/0000-0003-3503-8909
FU U.S. Department of Energy; Office of Science; Office of Basic Energy
Sciences [DE-AC02-06CH11357]
FX We thank A. Sandy for valuable discussions and H. Gibson for technical
assistance. Use of the Advanced Photon Source and the Center for
Nanoscale Materials at Argonne National Laboratory was supported by the
U.S. Department of Energy, Office of Science, Office of Basic Energy
Sciences, under Contract No. DE-AC02-06CH11357.
NR 38
TC 33
Z9 33
U1 3
U2 45
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 1530-6984
J9 NANO LETT
JI Nano Lett.
PD MAR
PY 2010
VL 10
IS 3
BP 799
EP 803
DI 10.1021/nl9029048
PG 5
WC Chemistry, Multidisciplinary; Chemistry, Physical; Nanoscience &
Nanotechnology; Materials Science, Multidisciplinary; Physics, Applied;
Physics, Condensed Matter
SC Chemistry; Science & Technology - Other Topics; Materials Science;
Physics
GA 565GR
UT WOS:000275278200009
PM 20121062
ER
PT J
AU Kauffman, DR
Sorescu, DC
Schofield, DP
Allen, BL
Jordan, KD
Star, A
AF Kauffman, Douglas R.
Sorescu, Dan C.
Schofield, Daniel P.
Allen, Brett L.
Jordan, Kenneth D.
Star, Alexander
TI Understanding the Sensor Response of Metal-Decorated Carbon Nanotubes
SO NANO LETTERS
LA English
DT Article
DE Carbon nanotubes; gas sensors; electronic structure; metal nanopaticles;
optical properties
ID METHANOL FUEL-CELLS; ELECTRONIC-STRUCTURE; CHARGE-TRANSFER; GOLD
NANOPARTICLES; CHEMICAL SENSORS; GAS; FILMS; SIZE; MECHANISM; PLATINUM
AB We have explored the room temperature response of metal nanoparticle decorated single-walled carbon nanotubes (NPSWNTs) using a combination of electrical transport, optical spectroscopy, and electronic structure calculations. We have found that upon the electrochemical growth of Au NPs on SWNTs, there is a transfer of electron density from the SWNT to the No species, and that adsorption of CO molecules on the NP surface is accompanied by transfer of electronic density back into the SWNT. Moreover, the electronic structure calculations indicate dramatic variations in the charge density at the NP-SWNT interface, which supports our previous observation that interfacial potential barriers dominate the electrical behavior of NP-SWNT systems.
C1 [Kauffman, Douglas R.; Sorescu, Dan C.; Allen, Brett L.; Jordan, Kenneth D.; Star, Alexander] US DOE, Natl Energy Technol Lab, Pittsburgh, PA 15263 USA.
[Kauffman, Douglas R.; Schofield, Daniel P.; Allen, Brett L.; Jordan, Kenneth D.; Star, Alexander] Univ Pittsburgh, Dept Chem, Pittsburgh, PA 15260 USA.
RP Star, A (reprint author), US DOE, Natl Energy Technol Lab, Pittsburgh, PA 15263 USA.
EM astar@pitt.edu
RI Star, Alexander/C-3399-2013;
OI Kauffman, Douglas/0000-0002-7855-3428
FU National Energy Technology Laboratory (NETL) [DE-AC26-04NT41817]
FX D.R.K. acknowledges a graduate student Fellowship through the Bayer
Corporation. D.P.S. acknowledges the New Zealand Foundation for
Research, Science and Technology for a postdoctoral fellowship. This
work was performed in support of ongoing research in sensor systems and
diagnostics at the National Energy Technology Laboratory (NETL) under
RIDS contract DE-AC26-04NT41817 . We thank John Bat the NETL For access
to the XPS instrumentation, as well as Albert Stuart and the Department
of Materials Science and Engineering at the University Of Pittsburgh for
access to and assistance with the SEM, TEM, and XRD instrumentation. We
gratefully acknowledge the computational resources provided by
Pittsburgh Supercomputer Center. Disclaimers reference in this Work to
any specific commercial product is to facilitate understanding and does
not necessarily imply endorsement by the United States Department of
Energy.
NR 78
TC 104
Z9 105
U1 6
U2 57
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 1530-6984
J9 NANO LETT
JI Nano Lett.
PD MAR
PY 2010
VL 10
IS 3
BP 958
EP 963
DI 10.1021/nl903888c
PG 6
WC Chemistry, Multidisciplinary; Chemistry, Physical; Nanoscience &
Nanotechnology; Materials Science, Multidisciplinary; Physics, Applied;
Physics, Condensed Matter
SC Chemistry; Science & Technology - Other Topics; Materials Science;
Physics
GA 565GR
UT WOS:000275278200036
PM 20155969
ER
PT J
AU de Jonge, N
Bigelow, WC
Veith, GM
AF de Jonge, Niels
Bigelow, Wilbur C.
Veith, Gabriel M.
TI Atmospheric Pressure Scanning Transmission Electron Microscopy
SO NANO LETTERS
LA English
DT Article
DE In situ electron microscopy; scanning transmission electron microscopy;
gold nanoparticles; catalytic reaction; reaction cell
ID NANOPARTICLES
AB Scanning transmission electron microscope (STEM) images of gold nanoparticles at atmospheric pressure have been recorded through a 0.36 mm thick mixture of CO, O(2), and He. This was accomplished using a reaction cell consisting of two electron-transparent silicon nitride membranes, Gold nanoparticles of a full width at half-maximum diameter of 1.0 nm were visible above the background noise, and the achieved edge resolution was 0.4 nm in accordance with calculations of the beam broadening.
C1 [de Jonge, Niels] Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA.
[de Jonge, Niels; Veith, Gabriel M.] Vanderbilt Univ, Med Ctr, Dept Mol Physiol & Biophys, Nashville, TN 37232 USA.
[Bigelow, Wilbur C.] Univ Michigan, Dept Mat Sci & Engn, Ann Arbor, MI 48109 USA.
RP de Jonge, N (reprint author), Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA.
EM niels.de.jonge@vanderbilt.edu
RI de Jonge, Niels/B-5677-2008
FU U.S. Department, of Energy; Laboratory Directed Research and Development
Program of Oak Ridge National Laboratory; Vanderbilt University Medical
Center
FX We thank L. F. Allard and D. C. joy for discussions. The silicon chips
were designed in collaboration with Protochips Inc. (NC). This research
was conducted at the Center for Nanophase Materials Sciences, which is
sponsored at Oak Ridge National Laboratory by the Division of Scientific
User Facilities, U.S. Department, of Energy. Financial support by the
Laboratory Directed Research and Development Program of Oak Ridge
National Laboratory, managed by UT-Battelle, LLC, for the U.S.
Department of Energy, and by Vanderbilt University Medical Center (NJ).
NR 13
TC 34
Z9 34
U1 1
U2 34
PU AMER CHEMICAL SOC
PI WASHINGTON
PA 1155 16TH ST, NW, WASHINGTON, DC 20036 USA
SN 1530-6984
J9 NANO LETT
JI Nano Lett.
PD MAR
PY 2010
VL 10
IS 3
BP 1028
EP 1031
DI 10.1021/nl904254g
PG 4
WC Chemistry, Multidisciplinary; Chemistry, Physical; Nanoscience &
Nanotechnology; Materials Science, Multidisciplinary; Physics, Applied;
Physics, Condensed Matter
SC Chemistry; Science & Technology - Other Topics; Materials Science;
Physics
GA 565GR
UT WOS:000275278200048
PM 20146428
ER
PT J
AU Lim, B
Kobayashi, H
Camargo, PHC
Allard, LF
Liu, JY
Xia, YN
AF Lim, Byungkwon
Kobayashi, Hirokazu
Camargo, Pedro H. C.
Allard, Lawrence F.
Liu, Jingyue
Xia, Younan
TI New Insights into the Growth Mechanism and Surface Structure of
Palladium Nanocrystals
SO NANO RESEARCH
LA English
DT Article
DE Palladium; nanocrystals; growth; coalescence; surface evolution
ID SHAPE-CONTROLLED SYNTHESIS; ORIENTED-ATTACHMENT; METAL NANOCRYSTALS;
CDTE NANOPARTICLES; NANORODS; SIZE; CRYSTALLIZATION; AGGREGATION;
REDUCTION; OXYGEN
AB This paper presents a systematic study of the growth mechanism for Pd nanobars synthesized by reducing Na2PdCl4 with L-ascorbic acid in an aqueous solution in the presence of bromide ions as a capping agent. Transmission electron microscopy (TEM) and high-resolution TEM analyses revealed that the growth at early stages of the synthesis was dominated by particle coalescence, followed by shape focusing via recrystallization and further growth via atomic addition. We also investigated the detailed surface structure of the nanobars using aberration-corrected scanning TEM and found that the exposed {100} surfaces contained several types of defects such as an adatom island, a vacancy pit, and atomic steps. Upon thermal annealing, the nanobars evolved into a more thermodynamically favored shape with enhanced truncation at the corners.
C1 [Lim, Byungkwon; Kobayashi, Hirokazu; Camargo, Pedro H. C.; Xia, Younan] Washington Univ, Dept Biomed Engn, St Louis, MO 63130 USA.
[Allard, Lawrence F.] Oak Ridge Natl Lab, Mat Sci & Technol Div, Oak Ridge, TN 37831 USA.
[Liu, Jingyue] Univ Missouri, Ctr Nanosci, St Louis, MO 63121 USA.
[Liu, Jingyue] Univ Missouri, Dept Chem & Biochem, St Louis, MO 63121 USA.
RP Xia, YN (reprint author), Washington Univ, Dept Biomed Engn, St Louis, MO 63130 USA.
EM liuj@umsl.edu; xia@biomed.wustl.edu
RI Camargo, Pedro/D-9547-2011; Xia, Younan/E-8499-2011; Institute of
Chemistry - USP, Dept. of Chemistry/B-8988-2012
OI Camargo, Pedro/0000-0002-7815-7919;
FU Natural Science Foundation [DMR-0804088]; Washington University;
Fulbright Program; Brazilian Ministry of Education (CAPES); National
Science Foundation [ECS-0335765]; University of Missouri-St. Louis; U.S.
Department of Energy
FX This work was supported in part by the Natural Science Foundation (No.
DMR-0804088) and startup funds from Washington University in St. Louis.
P. H. C. C. was also partially supported by the Fulbright Program and
the Brazilian Ministry of Education (CAPES). Part of the work was
performed at the Nano Research Facility (NRF), a member of the National
Nanotechnology Infrastructure Network (NNIN), which is supported by the
National Science Foundation (No. ECS-0335765). It was also supported by
startup funds from the University of Missouri-St. Louis. The STEM images
were acquired at the Oak Ridge National Laboratory's High Temperature
Materials Laboratory sponsored by the U.S. Department of Energy, Office
of Energy Efficiency and Renewable Energy, Vehicle Technologies Program.
NR 28
TC 54
Z9 56
U1 5
U2 78
PU TSINGHUA UNIV PRESS
PI BEIJING
PA TSINGHUA UNIV, RM A703, XUEYAN BLDG, BEIJING, 10084, PEOPLES R CHINA
SN 1998-0124
J9 NANO RES
JI Nano Res.
PD MAR
PY 2010
VL 3
IS 3
BP 180
EP 188
DI 10.1007/s12274-010-1021-5
PG 9
WC Chemistry, Physical; Nanoscience & Nanotechnology; Materials Science,
Multidisciplinary; Physics, Applied
SC Chemistry; Science & Technology - Other Topics; Materials Science;
Physics
GA 571MC
UT WOS:000275754900004
ER
PT J
AU Ding, N
Kanatzidis, MG
AF Ding, Nan
Kanatzidis, Mercouri G.
TI Selective incarceration of caesium ions by Venus flytrap action of a
flexible framework sulfide
SO NATURE CHEMISTRY
LA English
DT Article
ID EXCHANGE PROPERTIES; CLUSTERS; CS+; FLEXIBILITY; PHOSPHATE; STRONTIUM;
EFFICIENT; CAPACITY; CHANNELS; REMOVAL
AB The selective capture of Cs(+) from solution is relevant to the remediation of nuclear waste and remains a significant challenge. Here we describe a new framework composed of [(CH(3))(2)NH(2)](+) and [Ga(2)Sb(2)S(7)](2-) layers, which are perforated with holes. Shape selectivity couples with framework flexibility, allowing the compound to respond to the ion-exchange process. The size, shape and flexibility of the holes allows Cs(+) ions in an aqueous solution to selectively pass through and enter the material via an ion-exchange process. Following capture, the structure dynamically closes its holes in a manner reminiscent of a Venus flytrap, which prevents the Cs(+) ions from leaching out. This process has useful implications in the separation science of Cs as it relates to the clean-up of nuclear waste. The dynamic response we describe here provides important insights for designing new materials for the selective removal of difficult-to-capture ions.
C1 [Ding, Nan; Kanatzidis, Mercouri G.] Northwestern Univ, Dept Chem, Evanston, IL 60208 USA.
[Kanatzidis, Mercouri G.] Argonne Natl Lab, Div Mat Sci, Argonne, IL 60439 USA.
RP Kanatzidis, MG (reprint author), Northwestern Univ, Dept Chem, 2145 Sheridan Rd, Evanston, IL 60208 USA.
EM m-kanatzidis@northwestern.edu
FU National Science Foundation [DMR-0801855]
FX This research was supported by National Science Foundation
(DMR-0801855). This work made use of the ICP-OES (supported by National
Science Foundation) at the Integrated Molecular Structure Education and
Research Center (IMSERC) at Northwestern University.
NR 25
TC 94
Z9 94
U1 13
U2 54
PU NATURE PUBLISHING GROUP
PI LONDON
PA MACMILLAN BUILDING, 4 CRINAN ST, LONDON N1 9XW, ENGLAND
SN 1755-4330
J9 NAT CHEM
JI Nat. Chem.
PD MAR
PY 2010
VL 2
IS 3
BP 187
EP 191
DI 10.1038/NCHEM.519
PG 5
WC Chemistry, Multidisciplinary
SC Chemistry
GA 557DJ
UT WOS:000274648800013
PM 21124475
ER
PT J
AU Barouch, DH
O'Brien, KL
Simmons, NL
King, SL
Abbink, P
Maxfield, LF
Sun, YH
La Porte, A
Riggs, AM
Lynch, DM
Clark, SL
Backus, K
Perry, JR
Seaman, MS
Carville, A
Mansfield, KG
Szinger, JJ
Fischer, W
Muldoon, M
Korber, B
AF Barouch, Dan H.
O'Brien, Kara L.
Simmons, Nathaniel L.
King, Sharon L.
Abbink, Peter
Maxfield, Lori F.
Sun, Ying-Hua
La Porte, Annalena
Riggs, Ambryice M.
Lynch, Diana M.
Clark, Sarah L.
Backus, Katherine
Perry, James R.
Seaman, Michael S.
Carville, Angela
Mansfield, Keith G.
Szinger, James J.
Fischer, Will
Muldoon, Mark
Korber, Bette
TI Mosaic HIV-1 vaccines expand the breadth and depth of cellular immune
responses in rhesus monkeys
SO NATURE MEDICINE
LA English
DT Article
ID HUMAN-IMMUNODEFICIENCY-VIRUS; IMMUNOGENICITY; REPLICATION; VARIANTS;
VECTORS; STEP
AB The worldwide diversity of HIV-1 presents an unprecedented challenge for vaccine development(1,2). Antigens derived from natural HIV-1 sequences have elicited only a limited breadth of cellular immune responses in nonhuman primate studies and clinical trials to date. Polyvalent 'mosaic' antigens, in contrast, are designed to optimize cellular immunologic coverage of global HIV-1 sequence diversity(3). Here we show that mosaic HIV-1 Gag, Pol and Env antigens expressed by recombinant, replication-incompetent adenovirus serotype 26 vectors markedly augmented both the breadth and depth without compromising the magnitude of antigen-specific T lymphocyte responses as compared with consensus or natural sequence HIV-1 antigens in rhesus monkeys. Polyvalent mosaic antigens therefore represent a promising strategy to expand cellular immunologic vaccine coverage for genetically diverse pathogens such as HIV-1.
C1 [Barouch, Dan H.; O'Brien, Kara L.; Simmons, Nathaniel L.; King, Sharon L.; Abbink, Peter; Maxfield, Lori F.; Sun, Ying-Hua; La Porte, Annalena; Riggs, Ambryice M.; Lynch, Diana M.; Clark, Sarah L.; Backus, Katherine; Perry, James R.; Seaman, Michael S.] Beth Israel Deaconess Med Ctr, Div Vaccine Res, Boston, MA 02215 USA.
[Barouch, Dan H.] Massachusetts Gen Hosp, Ragon Inst, MIT, Boston, MA 02114 USA.
[Barouch, Dan H.] Harvard Univ, Boston, MA 02115 USA.
[Carville, Angela; Mansfield, Keith G.] New England Reg Primate Res Ctr, Southborough, MA 01772 USA.
[Szinger, James J.; Fischer, Will; Korber, Bette] Los Alamos Natl Lab, Los Alamos, NM USA.
[Muldoon, Mark] Univ Manchester, Sch Math, Manchester, Lancs, England.
[Muldoon, Mark; Korber, Bette] Santa Fe Inst, Santa Fe, NM 87501 USA.
RP Barouch, DH (reprint author), Beth Israel Deaconess Med Ctr, Div Vaccine Res, Boston, MA 02215 USA.
EM dbarouch@bidmc.harvard.edu
RI Muldoon, Mark/C-7505-2009; Fischer, Will/B-1323-2013;
OI Fischer, Will/0000-0003-4579-4062; Muldoon, Mark/0000-0002-5004-7195;
Korber, Bette/0000-0002-2026-5757
FU US National Institutes of Health (NIH) AIDS Research and Reference
Reagent Program; NIH [AI058727, AI066305, AI066924, AI078526, AI084794,
RR000168, AI067854, AI061734]; Los Alamos National Laboratory
FX We thank B. Haynes, N. Letvin, P. Swanson, F. Stephens, B. Hahn, J.
McElrath, J. Goudsmit, M. Pau, N. Michael, M. Marovich and M. Pensiero
for generous advice and assistance. We obtained peptides from the US
National Institutes of Health (NIH) AIDS Research and Reference Reagent
Program. We acknowledge support from NIH grants AI058727 (D. H. B.),
AI066305 (D. H. B.), AI066924 (D. H. B.), AI078526 (D. H. B.), AI084794
(D. H. B.), RR000168, AI067854 (B. K.), AI061734 (B. K.) and directed
research funding from Los Alamos National Laboratory (B. K.).
NR 20
TC 180
Z9 185
U1 1
U2 7
PU NATURE PUBLISHING GROUP
PI NEW YORK
PA 75 VARICK ST, 9TH FLR, NEW YORK, NY 10013-1917 USA
SN 1078-8956
J9 NAT MED
JI Nat. Med.
PD MAR
PY 2010
VL 16
IS 3
BP 319
EP U116
DI 10.1038/nm.2089
PG 6
WC Biochemistry & Molecular Biology; Cell Biology; Medicine, Research &
Experimental
SC Biochemistry & Molecular Biology; Cell Biology; Research & Experimental
Medicine
GA 565KA
UT WOS:000275289500038
PM 20173752
ER
PT J
AU Santra, S
Liao, HX
Zhang, RJ
Muldoon, M
Watson, S
Fischer, W
Theiler, J
Szinger, J
Balachandran, H
Buzby, A
Quinn, D
Parks, RJ
Tsao, CY
Carville, A
Mansfield, KG
Pavlakis, GN
Felber, BK
Haynes, BF
Korber, BT
Letvin, NL
AF Santra, Sampa
Liao, Hua-Xin
Zhang, Ruijin
Muldoon, Mark
Watson, Sydeaka
Fischer, Will
Theiler, James
Szinger, James
Balachandran, Harikrishnan
Buzby, Adam
Quinn, David
Parks, Robert J.
Tsao, Chun-Yen
Carville, Angela
Mansfield, Keith G.
Pavlakis, George N.
Felber, Barbara K.
Haynes, Barton F.
Korber, Bette T.
Letvin, Norman L.
TI Mosaic vaccines elicit CD8(+) T lymphocyte responses that confer
enhanced immune coverage of diverse HIV strains in monkeys
SO NATURE MEDICINE
LA English
DT Article
ID HUMAN-IMMUNODEFICIENCY-VIRUS; CELL RESPONSES; RHESUS-MONKEYS; AIDS
AB An effective HIV vaccine must elicit immune responses that recognize genetically diverse viruses(1,2). It must generate CD8(+) T lymphocytes that control HIV replication and CD4(+) T lymphocytes that provide help for the generation and maintenance of both cellular and humoral immune responses against the virus(3-5). Creating immunogens that can elicit cellular immune responses against the genetically varied circulating isolates of HIV presents a key challenge for creating an HIV vaccine(6,7). Polyvalent mosaic immunogens derived by in silico recombination of natural strains of HIV are designed to induce cellular immune responses that recognize genetically diverse circulating virus isolates(8). Here we immunized rhesus monkeys by plasmid DNA prime and recombinant vaccinia virus boost with vaccine constructs expressing either consensus or polyvalent mosaic proteins. As compared to consensus immunogens, the mosaic immunogens elicited CD8(+) T lymphocyte responses to more epitopes of each viral protein than did the consensus immunogens and to more variant sequences of CD8(+) T lymphocyte epitopes. This increased breadth and depth of epitope recognition may contribute both to protection against infection by genetically diverse viruses and to the control of variant viruses that emerge as they mutate away from recognition by cytotoxic T lymphocytes.
C1 [Santra, Sampa; Balachandran, Harikrishnan; Buzby, Adam; Quinn, David; Letvin, Norman L.] Harvard Univ, Sch Med, Beth Israel Deaconess Med Ctr, Boston, MA 02115 USA.
[Liao, Hua-Xin; Zhang, Ruijin; Parks, Robert J.; Tsao, Chun-Yen; Haynes, Barton F.] Duke Univ, Med Ctr, Durham, NC USA.
[Muldoon, Mark] Univ Manchester, Sch Math, Manchester, Lancs, England.
[Watson, Sydeaka; Fischer, Will; Theiler, James; Szinger, James; Korber, Bette T.] Los Alamos Natl Lab, Los Alamos, NM USA.
[Watson, Sydeaka] Baylor Univ, Dept Stat Sci, Waco, TX 76798 USA.
[Carville, Angela; Mansfield, Keith G.] New England Reg Primate Res Ctr, Southborough, MA 01772 USA.
[Pavlakis, George N.; Felber, Barbara K.] NCI, NIH, Frederick, MD 21701 USA.
[Korber, Bette T.] Santa Fe Inst, Santa Fe, NM 87501 USA.
RP Letvin, NL (reprint author), Harvard Univ, Sch Med, Beth Israel Deaconess Med Ctr, Boston, MA 02115 USA.
EM nletvin@bidmc.harvard.edu
RI Muldoon, Mark/C-7505-2009; Fischer, Will/B-1323-2013;
OI Fischer, Will/0000-0003-4579-4062; Korber, Bette/0000-0002-2026-5757
FU US National Institutes of Health [AI-0678501]; HIV Research and Design
(HIVRAD) [P01 AI-61734]; National Institute of Allergy and Infectious
Diseases [N01 AI-50010]; Los Alamos National Laboratory
FX We thank G. Tomaras for generous advice and assistance with reagents and
antibody data. We also thank C. Lord for assistance with reagents. This
work was supported by US National Institutes of Health grant AI-0678501
(Center for HIV AIDS Vaccine Immunology), HIV Research and Design
(HIVRAD) P01 AI-61734, National Institute of Allergy and Infectious
Diseases contract N01 AI-50010 and a Los Alamos National
Laboratory-directed research grant to B. T. K., W. F. and S. W.
NR 18
TC 124
Z9 125
U1 1
U2 6
PU NATURE PUBLISHING GROUP
PI NEW YORK
PA 75 VARICK ST, 9TH FLR, NEW YORK, NY 10013-1917 USA
SN 1078-8956
J9 NAT MED
JI Nat. Med.
PD MAR
PY 2010
VL 16
IS 3
BP 324
EP U122
DI 10.1038/nm.2108
PG 6
WC Biochemistry & Molecular Biology; Cell Biology; Medicine, Research &
Experimental
SC Biochemistry & Molecular Biology; Cell Biology; Research & Experimental
Medicine
GA 565KA
UT WOS:000275289500039
PM 20173754
ER
PT J
AU Nielsen, CB
Cantor, M
Dubchak, I
Gordon, D
Wang, T
AF Nielsen, Cydney B.
Cantor, Michael
Dubchak, Inna
Gordon, David
Wang, Ting
TI Visualizing genomes: techniques and challenges
SO NATURE METHODS
LA English
DT Review
ID DNA-SEQUENCE ALIGNMENTS; DESK-TOP COMPUTER; COMPUTATIONAL TOOLS; MOUSE
GENOME; BROWSER; SOFTWARE; VISTA; UCSC; VERTEBRATE; ELEMENTS
AB As our ability to generate sequencing data continues to increase, data analysis is replacing data generation as the rate-limiting step in genomics studies. Here we provide a guide to genomic data visualization tools that facilitate analysis tasks by enabling researchers to explore, interpret and manipulate their data, and in some cases perform on-the-fly computations. We will discuss graphical methods designed for the analysis of de novo sequencing assemblies and read alignments, genome browsing, and comparative genomics, highlighting the strengths and limitations of these approaches and the challenges ahead.
C1 [Nielsen, Cydney B.] British Columbia Canc Agcy, Genome Sci Ctr, Vancouver, BC V5Z 4E6, Canada.
[Cantor, Michael; Dubchak, Inna] Joint Genome Inst, Dept Energy, Walnut Creek, CA USA.
[Dubchak, Inna] Univ Calif Berkeley, Lawrence Berkeley Lab, Genom Div, Berkeley, CA 94720 USA.
[Gordon, David] Univ Washington, Dept Genome Sci, Seattle, WA 98195 USA.
[Wang, Ting] Washington Univ, Sch Med, Dept Genet, Ctr Genome Sci, St Louis, MO 63110 USA.
RP Nielsen, CB (reprint author), British Columbia Canc Agcy, Genome Sci Ctr, Vancouver, BC V5Z 4E6, Canada.
EM cydneyn@bcgsc.ca
RI Tang, Macy/B-9798-2014
FU National Cancer Institute, National Institutes of Health (NIH)
[N01-C0-12400]; US Department of Energy's Office of Science, Biological
and Environmental Research Program; University of California, Lawrence
Livermore National Laboratory [DE-AC52-07NA27344]; Lawrence Berkeley
National Laboratory [DE-AC02-05CH11231]; Los Alamos National Laboratory
[DE-AC02-06NA25396]; Howard Hughes Medical Institute; Helen Hay Whitney
Foundation; NIH [R01 HL094976, 1RC2HL10296-01]
FX Thanks to Y. Butterfield, S. Diguistini, P. Gorniak, M. Krzywinski, N.
Liao, G. Robertson and G. Taylor for helpful discussions and comments.
C. B. N. was funded with US federal funds from the National Cancer
Institute, National Institutes of Health (NIH), under contract no.
N01-C0-12400. The contributions of M. C. and I. D. were performed under
the auspices of the US Department of Energy's Office of Science,
Biological and Environmental Research Program, and by the University of
California, Lawrence Livermore National Laboratory under contract no.
DE-AC52-07NA27344, Lawrence Berkeley National Laboratory under contract
no. DE-AC02-05CH11231, and Los Alamos National Laboratory under contract
no. DE-AC02-06NA25396. D. G. was supported by NIH grants R01 HL094976
and 1RC2HL10296-01 and by the Howard Hughes Medical Institute. T. W. was
supported by funds from the Helen Hay Whitney Foundation.
NR 88
TC 67
Z9 68
U1 2
U2 42
PU NATURE PUBLISHING GROUP
PI LONDON
PA MACMILLAN BUILDING, 4 CRINAN ST, LONDON N1 9XW, ENGLAND
SN 1548-7091
EI 1548-7105
J9 NAT METHODS
JI Nat. Methods
PD MAR
PY 2010
VL 7
IS 3
SU S
BP S5
EP S15
DI 10.1038/NMETH.1422
PG 11
WC Biochemical Research Methods
SC Biochemistry & Molecular Biology
GA 700LS
UT WOS:000285743700003
PM 20195257
ER
PT J
AU Lu, Y
Huang, JY
Wang, C
Sun, SH
Lou, J
AF Lu, Yang
Huang, Jian Yu
Wang, Chao
Sun, Shouheng
Lou, Jun
TI Cold welding of ultrathin gold nanowires
SO NATURE NANOTECHNOLOGY
LA English
DT Article
ID TRANSMISSION ELECTRON-MICROSCOPY; CARBON NANOTUBES; INTEGRATED
NANOSYSTEMS; MECHANICAL-PROPERTIES; NANOSCALE SOLDER; NANOPARTICLES;
FABRICATION; TRANSPORT; DEPOSITION; DIFFUSION
AB The welding of metals at the nanoscale is likely to have an important role in the bottom-up fabrication of electrical and mechanical nanodevices. Existing welding techniques use local heating, requiring precise control of the heating mechanism and introducing the possibility of damage. The welding of metals without heating (or cold welding) has been demonstrated, but only at macroscopic length scales and under large applied pressures. Here, we demonstrate that singlecrystalline gold nanowires with diameters between 3 and 10 nm can be cold-welded together within seconds by mechanical contact alone, and under relatively low applied pressures. High-resolution transmission electron microscopy and in situ measurements reveal that the welds are nearly perfect, with the same crystal orientation, strength and electrical conductivity as the rest of the nanowire. The high quality of the welds is attributed to the nanoscale sample dimensions, oriented-attachment mechanisms and mechanically assisted fast surface-atom diffusion. Welds are also demonstrated between gold and silver, and silver and silver, indicating that the technique may be generally applicable.
C1 [Lu, Yang; Lou, Jun] Rice Univ, Dept Mech Engn & Mat Sci, Houston, TX 77005 USA.
[Huang, Jian Yu] Sandia Natl Labs, CINT, Albuquerque, NM 87185 USA.
[Wang, Chao; Sun, Shouheng] Brown Univ, Dept Chem, Providence, RI 02912 USA.
[Wang, Chao; Sun, Shouheng] Brown Univ, Div Engn, Providence, RI 02912 USA.
RP Lu, Y (reprint author), Rice Univ, Dept Mech Engn & Mat Sci, Houston, TX 77005 USA.
EM jlou@rice.edu
RI Lu, Yang/D-4972-2011; Huang, Jianyu/C-5183-2008; Wang, Chao/F-4558-2012;
黃, 一峻/I-2495-2012
OI Lu, Yang/0000-0002-9280-2718; Wang, Chao/0000-0001-7398-2090;
FU Air Force Office of Sponsored Research (AFOSR); National Science
Foundation (NSF) [ECCS-0702766]; US Department of Energy
[DE-AC04-94AL85000]
FX Y. L. and J. L. acknowledge the financial support provided by the Air
Force Office of Sponsored Research (AFOSR) YIP award FA9550-09-1-0084
and by National Science Foundation (NSF) grant ECCS-0702766. This work
was performed, in part, at the Center for Integrated Nanotechnologies, a
US Department of Energy, Office of Basic Energy Sciences user facility.
Sandia National Laboratories is a multiprogram laboratory operated by
Sandia Corporation, a Lockheed-Martin Company, for the US Department of
Energy under contract no. DE-AC04-94AL85000.
NR 38
TC 186
Z9 188
U1 28
U2 269
PU NATURE PUBLISHING GROUP
PI LONDON
PA MACMILLAN BUILDING, 4 CRINAN ST, LONDON N1 9XW, ENGLAND
SN 1748-3387
J9 NAT NANOTECHNOL
JI Nat. Nanotechnol.
PD MAR
PY 2010
VL 5
IS 3
BP 218
EP 224
DI 10.1038/NNANO.2010.4
PG 7
WC Nanoscience & Nanotechnology; Materials Science, Multidisciplinary
SC Science & Technology - Other Topics; Materials Science
GA 574IH
UT WOS:000275982100018
PM 20154688
ER
PT J
AU Moghaddam, S
Pengwang, E
Jiang, YB
Garcia, AR
Burnett, DJ
Brinker, CJ
Masel, RI
Shannon, MA
AF Moghaddam, Saeed
Pengwang, Eakkachai
Jiang, Ying-Bing
Garcia, Armando R.
Burnett, Daniel J.
Brinker, C. Jeffrey
Masel, Richard I.
Shannon, Mark A.
TI An inorganic-organic proton exchange membrane for fuel cells with a
controlled nanoscale pore structure
SO NATURE NANOTECHNOLOGY
LA English
DT Article
ID SELF-ASSEMBLED MONOLAYERS; POROUS SILICON; WATER-VAPOR; SURFACES;
MICROSTRUCTURE; HYDROGEN; OCTADECYLTRICHLOROSILANE; CONDUCTIVITY;
DEPOSITION; PRECURSOR
AB Proton exchange membrane fuel cells have the potential for applications in energy conversion and energy storage, but their development has been impeded by problems with the membrane electrode assembly. Here, we demonstrate that a silicon-based inorganic-organic membrane offers a number of advantages over Nafion-the membrane widely used as a proton exchange membrane in hydrogen fuel cells-including higher proton conductivity, a lack of volumetric size change, and membrane electrode assembly construction capabilities. Key to achieving these advantages is fabricating a silicon membrane with pores with diameters of similar to 5-7 nm, adding a self-assembled molecular monolayer on the pore surface, and then capping the pores with a layer of porous silica. The silica layer reduces the diameter of the pores and ensures their hydration, resulting in a proton conductivity that is two to three orders of magnitude higher than that of Nafion at low humidity. A membrane electrode assembly constructed with this proton exchange membrane delivered an order of magnitude higher power density than that achieved previously with a dry hydrogen feed and an air-breathing cathode.
C1 [Moghaddam, Saeed; Masel, Richard I.; Shannon, Mark A.] Univ Illinois, Dept Chem & Biomol Engn, Urbana, IL 61801 USA.
[Moghaddam, Saeed; Pengwang, Eakkachai; Shannon, Mark A.] Univ Illinois, Dept Engn Sci & Mech, Urbana, IL 61801 USA.
[Jiang, Ying-Bing; Brinker, C. Jeffrey] Sandia Natl Labs, Albuquerque, NM 87185 USA.
[Garcia, Armando R.; Burnett, Daniel J.] Surface Measurement Syst Ltd, Allentown, PA 18103 USA.
[Brinker, C. Jeffrey] Univ New Mexico, Dept Chem & Nucl Engn, Albuquerque, NM 87131 USA.
RP Moghaddam, S (reprint author), Univ Illinois, Dept Chem & Biomol Engn, Urbana, IL 61801 USA.
EM saeedmog@illinois.edu; mshannon@illinois.edu
RI Masel, Richard/E-1957-2011
OI Masel, Richard/0000-0002-7392-6299
FU Defense Advanced Research Projects Agency (DARPA); US Department of
Energy, Office of Basic Energy Sciences [DE-FG02-02-ER15368,
DE-FG02-07ER46453, DE-FG02-07ER46471]; Division of Catalysis and
Division of Materials Sciences and Engineering; Sandia National
Laboratories LDRD
FX Financial support for the UIUC team was provided by the Defense Advanced
Research Projects Agency (DARPA). C. J. B. was supported through the US
Department of Energy, Office of Basic Energy Sciences (grant
DE-FG02-02-ER15368) and, Division of Catalysis and Division of Materials
Sciences and Engineering. Y. B. J. was supported through the Sandia
National Laboratories LDRD program. This work was carried out in part in
the Frederick Seitz Materials Research Laboratory Central Facilities,
University of Illinois, which are partially supported by the US
Department of Energy under grant nos DE-FG02-07ER46453 and
DE-FG02-07ER46471. The authors would like to thank T. Spila, R. Haasch
and V. V. Mainz for their assistance with the ToF-SIMS, XPS and NMR
analysis, and G. Mensing for reviewing the paper. The help of R. Morgan
and J. Jihyung in preparing catalysts is also appreciated.
NR 30
TC 82
Z9 84
U1 6
U2 83
PU NATURE PUBLISHING GROUP
PI LONDON
PA MACMILLAN BUILDING, 4 CRINAN ST, LONDON N1 9XW, ENGLAND
SN 1748-3387
J9 NAT NANOTECHNOL
JI Nat. Nanotechnol.
PD MAR
PY 2010
VL 5
IS 3
BP 230
EP 236
DI 10.1038/NNANO.2010.13
PG 7
WC Nanoscience & Nanotechnology; Materials Science, Multidisciplinary
SC Science & Technology - Other Topics; Materials Science
GA 574IH
UT WOS:000275982100020
PM 20173756
ER
PT J
AU Peshkin, M
Vaidman, L
AF Peshkin, Murray
Vaidman, Lev
TI QUANTUM MECHANICS Intellectually delicious
SO NATURE PHYSICS
LA English
DT News Item
C1 [Peshkin, Murray] Argonne Natl Lab, Div Phys, Argonne, IL 60439 USA.
[Vaidman, Lev] Tel Aviv Univ, Raymond & Beverly Sackler Sch Phys & Astron, IL-69978 Tel Aviv, Israel.
RP Peshkin, M (reprint author), Argonne Natl Lab, Div Phys, Argonne, IL 60439 USA.
EM peshkin@anl.gov; vaidman@post.tau.ac.il
RI Peshkin, Michael/B-7604-2009
NR 0
TC 0
Z9 0
U1 0
U2 2
PU NATURE PUBLISHING GROUP
PI LONDON
PA MACMILLAN BUILDING, 4 CRINAN ST, LONDON N1 9XW, ENGLAND
SN 1745-2473
J9 NAT PHYS
JI Nat. Phys.
PD MAR
PY 2010
VL 6
IS 3
BP 160
EP 161
DI 10.1038/nphys1602
PG 3
WC Physics, Multidisciplinary
SC Physics
GA 562BN
UT WOS:000275024000007
ER
PT J
AU Lumsden, MD
Christianson, AD
Goremychkin, EA
Nagler, SE
Mook, HA
Stone, MB
Abernathy, DL
Guidi, T
MacDougall, GJ
de la Cruz, C
Sefat, AS
McGuire, MA
Sales, BC
Mandrus, D
AF Lumsden, M. D.
Christianson, A. D.
Goremychkin, E. A.
Nagler, S. E.
Mook, H. A.
Stone, M. B.
Abernathy, D. L.
Guidi, T.
MacDougall, G. J.
de la Cruz, C.
Sefat, A. S.
McGuire, M. A.
Sales, B. C.
Mandrus, D.
TI Evolution of spin excitations into the superconducting state in
FeTe1-xSex
SO NATURE PHYSICS
LA English
DT Article
ID INCOMMENSURATE MAGNETIC FLUCTUATIONS; TEMPERATURE SUPERCONDUCTOR;
LA2-XSRXCUO4; YBA2CU3O6.6
AB The origin of the superconducting state in the recently discovered Fe-based materials(1-3) is the subject of intense scrutiny. Neutron scattering(4-7) and NMR (ref. 8) measurements have already demonstrated a strong correlation between magnetism and superconductivity. A central unanswered question concerns the nature of the normal-state spin fluctuations that may be responsible for the pairing. Here we present inelastic neutron scattering measurements from large single crystals of superconducting and non-superconducting Fe1+yTe1-xSex. These measurements indicate a spin fluctuation spectrum dominated by two-dimensional incommensurate excitations extending to energies greater than 250meV. Most importantly, the spin excitations in Fe1+yTe1-xSex have four-fold symmetry about the (1, 0) wavevector (square-lattice (pi,pi) point). Moreover, the excitations are described by the identical wavevector and can be characterized by the same model as the normal-state spin excitations in the high-T-C cuprates(9-11). These results demonstrate commonality between the magnetism in these classes of materials, which perhaps extends to a common origin for superconductivity.
C1 [Lumsden, M. D.; Christianson, A. D.; Nagler, S. E.; Mook, H. A.; Stone, M. B.; Abernathy, D. L.; MacDougall, G. J.; Sefat, A. S.; McGuire, M. A.; Sales, B. C.; Mandrus, D.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
[Goremychkin, E. A.] Argonne Natl Lab, Argonne, IL 60439 USA.
[Goremychkin, E. A.; Guidi, T.] Rutherford Appleton Lab, ISIS Facil, Didcot OX11 0QX, Oxon, England.
[de la Cruz, C.] Univ Tennessee, Knoxville, TN 37996 USA.
RP Lumsden, MD (reprint author), Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
EM lumsdenmd@ornl.gov; postfab@googlemail.com
RI McGuire, Michael/B-5453-2009; Nagler, Stephen/B-9403-2010; Nagler,
Stephen/E-4908-2010; Stone, Matthew/G-3275-2011; Abernathy,
Douglas/A-3038-2012; dela Cruz, Clarina/C-2747-2013; Mandrus,
David/H-3090-2014; christianson, andrew/A-3277-2016; BL18,
ARCS/A-3000-2012; Sefat, Athena/R-5457-2016; Lumsden, Mark/F-5366-2012
OI MacDougall, Gregory/0000-0002-7490-9650; McGuire,
Michael/0000-0003-1762-9406; Nagler, Stephen/0000-0002-7234-2339; Stone,
Matthew/0000-0001-7884-9715; Abernathy, Douglas/0000-0002-3533-003X;
dela Cruz, Clarina/0000-0003-4233-2145; christianson,
andrew/0000-0003-3369-5884; Sefat, Athena/0000-0002-5596-3504; Lumsden,
Mark/0000-0002-5472-9660
FU Scientific User Facilities Division; Division of Materials Sciences and
Engineering, Office of Basic Energy Sciences, US Department of Energy
FX We acknowledge discussions with D. Singh and T. Maier. This work was
supported by the Scientific User Facilities Division and the Division of
Materials Sciences and Engineering, Office of Basic Energy Sciences, US
Department of Energy.
NR 30
TC 123
Z9 123
U1 7
U2 53
PU NATURE PUBLISHING GROUP
PI LONDON
PA MACMILLAN BUILDING, 4 CRINAN ST, LONDON N1 9XW, ENGLAND
SN 1745-2473
J9 NAT PHYS
JI Nat. Phys.
PD MAR
PY 2010
VL 6
IS 3
BP 182
EP 186
DI 10.1038/NPHYS1512
PG 5
WC Physics, Multidisciplinary
SC Physics
GA 562BN
UT WOS:000275024000017
ER
PT J
AU Shvyd'ko, YV
Stoupin, S
Cunsolo, A
Said, AH
Huang, XR
AF Shvyd'ko, Yuri V.
Stoupin, Stanislav
Cunsolo, Alessandro
Said, Ayman H.
Huang, Xianrong
TI High-reflectivity high-resolution X-ray crystal optics with diamonds
SO NATURE PHYSICS
LA English
DT Article
ID MONOCHROMATOR
AB Owing to the depth to which hard X-rays penetrate into most materials, it is commonly accepted that the only way to realize hard-X-ray mirrors with near 100% reflectance is under conditions of total external reflection at grazing incidence to a surface. At angles away from grazing incidence, substantial reflectance of hard X-rays occurs only as a result of constructive interference of the waves scattered from periodically ordered atomic planes in crystals (Bragg diffraction). Theory predicts that even at normal incidence the reflection of X-rays from diamond under the Bragg condition should approach 100%-substantially higher than from any other crystal. Here we demonstrate that commercially produced synthetic diamond crystals do indeed show an unprecedented reflecting power at normal incidence and millielectronvolt-narrow reflection bandwidths for hard X-rays. Bragg diffraction measurements of reflectivity and the energy bandwidth show remarkable agreement with theory. Such properties are valuable to the development of hard-X-ray optics, and could greatly assist the realization of fully coherent X-ray sources, such as X-ray free-electron laser oscillators(1-3).
C1 [Shvyd'ko, Yuri V.; Stoupin, Stanislav; Cunsolo, Alessandro; Said, Ayman H.] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
[Cunsolo, Alessandro; Huang, Xianrong] Brookhaven Natl Lab, NSLS 2, Upton, NY 11973 USA.
RP Shvyd'ko, YV (reprint author), Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
EM shvydko@aps.anl.gov
RI Cunsolo, Alessandro/C-7617-2013
FU US Department of Energy, Office of Science, Office of Basic Energy
Sciences [DE-AC02-06CH11357]; NSLS [DE-AC-02-98CH10886]
FX The studies were carried out in the framework of the LDRD on XFELOs at
Argonne National Laboratory. We are grateful to K.-J. Kim for the
stimulated interest and discussions. We are indebted to R. Winarski and
T. Graber for the loan of the diamond crystals. T. Toellner and D. Shu
are acknowledged for the development of the high-resolution X-ray
monochromator crucial for the presented studies. We acknowledge support
of N. Zhang and M. Dudley in white-beam topography studies. Work was
supported by the US Department of Energy, Office of Science, Office of
Basic Energy Sciences, under Contract No. DE-AC02-06CH11357. NSLS was
supported under Contract No. DE-AC-02-98CH10886.
NR 19
TC 57
Z9 57
U1 0
U2 9
PU NATURE PUBLISHING GROUP
PI LONDON
PA MACMILLAN BUILDING, 4 CRINAN ST, LONDON N1 9XW, ENGLAND
SN 1745-2473
J9 NAT PHYS
JI Nat. Phys.
PD MAR
PY 2010
VL 6
IS 3
BP 196
EP 199
DI 10.1038/NPHYS1506
PG 4
WC Physics, Multidisciplinary
SC Physics
GA 562BN
UT WOS:000275024000020
ER
PT J
AU Chao, LH
Pellicena, P
Deindl, S
Barclay, LA
Schulman, H
Kuriyan, J
AF Chao, Luke H.
Pellicena, Patricia
Deindl, Sebastian
Barclay, Lauren A.
Schulman, Howard
Kuriyan, John
TI Intersubunit capture of regulatory segments is a component of
cooperative CaMKII activation
SO NATURE STRUCTURAL & MOLECULAR BIOLOGY
LA English
DT Article
ID PROTEIN-KINASE-II; CRYSTAL-STRUCTURE; INHIBITOR PROTEIN; CATALYTIC
SUBUNIT; CALMODULIN; AUTOPHOSPHORYLATION; ALPHA; CALCIUM; MECHANISM;
SOFTWARE
AB The dodecameric holoenzyme of calcium-calmodulin-dependent protein kinase II (CaMKII) responds to high-frequency Ca(2+) pulses to become Ca(2+) independent. A simple coincidence-detector model for Ca(2+)-frequency dependency assumes noncooperative activation of kinase domains. We show that activation of CaMKII by Ca(2+)-calmodulin is cooperative, with a Hill coefficient of similar to 3.0, implying sequential kinase-domain activation beyond dimeric units. We present data for a model in which cooperative activation includes the intersubunit 'capture' of regulatory segments. Such a capture interaction is seen in a crystal structure that shows extensive contacts between the regulatory segment of one kinase and the catalytic domain of another. These interactions are mimicked by a natural inhibitor of CaMKII. Our results show that a simple coincidence-detection model cannot be operative and point to the importance of kinetic dissection of the frequency-response mechanism in future experiments.
C1 [Chao, Luke H.; Pellicena, Patricia; Deindl, Sebastian; Barclay, Lauren A.; Kuriyan, John] Univ Calif Berkeley, Dept Mol & Cell Biol, Berkeley, CA 94720 USA.
[Chao, Luke H.; Pellicena, Patricia; Deindl, Sebastian; Barclay, Lauren A.; Kuriyan, John] Univ Calif Berkeley, Dept Chem, Berkeley, CA 94720 USA.
[Chao, Luke H.; Pellicena, Patricia; Deindl, Sebastian; Barclay, Lauren A.; Kuriyan, John] Univ Calif Berkeley, Calif Inst Quantitat Biosci QB 3, Berkeley, CA 94720 USA.
[Chao, Luke H.; Pellicena, Patricia; Deindl, Sebastian; Barclay, Lauren A.; Kuriyan, John] Univ Calif Berkeley, Howard Hughes Med Inst, Berkeley, CA 94720 USA.
[Schulman, Howard] Allosteros Therapeut, Palo Alto, CA USA.
[Kuriyan, John] Lawrence Berkeley Natl Lab, Phys Biosci Div, Berkeley, CA USA.
RP Kuriyan, J (reprint author), Univ Calif Berkeley, Dept Mol & Cell Biol, 229 Stanley Hall, Berkeley, CA 94720 USA.
EM kuriyan@berkeley.edu
OI Chao, Luke/0000-0002-4849-4148; Deindl, Sebastian/0000-0001-6807-8654
FU Howard Hughes Medical Institute
NR 48
TC 45
Z9 47
U1 0
U2 11
PU NATURE PUBLISHING GROUP
PI NEW YORK
PA 75 VARICK ST, 9TH FLR, NEW YORK, NY 10013-1917 USA
SN 1545-9985
J9 NAT STRUCT MOL BIOL
JI Nat. Struct. Mol. Biol.
PD MAR
PY 2010
VL 17
IS 3
BP 264
EP U23
DI 10.1038/nsmb.1751
PG 10
WC Biochemistry & Molecular Biology; Biophysics; Cell Biology
SC Biochemistry & Molecular Biology; Biophysics; Cell Biology
GA 564AK
UT WOS:000275182700004
PM 20139983
ER
PT J
AU Choi, UB
Strop, P
Vrljic, M
Chu, S
Brunger, AT
Weninger, KR
AF Choi, Ucheor B.
Strop, Pavel
Vrljic, Marija
Chu, Steven
Brunger, Axel T.
Weninger, Keith R.
TI Single-molecule FRET-derived model of the synaptotagmin 1-SNARE fusion
complex
SO NATURE STRUCTURAL & MOLECULAR BIOLOGY
LA English
DT Article
ID SNARE COMPLEX; NEUROTRANSMITTER RELEASE; SYNAPTIC EXOCYTOSIS;
CRYSTAL-STRUCTURE; BINDING; DOMAIN; PROTEINS; DYNAMICS; REVEALS; SWITCH
AB Synchronous neurotransmission is triggered when Ca(2+) binds to synaptotagmin 1 (Syt1), a synaptic-vesicle protein that interacts with SNAREs and membranes. We used single-molecule fluorescence resonance energy transfer (FRET) between synaptotagmin's two C2 domains to determine that their conformation consists of multiple states with occasional transitions, consistent with domains in random relative motion. SNARE binding results in narrower intrasynaptotagmin FRET distributions and less frequent transitions between states. We obtained an experimentally determined model of the elusive Syt1-SNARE complex using a multibody docking approach with 34 FRET-derived distances as restraints. The Ca(2+)-binding loops point away from the SNARE complex, so they may interact with the same membrane. The loop arrangement is similar to that of the crystal structure of SNARE-induced Ca(2+)-bound Syt3, suggesting a common mechanism by which the interaction between synaptotagmins and SNAREs aids in Ca(2+)-triggered fusion.
C1 [Strop, Pavel; Vrljic, Marija; Brunger, Axel T.] Stanford Univ, Howard Hughes Med Inst, Stanford, CA 94305 USA.
[Strop, Pavel; Vrljic, Marija; Brunger, Axel T.] Stanford Univ, Dept Mol & Cellular Physiol, Stanford, CA 94305 USA.
[Strop, Pavel; Vrljic, Marija; Brunger, Axel T.] Stanford Univ, Dept Neurol & Neurol Sci, Stanford, CA 94305 USA.
[Strop, Pavel; Vrljic, Marija; Brunger, Axel T.] Stanford Univ, Dept Biol Struct, Stanford, CA 94305 USA.
[Strop, Pavel; Vrljic, Marija; Brunger, Axel T.] Stanford Univ, Dept Photon Sci, Stanford, CA 94305 USA.
[Choi, Ucheor B.; Weninger, Keith R.] N Carolina State Univ, Dept Phys, Raleigh, NC 27695 USA.
[Chu, Steven] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
[Chu, Steven] Univ Calif Berkeley, Dept Mol & Cell Biol, Berkeley, CA 94720 USA.
[Chu, Steven] Lawrence Berkeley Natl Lab, Berkeley, CA USA.
RP Brunger, AT (reprint author), Stanford Univ, Howard Hughes Med Inst, Stanford, CA 94305 USA.
EM brunger@stanford.edu; keith_weninger@ncsu.edu
OI Brunger, Axel/0000-0001-5121-2036
FU US National Institutes of Health [RO1-MH63105]; Burroughs Wellcome Fund
FX We thank M. Bowen, G. Schroder, T. Sudhof and J. Rizo for comments, the
US National Institutes of Health for support to A. T. B. (RO1-MH63105)
and the Burroughs Wellcome Fund for a CASI award to K. R. W. A. T. B.
presented this work at the first Paul B. Sigler lecture at Yale
University on 23 March 2009.
NR 45
TC 112
Z9 114
U1 1
U2 22
PU NATURE PUBLISHING GROUP
PI NEW YORK
PA 75 VARICK ST, 9TH FLR, NEW YORK, NY 10013-1917 USA
SN 1545-9985
J9 NAT STRUCT MOL BIOL
JI Nat. Struct. Mol. Biol.
PD MAR
PY 2010
VL 17
IS 3
BP 318
EP U84
DI 10.1038/nsmb.1763
PG 8
WC Biochemistry & Molecular Biology; Biophysics; Cell Biology
SC Biochemistry & Molecular Biology; Biophysics; Cell Biology
GA 564AK
UT WOS:000275182700012
PM 20173763
ER
PT J
AU Vrljic, M
Strop, P
Ernst, JA
Sutton, RB
Chu, S
Brunger, AT
AF Vrljic, Marija
Strop, Pavel
Ernst, James A.
Sutton, R. Bryan
Chu, Steven
Brunger, Axel T.
TI Molecular mechanism of the synaptotagmin-SNARE interaction in
Ca2+-triggered vesicle fusion
SO NATURE STRUCTURAL & MOLECULAR BIOLOGY
LA English
DT Article
ID BILAYER-MEMBRANE FUSION; SEMLIKI-FOREST-VIRUS; MEDIATED FUSION; CA2+
SENSORS; C2 DOMAINS; COMPLEX; PROTEIN; HEMIFUSION; CURVATURE; BINDING
AB In neurons, SNAREs, synaptotagmin and other factors catalyze Ca2+-triggered fusion of vesicles with the plasma membrane. The molecular mechanism of this process, especially the interaction between synaptotagmin and SNAREs, remains an enigma. Here we characterized this interaction by single-molecule fluorescence microscopy and crystallography. The two rigid Ca2+-binding domains of synaptotagmin 3 (Syt3) undergo large relative motions in solution. Interaction with SNARE complex amplifies a particular state of the two domains that is further enhanced by Ca2+. This state is represented by the first SNARE-induced Ca2+-bound crystal structure of a synaptotagmin fragment containing both domains. The arrangement of the Ca2+-binding loops of this structure of Syt3 matches that of SNARE-bound Syt1, suggesting a conserved feature of synaptotagmins. The loops resemble the membrane-interacting loops of certain viral fusion proteins in the postfusion state, suggesting unexpected similarities between both fusion systems.
C1 [Vrljic, Marija; Strop, Pavel; Brunger, Axel T.] Stanford Univ, Dept Mol & Cellular Physiol, Stanford, CA 94305 USA.
[Vrljic, Marija; Strop, Pavel; Brunger, Axel T.] Stanford Univ, Dept Neurol & Neurol Sci, Stanford, CA 94305 USA.
[Vrljic, Marija; Strop, Pavel; Brunger, Axel T.] Stanford Univ, Dept Biol Struct, Stanford, CA 94305 USA.
[Vrljic, Marija; Strop, Pavel; Brunger, Axel T.] Stanford Univ, Dept Photon Sci, Stanford, CA 94305 USA.
[Vrljic, Marija; Strop, Pavel; Brunger, Axel T.] Howard Hughes Med Inst, Stanford, CA USA.
[Ernst, James A.] Genentech Inc, Dept Prot Chem, San Francisco, CA 94080 USA.
[Sutton, R. Bryan] Texas Tech Univ, Hlth Sci Ctr, Sch Med, Dept Cell Physiol & Mol Biophys, Lubbock, TX 79430 USA.
[Chu, Steven] Lawrence Berkeley Natl Lab, Berkeley, CA USA.
[Chu, Steven] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
[Chu, Steven] Univ Calif Berkeley, Dept Mol & Cell Biol, Berkeley, CA 94720 USA.
RP Brunger, AT (reprint author), Stanford Univ, Dept Mol & Cellular Physiol, Stanford, CA 94305 USA.
EM brunger@stanford.edu
OI Brunger, Axel/0000-0001-5121-2036
FU US National Institutes of Health [RO1-MH63105]
FX We thank T. Sudhof and J. Rizo for discussions, Y. Zhang, B. Cui, S.
Solomatin, T. H. Lee and A. Persitidinis for discussions of
single-molecule experimental setup and data analysis, Y. Abdiche and K.
Lindquist for technical assistance and discussions of biosensor
experiments, and the US National Institutes of Health for support to A.
T. B (RO1-MH63105). A. T. B. presented this work at the first Paul B.
Sigler lecture at Yale University on 23 March 2009.
NR 55
TC 59
Z9 61
U1 1
U2 13
PU NATURE PUBLISHING GROUP
PI NEW YORK
PA 75 VARICK ST, 9TH FLR, NEW YORK, NY 10013-1917 USA
SN 1545-9993
J9 NAT STRUCT MOL BIOL
JI Nat. Struct. Mol. Biol.
PD MAR
PY 2010
VL 17
IS 3
BP 325
EP U92
DI 10.1038/nsmb.1764
PG 8
WC Biochemistry & Molecular Biology; Biophysics; Cell Biology
SC Biochemistry & Molecular Biology; Biophysics; Cell Biology
GA 564AK
UT WOS:000275182700013
PM 20173762
ER
PT J
AU Dwyer, J
Lee, H
Martell, A
Stevens, R
Hereld, M
van Drongelen, W
AF Dwyer, Jennifer
Lee, Hyong
Martell, Amber
Stevens, Rick
Hereld, Mark
van Drongelen, Wim
TI Oscillation in a network model of neocortex
SO NEUROCOMPUTING
LA English
DT Article
DE Neuronal resonance; Network oscillation; Electrical stimulation;
Neocortex
ID NEURONS; INTERNEURONS; ORGANIZATION; INPUT
AB A basic understanding of the relationship between activity of individual neurons and macroscopic electrical activity of local field potentials, or electroencephalogram (EEG), may provide guidance for experimental design in neuroscience, improve development of therapeutic approaches in neurology, and offer opportunities for computer-aided design of brain-computer interfaces. We study the relationship between resonant properties of neurons and network oscillations in a computational model of neocortex. Our findings suggest that resonance is associated with subthreshold oscillation of neurons. This subthreshold behavior affects spike timing and plays a significant role in the generation of the network's extracellular currents reflected in the EEG. (C) 2010 Elsevier B.V. All rights reserved.
C1 [Dwyer, Jennifer; Lee, Hyong; Martell, Amber; van Drongelen, Wim] Univ Chicago, Dept Pediat, Chicago, IL 60637 USA.
[Stevens, Rick; Hereld, Mark; van Drongelen, Wim] Univ Chicago, Computat Inst, Chicago, IL 60637 USA.
[Stevens, Rick; Hereld, Mark] Argonne Natl Lab, Div Math & Comp Sci, Argonne, IL 60439 USA.
RP Dwyer, J (reprint author), Univ Chicago, Dept Pediat, 5841 S Maryland Ave, Chicago, IL 60637 USA.
EM jdwyer1@uchicago.edu
OI van Drongelen, Wim/0000-0001-8950-5424; Hereld, Mark/0000-0002-0268-2880
FU Falk Foundation; National Science Foundation [CNS-0509332]; Office of
Advanced Scientific Computing Research, Office of Science, US Department
of Energy [DE-ACO2-06CH11357]; American Epilepsy Society; ARCS
Foundation; University of Chicago
FX This work was supported by the Falk Foundation; the National Science
Foundation (CNS-0509332); the Office of Advanced Scientific Computing
Research, Office of Science, US Department of Energy under Contract
DE-ACO2-06CH11357; the American Epilepsy Society; the ARCS Foundation;
and the University of Chicago MSTP and GDTP training programs.
NR 20
TC 5
Z9 5
U1 0
U2 3
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0925-2312
J9 NEUROCOMPUTING
JI Neurocomputing
PD MAR
PY 2010
VL 73
IS 7-9
SI SI
BP 1051
EP 1056
DI 10.1016/j.neucom.2009.12.021
PG 6
WC Computer Science, Artificial Intelligence
SC Computer Science
GA 580WM
UT WOS:000276481200002
PM 20368744
ER
PT J
AU Eggleton, PP
AF Eggleton, Peter P.
TI Evolution of intermediate and low mass binary systems
SO NEW ASTRONOMY REVIEWS
LA English
DT Article
ID URSAE MAJORIS SYSTEMS; STELLAR EVOLUTION; COMPOSITE SPECTRA; PARAMETERS;
CONTACT; SPECTROSCOPY; ORBITS; LEONIS; STARS
AB There are a number of binaries, fairly wide and with one or even two evolved giant components, that do not agree very well with conventional stellar evolution: the secondaries are substantially larger ('over-sized') than they should be because their masses are quite low compared with the primaries. I discuss the possibility that these binaries are former triples, in which a merger has occurred fairly recently in a short-period binary sub-component.
Some mergers are expected, and may follow a phase of contact evolution. I suggest that in contact there is substantial transfer of luminosity between the components due to differential rotation, of the character observed by helioseismology in the Sun's surface convection zone. Published by Elsevier B.V.
C1 Lawrence Livermore Natl Lab, Livermore, CA 94551 USA.
RP Eggleton, PP (reprint author), Lawrence Livermore Natl Lab, 7000 East Ave, Livermore, CA 94551 USA.
EM eggleton1@llnl.gov
FU US Department of Energy, National Nuclear Security Administration by the
University of California, Lawrence Livermore National Laboratory
[W-7405-Eng-48]
FX This study has been supported under the auspices of the US Department of
Energy, National Nuclear Security Administration by the University of
California, Lawrence Livermore National Laboratory under contract No.
W-7405-Eng-48.
NR 25
TC 7
Z9 7
U1 0
U2 0
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 1387-6473
J9 NEW ASTRON REV
JI New Astron. Rev.
PD MAR-JUN
PY 2010
VL 54
IS 3-6
BP 45
EP 49
DI 10.1016/j.newar.2010.09.007
PG 5
WC Astronomy & Astrophysics
SC Astronomy & Astrophysics
GA 698BY
UT WOS:000285567700004
ER
PT J
AU Canik, JM
Maingi, R
Evans, TE
Bell, RE
Gerhardt, SP
Kugel, HW
LeBlanc, BP
Manickam, J
Menard, JE
Osborne, TH
Park, JK
Paul, S
Snyder, PB
Sabbagh, SA
Unterberg, EA
AF Canik, J. M.
Maingi, R.
Evans, T. E.
Bell, R. E.
Gerhardt, S. P.
Kugel, H. W.
LeBlanc, B. P.
Manickam, J.
Menard, J. E.
Osborne, T. H.
Park, J. -K.
Paul, S.
Snyder, P. B.
Sabbagh, S. A.
Unterberg, E. A.
CA NSTX Team
TI ELM destabilization by externally applied non-axisymmetric magnetic
perturbations in NSTX
SO NUCLEAR FUSION
LA English
DT Article; Proceedings Paper
CT 4th Workshop on Stochasticity in Fusion Plasmas
CY MAR 02-04, 2009
CL Julich, GERMANY
ID EDGE-LOCALIZED MODES; SPHERICAL TORUS EXPERIMENT; STEADY-STATE;
CONFINEMENT; PEDESTAL; TOKAMAK; PLASMA; TRANSPORT; FIELD
AB We report on a recent set of experiments performed in NSTX to explore the effects of non-axisymmetric magnetic perturbations on the stability of edge-localized modes (ELMs). The application of these 3D fields in NSTX was found to have a strong effect on ELM stability, including the destabilization of ELMs in H-modes otherwise free of large ELMs. Exploiting the effect of the perturbations, ELMs have been controllably introduced into lithium-enhanced ELM-free H-modes, causing a reduction in impurity accumulation while maintaining high confinement. Although these experiments show the principle of the combined use of lithium coatings and 3D fields, further optimization is required in order to reduce the size of the induced ELMs.
C1 [Canik, J. M.; Maingi, R.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
[Evans, T. E.; Osborne, T. H.; Snyder, P. B.] Gen Atom Co, San Diego, CA 92186 USA.
[Bell, R. E.; Gerhardt, S. P.; Kugel, H. W.; LeBlanc, B. P.; Manickam, J.; Menard, J. E.; Park, J. -K.; Paul, S.] Princeton Plasma Phys Lab, Princeton, NJ 08543 USA.
[Sabbagh, S. A.] Columbia Univ, New York, NY 10027 USA.
[Unterberg, E. A.] Oak Ridge Inst Sci & Educ, Oak Ridge, TN 37831 USA.
RP Canik, JM (reprint author), Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
EM canikjm@ornl.gov
RI Sabbagh, Steven/C-7142-2011; Unterberg, Ezekial/F-5240-2016;
OI Unterberg, Ezekial/0000-0003-1353-8865; Canik, John/0000-0001-6934-6681;
Menard, Jonathan/0000-0003-1292-3286
NR 44
TC 52
Z9 52
U1 5
U2 12
PU INT ATOMIC ENERGY AGENCY
PI VIENNA
PA WAGRAMERSTRASSE 5, PO BOX 100, A-1400 VIENNA, AUSTRIA
SN 0029-5515
J9 NUCL FUSION
JI Nucl. Fusion
PD MAR
PY 2010
VL 50
IS 3
SI SI
AR 034012
DI 10.1088/0029-5515/50/3/034012
PG 8
WC Physics, Fluids & Plasmas
SC Physics
GA 569SC
UT WOS:000275619700014
ER
PT J
AU Kotschenreuther, M
Valanju, P
Mahajan, S
Zheng, LJ
Pearlstein, LD
Bulmer, RH
Canik, J
Maingi, R
AF Kotschenreuther, M.
Valanju, P.
Mahajan, S.
Zheng, L. J.
Pearlstein, L. D.
Bulmer, R. H.
Canik, J.
Maingi, R.
TI The super X divertor (SXD) and a compact fusion neutron source (CFNS)
SO NUCLEAR FUSION
LA English
DT Article; Proceedings Paper
CT 4th Workshop on Stochasticity in Fusion Plasmas
CY MAR 02-04, 2009
CL Julich, GERMANY
ID SCRAPE-OFF LAYER; SPHERICAL TOKAMAK; POWER-PLANT; PLASMA; SIMULATION;
B2-EIRENE; PROGRESS; PHYSICS
AB A new magnetic geometry, the super X divertor (SXD), is invented to solve severe heat exhaust problems in high power density fusion plasmas. SXD divertor plates are moved to the largest major radii inside the TF coils, increasing the wetted area by 2-3 and the line length by 2-5. Two-dimensional fluid simulations with SOLPS (Schneider et al 2006 SOLPS 2-D edge calculation code Contrib. Plasma Phys. 46) show a several-fold decrease in divertor heat flux and plasma temperature at the plate. A small high power density tokamak using SXD is proposed, for either (1) useful fusion applications using conservative physics, such as a component test facility (CTF) or fission fusion hybrid, or (2) to develop more advanced physics modes for a pure fusion reactor in an integrated fusion environment.
C1 [Kotschenreuther, M.; Valanju, P.; Mahajan, S.; Zheng, L. J.] Univ Texas Austin, Inst Fus Studies, Austin, TX 78712 USA.
[Pearlstein, L. D.; Bulmer, R. H.] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
[Canik, J.; Maingi, R.] Oak Ridge Natl Lab, Oak Ridge, TN 37821 USA.
RP Kotschenreuther, M (reprint author), Univ Texas Austin, Inst Fus Studies, Austin, TX 78712 USA.
EM pvalanju@mail.utexas.edu
OI Canik, John/0000-0001-6934-6681
NR 28
TC 24
Z9 24
U1 2
U2 14
PU IOP PUBLISHING LTD
PI BRISTOL
PA TEMPLE CIRCUS, TEMPLE WAY, BRISTOL BS1 6BE, ENGLAND
SN 0029-5515
EI 1741-4326
J9 NUCL FUSION
JI Nucl. Fusion
PD MAR
PY 2010
VL 50
IS 3
SI SI
AR 035003
DI 10.1088/0029-5515/50/3/035003
PG 8
WC Physics, Fluids & Plasmas
SC Physics
GA 569SC
UT WOS:000275619700017
ER
PT J
AU Mordijck, S
Owen, LW
Moyer, RA
AF Mordijck, S.
Owen, L. W.
Moyer, R. A.
TI Increased particle transport due to resonant magnetic perturbations
modelled with a vacuum field line tracing code and a 2D fluid code
SO NUCLEAR FUSION
LA English
DT Article; Proceedings Paper
CT 4th Workshop on Stochasticity in Fusion Plasmas
CY MAR 02-04, 2009
CL Julich, GERMANY
ID DIII-D; TOKAMAK; CONFINEMENT
AB In this paper we compare the pedestal density changes in resonant magnetic perturbations (RMP) H-modes at low collisionality with enhanced free streaming due to the creation of open field lines. First, we derive the effective radial transport coefficients by matching an ELMing (edge localized mode) H-mode using SOLPS5. Next, a vacuum field line tracing code, TRIP3D, is employed to calculate free streaming of particles along open field lines inside the traditional 2D axisymmetric separatrix. These coefficients are added to the effective radial transport coefficients from the ELMing H-mode and inserted in SOLPS5 to compute midplane profiles. Finally, we compare the SOLPS5 results with the experimental data from RMP H-modes and find good agreement. This good agreement was achieved not only for one single case, but also for two different experiments, with different triangularities, where the high triangularity case contains two RMP H-modes that give good agreement.
C1 [Mordijck, S.; Moyer, R. A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Owen, L. W.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
RP Mordijck, S (reprint author), Univ Calif San Diego, 9500 Gilman Dr, La Jolla, CA 92093 USA.
NR 29
TC 9
Z9 9
U1 0
U2 4
PU INT ATOMIC ENERGY AGENCY
PI VIENNA
PA WAGRAMERSTRASSE 5, PO BOX 100, A-1400 VIENNA, AUSTRIA
SN 0029-5515
J9 NUCL FUSION
JI Nucl. Fusion
PD MAR
PY 2010
VL 50
IS 3
SI SI
AR 034006
DI 10.1088/0029-5515/50/3/034006
PG 8
WC Physics, Fluids & Plasmas
SC Physics
GA 569SC
UT WOS:000275619700008
ER
PT J
AU Orlov, DM
Moyer, RA
Evans, TE
Mordijck, S
Osborne, TH
Fenstermacher, ME
Snyder, PB
Unterberg, EA
AF Orlov, D. M.
Moyer, R. A.
Evans, T. E.
Mordijck, S.
Osborne, T. H.
Fenstermacher, M. E.
Snyder, P. B.
Unterberg, E. A.
TI Numerical analysis of the effects of normalized plasma pressure on RMP
ELM suppression in DIII-D
SO NUCLEAR FUSION
LA English
DT Article; Proceedings Paper
CT 4th Workshop on Stochasticity in Fusion Plasmas
CY MAR 02-04, 2009
CL Julich, GERMANY
ID EDGE LOCALIZED MODES; TOKAMAK
AB The effect of normalized plasma pressure as characterized by normalized pressure parameter (beta(N)) on the suppression of edge localized modes (ELMs) using resonant magnetic perturbations (RMPs) is studied in low-collisionality (nu* <= 0.2) H-mode plasmas with low-triangularity ( = 0.25) and ITER similar shapes ( = 0.51). Experimental results have suggested that ELM suppression by RMPs requires a minimum threshold in plasma pressure as characterized by beta(N). The variations in the vacuum field topology with beta(N) due to safety factor profile and island overlap changes caused by variation of the Shafranov shift and pedestal bootstrap current are examined numerically with the field line integration code TRIP3D. The results show very small differences in the vacuum field structure in terms of the Chirikov (magnetic island overlap) parameter, Poincare sections and field line loss fractions. These differences do not appear to explain the observed threshold in beta(N) for ELM suppression. Linear peeling-ballooning stability analysis with the ELITE code suggests that the ELMs which persist during the RMPs when beta(N) is below the observed threshold are not type I ELMs, because the pedestal conditions are deep within the stable regime for peeling-ballooning modes. These ELMs have similarities to type III ELMs or low density ELMs.
C1 [Orlov, D. M.; Moyer, R. A.; Mordijck, S.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Evans, T. E.; Osborne, T. H.; Snyder, P. B.] Gen Atom Co, San Diego, CA 92186 USA.
[Fenstermacher, M. E.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Unterberg, E. A.] Oak Ridge Inst Sci & Educ, Oak Ridge, TN USA.
RP Orlov, DM (reprint author), Univ Calif San Diego, La Jolla, CA 92093 USA.
EM orlov@fusion.gat.com
RI Orlov, Dmitriy/D-2406-2016; Unterberg, Ezekial/F-5240-2016
OI Orlov, Dmitriy/0000-0002-2230-457X; Unterberg,
Ezekial/0000-0003-1353-8865
NR 18
TC 4
Z9 4
U1 3
U2 7
PU INT ATOMIC ENERGY AGENCY
PI VIENNA
PA WAGRAMERSTRASSE 5, PO BOX 100, A-1400 VIENNA, AUSTRIA
SN 0029-5515
J9 NUCL FUSION
JI Nucl. Fusion
PD MAR
PY 2010
VL 50
IS 3
SI SI
AR 034010
DI 10.1088/0029-5515/50/3/034010
PG 9
WC Physics, Fluids & Plasmas
SC Physics
GA 569SC
UT WOS:000275619700012
ER
PT J
AU Unterberg, EA
Schmitz, O
Evans, TE
Maingi, R
Brooks, NH
Fenstermacher, ME
Mordijck, S
Moyer, RA
Orlov, DM
AF Unterberg, E. A.
Schmitz, O.
Evans, T. E.
Maingi, R.
Brooks, N. H.
Fenstermacher, M. E.
Mordijck, S.
Moyer, R. A.
Orlov, D. M.
TI The effects of an open and closed divertor on particle exhaust during
edge-localized mode suppression by resonant magnetic perturbations in
DIII-D
SO NUCLEAR FUSION
LA English
DT Article; Proceedings Paper
CT 4th Workshop on Stochasticity in Fusion Plasmas
CY MAR 02-04, 2009
CL Julich, GERMANY
ID D TOKAMAK; PLASMA PARAMETERS; COLLISIONALITY; DISCHARGES; GEOMETRY; FLUX
AB This paper compares the effects of divertor geometry on particle exhaust characteristics during the suppression of ELM using resonant magnetic perturbations (RMPs) on DIII-D. The subject is timely, particularly for ITER, because the combination of techniques to control or mitigate ELMs and control particle exhaust can provide confidence in the ability of an external pumping system to fully remove the particle exhaust. The differences between an open and closed divertor magnetic topology show a strong coupling of the perturbed strikepoint to the pumping manifold in closed divertor configurations, which can increase the particle exhaust by a factor of four. There is also an observed dependence on q(95) in this configuration, which is a common feature of RMP ELM suppression. Neutral density in both the active and non-active divertors is seen to increase during the RMP in the ISS configuration, and edge plasma conditions (i.e. n(e,sep) and midplane profile of D-alpha) are seen to increase in the closed divertor configuration. Finally, the pumping exhaust is also shown to have a strong dependence on local measurements of the recycling flux. These observations, when taken as a whole, point to a substantial change in the plasma edge conditions, i.e. near the LCFS, throughout the poloidal cross-section of the vacuum vessel. This is coincident with the application of the RMP affecting the pumping capability of the system.
C1 [Unterberg, E. A.] Oak Ridge Inst Sci & Educ, Oak Ridge, TN USA.
[Schmitz, O.] Forschungszentrum Julich GmbH, Plasma Phys IEF4, D-52428 Julich, Germany.
[Evans, T. E.; Brooks, N. H.] Gen Atom Co, San Diego, CA 92186 USA.
[Maingi, R.] Oak Ridge Natl Lab, Oak Ridge, TN USA.
[Fenstermacher, M. E.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Mordijck, S.; Moyer, R. A.; Orlov, D. M.] Univ Calif San Diego, La Jolla, CA 92093 USA.
RP Unterberg, EA (reprint author), Oak Ridge Inst Sci & Educ, Oak Ridge, TN USA.
EM unterberge@fusion.gat.com
RI Orlov, Dmitriy/D-2406-2016; Unterberg, Ezekial/F-5240-2016
OI Orlov, Dmitriy/0000-0002-2230-457X; Unterberg,
Ezekial/0000-0003-1353-8865
NR 26
TC 10
Z9 10
U1 2
U2 4
PU INT ATOMIC ENERGY AGENCY
PI VIENNA
PA WAGRAMERSTRASSE 5, PO BOX 100, A-1400 VIENNA, AUSTRIA
SN 0029-5515
J9 NUCL FUSION
JI Nucl. Fusion
PD MAR
PY 2010
VL 50
IS 3
SI SI
AR 034011
DI 10.1088/0029-5515/50/3/034011
PG 9
WC Physics, Fluids & Plasmas
SC Physics
GA 569SC
UT WOS:000275619700013
ER
PT J
AU Hamilton, JH
Zhu, SJ
Luo, YX
Ramayya, AV
Frauendorf, S
Rasmussen, JO
Hwang, JK
Liu, SH
Ter-Akopian, GM
Daniel, AV
Oganessian, Y
AF Hamilton, J. H.
Zhu, S. J.
Luo, Y. X.
Ramayya, A. V.
Frauendorf, S.
Rasmussen, J. O.
Hwang, J. K.
Liu, S. H.
Ter-Akopian, G. M.
Daniel, A. V.
Oganessian, Y.
TI Super deformation to maximum triaxiality in A=100-112; superdeformation,
chiral bands and wobbling motion
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
C1 [Hamilton, J. H.; Luo, Y. X.; Ramayya, A. V.; Hwang, J. K.; Liu, S. H.] Vanderbilt Univ, Dept Phys, Nashville, TN 37235 USA.
[Zhu, S. J.] Tsinghua Univ, Dept Phys, Beijing 100084, Peoples R China.
[Luo, Y. X.] Lawrence Berkeley Natl Lab, Berkeley, CA 94720 USA.
[Frauendorf, S.] Univ Notre Dame, Dept Phys, Notre Dame, IN 46556 USA.
[Ter-Akopian, G. M.; Daniel, A. V.; Oganessian, Y.] Joint Inst Nucl Res Dubna, Flerov Lab Nucl React, Dubna, Russia.
RP Hamilton, JH (reprint author), Vanderbilt Univ, Dept Phys, Nashville, TN 37235 USA.
EM j.h.hamilton@vanderbilt.edu; zhushj@mail.tsinghua.edu.cn;
oganessian@jinr.ru
OI Hwang, Jae-Kwang/0000-0002-4100-3473
NR 10
TC 6
Z9 7
U1 0
U2 8
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 28C
EP 31C
DI 10.1016/j.nuclphysa.2010.01.010
PG 4
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800009
ER
PT J
AU Trivedi, T
Palit, R
Negi, D
Naik, Z
Yang, YC
Sun, Y
Sheikh, JA
Dhal, A
Raju, MK
Appannababu, S
Kumar, S
Choudhury, D
Maurya, K
Mahanto, G
Kumar, R
Singh, RP
Muralithar, S
Jain, AK
Jain, HC
Pancholi, SC
Bhowmik, RK
Mehrotra, I
AF Trivedi, T.
Palit, R.
Negi, D.
Naik, Z.
Yang, Y-C
Sun, Y.
Sheikh, J. A.
Dhal, A.
Raju, M. K.
Appannababu, S.
Kumar, S.
Choudhury, D.
Maurya, K.
Mahanto, G.
Kumar, R.
Singh, R. P.
Muralithar, S.
Jain, A. K.
Jain, H. C.
Pancholi, S. C.
Bhowmik, R. K.
Mehrotra, I.
TI Lifetime measurement of high spin states in Kr-75
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
AB The lifetimes of high spin states of Kr-75 have been determined via Cr-50 (Si-28, 2pn) Kr-75 reaction in positive parity band using the Doppler-shift attenuation method. The transition quadrupole moments Q(t) deduced from lifetime measurements have been compared with Br-75. Experimental results obtained from lifetime measurement are interpreted in the framework of projected shell model.
C1 [Trivedi, T.; Maurya, K.; Mehrotra, I.] Univ Allahabad, Dept Phys, Allahabad 211001, Uttar Pradesh, India.
[Palit, R.; Naik, Z.; Jain, H. C.] Tata Inst Fundamental Res, Bombay 400005, Maharashtra, India.
[Negi, D.; Mahanto, G.; Kumar, R.; Singh, R. P.; Muralithar, S.; Pancholi, S. C.; Bhowmik, R. K.] Inter Univ Accelerator Ctr, New Delhi 110067, India.
[Yang, Y-C; Sun, Y.] Shanghai Jiao Tong Univ, Dept Phys, Shanghai 200240, Peoples R China.
[Sun, Y.; Sheikh, J. A.] Univ Tennessee, Dept Phys & Astron, Knoxville, TN 37996 USA.
[Sheikh, J. A.] Oak Ridge Natl Lab, Div Phys, Oak Ridge, TN 37831 USA.
[Sheikh, J. A.] Univ Kashmir, Dept Phys, Srinagar 190006, Jammu & Kashmir, India.
[Dhal, A.] Banaras Hindu Univ, Dept Phys, Varanasi 221005, Uttar Pradesh, India.
[Raju, M. K.] Andhra Univ, Dept Nucl Phys, Waltair 530003, Andhra Pradesh, India.
[Appannababu, S.] Maharaja Sayajirao Univ Baroda, Dept Phys, Baroda 390002, Gujarat, India.
[Kumar, S.] Univ Delhi, Dept Phys & Astrophys, Delhi 110007, India.
[Choudhury, D.; Jain, A. K.] Indian Inst Technol Roorkee, Dept Phys, Roorkee 247667, Uttar Pradesh, India.
RP Trivedi, T (reprint author), Univ Allahabad, Dept Phys, Allahabad 211001, Uttar Pradesh, India.
EM palit@tifr.res.in; yangyc@sjtu.edu.cn; sunyang@sjtu.edu.cn
RI Palit, Rudrajyoti/F-5185-2012; Selaboina, Appannababu/J-8732-2014;
Mukhi, Kumar Raju/C-8099-2016; Sun, Yang/P-2417-2015
OI Selaboina, Appannababu/0000-0002-8121-8743; Mukhi, Kumar
Raju/0000-0002-2717-281X;
NR 6
TC 6
Z9 6
U1 3
U2 4
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 72C
EP 74C
DI 10.1016/j.nuclphysa.2010.01.021
PG 3
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800020
ER
PT J
AU Mihara, M
Matsuta, K
Komurasaki, J
Hirano, H
Nishimura, D
Momota, S
Ohtsubo, T
Izumikawa, T
Shimbara, Y
Kubo, T
Kameda, D
Zhou, DM
Zheng, Y
Yuan, DQ
Zhu, SY
Kitagawa, A
Kanazawa, M
Torikoshi, M
Sato, S
Nagatomo, T
Matsumiya, R
Ishikawa, D
Fukuda, M
Minamisono, T
Nojiri, Y
Alonso, JR
Crebs, GF
Symons, TJM
AF Mihara, M.
Matsuta, K.
Komurasaki, J.
Hirano, H.
Nishimura, D.
Momota, S.
Ohtsubo, T.
Izumikawa, T.
Shimbara, Y.
Kubo, T.
Kameda, D.
Zhou, Dongmei
Zheng, Yongnan
Yuan, Daqing
Zhu, Shengyun
Kitagawa, A.
Kanazawa, M.
Torikoshi, M.
Sato, S.
Nagatomo, T.
Matsumiya, R.
Ishikawa, D.
Fukuda, M.
Minamisono, T.
Nojiri, Y.
Alonso, J. R.
Crebs, G. F.
Symons, T. J. M.
TI Electromagnetic moments of F-22
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
AB The magnetic dipole (mu) and electric quadrupole (Q) moments of short-lived nucleus F-22 (I-pi = 4(+), T-1/2 = 4.2 s) have been measured for the first time by means of the beta-NMR technique. A spin polarized F-22 beam was produced through the charge exchange reaction of Ne-22 and was implanted into single crysltals of NaF and MgF2 for mu and Q measurements, respectively. As a result,vertical bar mu(F-22)vertical bar = (2.69443 +/- 0.00039)mu(N) and vertical bar Q(F-22)vertical bar = (3 +/- 2) mb was obtained. These values are well reproduced by the shell model calculations.
C1 [Mihara, M.; Matsuta, K.; Komurasaki, J.; Nishimura, D.; Matsumiya, R.; Ishikawa, D.; Fukuda, M.] Osaka Univ, Dept Phys, Osaka 5600043, Japan.
[Hirano, H.; Ohtsubo, T.; Shimbara, Y.; Kubo, T.] Niigata Univ, Dept Phys, Niigata 9502181, Japan.
[Momota, S.; Nojiri, Y.] Kochi Univ Technol, Tosayamada, Kochi 7828502, Japan.
[Izumikawa, T.] Niigata Univ, Radioisotope Ctr, Niigata 9518510, Japan.
[Kameda, D.; Nagatomo, T.] RIKEN, Nishina Ctr Accelerator Based Sci, Wako, Saitama 3510198, Japan.
[Zhou, Dongmei; Zheng, Yongnan; Yuan, Daqing; Zhu, Shengyun] China Inst Atom Energy, Beijing 102413, Peoples R China.
[Kitagawa, A.; Kanazawa, M.; Torikoshi, M.; Sato, S.] Natl Inst Radiol Sci, Inage Ku, Chiba 2638555, Japan.
[Minamisono, T.] Fukui Univ Technol, Dept Appl Nucl Technol, Fukui 9108505, Japan.
[Alonso, J. R.; Crebs, G. F.; Symons, T. J. M.] Lawrence Berkeley Natl Lab, Berkeley, CA 94720 USA.
RP Mihara, M (reprint author), Osaka Univ, Dept Phys, Osaka 5600043, Japan.
EM mihara@vg.phys.sci.osaka-u.ac.jp; matsuta@vg.phys.sci.osaka-u.ac.jp;
hirano@phys.s.u-tokyo.ac.jp; daiki@vg.phys.sci.osaka-u.ac.jp;
zhuodm@ciae.ac.cn; zhengyn@ciae.ac.cn; yuandaqing@gmail.com;
zhusy@ciae.ac.cn; mfukuda@phys.sci.osaka-u.ac.jp
NR 8
TC 1
Z9 1
U1 0
U2 2
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
EI 1873-1554
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 75C
EP 77C
DI 10.1016/j.nuclphysa.2010.01.022
PG 3
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800021
ER
PT J
AU Liu, SH
Hamilton, JH
Ramayya, AV
Covello, A
Gargano, A
Itaco, N
Luo, YX
Rasmussen, JO
Hwang, JK
Daniel, AV
Ter-Akopian, GM
Zhu, SJ
Ma, WC
AF Liu, S. H.
Hamilton, J. H.
Ramayya, A. V.
Covello, A.
Gargano, A.
Itaco, N.
Luo, Y. X.
Rasmussen, J. O.
Hwang, J. K.
Daniel, A. V.
Ter-Akopian, G. M.
Zhu, S. J.
Ma, W. C.
TI High spin structure of the neutron-rich Cs-139,Cs-142 nuclei
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
ID EXCITATIONS
C1 [Liu, S. H.; Hamilton, J. H.; Ramayya, A. V.; Luo, Y. X.; Hwang, J. K.; Daniel, A. V.] Vanderbilt Univ, Dept Phys, Nashville, TN 37235 USA.
[Covello, A.; Itaco, N.] Complesso Univ Monte S Angelo, Dipartimento Sci Fis, I-80126 Naples, Italy.
[Covello, A.; Gargano, A.; Itaco, N.] Complesso Univ Monte S Angelo, Ist Nazl Fis Nucl, I-80126 Naples, Italy.
[Luo, Y. X.; Rasmussen, J. O.] Lawrence Berkeley Natl Lab, Berkeley, CA 94720 USA.
[Daniel, A. V.; Ter-Akopian, G. M.] JINR, Flerov Lab Nucl React, Dubna, Russia.
[Zhu, S. J.] Tsinghua Univ, Dept Phys, Beijing 100084, Peoples R China.
[Ma, W. C.] Mississippi State Univ, Dept Phys, Mississippi State, MS 39762 USA.
RP Liu, SH (reprint author), Vanderbilt Univ, Dept Phys, Nashville, TN 37235 USA.
EM j.h.hamilton@vanderbilt.edu; zhushj@mail.tsinghua.edu.cn;
mawc@ra.msstate.edu
RI Itaco, Nunzio/C-3838-2009;
OI Itaco, Nunzio/0000-0002-9508-2613; Hwang, Jae-Kwang/0000-0002-4100-3473
NR 9
TC 2
Z9 2
U1 0
U2 5
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 78C
EP 80C
DI 10.1016/j.nuclphysa.2010.01.023
PG 3
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800022
ER
PT J
AU Wang, JG
Zhu, SJ
Hamilton, JH
Ding, HB
Gu, L
Ramayya, AV
Hwang, JK
Liu, SH
Li, K
Luo, YX
Rasmussen, JO
Lee, IY
Xu, Q
Yeoh, EY
Xiao, ZG
Ma, WC
AF Wang, Jian-Guo
Zhu, Sheng-Jiang
Hamilton, J. H.
Ding, Huai-Bo
Gu, Long
Ramayya, A. V.
Hwang, J. K.
Liu, S. H.
Li, K.
Luo, Y. X.
Rasmussen, J. O.
Lee, I. Y.
Xu, Qiang
Yeoh, Eing-Yee
Xiao, Zhi-Gang
Ma, W. C.
TI Identification of Two-Phonon gamma-Vibrational Bands in Odd-A Nuclei at
A similar to 100 Region
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
C1 [Wang, Jian-Guo; Zhu, Sheng-Jiang; Ding, Huai-Bo; Gu, Long; Xu, Qiang; Yeoh, Eing-Yee; Xiao, Zhi-Gang] Tsinghua Univ, Dept Phys, Beijing 100084, Peoples R China.
[Hamilton, J. H.; Ramayya, A. V.; Hwang, J. K.; Liu, S. H.; Li, K.; Luo, Y. X.] Vanderbilt Univ, Dept Phys, Nashville, TN 37235 USA.
[Luo, Y. X.; Rasmussen, J. O.; Lee, I. Y.] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
[Ma, W. C.] Mississippi State Univ, Dept Phys, Mississippi State, MS 39762 USA.
RP Zhu, SJ (reprint author), Tsinghua Univ, Dept Phys, Beijing 100084, Peoples R China.
EM wjg05@mails.tsinghua.edu.cn; zhushj@mail.tsinghua.edu.cn;
j.h.hamilton@vanderbilt.edu; gul06@mails.tsinghua.edu.cn; iylee@lbl.gov;
xiaozg@tsinghua.edu.cn
RI XIAO, Zhigang/C-3788-2015;
OI Hwang, Jae-Kwang/0000-0002-4100-3473
NR 8
TC 1
Z9 1
U1 0
U2 9
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 94C
EP 96C
DI 10.1016/j.nuclphysa.2010.01.028
PG 3
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800027
ER
PT J
AU Liang, JF
AF Liang, J. F.
TI Highlights of heavy ion fusion induced by neutron-rich radioactive
nuclei near the Coulomb barrier
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
AB The use of neutron-rich radioactive isotope beams for synthesizing heavy elements is a Subject of continuing interest. Current experiments utilize low intensity beams to Study reaction mechanisms for fusion induced by neutron-rich radioactive nuclei. Enhanced fusion cross sections were observed near and below the Coulomb barrier. A lowering of the barrier height was observed for heavy mass compound systems. Future experiments will benefit from improving detectors and increasing beam intensities.
C1 Oak Ridge Natl Lab, Div Phys, Oak Ridge, TN 37831 USA.
RP Liang, JF (reprint author), Oak Ridge Natl Lab, Div Phys, Oak Ridge, TN 37831 USA.
EM liangjf@ornl.gov
NR 19
TC 1
Z9 1
U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 123C
EP 128C
DI 10.1016/j.nuclphysa.2009.12.020
PG 6
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800034
ER
PT J
AU Notani, M
Davies, P
Bucher, B
Fang, X
Lamm, L
Ma, C
Martin, E
Tan, W
Tang, XD
Thomas, S
Jiang, CL
AF Notani, Masahiro
Davies, P.
Bucher, B.
Fang, X.
Lamm, L.
Ma, C.
Martin, E.
Tan, W.
Tang, X. D.
Thomas, S.
Jiang, C. L.
TI Study of the hindrance effect in sub-barrier fusion reactions
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
ID CROSS-SECTIONS; ENERGIES; C-12&C-13; STAR
C1 [Notani, Masahiro; Bucher, B.; Fang, X.; Lamm, L.; Ma, C.; Tan, W.; Tang, X. D.; Thomas, S.] Univ Notre Dame, Dept Phys, Notre Dame, IN 46556 USA.
[Davies, P.; Martin, E.; Thomas, S.] Univ Surrey, Surrey GU2 7XH, England.
[Jiang, C. L.] Argonne Natl Lab, Div Phys, Argonne, IL 60439 USA.
RP Notani, M (reprint author), Univ Notre Dame, Dept Phys, Notre Dame, IN 46556 USA.
RI Tan, Wanpeng/A-4687-2008; Tang, Xiaodong /F-4891-2016
OI Tan, Wanpeng/0000-0002-5930-1823;
NR 11
TC 4
Z9 4
U1 0
U2 1
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 192C
EP 194C
DI 10.1016/j.nuclphysa.2009.12.037
PG 3
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800051
ER
PT J
AU Setoodehnia, K
Chen, AA
Chen, J
Clark, JA
Deibel, C
Kahl, D
Lennard, WN
Parker, PD
Wrede, C
AF Setoodehnia, K.
Chen, A. -A.
Chen, J.
Clark, J. -A.
Deibel, C.
Kahl, D.
Lennard, W. -N.
Parker, P. -D.
Wrede, C.
TI Study of astrophysically important resonant states in S-30 using the
S-32(p,t)S-30 reaction
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
C1 [Setoodehnia, K.; Chen, A. -A.; Chen, J.; Kahl, D.] McMaster Univ, Dept Phys & Astron, Hamilton, ON L8S 4M1, Canada.
[Clark, J. -A.; Deibel, C.] Argonne Natl Lab, Div Phys, Argonne, IL 60439 USA.
[Lennard, W. -N.] Univ Western Ontario, Dept Phys & Astron, London, ON N6A 3K7, Canada.
[Parker, P. -D.] Yale Univ, Wright Nucl Struct Lab, New Haven, CT 06520 USA.
[Wrede, C.] Univ Washington, Dept Phys, Seattle, WA 98195 USA.
RP Setoodehnia, K (reprint author), McMaster Univ, Dept Phys & Astron, Hamilton, ON L8S 4M1, Canada.
OI Chen, Jun/0000-0003-0447-7466
NR 7
TC 1
Z9 1
U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 205C
EP 207C
DI 10.1016/j.nuclphysa.2009.12.041
PG 3
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800055
ER
PT J
AU Jia, JY
AF Jia, Jiangyong
TI Probing the properties of the strongly-interacting quark gluon plasma at
RHIC
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
ID COLLABORATION; PERSPECTIVE; COLLISIONS; MATTER
C1 [Jia, Jiangyong] SUNY Stony Brook, Dept Chem, Stony Brook, NY 11794 USA.
[Jia, Jiangyong] Brookhaven Natl Lab, Dept Phys, Upton, NY 11796 USA.
RP Jia, JY (reprint author), SUNY Stony Brook, Dept Chem, Stony Brook, NY 11794 USA.
NR 41
TC 0
Z9 0
U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
EI 1873-1554
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 229C
EP 236C
DI 10.1016/j.nuclphysa.2009.12.047
PG 8
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800060
ER
PT J
AU Zhou, K
Xu, N
Zhuang, PF
AF Zhou, Kai
Xu, Nu
Zhuang, Pengfei
TI Transverse Momentum Distribution as a Probe of J/psi Production
Mechanism in Heavy Ion Collisions
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
ID CHARMONIUM SUPPRESSION; NUCLEAR COLLISIONS; SPS
C1 [Zhou, Kai; Zhuang, Pengfei] Tsinghua Univ, Dept Phys, Beijing 100084, Peoples R China.
[Xu, Nu] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Nucl Sci, Berkeley, CA 94720 USA.
RP Zhou, K (reprint author), Tsinghua Univ, Dept Phys, Beijing 100084, Peoples R China.
NR 21
TC 11
Z9 12
U1 0
U2 4
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
EI 1873-1554
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 249C
EP 252C
DI 10.1016/j.nuclphysa.2009.12.051
PG 4
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800064
ER
PT J
AU Csernai, LP
Cheng, Y
Magas, VK
Mishustin, IN
Strottman, D
AF Csernai, L. P.
Cheng, Y.
Magas, V. K.
Mishustin, I. N.
Strottman, D.
TI Collective Flow in Ultra-relativistic Collisions
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
C1 [Csernai, L. P.; Cheng, Y.; Mishustin, I. N.; Strottman, D.] Goethe Univ Frankfurt, Frankfurt Inst Adv Studies, D-60438 Frankfurt, Germany.
[Csernai, L. P.; Cheng, Y.; Magas, V. K.] Univ Bergen, Inst Phys & Technol, N-5007 Bergen, Norway.
[Csernai, L. P.] Res Inst Particle & Nucl Phys, MTA KFKI, H-1525 Budapest, Hungary.
[Cheng, Y.] Huazhong Normal Univ, Inst Particle Phys, Wuhan 430079, Peoples R China.
[Magas, V. K.] Univ Barcelona, Dept Estructura & Constituents Mat, E-08028 Barcelona, Spain.
[Mishustin, I. N.] IV Kurchatov Atom Energy Inst, Moscow 123182, Russia.
[Strottman, D.] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
RP Csernai, LP (reprint author), Goethe Univ Frankfurt, Frankfurt Inst Adv Studies, Ruth Moufang Str 1, D-60438 Frankfurt, Germany.
EM csernaia@ift.uib.no
RI Magas, Volodymyr/J-8599-2016
OI Magas, Volodymyr/0000-0003-3701-8362
NR 11
TC 10
Z9 10
U1 1
U2 5
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 261C
EP 264C
DI 10.1016/j.nuclphysa.2009.12.054
PG 4
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800067
ER
PT J
AU Wu, KJ
Liu, F
Xu, N
AF Wu, K. -J.
Liu, F.
Xu, N.
TI The Number-of-Quark Scaling of v(2) in root(NN)-N-s=9.2 GeV Au+Au
Collisions
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
ID MODEL
AB In this paper we report the model results Of v(2) for identified hadrons (pi, K, p, A and 0) from root sNN = 9.2 GeV Au+Au collisions. AMPT and UrQN4D models are used in our analysis. It is shown that the number of quark scaling in v(2) can be used for the search for the phase boundary in high-energy nuclear collisions. (Some figures in this article are in colour only in the electronic version)
C1 [Wu, K. -J.; Liu, F.] Huazhong Normal Univ, Inst Particle Phys, Wuhan, Peoples R China.
[Wu, K. -J.; Liu, F.] Minist Educ, Key Lab Quark & Lepton Phys, Beijing, Peoples R China.
[Xu, N.] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Nucl Sci, Berkeley, CA 94720 USA.
RP Wu, KJ (reprint author), Huazhong Normal Univ, Inst Particle Phys, Wuhan, Peoples R China.
EM wukj@iopp.ccnu.edu.cn; fliu@iopp.ccnu.edu.cn
NR 16
TC 2
Z9 2
U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 303C
EP 305C
DI 10.1016/j.nuclphysa.2010.01.004
PG 3
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800079
ER
PT J
AU Huang, BC
Zhang, YF
Zhang, ZP
Xu, ZB
AF Huang, Bingchu
Zhang, Yifei
Zhang, Ziping
Xu, Zhangbu
TI Enhancement of eta meson constrained by charm cross section measurement
in Au plus Au Collisions at 200 GeV
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
AB Charm quark is believed as a unique tool to probe the hot dense matter created in heavy ion collisions. The scaling behavior with number of binary collisions of charm cross section was observed by STAR experiment in d+Au, Cu+Cu and Au+Au collisions at 200 GeV. The current measurement of charm cross section relies on the non-photonic electrons and low transverse momentum(p(T)) muons from charm semileptonic decay. It is crucial to understand the contribution of the background such as muon from eta decay. The simulation result shows a linear dependence of yields between eta and its daughter muon at low p(T), which allows us to study the eta enhancement via the measurement of muon yield. The theory of Chiral Symmetry predicts the enhancement of eta meson production in Au+Au collisions. Assuming there is no enhancement of eta yield in p + p or d+Au collisions, the binary scaling of measured charm cross-section constrains the enhancement factor of eta production in Au+Au collisions at 200 GeV.
C1 [Huang, Bingchu; Zhang, Yifei; Zhang, Ziping] Univ Sci & Technol China, Dept Modern Phys, Hefei 230026, Anhui, Peoples R China.
[Xu, Zhangbu] Brookhaven Natl Lab, Upton, NY 11973 USA.
RP Huang, BC (reprint author), Univ Sci & Technol China, Dept Modern Phys, Hefei 230026, Anhui, Peoples R China.
EM bchuang@mail.ustc.edu.cn
NR 9
TC 0
Z9 0
U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 313C
EP 316C
DI 10.1016/j.nuclphysa.2010.01.007
PG 4
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800082
ER
PT J
AU Liu, YP
Xu, N
Zhuang, PF
AF Liu, Yunpeng
Xu, Nu
Zhuang, Pengfei
TI J/psi elliptic flow in relativistic heavy ion collisions
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
AB The J/psi elliptic flow in high energy nuclear collisions is calculated in a transport model. While the flow is very small at SPS and RHIC energies, it is strongly enhanced at LHC energy due to the dominance of the regeneration mechanism.
C1 [Liu, Yunpeng; Zhuang, Pengfei] Tsinghua Univ, Dept Phys, Beijing 100084, Peoples R China.
[Xu, Nu] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Nucl Sci, Berkeley, CA 94720 USA.
RP Liu, YP (reprint author), Tsinghua Univ, Dept Phys, Beijing 100084, Peoples R China.
EM liuyp06@mails.tsinghua.edu.cn; zhuangpf@mail.tsinghua.edu.cn
NR 10
TC 33
Z9 34
U1 0
U2 3
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 317C
EP 319C
DI 10.1016/j.nuclphysa.2010.01.008
PG 3
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800083
ER
PT J
AU Seweryniak, D
Khoo, TL
Ahmad, I
Kondev, FG
Robinsou, A
Tandel, SK
Asai, M
Back, BB
Carpenter, MP
Chowdhury, P
Davids, CN
Eeckhaudt, S
Greene, JP
Greenlees, PT
Gros, S
Hauschild, K
Heinz, A
Herzberg, RD
Janssens, RVF
Jenkins, DG
Jones, GD
Ketelhut, S
Lauritsen, T
Lister, CJ
Lopez-Martens, A
Marley, P
McCutchan, EA
Nakatsukasa, T
Papadakis, P
Peterson, D
Qian, J
Rostron, D
Stefanescu, I
Tandel, US
Wang, XF
Zhu, SF
AF Seweryniak, D.
Khoo, T. L.
Ahmad, I.
Kondev, F. G.
Robinsou, A.
Tandel, S. K.
Asai, M.
Back, B. B.
Carpenter, M. P.
Chowdhury, P.
Davids, C. N.
Eeckhaudt, S.
Greene, J. P.
Greenlees, P. T.
Gros, S.
Hauschild, K.
Heinz, A.
Herzberg, R. -D.
Janssens, R. V. F.
Jenkins, D. G.
Jones, G. D.
Ketelhut, S.
Lauritsen, T.
Lister, C. J.
Lopez-Martens, A.
Marley, P.
McCutchan, E. A.
Nakatsukasa, T.
Papadakis, P.
Peterson, D.
Qian, J.
Rostron, D.
Stefanescu, I.
Tandel, U. S.
Wang, X. F.
Zhu, S. F.
TI Bridging the nuclear structure gap between stable and super heavy nuclei
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
ID SPECTROSCOPY; ELEMENTS; ISOMERS; REGION; NO-254
AB Due to recent advances in detection techniques, excited states in several trans-fermium nuclei were studied in many laboratories worldwide, shedding light on the evolution of nuclear structure between stable nuclei and the predicted island of stability centered around spherical magic numbers. In particular, studies of K-isomers around the Z=100 and N=152 deformed shell closures extended information on the energies of Nilsson orbitals at the Fermi surface. Some of these orbitals originate from spherical states, which are relevant to the magic gaps in super-heavy nuclei. The single-particle energies can be used to test various theoretical predictions and aid in extrapolations towards heavier systems. So far, the Woods-Saxon potential reproduces the data best, while self-consistent approaches miss some of the observed features, indicating a need to modify the underlying effective nucleon-nucleon interactions.
C1 [Seweryniak, D.; Khoo, T. L.; Ahmad, I.; Kondev, F. G.; Back, B. B.; Davids, C. N.; Greene, J. P.; Gros, S.; Janssens, R. V. F.; Lauritsen, T.; McCutchan, E. A.; Peterson, D.; Zhu, S. F.] Argonne Natl Lab, Argonne, IL 60439 USA.
[Robinsou, A.; Jenkins, D. G.] Univ York, York YO10 5DD, N Yorkshire, England.
[Tandel, S. K.; Tandel, U. S.] Univ Massachusetts, Lowell, MA USA.
[Eeckhaudt, S.; Greenlees, P. T.; Ketelhut, S.] Univ Jyvaskyla, SF-40351 Jyvaskyla, Finland.
[Hauschild, K.; Lopez-Martens, A.] CNRS, IN2P3, CSNSM, F-91405 Orsay, France.
[Heinz, A.; Qian, J.] Yale Univ, WNSL, New Haven, CT USA.
[Herzberg, R. -D.; Jones, G. D.; Lister, C. J.; Papadakis, P.; Rostron, D.] Univ Liverpool, Liverpool L69 3BX, Merseyside, England.
[Nakatsukasa, T.] RIKEN, Nishina Ctr, Wako, Saitama, Japan.
[Stefanescu, I.] Univ Maryland, College Pk, MD 20742 USA.
[Wang, X. F.] Univ Notre Dame, Notre Dame, IN 46556 USA.
RP Seweryniak, D (reprint author), Argonne Natl Lab, 9700 S Cass Ave, Argonne, IL 60439 USA.
EM seweryniak@anl.gov; janssens@anl.gov
RI Hauschild, Karl/A-6726-2009; Qian, Jing/F-9639-2010; Herzberg,
Rolf-Dietmar/E-1558-2011; Heinz, Andreas/E-3191-2014; Carpenter,
Michael/E-4287-2015; Nakatsukasa, Takashi/O-9995-2014;
OI Carpenter, Michael/0000-0002-3237-5734; Papadakis,
Philippos/0000-0001-7509-4257
NR 19
TC 4
Z9 4
U1 0
U2 2
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 357C
EP 361C
DI 10.1016/j.nuclphysa.2010.01.039
PG 5
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800091
ER
PT J
AU Pei, JC
Nazarewicz, W
Sheikh, JA
Kerman, AK
AF Pei, J. C.
Nazarewicz, W.
Sheikh, J. A.
Kerman, A. K.
TI Fission barriers and neutron gas in compound superheavy nuclei
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
AB Fission and neutron emission are the principal cooling mechanisms of the compound superheavy nuclei. In the framework of the Finite-Temperature Hartree-Fock-Bogoliubov method, the fission barriers and neutron gas have been studied in the excited superheavy systems. Very different energy dependence of fission barriers has been found for (278)112 and (292)114. On the other hand, the energy dependence of thermal neutron gas has been found to be almost identical for both systems.
C1 [Pei, J. C.] Oak Ridge Natl Lab, Joint Inst Heavy Ion Res, Oak Ridge, TN 37831 USA.
[Pei, J. C.; Nazarewicz, W.; Sheikh, J. A.; Kerman, A. K.] Univ Tennessee, Dept Phys & Astron, Knoxville, TN 37996 USA.
[Pei, J. C.; Nazarewicz, W.; Sheikh, J. A.; Kerman, A. K.] Oak Ridge Natl Lab, Div Phys, Oak Ridge, TN 37831 USA.
[Nazarewicz, W.] Warsaw Univ, Inst Theoret Phys, PL-00681 Warsaw, Poland.
[Kerman, A. K.] MIT, Ctr Theoret Phys, Cambridge, MA 02139 USA.
RP Pei, JC (reprint author), Oak Ridge Natl Lab, Joint Inst Heavy Ion Res, Oak Ridge, TN 37831 USA.
EM peij@ornl.gov; witek@utk.edu
RI Pei, Junchen/E-3532-2010
NR 10
TC 3
Z9 3
U1 0
U2 4
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 381C
EP 383C
DI 10.1016/j.nuclphysa.2010.01.045
PG 3
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800097
ER
PT J
AU Matsuta, K
Mihara, M
Fukuda, M
Nishimura, D
Matsumiya, R
Nagatomo, T
Ohtsubo, T
Izumikawa, T
Momota, S
Zhou, DM
Yuan, DQ
Zheng, YN
Zuo, Y
Fan, P
Zhu, SY
Kitagawa, A
Kanazawa, M
Torikoshi, M
Sato, S
Minamisono, K
Sumikama, T
Ogura, M
Tanigaki, M
Ozawa, A
Yamaguchi, T
Suzuki, T
Tanaka, K
Takechi, M
Minamisono, T
Nojiri, Y
Levy, P
Symons, TJM
Alonso, JR
Krebs, GF
AF Matsuta, K.
Mihara, M.
Fukuda, M.
Nishimura, D.
Matsumiya, R.
Nagatomo, T.
Ohtsubo, T.
Izumikawa, T.
Momota, S.
Zhou, D. M.
Yuan, D. Q.
Zheng, Y. N.
Zuo, Y.
Fan, P.
Zhu, S. Y.
Kitagawa, A.
Kanazawa, M.
Torikoshi, M.
Sato, S.
Minamisono, K.
Sumikama, T.
Ogura, M.
Tanigaki, M.
Ozawa, A.
Yamaguchi, T.
Suzuki, T.
Tanaka, K.
Takechi, Maya
Minamisono, T.
Nojiri, Y.
Levy, P.
Symons, T. J. M.
Alonso, J. R.
Krebs, G. F.
TI Nuclear structure and fundamental symmetry studied through nuclear
moments
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
ID MAGNETIC-MOMENT; C-9
AB We report recent situation of anomaly in spin expectation value found in C-9-Li-9 mirror pair, recent analysis of the nuclear spin in terms of orbital or intrinsic and proton or neutron, and a result from the study of the G-parity conservation law through beta-ray angular correlation in terms of its nuclear orientation.
C1 [Matsuta, K.; Mihara, M.; Fukuda, M.; Nishimura, D.; Matsumiya, R.; Ogura, M.] Osaka Univ, Dept Phys, Osaka 5600043, Japan.
[Nagatomo, T.] Int Christian Univ, Dept Phys, Tokyo 1818585, Japan.
[Ohtsubo, T.] Niigata Univ, Dept Phys, Niigata 9502181, Japan.
[Izumikawa, T.] Niigata Univ, RI Ctr, Niigata 9518510, Japan.
[Momota, S.; Nojiri, Y.] Kochi Univ Technol, Kochi 7828502, Japan.
[Zhou, D. M.; Yuan, D. Q.; Zheng, Y. N.; Zuo, Y.; Fan, P.; Zhu, S. Y.] CIAE, Beijing 102413, Peoples R China.
[Kitagawa, A.; Kanazawa, M.; Torikoshi, M.; Sato, S.] Natl Inst Radiol Sci, Chiba 2638555, Japan.
[Minamisono, K.] Michigan State Univ, NSCL, E Lansing, MI 48824 USA.
[Sumikama, T.] Tokyo Univ Sci, Chiba 2780022, Japan.
[Tanigaki, M.] Kyoto Univ, Inst Res Reactor, Osaka 5900494, Japan.
[Ozawa, A.] Univ Tsukuba, Dept Phys, Tsukuba, Ibaraki 3058577, Japan.
[Yamaguchi, T.; Suzuki, T.] Saitama Univ, Dept Phys, Saitama 3383570, Japan.
[Tanaka, K.; Takechi, Maya] RIKEN, Nishina Ctr, Saitairia 3510198, Japan.
[Minamisono, T.] Fukui Univ Tech, Fukui 9108505, Japan.
[Levy, P.] TRIUMF, Vancouver, BC V6T 2A3, Canada.
[Symons, T. J. M.; Alonso, J. R.; Krebs, G. F.] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
RP Matsuta, K (reprint author), Osaka Univ, Dept Phys, Osaka 5600043, Japan.
EM matsuta@vg.phys.sci.osaka-u.ac.jp; mihara@vg.phys.sci.osaka-u.ac.jp;
mfukuda@phys.sci.osaka-u.ac.jp; daiki@vg.phys.sci.osaka-u.ac.jp;
zhuodm@ciae.ac.cn; yuandaqing@gmail.com; zhengyn@ciae.ac.cn;
zuoyi@ciae.ac.cn; fanping@ciae.ac.cn; zhusy@ciae.ac.cn;
takechi@ribf.riken.jp
NR 11
TC 1
Z9 1
U1 0
U2 2
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
EI 1873-1554
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 424C
EP 427C
DI 10.1016/j.nuclphysa.2010.01.055
PG 4
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800107
ER
PT J
AU Henzl, V
Henzlova, D
Kilburn, M
Verde, G
Brown, D
Chbihi, A
Coupland, D
Elson, J
Famiano, M
Herlitzius, C
Hudan, S
Lee, J
Lukyanov, S
Lynch, W
Rogers, A
Sanetullaev, A
Sobotka, L
de Souza, RT
Sun, ZY
Tsang, B
Wallace, M
Xu, K
Youngs, M
AF Henzl, V.
Henzlova, D.
Kilburn, M.
Verde, G.
Brown, D.
Chbihi, A.
Coupland, D.
Elson, J.
Famiano, M.
Herlitzius, C.
Hudan, S.
Lee, J.
Lukyanov, S.
Lynch, W.
Rogers, A.
Sanetullaev, A.
Sobotka, L.
de Souza, R. T.
Sun, Z. Y.
Tsang, B.
Wallace, M.
Xu, K.
Youngs, M.
TI Isospin effects in Ca-40,Ca-48+Ca-40,Ca-48 collisions
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
ID ARRAY
AB The isospin dependence of two proton correlations is studied in Ca-40+Ca-40 and Ca-48+Ca-48 collisions at E/A = 80 MeV. Measurements were performed with the HiRA detector array complemented by the 4 pi Ball at NSCL. We observe a strong isospin dependence of the pp-correlation functions; however the emitting source radius extracted using the imaging technique yields no sensitivity to the isospin of the reaction system. We interpret this result as a consequence of smaller fraction of fast proton emission in the neutron rich Ca-48 system.
C1 [Henzl, V.; Henzlova, D.; Kilburn, M.; Brown, D.; Coupland, D.; Herlitzius, C.; Lee, J.; Lukyanov, S.; Lynch, W.; Rogers, A.; Sanetullaev, A.; Sun, Z. Y.; Tsang, B.; Xu, K.; Youngs, M.] Michigan State Univ, NSCL, E Lansing, MI 48824 USA.
[Verde, G.] Ist Nazl Fis Nucl, Sez Catania, I-95123 Catania, Italy.
[Chbihi, A.] CEA, GANIL, F-14076 Caen, France.
[Chbihi, A.] CNRS, IN2P3, F-14076 Caen, France.
[Elson, J.; Sobotka, L.] Washington Univ, Dept Chem, St Louis, MO 63130 USA.
[Elson, J.; Sobotka, L.] Washington Univ, Dept Phys, St Louis, MO 63130 USA.
[Famiano, M.] Western Michigan Univ, Kalamazoo, MI 49008 USA.
[Hudan, S.; de Souza, R. T.] Indiana Univ, Cyclotron Facil, Bloomington, IN 47405 USA.
[Wallace, M.] Los Alamos Natl Lab, Los Alamos, NM 87544 USA.
RP Henzl, V (reprint author), MIT, 77 Massachusetts Ave, Cambridge, MA 02139 USA.
EM henzl@mit.edu; lee@nscl.msu.edu; lynch@nscl.msu.edu
RI Sun, Zhiyu/B-3922-2012; Verde, Giuseppe/J-3609-2012; Lynch,
William/I-1447-2013
OI Sun, Zhiyu/0000-0002-7667-3178; Lynch, William/0000-0003-4503-176X
NR 7
TC 0
Z9 0
U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 552C
EP 554C
DI 10.1016/j.nuclphysa.2010.01.088
PG 3
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800140
ER
PT J
AU Hix, WR
Lentz, EJ
Baird, M
Messer, OEB
Mezzacappa, A
Lee, CT
Bruenn, SW
Blondin, JM
Marronetti, P
AF Hix, W. R.
Lentz, E. J.
Baird, M.
Messer, O. E. B.
Mezzacappa, A.
Lee, C-T
Bruenn, S. W.
Blondin, J. M.
Marronetti, P.
TI Understanding Core-Collapse Supernovae
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
ID HEAVY-ION COLLISIONS; EQUATION-OF-STATE; NUMERICAL-MODEL;
NUCLEAR-MATTER; DENSE MATTER; HOT
AB Our understanding of core-collapse supernovae continues to improve as better microphysics is included in increasingly realistic neutrino-radiationhydrodynamic simulations. Recent multi-dimensional models with spectral neutrino transport, which slowly develop successful explosions for a range of progenitors between 12 and 25 solar mass, have motivated changes in our understanding of the neutrino reheating mechanism. In a similar fashion, improvements in nuclear physics, most notably explorations of weak interactions on nuclei and the nuclear equation of state, continue to refine our understanding of how supernovae explode. Recent progresses on both the macroscopic and microscopic effects that affect core-collapse supernovae are discussed.
C1 [Hix, W. R.; Lentz, E. J.; Mezzacappa, A.] Oak Ridge Natl Lab, Div Phys, Oak Ridge, TN 37831 USA.
[Hix, W. R.; Lentz, E. J.; Baird, M.; Messer, O. E. B.; Mezzacappa, A.; Lee, C-T] Univ Tennessee, Dept Phys & Astron, Knoxville, TN 37919 USA.
[Messer, O. E. B.] Oak Ridge Natl Lab, Ctr Computat Sci, Oak Ridge, TN 37831 USA.
[Bruenn, S. W.; Marronetti, P.] Florida Atlantic Univ, Dept Phys, Boca Raton, FL 33431 USA.
[Blondin, J. M.] N Carolina State Univ, Dept Phys, Raleigh, NC 27695 USA.
RP Hix, WR (reprint author), Oak Ridge Natl Lab, Div Phys, POB 2008, Oak Ridge, TN 37831 USA.
EM raph@ornl.gov
RI Hix, William/E-7896-2011; Messer, Bronson/G-1848-2012; Lentz,
Eric/M-7173-2015; Mezzacappa, Anthony/B-3163-2017
OI Hix, William/0000-0002-9481-9126; Messer, Bronson/0000-0002-5358-5415;
Lentz, Eric/0000-0002-5231-0532; Mezzacappa, Anthony/0000-0001-9816-9741
NR 22
TC 2
Z9 2
U1 0
U2 2
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 602C
EP 607C
DI 10.1016/j.nuclphysa.2010.01.104
PG 6
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800156
ER
PT J
AU Jiang, CL
AF Jiang, C. L.
TI Survey of heavy-ion fusion hindrance and its implication on astrophysics
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
ID ACCRETING NEUTRON-STAR
AB The recently observed heavy-ion fusion hindrance at extreme sub-barrier energies is reviewed. The study has been extended to lighter heavy-ion fusion reactions. Reaction systems with positive Q-values have been surveyed and systematics of the hindrance behavior have been developed. The impact of the hindrance phenomenon on astrophysics is discussed.
C1 Argonne Natl Lab, Div Phys, Argonne, IL 60439 USA.
RP Jiang, CL (reprint author), Argonne Natl Lab, Div Phys, 9700 S Cass Ave, Argonne, IL 60439 USA.
EM jiang@phy.anl.gov
NR 19
TC 3
Z9 3
U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 615C
EP 620C
DI 10.1016/j.nuclphysa.2010.01.106
PG 6
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800158
ER
PT J
AU Smith, MS
AF Smith, Michael S.
TI Radioactive Beam Measurements to Probe Stellar Explosions
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
AB Unique beams of unstable nuclei from the Holifield Radioactive Ion Beam Facility at Oak Ridge National Laboratory are being used to measure the thermonuclear reactions that occur in novae, X-ray bursts, and supernovae. The astrophysical impact of these measurements is determined by synergistic nuclear data evaluations and element synthesis calculations. Results of recent measurements and explosion simulations are briefly described, along with future plans and software research tools for the community.
C1 Oak Ridge Natl Lab, Div Phys, Oak Ridge, TN 37831 USA.
RP Smith, MS (reprint author), Oak Ridge Natl Lab, Div Phys, POB 2008, Oak Ridge, TN 37831 USA.
EM smithms@ornl.gov
NR 14
TC 0
Z9 0
U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 631C
EP 634C
DI 10.1016/j.nuclphysa.2010.01.109
PG 4
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800161
ER
PT J
AU Lee, IY
AF Lee, I-Yang
TI Gamma-ray tracking detectors: physics opportunities and status of
GRETINA
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
ID BEAMS
AB Gamma-ray tracking detectors using highly segmented germanium detectors will give higher efficiency, better peak-to-total ratio and much higher position resolution than Cut-rent generation of detectors. Particularly, the capability of reconstructing the position of the interaction with millimeters resolution is needed to fully exploit the physics opportunities provided by the next generation radioactive beam facilities. This paper presents the basic concepts of tracking, examples of physics opportunities, and the status of the project GRETA/GRETINA.
C1 Univ Calif Berkeley, Lawrence Berkeley Lab, Div Nucl Sci, Berkeley, CA 94720 USA.
RP Lee, IY (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, Div Nucl Sci, 1 Cyclotron Rd, Berkeley, CA 94720 USA.
EM iylee@lbl.gov
NR 9
TC 8
Z9 8
U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 743C
EP 746C
DI 10.1016/j.nuclphysa.2010.01.134
PG 4
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800186
ER
PT J
AU Drouart, A
Amthor, AM
Boutin, D
Delferriere, O
Duval, M
Manikonda, S
Nolen, JA
Payet, J
Savajols, H
Stodel, MH
Uriot, D
AF Drouart, A.
Amthor, A. M.
Boutin, D.
Delferriere, O.
Duval, M.
Manikonda, S.
Nolen, J. A.
Payet, J.
Savajols, H.
Stodel, M. -H.
Uriot, D.
TI The Super Separator Spectrometer (S-3) for SPIRAL2 stable beams
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
AB S' (Super Separator Spectrometer) is a. device designed for experiments with the very high intensity stable beams of LINAG, the superconducting linear accelerator of GANIL, which will be built in the framework of SPIRAL2. These beams call reach intensities exceeding 100p mu A for lighter ions. These unprecedented intensities open new opportunities in several physics domains, e.g. super-heavy and very-heavy element properties, spectroscopy at and beyond the dripline, isomer and ground state properties, and the products of multi-nucleon transfer and deep-inelastic reactions. An international collaboration has been formed for proposing physics experiments and developing technical solutions for this new instrument. We present here the optical layout of the spectrometer and the studies of its multipole magnets.
C1 [Drouart, A.; Boutin, D.] CEA DSM IRFU SPhN, F-91191 Gif Sur Yvette, France.
[Amthor, A. M.; Duval, M.; Savajols, H.; Stodel, M. -H.] GANIL, F-14000 Caen, France.
[Delferriere, O.; Payet, J.; Uriot, D.] CEA DSM IRFU SACM, F-91191 Gif Sur Yvette, France.
[Manikonda, S.; Nolen, J. A.] Argonne Natl Lab, Argonne, IL 60439 USA.
RP Drouart, A (reprint author), CEA DSM IRFU SPhN, F-91191 Gif Sur Yvette, France.
EM antoine.drouart@cea.fr
RI Manikonda, Shashikant/D-6936-2011
NR 6
TC 14
Z9 14
U1 1
U2 6
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 747C
EP 750C
DI 10.1016/j.nuclphysa.2010.01.135
PG 4
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800187
ER
PT J
AU Mihara, M
Matsuta, K
Nishimura, D
Hirano, H
Komurasaki, J
Takahashi, S
Nagatomo, T
Matsumiya, R
Ogura, M
Akai, H
Momota, S
Ohtsubo, T
Izumikawa, Y
Zhou, DM
Zheng, YN
Yuan, DQ
Fan, P
Zuo, Y
Zhu, SY
Kitagawa, A
Kanazawa, M
Torikoshi, M
Sato, S
Fukuda, M
Ishikawa, D
Minamisono, T
Watanabe, R
Kubo, T
Nojiri, Y
Sumikama, T
Alonso, JR
Crebs, GF
Symons, TJM
AF Mihara, M.
Matsuta, K.
Nishimura, D.
Hirano, H.
Komurasaki, J.
Takahashi, S.
Nagatomo, T.
Matsumiya, R.
Ogura, M.
Akai, H.
Momota, S.
Ohtsubo, T.
Izumikawa, Y.
Zhou, Dongmei
Zheng, Yongnan
Yuan, Daqing
Fan, Ping
Zuo, Yi
Zhu, Shengyun
Kitagawa, A.
Kanazawa, M.
Torikoshi, M.
Sato, S.
Fukuda, M.
Ishikawa, D.
Minamisono, T.
Watanabe, R.
Kubo, T.
Nojiri, Y.
Sumikama, T.
Alonso, J. R.
Crebs, G. F.
Symons, T. J. M.
TI Nuclear spin-lattice relaxation of light impurities in platinum studied
by using polarized unstable nuclear beams
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
ID METALS
AB The spin lattice-relaxation rates of short-lived unstable nuclei Al-25 and (28)p if, Pt has been measured by means of the beta-NMR technique, in order to study the electronic structure of dilute impurities in Pt. From the obtained spin-lattice relaxation rates, Knight shifts K-c were estimated to be K-c[Al in Pt] = (0.45 +/- 0.09)x10(-3) and K-c[P in Pt] = (4 +/- 2 4) x 10(-3) using the Korringa relation. These values were evaluated by comparing to the first principle Calculations.
C1 [Nagatomo, T.] RIKEN, Nishina Ctr Accelerator Based Sci, Wako, Saitama 3510198, Japan.
[Mihara, M.; Matsuta, K.; Nishimura, D.; Komurasaki, J.; Matsumiya, R.; Ogura, M.; Akai, H.; Fukuda, M.; Ishikawa, D.] Osaka Univ, Dept Phys, Osaka 5600043, Japan.
[Hirano, H.; Takahashi, S.; Ohtsubo, T.; Watanabe, R.; Kubo, T.] Niigata Univ, Dept Phys, Niigata 9502181, Japan.
[Momota, S.; Nojiri, Y.] Kochi Univ Technol, Kochi 7828502, Japan.
[Izumikawa, Y.] Niigata Univ, Radioisotope Ctr, Niigata 9518510, Japan.
[Zhou, Dongmei; Zheng, Yongnan; Yuan, Daqing; Fan, Ping; Zuo, Yi; Zhu, Shengyun] China Inst Atom Energy, Beijing 102413, Peoples R China.
[Kitagawa, A.; Kanazawa, M.; Torikoshi, M.; Sato, S.] Natl Inst Radiol Sci, Inage Ku, Chiba 2638555, Japan.
[Minamisono, T.] Fukui Univ Technol, Fukui 9108505, Japan.
[Sumikama, T.] Tokyo Univ Sci, Chiba 2788510, Japan.
[Alonso, J. R.; Crebs, G. F.; Symons, T. J. M.] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
RP Nagatomo, T (reprint author), RIKEN, Nishina Ctr Accelerator Based Sci, 2-1 Hirosawa, Wako, Saitama 3510198, Japan.
EM mihara@vg.phys.sci.osaka-u.ac.jp; matsuta@vg.phys.sci.osaka-u.ac.jp;
daiki@vg.phys.sci.osaka-u.ac.jp; zhuodm@ciae.ac.cn; zhengyn@ciae.ac.cn;
yuandaqing@gmail.com; fanping@ciae.ac.cn; zhusy@ciae.ac.cn;
mfukuda@phys.sci.osaka-u.ac.jp
NR 6
TC 0
Z9 0
U1 0
U2 6
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
EI 1873-1554
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 777C
EP 779C
DI 10.1016/j.nuclphysa.2010.01.144
PG 3
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800196
ER
PT J
AU Yin, ZB
Mei, DM
Elliott, SR
AF Yin, Z. -B
Mei, D. -M
Elliott, S. R.
TI Studies on cosmogenic production as a background for rare physics
processes
SO NUCLEAR PHYSICS A
LA English
DT Article; Proceedings Paper
CT 10th International Conference on Nucleus-Nucleus Collisions (NN2009)
CY AUG 16-21, 2009
CL Beijing, PEOPLES R CHINA
SP China Inst Atom Energy
AB We present the cosmogenic production rates of several long-lived isotopes estimated by using updated cosmic-ray neutron flux measurements and excitation functions from TALYS code 1.0. We find that the cosmogenic isotopes produced inside different detector target materials can be potential sources of background in searching for rare physics processes Such as the detection of dark matter and neutrinoless double-beta decay.
C1 [Yin, Z. -B] Huazhong Normal Univ, Inst Particle Phys, Wuhan 430079, Peoples R China.
[Yin, Z. -B] Huazhong Normal Univ, Minist China, Key Lab Quark & Lepton Phys, Wuhan 430079, Peoples R China.
[Yin, Z. -B; Mei, D. -M] Univ S Dakota, Dept Phys, Vermillion, SD 57069 USA.
[Elliott, S. R.] Los Alamos Natl Lab, Los Alamos, NM 87547 USA.
RP Yin, ZB (reprint author), Huazhong Normal Univ, Inst Particle Phys, Wuhan 430079, Peoples R China.
EM zbyin@mail.ccnu.edu.cn; dongming.mei@usd.edu
NR 14
TC 1
Z9 1
U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
EI 1873-1554
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 823C
EP 825C
DI 10.1016/j.nuclphysa.2010.01.157
PG 3
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800209
ER
PT J
AU Henning, WF
AF Henning, W. F.
TI Conference Summary
SO NUCLEAR PHYSICS A
LA English
DT Editorial Material
C1 Argonne Natl Lab, Div Phys, Argonne, IL 60439 USA.
RP Henning, WF (reprint author), Argonne Natl Lab, Div Phys, 9700 S Cass Ave, Argonne, IL 60439 USA.
EM wfhenning@anl.gov
NR 0
TC 0
Z9 0
U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0375-9474
J9 NUCL PHYS A
JI Nucl. Phys. A
PD MAR 1
PY 2010
VL 834
IS 1-4
BP 826C
EP 833C
DI 10.1016/j.nuclphysa.2010.01.158
PG 8
WC Physics, Nuclear
SC Physics
GA 573QX
UT WOS:000275930800210
ER
PT J
AU Chekanov, S
Derrick, M
Magill, S
Musgrave, B
Nicholass, D
Repond, J
Yoshida, R
Mattingly, MCK
Antonioli, P
Bari, G
Bellagamba, L
Boscherini, D
Bruni, A
Bruni, G
Cindolo, F
Corradi, M
Iacobucci, G
Margotti, A
Nania, R
Polini, A
Antonelli, S
Basile, M
Bindi, M
Cifarelli, L
Contin, A
De Pasquale, S
Sartorelli, G
Zichichi, A
Bartsch, D
Brock, I
Hartmann, H
Hilger, E
Jakob, HP
Jungst, M
Nuncio-Quiroz, AE
Paul, E
Samson, U
Schonberg, V
Shehzadi, R
Wlasenko, M
Morris, JD
Kaur, M
Kaur, P
Singh, I
Capua, M
Fazio, S
Mastroberardino, A
Schioppa, M
Susinno, G
Tassi, E
Kim, JY
Ibrahim, ZA
Idris, FM
Kamaluddin, B
Abdullah, WATW
Ning, Y
Ren, Z
Sciulli, F
Chwastowski, J
Eskreys, A
Figiel, J
Galas, A
Olkiewicz, K
Pawlik, B
Stopa, P
Zawiejski, L
Adamczyk, L
Bold, T
Grabowska-Bold, I
Kisielewska, D
Lukasik, J
Przybycien, M
Suszycki, L
Kotanski, A
Slominski, W
Bachynska, O
Behnke, O
Behr, J
Behrens, U
Blohm, C
Borras, K
Bot, D
Ciesielski, R
Coppola, N
Fang, S
Geiser, A
Gottlicher, P
Grebenyuk, J
Gregor, I
Haas, T
Hain, W
Huttmann, A
Januschek, F
Kahle, B
Katkov, II
Klein, U
Kotz, U
Kowalski, H
Libov, V
Lisovyi, M
Lobodzinska, E
Lohr, B
Mankel, R
Melzer-Pellmann, IA
Miglioranzi, S
Montanari, A
Namsoo, T
Notz, D
Parenti, A
Roloff, P
Rubinsky, I
Schneekloth, U
Spiridonov, A
Szuba, D
Szuba, J
Theedt, T
Tomaszewska, J
Wolf, G
Wrona, K
Yagues-Molina, AG
Youngman, C
Zeuner, W
Drugakov, V
Lohmann, W
Schlenstedt, S
Barbagli, G
Gallo, E
Pelfer, PG
Bamberger, A
Dobur, D
Karstens, F
Vlasov, NN
Bussey, PJ
Doyle, AT
Forrest, M
Saxon, DH
Skillicorn, IO
Gialas, I
Papageorgiu, K
Holm, U
Klanner, R
Lohrmann, E
Perrey, H
Schleper, P
Schorner-Sadenius, T
Sztuk, J
Stadie, H
Turcato, M
Long, KR
Tapper, AD
Matsumoto, T
Nagano, K
Tokushuku, K
Yamada, S
Yamazaki, Y
Barakbaev, AN
Boos, EG
Pokrovskiy, NS
Zhautykov, BO
Aushev, V
Borodin, M
Kadenko, I
Korol, I
Kuprash, O
Lontkovskyi, D
Makarenko, I
Onishchuk, Y
Salii, A
Sorokin, I
Verbytskyi, A
Viazlo, V
Volynets, O
Zenaiev, O
Zolko, M
Son, D
de Favereau, J
Piotrzkowski, K
Barreiro, F
Glasman, C
Jimenez, M
del Peso, J
Ron, E
Soares, M
Terron, J
Uribe-Estrada, C
Corriveau, F
Schwartz, J
Zhou, C
Tsurugai, T
Antonov, A
Dolgoshein, BA
Gladkov, D
Sosnovtsev, V
Stifutkin, A
Suchkov, S
Dementiev, RK
Ermolov, PF
Gladilin, LK
Golubkov, YA
Khein, LA
Korzhavina, IA
Kuzmin, VA
Levchenko, BB
Lukina, OY
Proskuryakov, AS
Shcheglova, LM
Zotkin, DS
Abt, I
Caldwell, A
Kollar, D
Reisert, B
Schmidke, WB
Grigorescu, G
Keramidas, A
Koffeman, E
Kooijman, P
Pellegrino, A
Tiecke, H
Vazquez, M
Wiggers, L
Brummer, N
Bylsma, B
Durkin, LS
Lee, A
Ling, TY
Cooper-Sarkar, AM
Devenish, RCE
Ferrando, J
Foster, B
Gwenlan, C
Horton, K
Oliver, K
Robertson, A
Walczak, R
Bertolin, A
Dal Corso, F
Dusini, S
Longhin, A
Stanco, L
Brugnera, R
Carlin, R
Garfagnini, A
Limentani, S
Oh, BY
Raval, A
Whitmore, JJ
Iga, Y
D'Agostini, G
Marini, G
Nigro, A
Hart, JC
Abramowicz, H
Ingbir, R
Kananov, S
Levy, A
Stern, A
Ishitsuka, M
Kanno, T
Kuze, M
Maeda, J
Hori, R
Okazaki, N
Shimizu, S
Hamatsu, R
Kitamura, S
Ota, O
Ri, YD
Costa, M
Ferrero, MI
Monaco, V
Sacchi, R
Sola, V
Solano, A
Arneodo, M
Ruspa, M
Fourletov, S
Martin, JF
Stewart, TP
Boutle, SK
Butterworth, JM
Jones, TW
Loizides, JH
Wing, M
Brzozowska, B
Ciborowski, J
Grzelak, G
Kulinski, P
Luzniak, P
Malka, J
Nowak, RJ
Pawlak, JM
Perlanski, W
Zarnecki, AF
Adamus, M
Plucinski, P
Tymieniecka, T
Eisenberg, Y
Hochman, D
Karshon, U
Brownson, E
Reeder, DD
Savin, AA
Smith, WH
Wolfe, H
Bhadra, S
Catterall, CD
Hartner, G
Noor, U
Whyte, J
AF Chekanov, S.
Derrick, M.
Magill, S.
Musgrave, B.
Nicholass, D.
Repond, J.
Yoshida, R.
Mattingly, M. C. K.
Antonioli, P.
Bari, G.
Bellagamba, L.
Boscherini, D.
Bruni, A.
Bruni, G.
Cindolo, F.
Corradi, M.
Iacobucci, G.
Margotti, A.
Nania, R.
Polini, A.
Antonelli, S.
Basile, M.
Bindi, M.
Cifarelli, L.
Contin, A.
De Pasquale, S.
Sartorelli, G.
Zichichi, A.
Bartsch, D.
Brock, I.
Hartmann, H.
Hilger, E.
Jakob, H. -P.
Juengst, M.
Nuncio-Quiroz, A. E.
Paul, E.
Samson, U.
Schoenberg, V.
Shehzadi, R.
Wlasenko, M.
Morris, J. D.
Kaur, M.
Kaur, P.
Singh, I.
Capua, M.
Fazio, S.
Mastroberardino, A.
Schioppa, M.
Susinno, G.
Tassi, E.
Kim, J. Y.
Ibrahim, Z. A.
Idris, F. Mohamad
Kamaluddin, B.
Abdullah, W. A. T. Wan
Ning, Y.
Ren, Z.
Sciulli, F.
Chwastowski, J.
Eskreys, A.
Figiel, J.
Galas, A.
Olkiewicz, K.
Pawlik, B.
Stopa, P.
Zawiejski, L.
Adamczyk, L.
Bold, T.
Grabowska-Bold, I.
Kisielewska, D.
Lukasik, J.
Przybycien, M.
Suszycki, L.
Kotanski, A.
Slominski, W.
Bachynska, O.
Behnke, O.
Behr, J.
Behrens, U.
Blohm, C.
Borras, K.
Bot, D.
Ciesielski, R.
Coppola, N.
Fang, S.
Geiser, A.
Goettlicher, P.
Grebenyuk, J.
Gregor, I.
Haas, T.
Hain, W.
Huettmann, A.
Januschek, F.
Kahle, B.
Katkov, I. I.
Klein, U.
Koetz, U.
Kowalski, H.
Libov, V.
Lisovyi, M.
Lobodzinska, E.
Loehr, B.
Mankel, R.
Melzer-Pellmann, I. -A.
Miglioranzi, S.
Montanari, A.
Namsoo, T.
Notz, D.
Parenti, A.
Roloff, P.
Rubinsky, I.
Schneekloth, U.
Spiridonov, A.
Szuba, D.
Szuba, J.
Theedt, T.
Tomaszewska, J.
Wolf, G.
Wrona, K.
Yaguees-Molina, A. G.
Youngman, C.
Zeuner, W.
Drugakov, V.
Lohmann, W.
Schlenstedt, S.
Barbagli, G.
Gallo, E.
Pelfer, P. G.
Bamberger, A.
Dobur, D.
Karstens, F.
Vlasov, N. N.
Bussey, P. J.
Doyle, A. T.
Forrest, M.
Saxon, D. H.
Skillicorn, I. O.
Gialas, I.
Papageorgiu, K.
Holm, U.
Klanner, R.
Lohrmann, E.
Perrey, H.
Schleper, P.
Schoerner-Sadenius, T.
Sztuk, J.
Stadie, H.
Turcato, M.
Long, K. R.
Tapper, A. D.
Matsumoto, T.
Nagano, K.
Tokushuku, K.
Yamada, S.
Yamazaki, Y.
Barakbaev, A. N.
Boos, E. G.
Pokrovskiy, N. S.
Zhautykov, B. O.
Aushev, V.
Borodin, M.
Kadenko, I.
Korol, Ie.
Kuprash, O.
Lontkovskyi, D.
Makarenko, I.
Onishchuk, Yu.
Salii, A.
Sorokin, Iu.
Verbytskyi, A.
Viazlo, V.
Volynets, O.
Zenaiev, O.
Zolko, M.
Son, D.
de Favereau, J.
Piotrzkowski, K.
Barreiro, F.
Glasman, C.
Jimenez, M.
del Peso, J.
Ron, E.
Soares, M.
Terron, J.
Uribe-Estrada, C.
Corriveau, F.
Schwartz, J.
Zhou, C.
Tsurugai, T.
Antonov, A.
Dolgoshein, B. A.
Gladkov, D.
Sosnovtsev, V.
Stifutkin, A.
Suchkov, S.
Dementiev, R. K.
Ermolov, P. F.
Gladilin, L. K.
Golubkov, Yu. A.
Khein, L. A.
Korzhavina, I. A.
Kuzmin, V. A.
Levchenko, B. B.
Lukina, O. Yu.
Proskuryakov, A. S.
Shcheglova, L. M.
Zotkin, D. S.
Abt, I.
Caldwell, A.
Kollar, D.
Reisert, B.
Schmidke, W. B.
Grigorescu, G.
Keramidas, A.
Koffeman, E.
Kooijman, P.
Pellegrino, A.
Tiecke, H.
Vazquez, M.
Wiggers, L.
Bruemmer, N.
Bylsma, B.
Durkin, L. S.
Lee, A.
Ling, T. Y.
Cooper-Sarkar, A. M.
Devenish, R. C. E.
Ferrando, J.
Foster, B.
Gwenlan, C.
Horton, K.
Oliver, K.
Robertson, A.
Walczak, R.
Bertolin, A.
Dal Corso, F.
Dusini, S.
Longhin, A.
Stanco, L.
Brugnera, R.
Carlin, R.
Garfagnini, A.
Limentani, S.
Oh, B. Y.
Raval, A.
Whitmore, J. J.
Iga, Y.
D'Agostini, G.
Marini, G.
Nigro, A.
Hart, J. C.
Abramowicz, H.
Ingbir, R.
Kananov, S.
Levy, A.
Stern, A.
Ishitsuka, M.
Kanno, T.
Kuze, M.
Maeda, J.
Hori, R.
Okazaki, N.
Shimizu, S.
Hamatsu, R.
Kitamura, S.
Ota, O.
Ri, Y. D.
Costa, M.
Ferrero, M. I.
Monaco, V.
Sacchi, R.
Sola, V.
Solano, A.
Arneodo, M.
Ruspa, M.
Fourletov, S.
Martin, J. F.
Stewart, T. P.
Boutle, S. K.
Butterworth, J. M.
Jones, T. W.
Loizides, J. H.
Wing, M.
Brzozowska, B.
Ciborowski, J.
Grzelak, G.
Kulinski, P.
Luzniak, P.
Malka, J.
Nowak, R. J.
Pawlak, J. M.
Perlanski, W.
Zarnecki, A. F.
Adamus, M.
Plucinski, P.
Tymieniecka, T.
Eisenberg, Y.
Hochman, D.
Karshon, U.
Brownson, E.
Reeder, D. D.
Savin, A. A.
Smith, W. H.
Wolfe, H.
Bhadra, S.
Catterall, C. D.
Hartner, G.
Noor, U.
Whyte, J.
CA ZEUS Collaboration
TI Measurement of dijet photoproduction for events with a leading neutron
at HERA
SO NUCLEAR PHYSICS B
LA English
DT Article
ID DEEP-INELASTIC SCATTERING; CENTRAL TRACKING DETECTOR; ZEUS BARREL
CALORIMETER; LUND MONTE-CARLO; INCLUSIVE REACTIONS; JET FRAGMENTATION;
CROSS-SECTIONS; GEV-C; PARTON DISTRIBUTIONS; HADRON-COLLISIONS
AB Differential cross sections for dijet photoproduction and this process in association with a leading neutron, e(+) + p -> e(+) + jet + jet + X (+n), have been measured with the ZEUS detector at HERA using an integrated luminosity of 40 pb(-1). The fraction of dijet events with a leading neutron was studied as a function of different jet and event variables. Single- and double-differential cross sections are presented as a function of the longitudinal fraction of the proton momentum carried by the leading neutron, x(L) and of its transverse momentum squared, p(T)(2). The dijet data are compared to inclusive DIS and photoproduction results; they are all consistent with a simple pion-exchange model. The neutron yield as a function of x(L) was found to depend only on the fraction of the proton beam energy going into the forward region, independent of the hard process. No firm conclusion can be drawn on the presence of rescattering effects. (C) 2009 Elsevier B.V. All rights reserved.
C1 [Bachynska, O.; Behnke, O.; Behr, J.; Behrens, U.; Blohm, C.; Borras, K.; Bot, D.; Ciesielski, R.; Coppola, N.; Fang, S.; Geiser, A.; Goettlicher, P.; Grebenyuk, J.; Gregor, I.; Haas, T.; Hain, W.; Huettmann, A.; Januschek, F.; Kahle, B.; Katkov, I. I.; Klein, U.; Koetz, U.; Kowalski, H.; Libov, V.; Lisovyi, M.; Lobodzinska, E.; Loehr, B.; Mankel, R.; Melzer-Pellmann, I. -A.; Miglioranzi, S.; Montanari, A.; Namsoo, T.; Notz, D.; Parenti, A.; Roloff, P.; Rubinsky, I.; Schneekloth, U.; Spiridonov, A.; Szuba, D.; Szuba, J.; Theedt, T.; Tomaszewska, J.; Wolf, G.; Wrona, K.; Yaguees-Molina, A. G.; Youngman, C.; Zeuner, W.] DESY, D-2000 Hamburg, Germany.
[Chekanov, S.; Derrick, M.; Magill, S.; Musgrave, B.; Nicholass, D.; Repond, J.; Yoshida, R.] Argonne Natl Lab, Argonne, IL 60439 USA.
[Nicholass, D.] UCL, London WC1E 6BT, England.
[Mattingly, M. C. K.] Andrews Univ, Berrien Springs, MI 49104 USA.
[Antonioli, P.; Bari, G.; Bellagamba, L.; Boscherini, D.; Bruni, A.; Bruni, G.; Cindolo, F.; Corradi, M.; Iacobucci, G.; Margotti, A.; Nania, R.; Polini, A.; Antonelli, S.; Basile, M.; Bindi, M.; Cifarelli, L.; Contin, A.; De Pasquale, S.; Sartorelli, G.; Zichichi, A.] Ist Nazl Fis Nucl, I-40126 Bologna, Italy.
[Antonelli, S.; Basile, M.; Bindi, M.; Cifarelli, L.; Contin, A.; De Pasquale, S.; Sartorelli, G.; Zichichi, A.] Univ Bologna, Bologna, Italy.
[Bartsch, D.; Brock, I.; Hartmann, H.; Hilger, E.; Jakob, H. -P.; Juengst, M.; Nuncio-Quiroz, A. E.; Paul, E.; Samson, U.; Schoenberg, V.; Shehzadi, R.; Wlasenko, M.] Univ Bonn, Inst Phys, D-5300 Bonn, Germany.
[Morris, J. D.] Univ Bristol, HH Wills Phys Lab, Bristol BS8 1TL, Avon, England.
[Kaur, M.; Kaur, P.; Singh, I.] Panjab Univ, Dept Phys, Chandigarh 160014, India.
[Capua, M.; Fazio, S.; Mastroberardino, A.; Schioppa, M.; Susinno, G.; Tassi, E.] Univ Calabria, Dept Phys, I-87036 Cosenza, Italy.
[Capua, M.; Fazio, S.; Mastroberardino, A.; Schioppa, M.; Susinno, G.; Tassi, E.] Ist Nazl Fis Nucl, Cosenza, Italy.
[Kim, J. Y.] Chonnam Natl Univ, Kwangju, South Korea.
[Ibrahim, Z. A.; Idris, F. Mohamad; Kamaluddin, B.; Abdullah, W. A. T. Wan] Univ Malaya, Kuala Lumpur 50603, Malaysia.
[Ning, Y.; Ren, Z.; Sciulli, F.] Columbia Univ, Nevis Labs, Irvington, NY 10027 USA.
[Chwastowski, J.; Eskreys, A.; Figiel, J.; Galas, A.; Olkiewicz, K.; Pawlik, B.; Stopa, P.; Zawiejski, L.] Polish Acad Sci, Henryk Niewodniczanski Inst Nucl Phys, Krakow, Poland.
[Adamczyk, L.; Bold, T.; Grabowska-Bold, I.; Kisielewska, D.; Lukasik, J.; Przybycien, M.; Suszycki, L.; Szuba, J.] AGH Univ Sci & Technol, Fac Phys & Appl Comp Sci, Krakow, Poland.
[Kotanski, A.; Slominski, W.] Jagiellonian Univ, Dept Phys, Krakow, Poland.
[Spiridonov, A.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Szuba, D.] INP, Krakow, Poland.
[Drugakov, V.; Lohmann, W.; Schlenstedt, S.] DESY, Zeuthen, Germany.
[Barbagli, G.; Gallo, E.; Pelfer, P. G.] Ist Nazl Fis Nucl, I-50125 Florence, Italy.
[Pelfer, P. G.] Univ Florence, Florence, Italy.
[Bamberger, A.; Dobur, D.; Karstens, F.; Vlasov, N. N.] Univ Freiburg, Fak Phys, D-7800 Freiburg, Germany.
[Bussey, P. J.; Doyle, A. T.; Forrest, M.; Saxon, D. H.; Skillicorn, I. O.] Univ Glasgow, Dept Phys & Astron, Glasgow, Lanark, Scotland.
[Gialas, I.; Papageorgiu, K.] Univ Aegean, Dept Engn Management & Finance, Chios, Greece.
[Holm, U.; Klanner, R.; Lohrmann, E.; Perrey, H.; Schleper, P.; Schoerner-Sadenius, T.; Sztuk, J.; Stadie, H.; Turcato, M.] Univ Hamburg, Inst Expt Phys, Hamburg, Germany.
[Long, K. R.; Tapper, A. D.] Univ London Imperial Coll Sci Technol & Med, High Energy Nucl Phys Grp, London, England.
[Matsumoto, T.; Nagano, K.; Tokushuku, K.; Yamada, S.; Yamazaki, Y.] Inst Particle & Nucl Studies, KEK, Tsukuba, Ibaraki, Japan.
[Barakbaev, A. N.; Boos, E. G.; Pokrovskiy, N. S.; Zhautykov, B. O.] Minist Educ & Sci Kazakhstan, Inst Phys & Technol, Alma Ata, Kazakhstan.
[Aushev, V.; Borodin, M.; Kadenko, I.; Korol, Ie.; Kuprash, O.; Lontkovskyi, D.; Makarenko, I.; Onishchuk, Yu.; Salii, A.; Sorokin, Iu.; Verbytskyi, A.; Viazlo, V.; Volynets, O.; Zenaiev, O.; Zolko, M.] Natl Acad Sci Ukraine, Inst Nucl Res, Kiev, Ukraine.
[Aushev, V.; Borodin, M.; Kadenko, I.; Korol, Ie.; Kuprash, O.; Lontkovskyi, D.; Makarenko, I.; Onishchuk, Yu.; Salii, A.; Sorokin, Iu.; Verbytskyi, A.; Viazlo, V.; Volynets, O.; Zenaiev, O.; Zolko, M.] Kiev Natl Univ, Kiev, Ukraine.
[Son, D.] Kyungpook Natl Univ, Ctr High Energy Phys, Taegu, South Korea.
[de Favereau, J.; Piotrzkowski, K.] Catholic Univ Louvain, Inst Phys Nucl, B-3000 Louvain, Belgium.
[Barreiro, F.; Glasman, C.; Jimenez, M.; del Peso, J.; Ron, E.; Soares, M.; Terron, J.; Uribe-Estrada, C.] Univ Autonoma Madrid, Dept Fis Teor, Madrid, Spain.
[Corriveau, F.; Schwartz, J.; Zhou, C.] McGill Univ, Dept Phys, Montreal, PQ H3A 2T8, Canada.
[Tsurugai, T.] Meiji Gakuin Univ, Fac Gen Educ, Yokohama, Kanagawa, Japan.
[Antonov, A.; Dolgoshein, B. A.; Gladkov, D.; Sosnovtsev, V.; Stifutkin, A.; Suchkov, S.] Moscow Engn Phys Inst, Moscow 115409, Russia.
[Dementiev, R. K.; Ermolov, P. F.; Gladilin, L. K.; Golubkov, Yu. A.; Khein, L. A.; Korzhavina, I. A.; Kuzmin, V. A.; Levchenko, B. B.; Lukina, O. Yu.; Proskuryakov, A. S.; Shcheglova, L. M.; Zotkin, D. S.] Moscow MV Lomonosov State Univ, Inst Nucl Phys, Moscow, Russia.
[Abt, I.; Caldwell, A.; Kollar, D.; Reisert, B.; Schmidke, W. B.] Max Planck Inst Phys & Astrophys, D-80805 Munich, Germany.
[Grigorescu, G.; Keramidas, A.; Koffeman, E.; Kooijman, P.; Pellegrino, A.; Tiecke, H.; Vazquez, M.; Wiggers, L.] NIKHEF, Amsterdam, Netherlands.
[Bruemmer, N.; Bylsma, B.; Durkin, L. S.; Lee, A.; Ling, T. Y.] Ohio State Univ, Dept Phys, Columbus, OH 43210 USA.
[Forrest, M.; Cooper-Sarkar, A. M.; Devenish, R. C. E.; Ferrando, J.; Gwenlan, C.; Horton, K.; Oliver, K.; Robertson, A.; Walczak, R.] Univ Oxford, Dept Phys, Oxford, England.
[Bertolin, A.; Dal Corso, F.; Dusini, S.; Longhin, A.; Stanco, L.; Brugnera, R.; Carlin, R.; Garfagnini, A.; Limentani, S.] Ist Nazl Fis Nucl, Padua, Italy.
[Brugnera, R.; Carlin, R.; Garfagnini, A.; Limentani, S.] Univ Padua, Dipartimento Fis, Padua, Italy.
[Oh, B. Y.; Raval, A.; Whitmore, J. J.] Penn State Univ, Dept Phys, University Pk, PA 16802 USA.
[D'Agostini, G.; Marini, G.; Nigro, A.] Univ Roma La Sapienza, Dipartimento Fis, I-00185 Rome, Italy.
[D'Agostini, G.; Marini, G.; Nigro, A.] Ist Nazl Fis Nucl, Rome, Italy.
[Hart, J. C.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Abramowicz, H.; Ingbir, R.; Kananov, S.; Levy, A.; Stern, A.] Tel Aviv Univ, Raymond & Beverly Sackler Fac Exact Sci, Sch Phys, IL-69978 Tel Aviv, Israel.
[Abramowicz, H.] Max Planck Inst, Munich, Germany.
[Ishitsuka, M.; Kanno, T.; Kuze, M.; Maeda, J.] Tokyo Inst Technol, Dept Phys, Tokyo 152, Japan.
[Hori, R.; Okazaki, N.; Shimizu, S.] Univ Tokyo, Dept Phys, Tokyo 113, Japan.
[Hamatsu, R.; Kitamura, S.; Ota, O.; Ri, Y. D.] Tokyo Metropolitan Univ, Dept Phys, Tokyo, Japan.
[Costa, M.; Ferrero, M. I.; Monaco, V.; Sacchi, R.; Sola, V.; Solano, A.] Univ Turin, Turin, Italy.
[Costa, M.; Ferrero, M. I.; Monaco, V.; Sacchi, R.; Sola, V.; Solano, A.; Arneodo, M.; Ruspa, M.] Ist Nazl Fis Nucl, I-10125 Turin, Italy.
[Arneodo, M.; Ruspa, M.] Univ Piemonte Orientale, Novara, Italy.
[Fourletov, S.; Martin, J. F.; Stewart, T. P.] Univ Toronto, Dept Phys, Toronto, ON M5S 1A7, Canada.
[Boutle, S. K.; Butterworth, J. M.; Jones, T. W.; Loizides, J. H.; Wing, M.] UCL, Dept Phys & Astron, London WC1E 6BT, England.
[Brzozowska, B.; Ciborowski, J.; Grzelak, G.; Kulinski, P.; Luzniak, P.; Malka, J.; Nowak, R. J.; Pawlak, J. M.; Perlanski, W.; Zarnecki, A. F.] Warsaw Univ, Inst Expt Phys, Warsaw, Poland.
[Ciborowski, J.] Univ Lodz, PL-90131 Lodz, Poland.
[Adamus, M.; Plucinski, P.; Tymieniecka, T.] Inst Nucl Phys, Warsaw, Poland.
[Tymieniecka, T.] Univ Podlasie, Siedlce, Poland.
[Eisenberg, Y.; Hochman, D.; Karshon, U.] Weizmann Inst Sci, Dept Particle Phys, Rehovot, Israel.
[Brownson, E.; Reeder, D. D.; Savin, A. A.; Smith, W. H.; Wolfe, H.] Univ Wisconsin, Dept Phys, Madison, WI 53706 USA.
[Bhadra, S.; Catterall, C. D.; Hartner, G.; Noor, U.; Whyte, J.] York Univ, Dept Phys, N York, ON M3J 1P3, Canada.
RP Haas, T (reprint author), DESY, Notkestr 85, D-2000 Hamburg, Germany.
EM tobias.haas@desy.de
RI Tassi, Enrico/K-3958-2015; Suchkov, Sergey/M-6671-2015; De Pasquale,
Salvatore/B-9165-2008; dusini, stefano/J-3686-2012; Capua,
Marcella/A-8549-2015; IBRAHIM, ZAINOL ABIDIN/C-1121-2010; Wiggers,
Leo/B-5218-2015; Fazio, Salvatore /G-5156-2010; WAN ABDULLAH, WAN AHMAD
TAJUDDIN/B-5439-2010; Doyle, Anthony/C-5889-2009; Ferrando,
James/A-9192-2012; Gladilin, Leonid/B-5226-2011; Levchenko,
B./D-9752-2012; Proskuryakov, Alexander/J-6166-2012; Dementiev,
Roman/K-7201-2012; Korzhavina, Irina/D-6848-2012
OI De Pasquale, Salvatore/0000-0001-9236-0748; dusini,
stefano/0000-0002-1128-0664; Capua, Marcella/0000-0002-2443-6525;
Arneodo, Michele/0000-0002-7790-7132; Longhin,
Andrea/0000-0001-9103-9936; Raval, Amita/0000-0003-0164-4337; Wiggers,
Leo/0000-0003-1060-0520; Doyle, Anthony/0000-0001-6322-6195; Ferrando,
James/0000-0002-1007-7816; Gladilin, Leonid/0000-0001-9422-8636;
NR 66
TC 5
Z9 5
U1 1
U2 9
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0550-3213
EI 1873-1562
J9 NUCL PHYS B
JI Nucl. Phys. B
PD MAR 1
PY 2010
VL 827
IS 1-2
BP 1
EP 33
DI 10.1016/j.nuclphysb.2009.10.002
PG 33
WC Physics, Particles & Fields
SC Physics
GA 531MH
UT WOS:000272669900001
ER
PT J
AU Davoudiasl, N
AF Davoudiasl, Nooman
TI Echoes from a Warped Dimension
SO NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS
LA English
DT Proceedings Paper
CT International Workshop on Beyond the Standard Model Physics and LHC
Signatures
CY JUN 02-04, 2009
CL NE Univ, Boston, MA
HO NE Univ
ID RANDALL-SUNDRUM MODEL; BULK FIELDS; PHENOMENOLOGY; HIERARCHY; MODULUS
AB The Randall-Sundrum (RS) model, based on a slice of warped 5D spacetime, was originally introduced to explain the apparent hierarchy between the scales of weak and gravitational interactions. Over the past decade, this model has been extended to provide a predictive theory of flavor, as well as to address various constraints from precision data. In this talk, we will present a brief review of the RS model and sonic of its extensions. A survey of some key signatures of realistic warped models and the experiment challenges they pose will be presented. We will also consider truncated warped scenarios that address smaller hierarchies and discuss why their discovery can have improved prospects, at the LHC.
C1 Brookhaven Natl Lab, Dept Phys, Upton, NY 11973 USA.
RP Davoudiasl, N (reprint author), Brookhaven Natl Lab, Dept Phys, Upton, NY 11973 USA.
NR 56
TC 2
Z9 2
U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0920-5632
EI 1873-3832
J9 NUCL PHYS B-PROC SUP
JI Nucl. Phys. B-Proc. Suppl.
PD MAR-MAY
PY 2010
VL 200-02
BP 149
EP 158
DI 10.1016/j.nuclphysbps.2010.02.077
PG 10
WC Physics, Particles & Fields
SC Physics
GA 612NQ
UT WOS:000278906500017
ER
PT J
AU Nath, P
Nelson, B
Davoudiasl, H
Dutta, B
Feldman, D
Liu, ZW
Han, T
Langacker, P
Mohapatra, R
Valle, J
Pilaftsis, A
Zerwas, D
AbdusSalam, S
Adam-Bourdarios, C
Aguilar-Saavedra, JA
Allanach, B
Altunkaynak, B
Anchordoqui, LA
Baer, H
Bajc, B
Buchmueller, O
Carena, M
Cavanaugh, R
Chang, S
Choi, K
Csaki, C
Dawson, S
de Campos, F
De Roeck, A
Duhrssen, M
Eboli, OJP
Ellis, JR
Flacher, H
Goldberg, H
Grimus, W
Haisch, U
Heinemeyer, S
Hirsch, M
Holmes, M
Ibrahim, T
Isidori, G
Kane, G
Kong, K
Lafaye, R
Landsberg, C
Lavoura, L
Lee, JS
Lee, SJ
Lisanti, M
Lust, D
Magro, MB
Mahbubani, R
Malinsky, M
Maltoni, F
Morisi, S
Muhlleitner, MM
Mukhopadhyaya, B
Neubert, M
Olive, KA
Perez, G
Perez, PF
Plehn, T
Ponton, E
Porod, W
Quevedo, F
Rauch, M
Restrepo, D
Rizzo, TG
Romao, JC
Ronga, FJ
Santiago, J
Schechter, J
Senjanovic, G
Shao, J
Spira, M
Stieberger, S
Sullivan, Z
Tait, TMP
Tata, X
Taylor, TR
Toharia, M
Wacker, J
Wagner, CEM
Wang, LT
Weiglein, G
Zeppenfeld, D
Zurek, K
AF Nath, Pran
Nelson, Brent
Davoudiasl, Hooman
Dutta, Bhaskar
Feldman, Daniel
Liu, Zuowei
Han, Tao
Langacker, Paul
Mohapatra, Rabi
Valle, Jose
Pilaftsis, Apostolos
Zerwas, Dirk
AbdusSalam, Shehu
Adam-Bourdarios, Claire
Aguilar-Saavedra, J. A.
Allanach, Benjamin
Altunkaynak, B.
Anchordoqui, Luis A.
Baer, Howard
Bajc, Borut
Buchmueller, O.
Carena, M.
Cavanaugh, R.
Chang, S.
Choi, Kiwoon
Csaki, C.
Dawson, S.
de Campos, F.
De Roeck, A.
Duehrssen, M.
Eboli, O. J. P.
Ellis, J. R.
Flaecher, H.
Goldberg, H.
Grimus, W.
Haisch, U.
Heinemeyer, S.
Hirsch, M.
Holmes, M.
Ibrahim, Tarek
Isidori, G.
Kane, Gordon
Kong, K.
Lafaye, Remi
Landsberg, C.
Lavoura, L.
Lee, Jae Sik
Lee, Seung J.
Lisanti, M.
Luest, Dieter
Magro, M. B.
Mahbubani, R.
Malinsky, M.
Maltoni, Fabio
Morisi, S.
Muehlleitner, M. M.
Mukhopadhyaya, B.
Neubert, M.
Olive, K. A.
Perez, Gilad
Perez, Pavel Fileviez
Plehn, T.
Ponton, E.
Porod, Werner
Quevedo, F.
Rauch, M.
Restrepo, D.
Rizzo, T. G.
Romao, J. C.
Ronga, F. J.
Santiago, J.
Schechter, J.
Senjanovic, G.
Shao, J.
Spira, M.
Stieberger, S.
Sullivan, Zack
Tait, Tim M. P.
Tata, Xerxes
Taylor, T. R.
Toharia, M.
Wacker, J.
Wagner, C. E. M.
Wang, Lian-Tao
Weiglein, G.
Zeppenfeld, D.
Zurek, K.
TI The Hunt for New Physics at the Large Hadron Collider
SO NUCLEAR PHYSICS B-PROCEEDINGS SUPPLEMENTS
LA English
DT Proceedings Paper
CT International Workshop on Beyond the Standard Model Physics and LHC
Signatures
CY JUN 02-04, 2009
CL NE Univ, Boston, MA
HO NE Univ
ID SUPERSYMMETRIC STANDARD MODEL; EXPLICIT CP VIOLATION; HIGGS-BOSON
PRODUCTION; GRAND UNIFIED THEORIES; R-PARITY BREAKING;
RENORMALIZATION-GROUP EQUATIONS; ANOMALOUS MAGNETIC-MOMENT;
RANDALL-SUNDRUM MODEL; DARK-MATTER DETECTION; MINIMAL FLAVOR VIOLATION
AB The Large Hadron Collider presents an unprecedented opportunity to probe the realm of new physics in the TeV region and shed light on some of the core unresolved issues of particle physics. These include the nature of electroweak symmetry breaking, the origin of mass, the possible constituent of cold dark matter, new sources of CP violation needed to explain the baryon excess in the universe, the possible existence of extra gauge groups and extra matter, and importantly the path Nature chooses to resolve the hierarchy problem - is it supersymmetry or extra dimensions. Many models of new physics beyond the standard model contain a hidden sector which can be probed at the LHC. Additionally, the LHC will be a. top factory and accurate measurements of the properties of the top and its rare decays will provide a window to new physics. Further, the LHC could shed light on the origin of neutralino masses if the new physics associated with their generation lies in the TeV region. Finally, the LHC is also a laboratory to test the hypothesis of TeV scale strings and D brane models. An overview of these possibilities is presented in the spirit that it will serve as a companion to the Technical Design Reports (TDRs) by the particle detector groups ATLAS and CMS to facilitate the test of the new theoretical ideas at the LHC. Which of these ideas stands the test of the LHC data will govern the course of particle physics in the subsequent decades.
C1 [Nath, Pran; Nelson, Brent; Altunkaynak, B.; Goldberg, H.; Holmes, M.; Taylor, T. R.] Northeastern Univ, Dept Phys, Boston, MA 02115 USA.
[Davoudiasl, Hooman; Dawson, S.] Brookhaven Natl Lab, Dept Phys, Upton, NY 11973 USA.
[Dutta, Bhaskar] Texas A&M Univ, Dept Phys, College Stn, TX 77843 USA.
[Feldman, Daniel; Kane, Gordon; Zurek, K.] Univ Michigan, Randall Lab, Michigan Ctr Theoret Phys, Ann Arbor, MI 48109 USA.
[Liu, Zuowei] SUNY Stony Brook, CN Yang Inst Theoret Phys, Stony Brook, NY 11794 USA.
[Han, Tao; Perez, Pavel Fileviez; Tata, Xerxes] Univ Wisconsin, Dept Phys, Madison, WI 53706 USA.
[Langacker, Paul] Inst Adv Study, Princeton, NJ 08540 USA.
[Mohapatra, Rabi; Toharia, M.] Univ Maryland, Maryland Ctr Fundamental Phys, College Pk, MD 20742 USA.
[Mohapatra, Rabi; Toharia, M.] Univ Maryland, Dept Phys, College Pk, MD 20742 USA.
[Valle, Jose; Hirsch, M.; Morisi, S.] Univ Valencia, CSIC, Inst Fis Corpuscular, AHEP Grp, E-46071 Valencia, Spain.
[Pilaftsis, Apostolos] Univ Manchester, Sch Phys & Astron, Manchester M13 9PL, Lancs, England.
[Zerwas, Dirk; Adam-Bourdarios, Claire] Univ Paris 11, CNRS, IN2P3, LAL, F-91405 Orsay, France.
[AbdusSalam, Shehu; Allanach, Benjamin; Quevedo, F.] Dept Appl Math & Theoret Phys, Cambridge CB3 0WA, England.
[Aguilar-Saavedra, J. A.; Santiago, J.] Univ Granada, Dept Fis Teor & Cosmos, E-18071 Granada, Spain.
[Aguilar-Saavedra, J. A.; Santiago, J.] Univ Granada, CAFPE, E-18071 Granada, Spain.
[Anchordoqui, Luis A.] Univ Wisconsin, Dept Phys, Milwaukee, WI 53201 USA.
[Baer, Howard] Univ Oklahoma, Dept Phys & Astron, Norman, OK 73019 USA.
[Bajc, Borut] Jozef Stefan Inst, Ljubljana 1000, Slovenia.
[Buchmueller, O.; De Roeck, A.; Ellis, J. R.; Flaecher, H.] CERN, CH-1211 Geneva 23, Switzerland.
[Carena, M.] Fermilab Natl Accelerator Lab, Dept Theoret Phys, Batavia, IL 60510 USA.
[Carena, M.; Wagner, C. E. M.] Univ Chicago, EFI & Phys Dept, Chicago, IL 60637 USA.
[Cavanaugh, R.; Mahbubani, R.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Cavanaugh, R.] Univ Illinois, Dept Phys, Chicago, IL 60607 USA.
[Chang, S.] Univ Calif Davis, Dept Phys, Davis, CA 95616 USA.
[Choi, Kiwoon] Korea Adv Inst Sci & Technol, Dept Phys, Taejon 305701, South Korea.
[Csaki, C.] Cornell Univ, Elementary Particle Sci Lab, Inst High Energy Phenomenol, Ithaca, NY 14853 USA.
[de Campos, F.] Univ Estadual Paulista, Dept Quim & Fis, Guaratingueta, SP, Brazil.
[De Roeck, A.] Univ Antwerp, B-2610 Antwerp, Belgium.
[Duehrssen, M.] Univ Freiburg, Inst Phys, D-7800 Freiburg, Germany.
[Eboli, O. J. P.] Univ Sao Paulo, Inst Fis, BR-01498 Sao Paulo, Brazil.
[Grimus, W.] Univ Vienna, Fac Phys, A-1090 Vienna, Austria.
[Haisch, U.; Neubert, M.] Johannes Gutenberg Univ Mainz, Inst Phys THEP, D-55099 Mainz, Germany.
[Heinemeyer, S.] Univ Cantabria, CSIC, Inst Fis Cantabria, E-39005 Santander, Spain.
[Ibrahim, Tarek] Univ Alexandria, Fac Sci, Dept Phys, Alexandria, Egypt.
[Isidori, G.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Kong, K.; Lisanti, M.; Rizzo, T. G.; Wacker, J.] SLAC Natl Accelerator Lab, Menlo Pk, CA 94025 USA.
[Lafaye, Remi] Univ Savoie, CNRS, IN2P3, LAPP, Annecy, France.
[Landsberg, C.] Brown Univ, Dept Phys, Providence, RI 02912 USA.
[Lavoura, L.; Romao, J. C.] Univ Tecn Lisboa, Ctr Theoret Particle Phys, P-1049001 Lisbon, Portugal.
[Lee, Jae Sik] Natl Ctr Theoret Sci, Div Phys, Hsinchu, Taiwan.
[Lee, Seung J.; Perez, Gilad] Weizmann Inst Sci, Dept Particle Phys, IL-76100 Rehovot, Israel.
[Luest, Dieter; Stieberger, S.] Max Planck Inst Phys & Astrophys, Werner Heisenberg Inst, D-80805 Munich, Germany.
[Luest, Dieter] Univ Munich, Arnold Sommerfeld Ctr Theoret Phys, D-80333 Munich, Germany.
[Magro, M. B.] Ctr Univ Fdn Santo Andre, Santo Andre, SP, Brazil.
[Malinsky, M.] Royal Inst Technol KTH, Dept Theoret Phys, Theoret Particle Phys Grp, SE-10691 Stockholm, Sweden.
[Maltoni, Fabio] Catholic Univ Louvain, Ctr Particle Phys & Phenomenol, B-1348 Louvain, Belgium.
[Muehlleitner, M. M.; Rauch, M.; Zeppenfeld, D.] Univ Karlsruhe, KIT, Inst Theoret Phys, D-76128 Karlsruhe, Germany.
[Mukhopadhyaya, B.] Harish Chandra Res Inst, Reg Ctr Accelerator Based Particle Phys, Allahabad 211019, Uttar Pradesh, India.
[Olive, K. A.] Univ Minnesota, Sch Phys & Astron, Minneapolis, MN 55455 USA.
[Plehn, T.] Heidelberg Univ, Inst Theoret Phys, D-6900 Heidelberg, Germany.
[Ponton, E.] Columbia Univ, Dept Phys, New York, NY 10027 USA.
[Porod, Werner] Univ Wurzburg, Inst Theoret Phys & Astron, D-97074 Wurzburg, Germany.
[Restrepo, D.] Univ Antioquia, Inst Fis, Medellin 1226, Colombia.
[Ronga, F. J.] ETH, Inst Particle Phys, CH-8093 Zurich, Switzerland.
[Schechter, J.; Shao, J.] Syracuse Univ, Dept Phys, Syracuse, NY 13244 USA.
[Senjanovic, G.] Abdus Salaam Int Ctr Theoret Phys, I-34100 Trieste, Italy.
[Spira, M.] Paul Scherrer Inst, CH-5232 Villigen, Switzerland.
[Sullivan, Zack] IIT, Dept Biol Chem & Phys Sci, Chicago, IL 60616 USA.
[Tait, Tim M. P.] Univ Calif Irvine, Dept Phys & Astron, Irvine, CA 92697 USA.
[Tata, Xerxes] Univ Hawaii, Dept Phys & Astron, Honolulu, HI 96822 USA.
[Wagner, C. E. M.] Univ Chicago, KICP, Chicago, IL 60637 USA.
[Wagner, C. E. M.] Argonne Natl Lab, HEP Div, Argonne, IL 60439 USA.
[Wang, Lian-Tao] Princeton Univ, Dept Phys, Princeton, NJ 08544 USA.
[Weiglein, G.] Univ Durham, IPPP, Durham DH1 3LE, England.
RP Nath, P (reprint author), Northeastern Univ, Dept Phys, Boston, MA 02115 USA.
RI Romao, Jorge/C-5991-2009; Hirsch, Martin/K-7605-2014; Aguilar Saavedra,
Juan Antonio/F-1256-2016; Lavoura, Luis/E-6186-2017; Santiago Perez,
Jose/D-9109-2016; Eboli, Oscar/D-4544-2012; Lee, Seung/F-9911-2011; de
Campos Carvalho, Fernando/B-2304-2013; Ellis, John/J-2222-2012; Ponton,
Eduardo/I-4125-2013
OI Landsberg, Greg/0000-0002-4184-9380; Han, Tao/0000-0002-5543-0716;
AbdusSalam, Shehu/0000-0001-8848-3462; Restrepo,
Diego/0000-0001-6455-5564; Toharia, Manuel/0000-0002-2184-4355; Lavoura,
Luis/0000-0001-5787-2529; Dawson, Sally/0000-0002-5598-695X; Romao,
Jorge/0000-0002-9683-4055; Hirsch, Martin/0000-0001-6843-804X; Aguilar
Saavedra, Juan Antonio/0000-0002-5475-8920; Lavoura,
Luis/0000-0002-7929-9871; Santiago Perez, Jose/0000-0003-3585-5626;
Allanach, Benjamin/0000-0003-4635-6830; Olive,
Keith/0000-0001-7201-5998; Eboli, Oscar/0000-0003-4107-6012; Lee,
Seung/0000-0002-7756-0407; Ellis, John/0000-0002-7399-0813; Ponton,
Eduardo/0000-0003-3138-1136
NR 500
TC 90
Z9 90
U1 5
U2 16
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0920-5632
EI 1873-3832
J9 NUCL PHYS B-PROC SUP
JI Nucl. Phys. B-Proc. Suppl.
PD MAR-MAY
PY 2010
VL 200-02
BP 185
EP +
DI 10.1016/j.nuclphysbps.2010.03.001
PG 227
WC Physics, Particles & Fields
SC Physics
GA 612NQ
UT WOS:000278906500022
ER
PT J
AU Rosa, M
Warsa, JS
Chang, JH
AF Rosa, Massimiliano
Warsa, James S.
Chang, Jae H.
TI Fourier Analysis of Inexact Parallel Block-Jacobi Splitting with
Transport Synthetic Acceleration
SO NUCLEAR SCIENCE AND ENGINEERING
LA English
DT Article
ID S-N SWEEPS; UNSTRUCTURED MESHES; ITERATIVE METHODS
AB A Fourier analysis is conducted for the discrete ordinates, or S(N), approximation of the neutron transport problem solved with Richardson iteration (source iteration) and Richardson iteration preconditioned with transport synthetic acceleration (TSA), using the inexact parallel block-Jacobi (IPBJ) algorithm both in slab and two-dimensional Cartesian geometry. Both traditional, or "beta," TSA (TTSA) and a modified TSA (MTSA), in which only the scattering in the low-order equations is reduced by some nonnegative factor beta < 1, are considered.
The results for the unaccelerated algorithm show that convergence of IPBJ can degrade, leading in particular to stagnation of the generalized minimum residual method with restart parameter in, GMRES(m), in problems containing optically thin subdomains. The IPBJ algorithm preconditioned with TTSA can be effective, provided the beta parameter is properly tuned for a given scattering ratio c, but is potentially unstable. Compared to TTSA, MTSA is less sensitive to the choice of beta, more effective for the same computational effort, measured in terms of the effective scattering ratio c', and it is unconditionally stable.
C1 [Rosa, Massimiliano; Warsa, James S.; Chang, Jae H.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Rosa, M (reprint author), Los Alamos Natl Lab, POB 1663,MS K784, Los Alamos, NM 87545 USA.
EM maxrosa@lanl.gov
FU U.S. Government [W-7405-ENG-36, DE-AC52-06NA25396]
FX This research was performed under U.S. Government contracts
W-7405-ENG-36 and DE-AC52-06NA25396 for Los Alamos National Laboratory,
which is operated by Los Alamos National Security, LLC, for the U.S.
Department of Energy.
NR 16
TC 2
Z9 2
U1 1
U2 3
PU AMER NUCLEAR SOC
PI LA GRANGE PK
PA 555 N KENSINGTON AVE, LA GRANGE PK, IL 60526 USA
SN 0029-5639
J9 NUCL SCI ENG
JI Nucl. Sci. Eng.
PD MAR
PY 2010
VL 164
IS 3
BP 248
EP 263
PG 16
WC Nuclear Science & Technology
SC Nuclear Science & Technology
GA 600US
UT WOS:000278015000003
ER
PT J
AU Kessinger, GF
Thompson, MC
AF Kessinger, G. F.
Thompson, M. C.
TI DISSOLUTION OF ZIRCALOY-2-CLAD UO2 COMMERCIAL REACTOR FUEL
SO NUCLEAR TECHNOLOGY
LA English
DT Article
DE fuel dissolution; spent fuel; fuel cycle
AB The primary goal of this investigation was to evaluate the effectiveness of the chop-leach process, with nitric acid solvent, to produce a nominally 300 g/f [U] and 1 M [H+] product solution. The results of this study show that this processing technique is appropriate for applications in which a low free acid and moderately high U content are desired. The 7.75 l of product solution, which was >450 g/f in U, was successfully diluted to produce similar to 13 l of solvent extraction feed that was 302 g/l in U with a [H+] in the range 0.8 to 1.2 M.
A secondary goal was to test the effectiveness of this treatment for the removal of actinides from Zircaloy cladding to produce a low-level radioactive waste (LLW) cladding product. Analysis of the cladding shows that actinides are present in the cladding at a concentration of similar to 5000 eta Ci/g, which is about 50 times greater than the acceptable transuranium element limit in LLW.
It appears that the concentration of nitric acid used for this dissolution study (initial concentration 4 M, with 10 M added as the dissolution proceeded) was inadequate to completely digest the UO2 present in the spent fuel. The mass of insoluble material collected from the initial treatments with nitric acid, 340 g, was much higher than expected, and analysis of this insoluble residue showed that it contained at least 200 g U.
C1 [Kessinger, G. F.; Thompson, M. C.] Savannah River Natl Lab, Aiken, SC 29808 USA.
RP Kessinger, GF (reprint author), Savannah River Natl Lab, Mail Drop 20, Aiken, SC 29808 USA.
EM glen.kessinger@srnl.doe.gov
NR 15
TC 0
Z9 0
U1 2
U2 3
PU AMER NUCLEAR SOC
PI LA GRANGE PK
PA 555 N KENSINGTON AVE, LA GRANGE PK, IL 60526 USA
SN 0029-5450
J9 NUCL TECHNOL
JI Nucl. Technol.
PD MAR
PY 2010
VL 169
IS 3
BP 263
EP 270
PG 8
WC Nuclear Science & Technology
SC Nuclear Science & Technology
GA 559IO
UT WOS:000274817900005
ER
PT J
AU Schild, D
Wiese, C
AF Schild, David
Wiese, Claudia
TI Overexpression of RAD51 suppresses recombination defects: a possible
mechanism to reverse genomic instability
SO NUCLEIC ACIDS RESEARCH
LA English
DT Article
ID STRAND BREAK REPAIR; HOMOLOGOUS RECOMBINATION; DNA-DAMAGE;
MAMMALIAN-CELLS; MICROSATELLITE INSTABILITY; TRANSCRIPTIONAL REGULATION;
RECA HOMOLOGS; CANCER; BRCA2; PROTEIN
AB RAD51, a key protein in the homologous recombinational DNA repair (HRR) pathway, is the major strand-transferase required for mitotic recombination. An important early step in HRR is the formation of single-stranded DNA (ss-DNA) coated by RPA (a ss-DNA-binding protein). Displacement of RPA by RAD51 is highly regulated and facilitated by a number of different proteins known as the 'recombination mediators'. To assist these recombination mediators, a second group of proteins also is required and we are defining these proteins here as 'recombination co-mediators'. Defects in either recombination mediators or co-mediators, including BRCA1 and BRCA2, lead to impaired HRR that can genetically be complemented for (i.e. suppressed) by overexpression of RAD51. Defects in HRR have long been known to contribute to genomic instability leading to tumor development. Since genomic instability also slows cell growth, precancerous cells presumably require genomic re-stabilization to gain a growth advantage. RAD51 is overexpressed in many tumors, and therefore, we hypothesize that the complementing ability of elevated levels of RAD51 in tumors with initial HRR defects limits genomic instability during carcinogenic progression. Of particular interest, this model may also help explain the high frequency of TP53 mutations in human cancers, since wild-type p53 represses RAD51 expression.
C1 [Schild, David; Wiese, Claudia] Lawrence Berkeley Natl Lab, Div Life Sci, Berkeley, CA 94720 USA.
RP Schild, D (reprint author), Lawrence Berkeley Natl Lab, Div Life Sci, 1 Cyclotron Rd, Berkeley, CA 94720 USA.
EM dschild@lbl.gov
FU National Cancer Institute/National Institutes of Health [R01-CA120315,
P01-CA092584]; National Aeronautics and Space Administration
[NNJ05HI361]; National Institutes of Health [CA120315]
FX National Cancer Institute/National Institutes of Health (grant
R01-CA120315 to D. S.; P01-CA092584); National Aeronautics and Space
Administration (grant NNJ05HI361 to C. W.); Low Dose Radiation Research
Program of the Department of Energy. Funding for open access charge:
National Institutes of Health (grant CA120315).
NR 70
TC 42
Z9 48
U1 1
U2 5
PU OXFORD UNIV PRESS
PI OXFORD
PA GREAT CLARENDON ST, OXFORD OX2 6DP, ENGLAND
SN 0305-1048
J9 NUCLEIC ACIDS RES
JI Nucleic Acids Res.
PD MAR
PY 2010
VL 38
IS 4
BP 1061
EP 1070
DI 10.1093/nar/gkp1063
PG 10
WC Biochemistry & Molecular Biology
SC Biochemistry & Molecular Biology
GA 565DX
UT WOS:000275270500009
PM 19942681
ER
PT J
AU Velappan, N
Fisher, HE
Pesavento, E
Chasteen, L
D'Angelo, S
Kiss, C
Longmire, M
Pavlik, P
Bradbury, ARM
AF Velappan, Nileena
Fisher, Hugh E.
Pesavento, Emanuele
Chasteen, Leslie
D'Angelo, Sara
Kiss, Csaba
Longmire, Michelle
Pavlik, Peter
Bradbury, Andrew R. M.
TI A comprehensive analysis of filamentous phage display vectors for
cytoplasmic proteins: an analysis with different fluorescent proteins
SO NUCLEIC ACIDS RESEARCH
LA English
DT Article
ID MAJOR COAT PROTEIN; ARGININE TRANSLOCATION PATHWAY; HIGH-AFFINITY
ANTIBODIES; CDNA EXPRESSION LIBRARY; ESCHERICHIA-COLI; CAPSID PROTEIN;
TAT PATHWAY; MOLECULAR DISSECTION; MONOCLONAL-ANTIBODY; MUTATIONAL
ANALYSIS
AB Filamentous phage display has been extensively used to select proteins with binding properties of specific interest. Although many different display platforms using filamentous phage have been described, no comprehensive comparison of their abilities to display similar proteins has been conducted. This is particularly important for the display of cytoplasmic proteins, which are often poorly displayed with standard filamentous phage vectors. In this article, we have analyzed the ability of filamentous phage to display a stable form of green fluorescent protein and modified variants in nine different display vectors, a number of which have been previously proposed as being suitable for cytoplasmic protein display. Correct folding and display were assessed by phagemid particle fluorescence, and with anti-GFP antibodies. The poor correlation between phagemid particle fluorescence and recognition of GFP by antibodies, indicates that proteins may fold correctly without being accessible for display. The best vector used a twin arginine transporter leader to transport the displayed protein to the periplasm, and a coil-coil arrangement to link the displayed protein to g3p. This vector was able to display less robust forms of GFP, including ones with inserted epitopes, as well as fluorescent proteins of the Azami green series. It was also functional in mock selection experiments.
C1 [Velappan, Nileena; Fisher, Hugh E.; Pesavento, Emanuele; Chasteen, Leslie; D'Angelo, Sara; Kiss, Csaba; Longmire, Michelle; Pavlik, Peter; Bradbury, Andrew R. M.] Los Alamos Natl Lab, Div B, Los Alamos, NM 87545 USA.
RP Bradbury, ARM (reprint author), Los Alamos Natl Lab, Div B, Los Alamos, NM 87545 USA.
EM amb@lanl.gov
OI Velappan, Nileena/0000-0002-4488-9126; Bradbury,
Andrew/0000-0002-5567-8172
FU Department of Energy, Genomes to Life program (DOE-GTL); LANL lab
FX ARMB is grateful to Department of Energy, Genomes to Life program
(DOE-GTL) and LANL lab directed research funds (LDRD-DR) for support.
NR 106
TC 17
Z9 18
U1 2
U2 10
PU OXFORD UNIV PRESS
PI OXFORD
PA GREAT CLARENDON ST, OXFORD OX2 6DP, ENGLAND
SN 0305-1048
J9 NUCLEIC ACIDS RES
JI Nucleic Acids Res.
PD MAR
PY 2010
VL 38
IS 4
AR e22
DI 10.1093/nar/gkp809
PG 16
WC Biochemistry & Molecular Biology
SC Biochemistry & Molecular Biology
GA 565DX
UT WOS:000275270500003
PM 19955231
ER
PT J
AU Jacobsohn, LG
Tappan, BC
Tornga, SC
Blair, MW
Luther, EP
Mason, BA
Bennett, BL
Muenchausen, RE
AF Jacobsohn, L. G.
Tappan, B. C.
Tornga, S. C.
Blair, M. W.
Luther, E. P.
Mason, B. A.
Bennett, B. L.
Muenchausen, R. E.
TI The effect of hydrostatic pressure on the combustion synthesis of
Y2O3:Bi nanophosphor
SO OPTICAL MATERIALS
LA English
DT Article
DE Photoluminescence; SCS; Y2O3:Bi; Thermoluminescence; Luminescence
lifetime
ID HIGH-TEMPERATURE; LUMINESCENCE; PHOSPHORS; ALPHA-AL2O3; PARAMETERS;
POWDERS
AB The effects of pressurized Ar environments during the solution combustion synthesis (SCS) of Y2O3:Bi nanophosphor were investigated. Three fuels were used urea, glycine and hexamethylenetetramine (HMT) and the nanopowders were characterized by X-ray diffraction, scanning electron microscopy, photoluminescence, fluorescence lifetime, and thermoluminescence measurements. The dominant crystallographic phase was cubic, with crystallite size being insensitive to the hydrostatic pressure but increasing for fuels with higher heat of combustion. At least for nanopowders obtained using fuels with higher heats of combustion, higher Ar hydrostatic pressures lead to lower photoluminescence output. Fluorescence lifetime measurements on HMT-prepared samples yielded lifetimes of 330 and 900 ns for Bi3+ ions in S-6 and C-2 sites, respectively, and no variation in these values was observed for hydrostatic pressures from 0.1 to 9.7 MPa. Shorter lifetime values than reported for conventional SCS are likely related to higher concentration of quenching defects. In agreement with these results, thermoluminescence measurements showed that higher concentrations of electronic traps are present in samples synthesized under higher pressures. (c) 2010 Elsevier B.V. All rights reserved.
C1 [Jacobsohn, L. G.; Tappan, B. C.; Tornga, S. C.; Blair, M. W.; Luther, E. P.; Mason, B. A.; Bennett, B. L.; Muenchausen, R. E.] Los Alamos Natl Lab, Los Alamos, NM 87544 USA.
[Jacobsohn, L. G.] Clemson Univ, Sch Mat Sci & Engn, Anderson, SC 29625 USA.
[Jacobsohn, L. G.] Clemson Univ, Ctr Opt Mat Sci & Engn Technol, Anderson, SC 29625 USA.
RP Blair, MW (reprint author), Los Alamos Natl Lab, POB 1663, Los Alamos, NM 87544 USA.
EM mblair@lanl.gov
OI Jacobsohn, Luiz/0000-0001-8991-3903
FU Office of Basic Energy Sciences of the Department of Energy
FX The authors would like to thank E.L. Roemer for conducting SEM
measurements. This work was partially funded by the Office of Basic
Energy Sciences of the Department of Energy, as well as the LANL/LDRD
Program.
NR 24
TC 5
Z9 5
U1 0
U2 11
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0925-3467
EI 1873-1252
J9 OPT MATER
JI Opt. Mater.
PD MAR
PY 2010
VL 32
IS 5
BP 652
EP 656
DI 10.1016/j.optmat.2010.01.019
PG 5
WC Materials Science, Multidisciplinary; Optics
SC Materials Science; Optics
GA 569OA
UT WOS:000275605600017
ER
PT J
AU Bradshaw, DH
Shi, ZM
Boyd, RW
Milonni, PW
AF Bradshaw, Douglas H.
Shi, Zhimin
Boyd, Robert W.
Milonni, Peter W.
TI Electromagnetic momenta and forces in dispersive dielectric media
SO OPTICS COMMUNICATIONS
LA English
DT Article
ID PHOTON
AB When the effects of dispersion are included, neither the Abraham nor the Minkowski expression for electromagnetic momentum in a dielectric medium gives the correct recoil momentum for absorbers or emitters of radiation. The total momentum density associated with a field in a dielectric medium has three contributions: (i) the Abraham momentum density of the field, (ii) the momentum density associated with the Abraham force, and (iii) a momentum density arising from the dispersive part of the response of the medium to the field, the latter having a form evidently first derived by Nelson (1991) [8]. All three contributions are required for momentum conservation in the recoil of an absorber or emitter in a dielectric medium. We consider the momentum exchanged and the force on a polarizable particle (e.g., an atom or a small dielectric sphere) in a host dielectric when a pulse of light is incident upon it, including the dispersion of the dielectric medium as well as a dispersive component in the response of the particle to the field. The force can be greatly increased in slow-light dielectric media. (C) 2009 Elsevier B.V. All rights reserved.
C1 [Shi, Zhimin; Boyd, Robert W.] Univ Rochester, Inst Opt, Rochester, NY 14627 USA.
[Bradshaw, Douglas H.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Milonni, PW (reprint author), 104 Sierra Vista Dr, White Rock, NM 87544 USA.
EM pmil855242@att.net
RI Shi, Zhimin/G-3857-2011
NR 26
TC 23
Z9 23
U1 1
U2 10
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0030-4018
J9 OPT COMMUN
JI Opt. Commun.
PD MAR 1
PY 2010
VL 283
IS 5
SI SI
BP 650
EP 656
DI 10.1016/j.optcom.2009.10.056
PG 7
WC Optics
SC Optics
GA 560CL
UT WOS:000274879400004
ER
PT J
AU Song, JW
Aizin, G
Kawano, Y
Ishibashi, K
Aoki, N
Ochiai, Y
Reno, JL
Bird, JP
AF Song, Jungwoo
Aizin, Gregory
Kawano, Yukio
Ishibashi, Koji
Aoki, Nobuyuki
Ochiai, Yuichi
Reno, John L.
Bird, Jonathan P.
TI Evaluating the performance of quantum point contacts as nanoscale
terahertz sensors
SO OPTICS EXPRESS
LA English
DT Article
ID FIELD-EFFECT TRANSISTORS; SINGLE-PHOTON DETECTOR; RESONANT DETECTION;
PLASMA-WAVES; RANGE; RADIATION; SUBTERAHERTZ
AB Quantum point contacts (QPCs) are nanoscale constrictions that are realized in a high-mobility two-dimensional electron gas by applying negative bias to split Schottky gates on top of a semiconductor. Here, we explore the suitability of these nanodevices to THz detection, by making use of their ability to rectify THz signals via the strong nonlinearities that exist in their conductance. In addition to demonstrating the configuration of these devices that provides optimal THz sensitivity, we also determine their noise equivalent power and responsivity. Our studies suggest that, with further optimization, QPCs can provide a viable approach to broadband THz sensing in the range above 1 THz. (C) 2010 Optical Society of America
C1 [Song, Jungwoo; Bird, Jonathan P.] SUNY Buffalo, Dept Elect Engn, Buffalo, NY 14260 USA.
[Aizin, Gregory] CUNY, Kingsborough Coll, Dept Phys Sci, Brooklyn, NY 11235 USA.
[Kawano, Yukio; Ishibashi, Koji] RIKEN, Inst Phys & Chem Res, Adv Device Lab, Wako, Saitama 3510198, Japan.
[Aoki, Nobuyuki; Ochiai, Yuichi; Bird, Jonathan P.] Chiba Univ, Grad Sch Adv Integrat Sci, Inage Ku, Chiba 2638522, Japan.
[Reno, John L.] Sandia Natl Labs, CINT, Dept 1132, Albuquerque, NM 87185 USA.
RP Song, JW (reprint author), SUNY Buffalo, Dept Elect Engn, Buffalo, NY 14260 USA.
EM jbird@buffalo.edu
RI Bird, Jonathan/G-4068-2010; Ishibashi, Koji/G-7065-2012
OI Bird, Jonathan/0000-0002-6966-9007;
FU NSF [ECS-0609146]; DoE [DE-FG03-01ER45920]; PSC-CUNY [62040-00 40];
Center for Integrated Nanotechnologies; U.S. DoE Office of Basic Energy
Sciences [DE-AC0494-AL85000]; Sandia National Laboratories;
Lockheed-Martin Company
FX This work was supported by NSF (ECS-0609146), DoE (DE-FG03-01ER45920),
and PSC-CUNY (62040-00 40), and was performed, in part, at the Center
for Integrated Nanotechnologies, a U.S. DoE Office of Basic Energy
Sciences nanoscale science research center. Sandia National Laboratories
is a multiprogram laboratory operated by Sandia Corporation, a
Lockheed-Martin Company, for the U.S. DoE (Contract No.
DE-AC0494-AL85000).
NR 26
TC 6
Z9 6
U1 1
U2 6
PU OPTICAL SOC AMER
PI WASHINGTON
PA 2010 MASSACHUSETTS AVE NW, WASHINGTON, DC 20036 USA
SN 1094-4087
J9 OPT EXPRESS
JI Opt. Express
PD MAR 1
PY 2010
VL 18
IS 5
BP 4609
EP 4614
DI 10.1364/OE.18.004609
PG 6
WC Optics
SC Optics
GA 567NO
UT WOS:000275454100006
PM 20389473
ER
PT J
AU Nalwa, KS
Chaudhary, S
AF Nalwa, Kanwar S.
Chaudhary, Sumit
TI Design of light-trapping microscale-textured surfaces for efficient
organic solar cells
SO OPTICS EXPRESS
LA English
DT Article
ID PHOTOVOLTAIC CELLS; SPECTROSCOPIC ELLIPSOMETRY; MOLECULAR-WEIGHT;
PHOTODIODES; GRATINGS; HETEROJUNCTIONS; FILMS
AB Organic photovoltaic (OPV) cells suffer from low charge carrier mobilities of polymers, which renders it important to achieve complete optical absorption in active layers thinner than optical absorption length. Active layers conformally deposited on light-trapping, microscale textured, grating-type surfaces is one possible approach to achieve this objective. In this report, we analyze the design of such grating-type OPV cells using finite element method simulations. The energy dissipation of electromagnetic field in the active layer is studied as a function of active layer thickness, and pitch and height of the underlying textures. The superiority of textured geometry in terms of light trapping is clearly demonstrated by the simulation results. We observe 40% increase in photonic absorption in 150 nm thick active layer, for textures with 2 mu m pitch and 1.5 mu m height. (C) 2010 Optical Society of America
C1 [Nalwa, Kanwar S.; Chaudhary, Sumit] Iowa State Univ, Dept Elect & Comp Engn, Ames, IA 50011 USA.
[Chaudhary, Sumit] Iowa State Univ, Dept Mat Sci & Engn, Ames, IA 50011 USA.
[Chaudhary, Sumit] Iowa State Univ, USDOE, Ames Lab, Ames, IA 50011 USA.
RP Nalwa, KS (reprint author), Iowa State Univ, Dept Elect & Comp Engn, Ames, IA 50011 USA.
EM sumitc@iastate.edu
RI Chaudhary, Sumit/A-9076-2012
FU Iowa State University; Iowa's Office of Energy Independence; USDOE Ames
Laboratory
FX We thank Iowa State University for start-up funds, Iowa Power Fund from
the state of Iowa's Office of Energy Independence, and USDOE Ames
Laboratory for seed funding. We also thank Dr. Jayeoun Kim and Dr.
Kai-Ming Ho for helpful discussions.
NR 22
TC 15
Z9 15
U1 1
U2 17
PU OPTICAL SOC AMER
PI WASHINGTON
PA 2010 MASSACHUSETTS AVE NW, WASHINGTON, DC 20036 USA
SN 1094-4087
J9 OPT EXPRESS
JI Opt. Express
PD MAR 1
PY 2010
VL 18
IS 5
BP 5168
EP 5178
DI 10.1364/OE.18.005168
PG 11
WC Optics
SC Optics
GA 567NO
UT WOS:000275454100126
PM 20389530
ER
PT J
AU Ginis, V
Tassin, P
Craps, B
Veretennicoff, I
AF Ginis, Vincent
Tassin, Philippe
Craps, Ben
Veretennicoff, Irina
TI Frequency converter implementing an optical analogue of the cosmological
redshift
SO OPTICS EXPRESS
LA English
DT Article
ID MAXWELLS EQUATIONS; METAMATERIALS; POLARIZATION; FIELDS; DESIGN; INDEX
AB According to general relativity, the frequency of electromagnetic radiation is altered by the expansion of the universe. This effect-commonly referred to as the cosmological redshift-is of utmost importance for observations in cosmology. Here we show that this redshift can be reproduced on a much smaller scale using an optical analogue inside a dielectric metamaterial with time-dependent material parameters. To this aim, we apply the framework of transformation optics to the Robertson-Walker metric. We demonstrate theoretically how perfect redshifting or blueshifting of an electromagnetic wave can be achieved without the creation of sidebands with a device of finite length. (C) 2010 Optical Society of America
C1 [Ginis, Vincent; Tassin, Philippe; Veretennicoff, Irina] Vrije Univ Brussel, Dept Appl Phys & Photon, B-1050 Brussels, Belgium.
[Tassin, Philippe] Iowa State Univ, Ames Lab US DOE, Ames, IA 50011 USA.
[Tassin, Philippe] Iowa State Univ, Dept Phys & Astron, Ames, IA 50011 USA.
[Craps, Ben; Veretennicoff, Irina] Int Solvay Inst, B-1050 Brussels, Belgium.
RP Ginis, V (reprint author), Vrije Univ Brussel, Dept Appl Phys & Photon, Pleinlaan 2, B-1050 Brussels, Belgium.
EM vincent.ginis@vub.ac.be
RI Tassin, Philippe/B-7152-2008; Ginis, Vincent/J-9700-2014; Craps,
Ben/J-8429-2016
OI Craps, Ben/0000-0002-0805-0403
FU Belgian Science Policy Office [IAP VI/10, IAP VI/11]; FWO-Vlaanderen
[G011410N]; VUB; Department of Energy (Basic Energy Sciences)
[DE-AC02-07CH11358]; Belgian American Educational Foundation
FX Work at the VUB was supported by the Belgian Science Policy Office
(Grant No. IAP VI/10 Photonics@be & Grant No. IAP VI/11), by the
FWO-Vlaanderen (Project G011410N, fellowships), and by the Research
Council (OZR) of the VUB. Work at Ames Laboratory was supported by the
Department of Energy (Basic Energy Sciences) under Contract No.
DE-AC02-07CH11358. P. T. acknowledges the Belgian American Educational
Foundation for financial support.
NR 25
TC 27
Z9 27
U1 0
U2 3
PU OPTICAL SOC AMER
PI WASHINGTON
PA 2010 MASSACHUSETTS AVE NW, WASHINGTON, DC 20036 USA
SN 1094-4087
J9 OPT EXPRESS
JI Opt. Express
PD MAR 1
PY 2010
VL 18
IS 5
BP 5350
EP 5355
DI 10.1364/OE.18.005350
PG 6
WC Optics
SC Optics
GA 567NO
UT WOS:000275454100117
PM 20389549
ER
PT J
AU Paranthaman, MP
Sathyamurthy, S
Li, XP
Specht, ED
Wee, SH
Cantoni, C
Goyal, A
Rupich, MW
AF Paranthaman, M. Parans
Sathyamurthy, S.
Li, Xiaoping
Specht, E. D.
Wee, S. H.
Cantoni, C.
Goyal, A.
Rupich, M. W.
TI Modified Lanthanum Zirconium Oxide buffer layers for low-cost, high
performance YBCO coated conductors
SO PHYSICA C-SUPERCONDUCTIVITY AND ITS APPLICATIONS
LA English
DT Article
DE Sol-gel processing; Thin films; Buffer layers; YBCO coated conductors
ID CHEMICAL SOLUTION DEPOSITION; SUPERCONDUCTOR WIRES; LA2ZR2O7 BUFFER;
THIN-FILMS; FABRICATION
AB The pyrochlore Lanthanum Zirconium Oxide, La(2)Zr(2)O(7) (LZO), has been developed as a potential replacement barrier layer in the standard RABiTS three-layer architecture of physical vapor deposited CeO(2) cap/YSZ barrier/Y(2)O(3) seed on Ni-5%W metal tape. The main focus of this research is to ascertain whether: (i) we can further improve the barrier properties of LW: (ii) we can modify the LZO cation ratio and still achieve a high level of performance: and (iii) it is possible to reduce the number of buffer layers. We report a systematic investigation of the LZO film growth with varying compositions of La:Zr ratio in the La(2)O(3)-ZrO(2) system. Using a metal-organic deposition (MOD) process, we have grown smooth, crack-free, epitaxial thin films of La(x)Zr(1-x)O(y) (x = 0.2-0.6) on standard Y(2)O(3) buffered Ni-5W substrates in short lengths. Detailed XRD studies indicate that a single epitaxial LZO phase with only (0 0 1) texture can be achieved in a broad compositional range of x = 0.2-0.6 in La(x)Zr(1-x)O(y). Both CeO(2) cap layers and MOD-YBCO films were grown epitaxially on these modified LZO barriers. High critical currents per unit width, I(c) of 274-292 A/cm at 77 K and self-field were achieved for MOD-YBCO films grown on La(x)Zr(1-x)O(y) (x = 0.4-0.6) films. These results indicate that LZO films can be grown with a broad compositional range and still support high performance YBCO coated conductors. In addition, epitaxial MOD La(x)Zr(1-x)O(y) (x = 0.25) films were grown directly on biaxially textured Ni-3W substrates. About 3 um thick YBCO films grown on a single MOD-LZO buffered Ni-3W substrates using pulsed laser deposition show a critical current density, J(c) of 0.55 MA/cm(2) (I(c) of 169 A/cm) at 77 K and 0.01 T. This work holds promise for a route for producing simplified buffer architecture for RABiTS based YBCO coated conductors. Published by Elsevier B.V.
C1 [Paranthaman, M. Parans; Specht, E. D.; Wee, S. H.; Cantoni, C.; Goyal, A.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
[Sathyamurthy, S.; Li, Xiaoping; Rupich, M. W.] Amer Superconductor Corp, Devens, MA 01434 USA.
RP Paranthaman, MP (reprint author), Oak Ridge Natl Lab, Bldg 4500 S,Room S-244,MS-6100, Oak Ridge, TN 37831 USA.
EM paranthamanm@ornl.gov
RI Specht, Eliot/A-5654-2009; Paranthaman, Mariappan/N-3866-2015; Cantoni,
Claudia/G-3031-2013
OI Specht, Eliot/0000-0002-3191-2163; Paranthaman,
Mariappan/0000-0003-3009-8531; Cantoni, Claudia/0000-0002-9731-2021
FU US Department of Energy, Office of Electricity Delivery and Energy
Reliability (OE)
FX Research was sponsored by the d - Advanced Conductors and Cables
Program.
NR 20
TC 23
Z9 24
U1 0
U2 22
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0921-4534
J9 PHYSICA C
JI Physica C
PD MAR 1
PY 2010
VL 470
IS 5-6
BP 352
EP 356
DI 10.1016/j.physc.2010.02.003
PG 5
WC Physics, Applied
SC Physics
GA 613NX
UT WOS:000278987100010
ER
PT J
AU Biswas, R
Zhou, DY
AF Biswas, Rana
Zhou, Dayu
TI Simulation and modelling of photonic and plasmonic crystal back
reflectors for efficient light trapping
SO PHYSICA STATUS SOLIDI A-APPLICATIONS AND MATERIALS SCIENCE
LA English
DT Article
ID SOLAR-CELLS
AB We design photonic crystal back reflectors for thin film a-Si:H solar cells that maximize the absorption of photons within the absorber layer. Rigorous scattering matrix (S-matrix) simulation approaches are used where Maxwell's equations are rigorously solved for the layered solar cell structure. Metallic photonic crystals consisting of hole arrays as well as metallic pyramidal arrays are considered. Simulations predict an optimum lattice spacing between 700 and 750 nm and an increase in absorption of The metallic photonic crystals strongly diffract light within the absorber layer, and are very effective in harvesting weakly absorbing photons with energies just above the band edge. (C) 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
C1 [Biswas, Rana] Iowa State Univ, Dept Phys & Astron, Microelect Res Ctr, Ames, IA 50011 USA.
[Biswas, Rana] Iowa State Univ, Ames Lab, Ames, IA 50011 USA.
[Zhou, Dayu] Iowa State Univ, Dept Elect & Comp Engn, Microelect Res Ctr, Ames, IA 50011 USA.
RP Biswas, R (reprint author), Iowa State Univ, Dept Phys & Astron, Microelect Res Ctr, Ames, IA 50011 USA.
EM biswasr@iastate.edu; dayu.zhou@gmail.com
FU National Science Foundation [ECS-06013177]; Iowa Powerfund; Department
of Energy by Iowa State University [DE-AC0207CH11385]
FX We thank Vikram Dalai for many suggestions. We acknowledge support from
the National Science Foundation under grant ECS-06013177 at Iowa State
University and the Iowa Powerfund. The Ames Laboratory is operated for
the Department of Energy by Iowa State University under contract no.
DE-AC0207CH11385.
NR 10
TC 15
Z9 15
U1 0
U2 15
PU WILEY-V C H VERLAG GMBH
PI WEINHEIM
PA BOSCHSTRASSE 12, D-69469 WEINHEIM, GERMANY
SN 1862-6300
J9 PHYS STATUS SOLIDI A
JI Phys. Status Solidi A-Appl. Mat.
PD MAR
PY 2010
VL 207
IS 3
SI SI
BP 667
EP 670
DI 10.1002/pssa.200982855
PG 4
WC Materials Science, Multidisciplinary; Physics, Applied; Physics,
Condensed Matter
SC Materials Science; Physics
GA 579AY
UT WOS:000276339800037
ER
PT J
AU Park, T
Tokiwa, Y
Ronning, F
Lee, H
Bauer, ED
Movshovich, R
Thompson, JD
AF Park, T.
Tokiwa, Y.
Ronning, F.
Lee, H.
Bauer, E. D.
Movshovich, R.
Thompson, J. D.
TI Field-induced quantum critical point in the pressure-induced
superconductor CeRhIn5
SO PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS
LA English
DT Article; Proceedings Paper
CT International Conference on Quantum Criticality and Novel Phases
CY AUG 02-05, 2009
CL Saxonian State & Univ Lib, Dresden, GERMANY
SP Max Planck Inst Chem Phys, Tech Univ Dresden
HO Saxonian State & Univ Lib
ID UNCONVENTIONAL SUPERCONDUCTIVITY; CECOIN5
AB When subjected to pressure, the prototypical heavy-fermion antiferromagnet CeRhIn5 becomes superconducting, forming a broad dome of superconductivity (SC) centred around 2.35 GPa (=P2) with maximal T-c of 2.3 K. Above the superconducting dome, the normal state shows strange metallic behaviours, including a divergence in the specific heat and a sub-T-linear electrical resistivity. The discovery of a field-induced magnetic phase that coexists with SC for a range of pressures P <= P2 has been interpreted as evidence for a quantum phase transition, which could explain the non-Fermi-liquid behaviour observed in the normal state. Here we report electrical resistivity measurements of CeRhIn5 under magnetic field at P2, where the resistivity is sub-T-linear for temperatures above T-c (or T-FL) and a T-2-coefficient A found below T-FL diverges as H-c2 is approached. These results are similar to the field-induced quantum critical compound CeCoIn5 and confirm the presence of a quantum critical point in the pressure-induced superconductor CeRhIn5. (C) 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
C1 [Park, T.] Sungkyunkwan Univ, Dept Phys, Suwon 440746, South Korea.
[Park, T.; Tokiwa, Y.; Ronning, F.; Lee, H.; Bauer, E. D.; Movshovich, R.; Thompson, J. D.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Park, T (reprint author), Sungkyunkwan Univ, Dept Phys, Suwon 440746, South Korea.
EM tp8701@skku.edu
RI Bauer, Eric/D-7212-2011; Park, Tuson/A-1520-2012; Tokiwa,
Yoshifumi/P-6593-2015;
OI Tokiwa, Yoshifumi/0000-0002-6294-7879; Ronning,
Filip/0000-0002-2679-7957; Bauer, Eric/0000-0003-0017-1937
NR 22
TC 10
Z9 10
U1 0
U2 19
PU WILEY-V C H VERLAG GMBH
PI WEINHEIM
PA BOSCHSTRASSE 12, D-69469 WEINHEIM, GERMANY
SN 0370-1972
J9 PHYS STATUS SOLIDI B
JI Phys. Status Solidi B-Basic Solid State Phys.
PD MAR
PY 2010
VL 247
IS 3
SI SI
BP 553
EP 556
DI 10.1002/pssb.200983076
PG 4
WC Physics, Condensed Matter
SC Physics
GA 579AW
UT WOS:000276339600017
ER
PT J
AU Grube, K
Zaum, S
Bauer, ED
Maple, MB
von Lohneysen, H
AF Grube, K.
Zaum, S.
Bauer, E. D.
Maple, M. B.
v. Loehneysen, H.
TI Hidden low-temperature instability in PrOs4Sb12
SO PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS
LA English
DT Article; Proceedings Paper
CT International Conference on Quantum Criticality and Novel Phases
CY AUG 02-05, 2009
CL Saxonian State & Univ Lib, Dresden, GERMANY
SP Max Planck Inst Chem Phys, Tech Univ Dresden
HO Saxonian State & Univ Lib
ID FERMION SUPERCONDUCTOR PROS4SB12; PHASE-DIAGRAM
AB The low-temperature behavior of many correlated electron systems is characterized by the appearance of macroscopically ordered states that show a dome-shaped evolution of their transition temperatures as a function of non-thermal control parameters. In the heavy-fermion compound PrOs4Sb12, a field-induced phase emerges in a magnetic field range between B approximate to 4.5 and 13.5 T. The phase is characterized by antiferroquadrupolar (AFQ) ordering of the Pr3+ ions. We measured the specific heat of PrOs4Sb12 single crystals in magnetic fields up to B = 14 T parallel to the crystallographic [100] direction to determine the entropy S as a function of T and B. Above the maximum AFQ transition temperature, the entropy S(T = const, B) reveals a pronounced maximum. We show that this maximum can be related to a low-temperature instability which is produced by the degeneracy of the lowest crystalline electric field (CEF) energy levels. (C) 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
C1 [Grube, K.; Zaum, S.; v. Loehneysen, H.] Forschungszentrum Karlsruhe, Inst Festkorperphys, D-76021 Karlsruhe, Germany.
[Zaum, S.; v. Loehneysen, H.] Univ Karlsruhe, Inst Phys, D-76128 Karlsruhe, Germany.
[Bauer, E. D.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
[Maple, M. B.] Univ Calif San Diego, Dept Phys, La Jolla, CA 92093 USA.
RP Grube, K (reprint author), Forschungszentrum Karlsruhe, Inst Festkorperphys, D-76021 Karlsruhe, Germany.
EM kai.grube@ifp.fzk.de
RI Bauer, Eric/D-7212-2011;
OI Bauer, Eric/0000-0003-0017-1937
NR 16
TC 0
Z9 0
U1 0
U2 3
PU WILEY-BLACKWELL
PI MALDEN
PA COMMERCE PLACE, 350 MAIN ST, MALDEN 02148, MA USA
SN 0370-1972
J9 PHYS STATUS SOLIDI B
JI Phys. Status Solidi B-Basic Solid State Phys.
PD MAR
PY 2010
VL 247
IS 3
SI SI
BP 571
EP 573
DI 10.1002/pssb.200983070
PG 3
WC Physics, Condensed Matter
SC Physics
GA 579AW
UT WOS:000276339600020
ER
PT J
AU Yang, XY
Riseborough, PS
Smith, JL
Shapiro, SM
Lashley, JC
AF Yang, Xiaodong
Riseborough, Peter S.
Smith, J. L.
Shapiro, S. M.
Lashley, J. C.
TI On the role of electronic polarization in continuous structural
transitions
SO PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS
LA English
DT Article; Proceedings Paper
CT International Conference on Quantum Criticality and Novel Phases
CY AUG 02-05, 2009
CL Saxonian State & Univ Lib, Dresden, GERMANY
SP Max Planck Inst Chrm Phys, Tech Univ Dresden
HO Saxonian State & Univ Lib
ID TEMPERATURE; METALS
AB Martensitic transitions are defined to be diffusionless structural transitions that lower the crystal symmetry and in which the order parameter, usually strain and shuffle, changes discontinuously. It had been proposed that martensitic transitions are driven by the entropy, due to the soft phonons. Anderson and Blount have shown that it is highly improbable that structural transitions are second-order (continuous), and they have suggested that the apparently continuous structural transition in V(3)Si is a ferroelectric transition. Recently, a continuous structural martensitic transition has also been identified in crystalline AuZn by Lashley et al. Furthermore, pressure measurements on AuZn show that the martensitic temperature can be depressed and suggest the existence of a quantum critical point. The exact nature of the apparently continuous structural transitions is still being debated. However, measurements of magneto-acoustic oscillations in the speed of sound of AuZn indicate that the phonon softening may be driven by the polarization of the conduction electrons. This has been confirmed by recent measurements on AuZn and V(3)Si in magnetic fields, which have shown that the transitions are intimately linked to the dielectric response, and are in accord with the predictions of Dieterich and Fulde for V(3)Si. The field dependence of the electronic polarization and its role in the transition is discussed. (C) 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
C1 [Yang, Xiaodong; Riseborough, Peter S.] Temple Univ, Dept Phys, Philadelphia, PA 19122 USA.
[Smith, J. L.; Lashley, J. C.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
[Shapiro, S. M.] Brookhaven Natl Lab, Upton, NY 11973 USA.
RP Riseborough, PS (reprint author), Temple Univ, Dept Phys, Philadelphia, PA 19122 USA.
EM prisebor@temple.edu
RI Riseborough, Peter/D-4689-2011
NR 13
TC 0
Z9 0
U1 0
U2 7
PU WILEY-V C H VERLAG GMBH
PI WEINHEIM
PA PO BOX 10 11 61, D-69451 WEINHEIM, GERMANY
SN 0370-1972
J9 PHYS STATUS SOLIDI B
JI Phys. Status Solidi B-Basic Solid State Phys.
PD MAR
PY 2010
VL 247
IS 3
SI SI
BP 580
EP 582
DI 10.1002/pssb.200983005
PG 3
WC Physics, Condensed Matter
SC Physics
GA 579AW
UT WOS:000276339600023
ER
PT J
AU Ohashi, M
Oomi, G
Cho, BK
Canfield, PC
AF Ohashi, M.
Oomi, G.
Cho, B. K.
Canfield, P. C.
TI Magnetotransport in the magnetic superconductor HoNi2B2C
SO PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS
LA English
DT Article; Proceedings Paper
CT International Conference on Quantum Criticality and Novel Phases
CY AUG 02-05, 2009
CL Saxonian State & Univ Lib, Dresden, GERMANY
SP Max Planck Inst Chem Phys, Tech Univ Dresden
HO Saxonian State & Univ Lib
ID QUANTUM-PHASE-TRANSITION; HEAT; MAGNETORESISTANCE; PRESSURE; FIELD
AB The electrical resistivity and the magnetization of single crystalline HoNi2B2C have been measured at several magnetic fields. In the paramagnetic region, the magnetization is nicely reproduced by calculations that take the crystal electric field (CEF) into consideration. The magnetoresistance is negative at a wide temperature range, and is strongly dependent on the magnetization. It is interpreted by the reduction of spin-disorder scattering as the moments are polarized. (C) 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
C1 [Ohashi, M.] Kanazawa Univ, Fac Environm Design, Kanazawa, Ishikawa 9201192, Japan.
[Oomi, G.] Kyushu Univ, Dept Phys, Fukuoka 8128581, Japan.
[Cho, B. K.] K JIST, Dept Mat Sci & Engn, Kwangju 500712, South Korea.
[Canfield, P. C.] Iowa State Univ, Dept Phys, Ames, IA 50011 USA.
[Canfield, P. C.] Iowa State Univ, Ames Lab, Ames, IA 50011 USA.
RP Ohashi, M (reprint author), Kanazawa Univ, Fac Environm Design, Kanazawa, Ishikawa 9201192, Japan.
EM ohashi@t.kanazawa-u.ac.jp
RI Canfield, Paul/H-2698-2014
NR 16
TC 2
Z9 2
U1 0
U2 1
PU WILEY-BLACKWELL
PI MALDEN
PA COMMERCE PLACE, 350 MAIN ST, MALDEN 02148, MA USA
SN 0370-1972
J9 PHYS STATUS SOLIDI B
JI Phys. Status Solidi B-Basic Solid State Phys.
PD MAR
PY 2010
VL 247
IS 3
SI SI
BP 599
EP 601
DI 10.1002/pssb.200983049
PG 3
WC Physics, Condensed Matter
SC Physics
GA 579AW
UT WOS:000276339600029
ER
PT J
AU Ernst, S
Wirth, S
Steglich, F
Fisk, Z
Sarrao, JL
Thompson, JD
AF Ernst, S.
Wirth, S.
Steglich, F.
Fisk, Z.
Sarrao, J. L.
Thompson, J. D.
TI Scanning tunneling microscopy studies on CeCoIn5 and CeIrIn5
SO PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS
LA English
DT Article; Proceedings Paper
CT International Conference on Quantum Criticality and Novel Phases
CY AUG 02-05, 2009
CL Saxonian State & Univ Lib, Dresden, GERMANY
SP Max Planck Inst Chem Phys, Tech Univ Dresden
HO Saxonian State & Univ Lib
ID FERMION SUPERCONDUCTOR CECOIN5; PRESSURE; CERHIN5
AB High-quality single crystals of the heavy fermion superconductors CeCoIn5 and CeIrIn5 have been studied by means of low-temperature scanning tunneling microscopy. Methods were established to facilitate in situ sample cleaving. Spectroscopy in CeCoIn5 reveals a gap which persists to above T-c, possibly evidencing a precursor state to superconductivity. Atomically resolved topographs show a rearrangement of the atoms at the crystal surface. This modification at the surface might influence the surface properties as detected by tunneling spectroscopy. (C) 2010 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim
C1 [Ernst, S.; Wirth, S.; Steglich, F.] Max Planck Inst Chem Phys Solids, Dresden, Germany.
[Fisk, Z.] Univ Calif Irvine, Dept Phys & Astron, Irvine, CA USA.
[Sarrao, J. L.; Thompson, J. D.] Los Alamos Natl Lab, Los Alamos, NM USA.
RP Ernst, S (reprint author), Max Planck Inst Chem Phys Solids, Dresden, Germany.
EM ernst@cpfs.mpg.de
NR 27
TC 10
Z9 10
U1 2
U2 11
PU WILEY-BLACKWELL
PI MALDEN
PA COMMERCE PLACE, 350 MAIN ST, MALDEN 02148, MA USA
SN 0370-1972
J9 PHYS STATUS SOLIDI B
JI Phys. Status Solidi B-Basic Solid State Phys.
PD MAR
PY 2010
VL 247
IS 3
SI SI
BP 624
EP 627
DI 10.1002/pssb.200983035
PG 4
WC Physics, Condensed Matter
SC Physics
GA 579AW
UT WOS:000276339600037
ER
PT J
AU Bel, G
Munsky, B
Nemenman, I
AF Bel, Golan
Munsky, Brian
Nemenman, Ilya
TI The simplicity of completion time distributions for common complex
biochemical processes
SO PHYSICAL BIOLOGY
LA English
DT Article
ID T-CELL-ACTIVATION; SIGNAL-TRANSDUCTION; MECHANISM; NETWORKS; DYNAMICS;
MODEL; DNA
AB Biochemical processes typically involve huge numbers of individual reversible steps, each with its own dynamical rate constants. For example, kinetic proofreading processes rely upon numerous sequential reactions in order to guarantee the precise construction of specific macromolecules. In this work, we study the transient properties of such systems and fully characterize their first passage (completion) time distributions. In particular, we provide explicit expressions for the mean and the variance of the completion time for a kinetic proofreading process and computational analyses for more complicated biochemical systems. We find that, for a wide range of parameters, as the system size grows, the completion time behavior simplifies: it becomes either deterministic or exponentially distributed, with a very narrow transition between the two regimes. In both regimes, the dynamical complexity of the full system is trivial compared to its apparent structural complexity. Similar simplicity is likely to arise in the dynamics of many complex multistep biochemical processes. In particular, these findings suggest not only that one may not be able to understand individual elementary reactions from macroscopic observations, but also that such an understanding may be unnecessary.
C1 [Bel, Golan; Munsky, Brian] Los Alamos Natl Lab, Ctr Nonlinear Studies, Los Alamos, NM 87545 USA.
[Bel, Golan; Munsky, Brian] Los Alamos Natl Lab, Comp Computat & Stat Sci Div, Los Alamos, NM 87545 USA.
[Nemenman, Ilya] Emory Univ, Dept Phys, Atlanta, GA 30322 USA.
[Nemenman, Ilya] Emory Univ, Dept Biol, Atlanta, GA 30322 USA.
[Nemenman, Ilya] Emory Univ, Computat & Life Sci Strateg Initiat, Atlanta, GA 30322 USA.
RP Bel, G (reprint author), Los Alamos Natl Lab, Ctr Nonlinear Studies, Los Alamos, NM 87545 USA.
EM golanbel@gmail.com; brian.munsky@gmail.com; ilya.nemenman@emory.edu
RI Bel, Golan/C-6528-2008; BEL, GOLAN/F-1573-2012; Munsky,
Brian/A-1947-2016
OI Bel, Golan/0000-0002-3307-9478; BEL, GOLAN/0000-0002-3307-9478; Munsky,
Brian/0000-0001-6147-7329
FU LANL LDRD program
FX We thank N Sinitsyn and N Hengartner for discussions during early stages
of this work. We also thank B Goldstein, R Gutenkunst and M Monine. We
also thank the Center for Nonlinear Studies for providing an excellent
collaborative environment within Los Alamos National Lab. This work was
partially funded by LANL LDRD program.
NR 26
TC 28
Z9 28
U1 1
U2 10
PU IOP PUBLISHING LTD
PI BRISTOL
PA DIRAC HOUSE, TEMPLE BACK, BRISTOL BS1 6BE, ENGLAND
SN 1478-3967
J9 PHYS BIOL
JI Phys. Biol.
PD MAR
PY 2010
VL 7
IS 1
AR 016003
DI 10.1088/1478-3975/7/1/016003
PG 9
WC Biochemistry & Molecular Biology; Biophysics
SC Biochemistry & Molecular Biology; Biophysics
GA 568BJ
UT WOS:000275496400005
ER
PT J
AU Al-Hagan, O
Murray, AJ
Kaiser, C
Colgan, J
Madison, DH
AF Al-Hagan, Ola
Murray, A. J.
Kaiser, C.
Colgan, J.
Madison, D. H.
TI Electron-impact-ionization cross sections of H-2 for low outgoing
electron energies from 1 to 10 eV
SO PHYSICAL REVIEW A
LA English
DT Article
ID ATOM IONIZATION; WAVE-FUNCTIONS; THRESHOLD LAW
AB Theoretical and experimental fully differential cross sections are presented for electron-impact ionization of molecular hydrogen in a plane perpendicular to the incident beam direction. The experimental data exhibit a maximum for 1-eV electrons detected 180 degrees apart and aminimum for 10-eV electrons. We investigate the different physical effects which cause back-to-back scattering and demonstrate that, over the energy range from 10 to 1 eV, a direct transition is observed from a region where Wannier threshold physics is essentially unimportant to where it completely dominates.
C1 [Al-Hagan, Ola; Madison, D. H.] Missouri Univ Sci & Technol, Dept Phys, Rolla, MO 65409 USA.
[Murray, A. J.; Kaiser, C.] Univ Manchester, Photon Sci Inst, Sch Phys & Astron, Manchester M13 9PL, Lancs, England.
[Colgan, J.] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
RP Al-Hagan, O (reprint author), Missouri Univ Sci & Technol, Dept Phys, Rolla, MO 65409 USA.
OI Colgan, James/0000-0003-1045-3858
FU University of Manchester; US National Science Foundation [PHY-0757749];
Saudi Ministry of Higher Education's King Abdullah Bin Abdul-Aziz
Scholarship; US Department of Energy [DE-AC5206NA25396]
FX We would like to thank a referee for suggesting the energy dependence
explanation for molecules. This work was supported by the University of
Manchester and the US National Science Foundation under Grant No.
PHY-0757749. OAH would also like to thank the Saudi Ministry of Higher
Education's King Abdullah Bin Abdul-Aziz Scholarship for funding. The
Los Alamos National Laboratory is operated by Los Alamos National
Security, LLC, for the National Nuclear Security Administration of the
US Department of Energy under Contract No. DE-AC5206NA25396.
NR 19
TC 17
Z9 17
U1 0
U2 0
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1050-2947
J9 PHYS REV A
JI Phys. Rev. A
PD MAR
PY 2010
VL 81
IS 3
AR 030701
DI 10.1103/PhysRevA.81.030701
PG 4
WC Optics; Physics, Atomic, Molecular & Chemical
SC Optics; Physics
GA 577ZK
UT WOS:000276262500005
ER
PT J
AU Boixo, S
Somma, RD
AF Boixo, S.
Somma, R. D.
TI Necessary condition for the quantum adiabatic approximation
SO PHYSICAL REVIEW A
LA English
DT Article
ID COMPUTATION
AB A gapped quantum system that is adiabatically perturbed remains approximately in its eigenstate after the evolution. We prove that, for constant gap, general quantum processes that approximately prepare the final eigenstate require a minimum time proportional to the ratio of the length of the eigenstate path to the gap. Thus, no rigorous adiabatic condition can yield a smaller cost. We also give a necessary condition for the adiabatic approximation that depends on local properties of the path, which is appropriate when the gap varies.
C1 [Boixo, S.] CALTECH, Inst Quantum Informat, Pasadena, CA 91125 USA.
[Somma, R. D.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Boixo, S (reprint author), CALTECH, Inst Quantum Informat, Pasadena, CA 91125 USA.
EM boixo@caltech.edu; somma@lanl.gov
FU National Science Foundation through the Institute for Quantum
Information at the California Institute of Technology [PHY-0803371]
FX We thank H. Barnum, R. Cleve, A. Childs, and E. Knill for discussions,
and the Perimeter Institute where part of this work was done. SB thanks
the National Science Foundation for support under grant PHY-0803371
through the Institute for Quantum Information at the California
Institute of Technology. RS thanks the Laboratory Directed Research and
Development Program at Los Alamos National Laboratory for support.
NR 38
TC 24
Z9 24
U1 0
U2 2
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9926
EI 2469-9934
J9 PHYS REV A
JI Phys. Rev. A
PD MAR
PY 2010
VL 81
IS 3
AR 032308
DI 10.1103/PhysRevA.81.032308
PG 4
WC Optics; Physics, Atomic, Molecular & Chemical
SC Optics; Physics
GA 577ZK
UT WOS:000276262500057
ER
PT J
AU Osipov, T
Stener, M
Belkacem, A
Schoffler, M
Weber, T
Schmidt, L
Landers, A
Prior, MH
Dorner, R
Cocke, CL
AF Osipov, T.
Stener, M.
Belkacem, A.
Schoeffler, M.
Weber, Th.
Schmidt, L.
Landers, A.
Prior, M. H.
Doerner, R.
Cocke, C. L.
TI Carbon K-shell photoionization of fixed-in-space C2H4
SO PHYSICAL REVIEW A
LA English
DT Article
ID RECOIL-ION; MOMENTUM SPECTROSCOPY; ORIENTED MOLECULES; SHAPE RESONANCES;
N-2; PHOTOELECTRON; DYNAMICS; MICROSCOPE; RESOLUTION; CO
AB Measurements of the photoelectron angular distributions in the body-fixed frame (MFPAD) have been carried out for 290- to 320-eV photons (just above the carbon K-shell ionization threshold) on C2H4 using an approach based on cold-target recoil-ion momentum spectroscopy (COLTRIMS). The results are compared with a theoretical calculation and excellent agreement is found. A direct verification of the "f-wave shape resonance" is accomplished by obtaining the complex amplitude of the l = 3 partial wave, which shows a peak in its absolute value and a relative phase change of p as the energy is scanned across the resonance.
C1 [Osipov, T.; Belkacem, A.; Schoeffler, M.; Weber, Th.; Prior, M. H.] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
[Stener, M.] Univ Trieste, Dipartimento Sci Chim, I-34127 Trieste, Italy.
[Stener, M.] Univ Trieste, Consorzio Interuniv Nazl Sci & Tecnol Mat INSTM, I-34127 Trieste, Italy.
[Schmidt, L.; Doerner, R.] Goethe Univ Frankfurt, Inst Kernphys, D-60438 Frankfurt, Germany.
[Landers, A.] Auburn Univ, Dept Phys, Auburn, AL 36849 USA.
[Cocke, C. L.] Kansas State Univ, Dept Phys, Manhattan, KS 66506 USA.
RP Osipov, T (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
EM cocke@phys.ksu.edu
RI Doerner, Reinhard/A-5340-2008; Landers, Allen/C-1213-2013; Weber,
Thorsten/K-2586-2013; Stener, Mauro/B-7987-2014; Schoeffler,
Markus/B-6261-2008
OI Doerner, Reinhard/0000-0002-3728-4268; Weber,
Thorsten/0000-0003-3756-2704; Stener, Mauro/0000-0003-3700-7903;
Schoeffler, Markus/0000-0001-9214-6848
FU MIUR (Programmi di Ricerca di Interesse Nazionale PRIN 2006) of Italy;
Consorzio Interuniversitario Nazionale per la Scienza e Tecnologia dei
Materiali (INSTM); CINECA (Bologna, Italy); US Department of Energy,
Office of Science, Office of Basic Energy Sciences, Chemical Sciences,
Geosciences, and Biosciences Division; DAAD; DFG
FX The calculations have been supported by grants from MIUR (Programmi di
Ricerca di Interesse Nazionale PRIN 2006) of Italy, from Consorzio
Interuniversitario Nazionale per la Scienza e Tecnologia dei Materiali
(INSTM) and from CINECA (Bologna, Italy). Experimental work has been
supported by the US Department of Energy, Office of Science, Office of
Basic Energy Sciences, Chemical Sciences, Geosciences, and Biosciences
Division. Support from the DAAD and DFG is acknowledged.
NR 27
TC 5
Z9 5
U1 0
U2 7
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1050-2947
J9 PHYS REV A
JI Phys. Rev. A
PD MAR
PY 2010
VL 81
IS 3
AR 033429
DI 10.1103/PhysRevA.81.033429
PG 12
WC Optics; Physics, Atomic, Molecular & Chemical
SC Optics; Physics
GA 577ZK
UT WOS:000276262500149
ER
PT J
AU Piazza, F
Collins, LA
Smerzi, A
AF Piazza, F.
Collins, L. A.
Smerzi, A.
TI Current-phase relation of a Bose-Einstein condensate flowing through a
weak link
SO PHYSICAL REVIEW A
LA English
DT Article
ID SUPERFLUID HE-4; JOSEPHSON; TRANSITION
AB We study the current-phase relation of a Bose-Einstein condensate flowing through a repulsive square barrier by solving analytically the one-dimensional Gross-Pitaevskii equation. The barrier height and width fix the current-phase relation j (delta phi), which tends to j similar to cos(delta phi/2) for weak barriers and to the Josephson sinusoidal relation j similar to sin(delta phi) for strong barriers. Between these two limits, the current-phase relation depends on the barrier width. In particular, for wide-enough barriers, we observe two families of multivalued current-phase relations. Diagrams belonging to the first family, already known in the literature, can have two different positive values of the current at the same phase difference. The second family, new to our knowledge, can instead allow for three different positive currents still corresponding to the same phase difference. Finally, we show that the multivalued behavior arises from the competition between hydrodynamic and nonlinear-dispersive components of the flow, the latter due to the presence of a soliton inside the barrier region.
C1 [Piazza, F.] Univ Trent, CNR INFM BEC Ctr, I-38050 Povo, Italy.
[Piazza, F.; Smerzi, A.] Univ Trent, Dipartimento Fis, I-38050 Povo, Italy.
[Collins, L. A.] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
RP Piazza, F (reprint author), Univ Trent, CNR INFM BEC Ctr, I-38050 Povo, Italy.
RI Piazza, Francesco/H-3840-2012
OI Piazza, Francesco/0000-0003-1332-6627
FU US Department of Energy [DE-AC52-06NA25396]
FX The Los Alamos National Laboratory is operated by Los Alamos National
Security, LLC for the National Nuclear Security Administration of the US
Department of Energy under Contract No. DE-AC52-06NA25396.
NR 27
TC 13
Z9 13
U1 0
U2 6
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1050-2947
J9 PHYS REV A
JI Phys. Rev. A
PD MAR
PY 2010
VL 81
IS 3
AR 033613
DI 10.1103/PhysRevA.81.033613
PG 6
WC Optics; Physics, Atomic, Molecular & Chemical
SC Optics; Physics
GA 577ZK
UT WOS:000276262500162
ER
PT J
AU Rosa, FSS
Dalvit, DAR
Milonni, PW
AF Rosa, F. S. S.
Dalvit, D. A. R.
Milonni, P. W.
TI Electromagnetic energy, absorption, and Casimir forces: Uniform
dielectric media in thermal equilibrium
SO PHYSICAL REVIEW A
LA English
DT Article
ID WAALS FORCES; ABSORBING DIELECTRICS; SPONTANEOUS EMISSION; QUANTIZATION;
FIELD; VAN; SOLIDS; DECAY
AB The derivation of Casimir forces between dielectrics can be simplified by ignoring absorption, calculating energy changes due to displacements of the dielectrics, and only then admitting absorption by allowing permittivities to be complex. As a first step toward a better understanding of this situation we consider in this article the model of a dielectric as a collection of oscillators, each of which is coupled to a reservoir giving rise to damping and Langevin forces on the oscillators and a noise polarization acting as a source of a fluctuating electromagnetic field in the dielectric. The model leads naturally to expressions for the quantized electric and magnetic fields that are consistent with those obtained in approaches that diagonalize the coupled system of oscillators for the dielectric medium, the reservoir, and the electromagnetic field. It also results in a fluctuation-dissipation relation between the noise polarization and the imaginary part of the permittivity; comparison with the Rytov fluctuation-dissipation relation employed in the well-known Lifshitz theory for the van der Waals (or Casimir) force shows that the Lifshitz theory is actually a classical stochastic electrodynamical theory. The approximate classical expression for the energy density in a band of frequencies at which absorption in a dielectric is negligible is shown to be exact as a spectral thermal equilibrium expectation value in quantum electrodynamic theory. Our main result is the derivation of an expression for the QED energy density of a uniform dispersive, absorbing media in thermal equilibrium. The spectral density of the energy is found to have the same form with or without absorption. We also show how the fluctuation-dissipation theorem ensures a detailed balance of energy exchange between the (absorbing) medium, the reservoir, and the electromagnetic field in thermal equilibrium.
C1 [Rosa, F. S. S.; Dalvit, D. A. R.; Milonni, P. W.] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
RP Rosa, FSS (reprint author), Los Alamos Natl Lab, Div Theoret, MS B213, Los Alamos, NM 87545 USA.
FU DOE/NNSA [DE-AC52-06NA25396]
FX We thank S. M. Barnett, L. S. Brown, S. Y. Buhmann, I. E.
Dzyaloshinskii, J. H. Eberly, and R. F. O'Connell for helpful comments
relating to this research. This work was funded by DARPA/MTO's Casimir
Effect Enhancement program under DOE/NNSA Contract DE-AC52-06NA25396.
NR 31
TC 29
Z9 29
U1 0
U2 11
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1050-2947
J9 PHYS REV A
JI Phys. Rev. A
PD MAR
PY 2010
VL 81
IS 3
AR 033812
DI 10.1103/PhysRevA.81.033812
PG 12
WC Optics; Physics, Atomic, Molecular & Chemical
SC Optics; Physics
GA 577ZK
UT WOS:000276262500191
ER
PT J
AU Tsigutkin, K
Dounas-Frazer, D
Family, A
Stalnaker, JE
Yashchuk, VV
Budker, D
AF Tsigutkin, K.
Dounas-Frazer, D.
Family, A.
Stalnaker, J. E.
Yashchuk, V. V.
Budker, D.
TI Parity violation in atomic ytterbium: Experimental sensitivity and
systematics
SO PHYSICAL REVIEW A
LA English
DT Article
ID NONCONSERVATION; TRANSITION; 6S(2)
AB We present a detailed description of the observation of parity violation in the (1)S(0-)(3)D(1) 408-nm forbidden transition of ytterbium, a brief report of which appeared earlier. Linearly polarized 408-nm light interacts with Yb atoms in crossed E and B fields. The probability of the 408-nm transition contains a parity-violating term, proportional to (is an element of center dot B)[(E x is an element of) center dot B], arising from interference between the parity-violating amplitude and the Stark amplitude due to the E field (is an element of is the electric field of the light). The transition probability is detected by measuring the population of the (3)P(0) state, to which 65% of the atoms excited to the (3)D(1) state spontaneously decay. The population of the (3)P(0) state is determined by resonantly exciting the atoms with 649-nm light to the 6s7s (3)S(1) state and collecting the fluorescence resulting from its decay. Systematic corrections due to E-field and B-field imperfections are determined in auxiliary experiments. The statistical uncertainty is dominated by parasitic frequency excursions of the 408-nm excitation light due to the imperfect stabilization of the optical reference with respect to the atomic resonance. The present uncertainties are 9% statistical and 8% systematic. Methods of improving the accuracy for future experiments are discussed.
C1 [Tsigutkin, K.; Dounas-Frazer, D.; Family, A.; Stalnaker, J. E.] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
[Yashchuk, V. V.] Univ Calif Berkeley, Lawrence Berkeley Lab, Adv Light Source Div, Berkeley, CA 94720 USA.
[Budker, D.] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Nucl Sci, Berkeley, CA 94720 USA.
RP Tsigutkin, K (reprint author), Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
EM tsigutkin@berkeley.edu
RI Budker, Dmitry/F-7580-2016
OI Budker, Dmitry/0000-0002-7356-4814
FU NSF
FX The authors acknowledge helpful discussions with and important
contributions of M. A. Bouchiat, C. J. Bowers, E. D. Commins, B. P. Das,
D. DeMille, A. Dilip, S. J. Freedman, J. S. Guzman, G. Gwinner, M. G.
Kozlov, S. M. Rochester, and M. Zolotorev. This work has been supported
by the NSF.
NR 20
TC 17
Z9 17
U1 0
U2 8
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1050-2947
J9 PHYS REV A
JI Phys. Rev. A
PD MAR
PY 2010
VL 81
IS 3
AR 032114
DI 10.1103/PhysRevA.81.032114
PG 13
WC Optics; Physics, Atomic, Molecular & Chemical
SC Optics; Physics
GA 577ZK
UT WOS:000276262500037
ER
PT J
AU Zhang, JP
Wei, XG
Hernandez, G
Zhu, YF
AF Zhang, Jiepeng
Wei, Xiaogang
Hernandez, Gessler
Zhu, Yifu
TI White-light cavity based on coherent Raman scattering via normal modes
of a coupled cavity-and-atom system
SO PHYSICAL REVIEW A
LA English
DT Article
ID ELECTROMAGNETICALLY INDUCED TRANSPARENCY; GRAVITATIONAL-WAVE DETECTORS;
PHASE COHERENCE
AB We describe a white-light cavity scheme based on a cavity quantum electrodynamics system that consists of multiple three-level atoms confined in an optical cavity and coherently driven by a free-space, circularly polarized field. A linearly polarized field is coupled into the cavity mode and its two circular components induce coherent Raman transitions through the normal modes of the coupled atom-cavity system. One circular component of the cavity field experiences anomalous dispersion which enables broadband light transmission through the cavity. We present the experimental demonstration of the broadband light transmission through an optical cavity coupled to cold Rb atoms.
C1 [Zhang, Jiepeng; Wei, Xiaogang; Hernandez, Gessler; Zhu, Yifu] Florida Int Univ, Dept Phys, Miami, FL 33199 USA.
[Wei, Xiaogang] Jilin Univ, Coll Phys, Changchun 130023, Peoples R China.
RP Zhang, JP (reprint author), Los Alamos Natl Lab, Phys Div P 23, POB 1663, Los Alamos, NM 87544 USA.
RI wei, xiaogang/A-9021-2010
FU National Science Foundation [0757984]
FX This material is based upon work supported by the National Science
Foundation under Grant No. 0757984.
NR 18
TC 7
Z9 7
U1 0
U2 4
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9926
EI 2469-9934
J9 PHYS REV A
JI Phys. Rev. A
PD MAR
PY 2010
VL 81
IS 3
AR 033804
DI 10.1103/PhysRevA.81.033804
PG 4
WC Optics; Physics, Atomic, Molecular & Chemical
SC Optics; Physics
GA 577ZK
UT WOS:000276262500183
ER
PT J
AU Bardarson, JH
Medvedyeva, MV
Tworzydlo, J
Akhmerov, AR
Beenakker, CWJ
AF Bardarson, J. H.
Medvedyeva, M. V.
Tworzydlo, J.
Akhmerov, A. R.
Beenakker, C. W. J.
TI Absence of a metallic phase in charge-neutral graphene with a random gap
SO PHYSICAL REVIEW B
LA English
DT Article
ID SUPERCONDUCTORS; FERMIONS
AB It is known that fluctuations in the electrostatic potential allow for metallic conduction (nonzero conductivity in the limit of an infinite system) if the carriers form a single species of massless two-dimensional Dirac fermions. A nonzero uniform mass M opens up an excitation gap, localizing all states at the Dirac point of charge neutrality. Here we investigate numerically whether fluctuations delta MM not equal 0 in the mass can have a similar effect as potential fluctuations, allowing for metallic conduction at the Dirac point. Our negative conclusion confirms earlier expectations but does not support the recently predicted metallic phase in a random-gap model of graphene.
C1 [Bardarson, J. H.] Lawrence Berkeley Natl Lab, Div Mat Sci, Berkeley, CA 94720 USA.
[Bardarson, J. H.] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
[Bardarson, J. H.] Cornell Univ, Atom & Solid State Phys Lab, Ithaca, NY 14853 USA.
[Medvedyeva, M. V.; Akhmerov, A. R.; Beenakker, C. W. J.] Leiden Univ, Inst Lorentz, NL-2300 RA Leiden, Netherlands.
[Tworzydlo, J.] Univ Warsaw, Inst Theoret Phys, PL-00681 Warsaw, Poland.
RP Bardarson, JH (reprint author), Lawrence Berkeley Natl Lab, Div Mat Sci, Berkeley, CA 94720 USA.
RI Beenakker, Carlo/B-7424-2008;
OI Beenakker, Carlo/0000-0003-4748-4412; Akhmerov,
Anton/0000-0001-8031-1340
FU Dutch Science Foundation NWO/FOM; ERC; EU; NSF [DMR 0705476]; DOE BES
FX We have benefited from discussions with P. W. Brouwer and A. D. Mirlin.
This research was supported by the Dutch Science Foundation NWO/FOM, by
an ERC Advanced Investigator Grant, by the EU network NanoCTM, by the
NSF under Grant No. DMR 0705476, and by the DOE BES. JHB thanks the
Dahlem Center at FU Berlin for hospitality during the initial phase of
this project.
NR 25
TC 18
Z9 18
U1 0
U2 1
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 12
AR 121414
DI 10.1103/PhysRevB.81.121414
PG 3
WC Physics, Condensed Matter
SC Physics
GA 577UG
UT WOS:000276248900034
ER
PT J
AU Bera, MK
Sanyal, MK
Yang, L
Biswas, K
Gibaud, A
Rao, CNR
AF Bera, M. K.
Sanyal, M. K.
Yang, L.
Biswas, K.
Gibaud, A.
Rao, C. N. R.
TI Small-angle x-ray scattering study of the aggregation of gold
nanoparticles during formation at the toluene-water interface
SO PHYSICAL REVIEW B
LA English
DT Article
ID FILMS; OXIDATION; CATALYSTS
AB We report the results of an in situ small-angle x-ray scattering (SAXS) study of the aggregation of gold nanoparticles formed by an interfacial reaction at the toluene-water interface. The SAXS data provide a direct evidence for aggregate formation of nanoparticles having 1.3 nm gold core and an organic shell that gives a core-core separation of about 2.5 nm. Furthermore, the nanoparticles do not occupy all the cites of 13-member cluster. This occupancy decreases with reaction time and indicate reorganization of the clusters that generates planner disklike structures. A gradual increase in fractal dimension from 1.82 to 2.05 also indicate compactification of cluster aggregation with reaction time, the final exponent being close to 2 expected for disklike aggregates.
C1 [Bera, M. K.; Sanyal, M. K.] Saha Inst Nucl Phys, Surface Phys Div, Kolkata 700064, India.
[Bera, M. K.] SN Bose Natl Ctr Basic Sci, Kolkata 700098, India.
[Sanyal, M. K.; Biswas, K.; Rao, C. N. R.] Jawaharlal Nehru Ctr Adv Sci Res, Int Ctr Mat Sci, Bangalore 560064, Karnataka, India.
[Yang, L.] Brookhaven Natl Lab, Natl Synchrotron Light Source, Upton, NY 11973 USA.
[Biswas, K.; Rao, C. N. R.] Indian Inst Sci, Solid State & Struct Chem Unit, Bangalore 560012, Karnataka, India.
[Gibaud, A.] Univ Maine, CNRS, LPEC, UMR 6087, F-72085 Le Mans, France.
RP Bera, MK (reprint author), Saha Inst Nucl Phys, Surface Phys Div, 1-AF Bidhannagar, Kolkata 700064, India.
RI Yang, Lin/D-5872-2013; Ahirwal, Ashish /F-2532-2013; sanyal,
milan/J-2527-2015;
OI Yang, Lin/0000-0003-1057-9194; Ahirwal, Ashish /0000-0002-9127-6541;
sanyal, milan/0000-0002-3847-8793; Bera, Mrinal/0000-0003-0698-5253
NR 30
TC 15
Z9 15
U1 0
U2 18
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
EI 1550-235X
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115415
DI 10.1103/PhysRevB.81.115415
PG 7
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800128
ER
PT J
AU Bjorkman, T
Lizarraga, R
Bultmark, F
Eriksson, O
Wills, JM
Bergman, A
Andersson, PH
Nordstrom, L
AF Bjorkman, Torbjorn
Lizarraga, Raquel
Bultmark, Fredrik
Eriksson, Olle
Wills, John M.
Bergman, Anders
Andersson, Per H.
Nordstrom, Lars
TI Theoretical studies of the incommensurate magnetic structure of a heavy
fermion system: CeRhIn5
SO PHYSICAL REVIEW B
LA English
DT Article
ID SUPERCONDUCTIVITY; PRESSURE; CEIRIN5; CECOIN5; METALS
AB We have investigated the electronic structure and the incommensurate magnetic configuration of the pressure-induced superconductor CeRhIn5. Noncollinear first-principles calculations were performed in the local-density approximation plus U scheme. The observed magnetic configuration is described accurately in our calculations, especially considering the minute energy scale which is relevant (microelectron volt). The band structure and Fermi surfaces were investigated and nesting was found to be responsible for the complex noncollinear magnetic state of CeRhIn5.
C1 [Bjorkman, Torbjorn; Bultmark, Fredrik; Eriksson, Olle; Bergman, Anders; Nordstrom, Lars] Uppsala Univ, Dept Phys & Astron, Angstrom Lab, S-75120 Uppsala, Sweden.
[Lizarraga, Raquel] Univ Austral Chile, Fac Ciencias, Inst Fis, Valdivia, Chile.
[Lizarraga, Raquel; Wills, John M.] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
[Andersson, Per H.] Swedish Def Res Agcy FOI, S-16490 Stockholm, Sweden.
RP Bjorkman, T (reprint author), Uppsala Univ, Dept Phys & Astron, Angstrom Lab, POB 516, S-75120 Uppsala, Sweden.
RI Bjorkman, Torbjorn/B-9844-2012; Bergman, Anders/H-7996-2012; Eriksson,
Olle/E-3265-2014
OI Bjorkman, Torbjorn/0000-0002-1154-9846; Bergman,
Anders/0000-0002-5134-1978; Eriksson, Olle/0000-0001-5111-1374
FU Swedish Research Council; Swedish Foundation for Strategic Research
(SSF); Swedish National Super Computer facility (SNAC); FONDECYT Chile
[11080259]; CONICYT Chile [ACT24/2006]
FX Support from the Swedish Research Council (VR), STEM and the Swedish
Foundation for Strategic Research (SSF) are acknowledged. We also
acknowledge support from the Swedish National Super Computer facility
(SNAC). We acknowledge valuable discussions with P. Oppeneer, F.
Cricchio, and M. Colarieti-Tosti. R. L. would like to acknowledge
support from FONDECYT Chile Project No. 11080259 and CONICYT Chile under
Grant No. ACT24/2006.
NR 34
TC 2
Z9 2
U1 1
U2 10
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094433
DI 10.1103/PhysRevB.81.094433
PG 5
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300083
ER
PT J
AU Boada, R
Piquer, C
Laguna-Marco, MA
Chaboy, J
AF Boada, R.
Piquer, C.
Laguna-Marco, M. A.
Chaboy, J.
TI Additivity of magnetic contributions to the x-ray magnetic circular
dichroism spectrum
SO PHYSICAL REVIEW B
LA English
DT Article
ID ALLOYS; MOMENT; PROBE; EDGE
AB We have studied the behavior of the x-ray magnetic circular dichroism (XMCD) signals recorded at the Fe K edge through the Ho(1-x)Lu(x)Fe(2) series in which the system is driven through a magnetic compensation by varying the concentration of the magnetic rare-earth metal, the temperature and the applied magnetic field. We report a direct experimental evidence of the additive character of the different magnetic species, Ho and Fe, to the XMCD signal at the conduction band. Both magnetic contributions are always present due to the hybridization of the conduction states, and only at T(Comp) the Ho contribution to the Fe K-edge XMCD disappears.
C1 [Boada, R.; Piquer, C.; Chaboy, J.] Univ Zaragoza, CSIC, Inst Ciencia Mat Aragon, E-50009 Zaragoza, Spain.
[Boada, R.; Chaboy, J.] Univ Zaragoza, Dept Fis Mat Condensada, E-50009 Zaragoza, Spain.
[Piquer, C.] Univ Zaragoza, Dept Ciencia & Tecnol Mat & Fluidos, E-50009 Zaragoza, Spain.
[Laguna-Marco, M. A.] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
RP Boada, R (reprint author), Univ Zaragoza, CSIC, Inst Ciencia Mat Aragon, E-50009 Zaragoza, Spain.
RI Laguna-Marco, M. A./G-8042-2011; Boada, Roberto/H-5349-2015
OI Laguna-Marco, M. A./0000-0003-4069-0395; Boada,
Roberto/0000-0003-4857-8402
FU Spanish CICYT [MAT2008-06542-C04-01]; Ministerio de Ciencia e Innovacion
of Spain
FX This work was partially supported by Spanish CICYT Grant No.
MAT2008-06542-C04-01. The synchrotron radiation experiments were
performed at SPring-8 within the Budding Researchers Support Program
(Proposal No. 2008B1753). We are indebted to M. Suzuki and N. Kawamura
for the experimental support at SPring-8. M. A. L.-M. and R. B.
acknowledge support from the Ministerio de Ciencia e Innovacion of
Spain.
NR 19
TC 4
Z9 4
U1 0
U2 5
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 100404
DI 10.1103/PhysRevB.81.100404
PG 4
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700010
ER
PT J
AU Borysenko, KM
Mullen, JT
Barry, EA
Paul, S
Semenov, YG
Zavada, JM
Nardelli, MB
Kim, KW
AF Borysenko, K. M.
Mullen, J. T.
Barry, E. A.
Paul, S.
Semenov, Y. G.
Zavada, J. M.
Nardelli, M. Buongiorno
Kim, K. W.
TI First-principles analysis of electron-phonon interactions in graphene
SO PHYSICAL REVIEW B
LA English
DT Article
AB The electron-phonon interaction in monolayer graphene is investigated using density-functional perturbation theory. The results indicate that the electron-phonon interaction strength is of comparable magnitude for all four in-plane phonon branches and must be considered simultaneously. Moreover, the calculated scattering rates suggest an acoustic-phonon contribution that is much weaker than previously thought, revealing an important role of optical phonons even at low energies. Accordingly it is predicted, in good agreement with a recent measurement, that the intrinsic mobility of graphene may be more than an order of magnitude larger than the already high values reported in suspended samples.
C1 [Borysenko, K. M.; Barry, E. A.; Semenov, Y. G.; Zavada, J. M.; Kim, K. W.] N Carolina State Univ, Dept Elect & Comp Engn, Raleigh, NC 27695 USA.
[Mullen, J. T.; Paul, S.; Nardelli, M. Buongiorno] N Carolina State Univ, Dept Phys, Raleigh, NC 27695 USA.
[Nardelli, M. Buongiorno] Oak Ridge Natl Lab, CSMD, Oak Ridge, TN 37831 USA.
RP Borysenko, KM (reprint author), N Carolina State Univ, Dept Elect & Comp Engn, Raleigh, NC 27695 USA.
EM kwk@ncsu.edu
RI Buongiorno Nardelli, Marco/C-9089-2009
FU DARPA/HRL CERA; NSF; FCRP FENA; Office of Basic Energy Sciences, U. S.
DOE [DE-AC05-00OR22725]
FX This work was supported, in part, by the DARPA/HRL CERA, NSF, and FCRP
FENA programs. M. B. N. wishes to acknowledge partial support from the
Office of Basic Energy Sciences, U. S. DOE at Oak Ridge National
Laboratory under Contract No. DE-AC05-00OR22725 with UT-Battelle, LLC.
M. B. N. and J. T. M. are thankful to M. Lazzeri for useful discussions.
NR 17
TC 96
Z9 96
U1 2
U2 29
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 12
AR 121412
DI 10.1103/PhysRevB.81.121412
PG 4
WC Physics, Condensed Matter
SC Physics
GA 577UG
UT WOS:000276248900032
ER
PT J
AU Brivio, S
Magen, C
Sidorenko, AA
Petti, D
Cantoni, M
Finazzi, M
Ciccacci, F
De Renzi, R
Varela, M
Picozzi, S
Bertacco, R
AF Brivio, S.
Magen, C.
Sidorenko, A. A.
Petti, D.
Cantoni, M.
Finazzi, M.
Ciccacci, F.
De Renzi, R.
Varela, M.
Picozzi, S.
Bertacco, R.
TI Effects of Au nanoparticles on the magnetic and transport properties of
La0.67Sr0.33MnO3 ultrathin layers
SO PHYSICAL REVIEW B
LA English
DT Article
ID BRILLOUIN-ZONE INTEGRATIONS; THIN-FILMS; OXYGEN VACANCIES;
PHASE-SEPARATION; MANGANITES; MAGNETORESISTANCE; MAGNETOTRANSPORT;
TEMPERATURE; INJECTION; OXIDES
AB The effect of the proximity of Au nanoparticles on the transport and magnetic properties of ultrathin La2/3Sr1/3MnO3 (LSMO) films has been investigated. We find a huge increase in the resistivity of the manganite (by four orders of magnitude for a Au nominal thickness of 2 nm), which is accompanied by a strong decrease in the Curie temperature. A combined scanning transmission electron microscopy and electron energy-loss spectroscopy analysis shows that interfaces are coherent and atomically sharp, and that the structural quality is very high. On the other hand, a strong reduction in the Mn oxidation state is seen upon Au capping. NMR data show a strong attenuation of the double exchange signal upon formation of Au nanoparticles. Ab initio calculations indicate a negligible influence of Au on LSMO at an ideal interface, with the LSMO surface magnetic and electronic properties essentially unchanged upon creation of the Au/LSMO interface. In view of these calculations, the experimental results cannot be explained in terms of purely electrostatic effects induced by the proximity of a noble metal. Here we propose that the main driving force underlying the observed change in physical properties is the high reactivity of Au nanoparticles, which can locally pump oxygen from the manganite, thus favoring a phase separation ensuing from O inhomogeneity which deteriorates the transport and electrical properties.
C1 [Brivio, S.; Petti, D.; Cantoni, M.; Finazzi, M.; Ciccacci, F.; Bertacco, R.] Politecn Milan, LNESS, Dipartimento Fis, I-22100 Como, Italy.
[Magen, C.; Varela, M.] Oak Ridge Natl Lab, Oak Ridge, TN 37830 USA.
[Sidorenko, A. A.; De Renzi, R.] Univ Parma, Dipartimento Fis, I-43124 Parma, Italy.
[Sidorenko, A. A.; De Renzi, R.] Univ Parma, Unita CNISM Parma, I-43124 Parma, Italy.
[Picozzi, S.] CNR INFM, CASTI Reg Lab, I-67010 Laquila, Italy.
RP Brivio, S (reprint author), Politecn Milan, LNESS, Dipartimento Fis, Via Anzani 42, I-22100 Como, Italy.
RI Sidorenko, Andrey/C-5135-2008; SPIN-CNR, L'Aquila/C-7274-2011; De Renzi,
Roberto/F-9182-2011; Petti, Daniela/B-1659-2012; Cantoni,
Matteo/A-1481-2009; Varela, Maria/H-2648-2012; Magen, Cesar/A-2825-2013;
Varela, Maria/E-2472-2014; Brivio, Stefano/H-6696-2014; Picozzi,
Silvia/E-2374-2011; ciccacci, franco/N-9392-2013; Finazzi,
Marco/M-7401-2015
OI Bertacco, Riccardo/0000-0002-8109-9166; BRIVIO,
STEFANO/0000-0003-2386-7953; Cantoni, Matteo/0000-0001-8946-1847;
Sidorenko, Andrey/0000-0002-6353-6721; De Renzi,
Roberto/0000-0002-5015-0061; Petti, Daniela/0000-0002-9273-1884; Varela,
Maria/0000-0002-6582-7004; Picozzi, Silvia/0000-0002-3232-788X;
ciccacci, franco/0000-0002-1131-4748; Finazzi, Marco/0000-0002-9197-3654
FU Consorzio Nazionale Interuniversitario per le Scienze Fisiche della
Materia (CNISM); Division of Materials Sciences and Engineering of the
U.S. Department of Energy; Spanish Ministry for Science and Education;
EU [NMP3-CT-2006-033370-OFSPIN]
FX The authors are deeply grateful to Marco Leone for his skillful
technical assistance, to Julia Luck for specimen preparation for STEM,
and to Masashi Watanabe for the plug in for principal component analysis
in digital micrograph. This work has been partially funded by Consorzio
Nazionale Interuniversitario per le Scienze Fisiche della Materia
(CNISM) as part of a Progetto d'Innesco della Ricerca Esplorativa 2005.
Work at ORNL (M.V.) was supported by the Division of Materials Sciences
and Engineering of the U.S. Department of Energy. C. Magen acknowledges
financial support from the Spanish Ministry for Science and Education.
A. A. Sidorenko and R. De Renzi acknowledge support of EU STREP Grant
No. NMP3-CT-2006-033370-OFSPIN.
NR 52
TC 20
Z9 20
U1 3
U2 43
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9950
EI 2469-9969
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094410
DI 10.1103/PhysRevB.81.094410
PG 10
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300060
ER
PT J
AU Burke, BG
Chan, J
Williams, KA
Ge, JC
Shu, CY
Fu, WJ
Dorn, HC
Kushmerick, JG
Puretzky, AA
Geohegan, DB
AF Burke, Brian G.
Chan, Jack
Williams, Keith A.
Ge, Jiechao
Shu, Chunying
Fu, Wujun
Dorn, Harry C.
Kushmerick, James G.
Puretzky, Alexander A.
Geohegan, David B.
TI Investigation of Gd3N@C-2n (40 < n < 44) family by Raman and inelastic
electron tunneling spectroscopy
SO PHYSICAL REVIEW B
LA English
DT Article
ID IMAGING CONTRAST AGENT; WATER-SOLUBLE METALLOFULLERENES; ENDOHEDRAL
METALLOFULLERENES; MAGNETIC-PROPERTIES; CARBON CAGES; FULLERENES;
CLUSTER; JUNCTIONS; SPECTRA; SIZE
AB The structure and vibrational spectrum of Gd3N@C-80 is studied through Raman and inelastic electron tunneling spectroscopy as well as density-functional theory and universal force field calculations. Hindered rotations, shown by both theory and experiment, indicate the formation of a Gd3N-C-80 bond which reduces the ideal icosahedral symmetry of the C-80 cage. The vibrational modes involving the movement of the encapsulated species are a fingerprint of the interaction between the fullerene cage and the core complex. We present Raman data for the Gd3N@C-2n (40 < n < 44) family as well as Y3N@C-80, Lu3N@C-80, and Y3N@C-88 for comparison. Conductance measurements have been performed on Gd3N@C-80 and reveal a Kondo effect similar to that observed in C-60.
C1 [Burke, Brian G.; Chan, Jack; Williams, Keith A.] Univ Virginia, Dept Phys, Charlottesville, VA 22904 USA.
[Ge, Jiechao; Shu, Chunying; Fu, Wujun; Dorn, Harry C.] Virginia Polytech Inst & State Univ, Dept Chem, Blacksburg, VA 24061 USA.
[Kushmerick, James G.] NIST, Gaithersburg, MD 20899 USA.
[Puretzky, Alexander A.; Geohegan, David B.] Oak Ridge Natl Lab, Mat Sci & Technol Div, Ctr Nanophase Mat Sci, Oak Ridge, TN 37831 USA.
RP Williams, KA (reprint author), Univ Virginia, Dept Phys, Charlottesville, VA 22904 USA.
EM kwilliams@virginia.edu
RI Dorn, Harry/K-6830-2013; Puretzky, Alexander/B-5567-2016; Geohegan,
David/D-3599-2013
OI Puretzky, Alexander/0000-0002-9996-4429; Geohegan,
David/0000-0003-0273-3139
FU National Science Foundation [CHE0443850, DMR-0507083]; National
Institutes of Health [1R01-CA119371-01]; U.S. Department of Energy
FX The authors thank Smitha Vasudevan for her assistance with molecular
modeling. We are grateful for support of this work by the National
Science Foundation (Grants No. CHE0443850) (H.C.D.) and No. DMR-0507083
(H.C.D.)] and the National Institutes of Health [Grant No.
1R01-CA119371-01 (H.C.D.)]. A portion of this research at Oak Ridge
National Laboratory's Center for Nanophase Materials Science was
sponsored by the Scientific User Facilities Division, Office of Basic
Energy Sciences, U.S. Department of Energy.
NR 56
TC 12
Z9 12
U1 3
U2 18
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115423
DI 10.1103/PhysRevB.81.115423
PG 7
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800136
ER
PT J
AU Chadov, S
Schaumlrf, D
Fecher, GH
Felser, C
Zhang, LJ
Singh, DJ
AF Chadov, Stanislav
Schaumlrf, Daniel
Fecher, Gerhard H.
Felser, Claudia
Zhang, Lijun
Singh, David J.
TI Electronic structure, localization, and spin-state transition in
Cu-substituted FeSe:Fe1-xCuxSe
SO PHYSICAL REVIEW B
LA English
DT Article
ID COHERENT-POTENTIAL APPROXIMATION; PHASE-TRANSITIONS; WAVE METHOD;
SUPERCONDUCTIVITY; TEMPERATURE; PRESSURE; METALS; ALLOYS; FESE;
DIFFRACTION
AB We report density-functional studies of the Fe1-xCuxSe alloy done using supercell and coherent-potential approximation methods. Magnetic behavior was investigated using the disordered local moment approach. We find that Cu occurs in a nominal d(10) configuration and is highly disruptive to the electronic structure of the Fe sheets. This would be consistent with a metal-insulator transition due to Anderson localization. We further find a strong crossover from a weak moment itinerant system to a local moment magnet at x approximate to 0.12. We associate this with the experimentally observed jump near this concentration. Our results are consistent with the characterization of this concentration-dependent jump as a transition to a spin glass.
C1 [Chadov, Stanislav; Schaumlrf, Daniel; Fecher, Gerhard H.; Felser, Claudia] Johannes Gutenberg Univ Mainz, Inst Anorgan Chem & Analyt Chem, D-55099 Mainz, Germany.
[Zhang, Lijun; Singh, David J.] Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA.
RP Chadov, S (reprint author), Johannes Gutenberg Univ Mainz, Inst Anorgan Chem & Analyt Chem, D-55099 Mainz, Germany.
EM chadov@uni-mainz.de
RI Felser, Claudia/A-5779-2009; Zhang, Lijun/F-7710-2011; Fecher,
Gerhard/H-2470-2011; Singh, David/I-2416-2012; Chadov,
Stanislav/P-3018-2014
OI Felser, Claudia/0000-0002-8200-2063; Chadov,
Stanislav/0000-0002-1160-1835
FU Department of Energy, Division of Materials Sciences and Engineering;
[SFB/TRR49]
FX The authors are much indebted to Roser Valenti and Jurgen Kubler for
helpful discussions. The financial support by the SFB/TRR49 is
gratefully acknowledged. Work at Oak Ridge National Laboratory was
supported by the Department of Energy, Division of Materials Sciences
and Engineering.
NR 55
TC 31
Z9 31
U1 1
U2 26
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104523
DI 10.1103/PhysRevB.81.104523
PG 8
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700117
ER
PT J
AU Cheney, CP
Bondino, F
Callcott, TA
Vilmercati, P
Ederer, D
Magnano, E
Malvestuto, M
Parmigiani, F
Sefat, AS
McGuire, MA
Jin, R
Sales, BC
Mandrus, D
Singh, DJ
Freeland, JW
Mannella, N
AF Cheney, C. Parks
Bondino, F.
Callcott, T. A.
Vilmercati, P.
Ederer, D.
Magnano, E.
Malvestuto, M.
Parmigiani, F.
Sefat, A. S.
McGuire, M. A.
Jin, R.
Sales, B. C.
Mandrus, D.
Singh, D. J.
Freeland, J. W.
Mannella, N.
TI Orbital symmetry of Ba(Fe1-xCox)(2)As-2 superconductors probed with
x-ray absorption spectroscopy
SO PHYSICAL REVIEW B
LA English
DT Article
ID LAO1-XFXFEAS
AB The orbital symmetries of electron-doped iron-arsenide superconductors Ba(Fe1-xCox)(2)As-2 have been measured with x-ray absorption spectroscopy. The data reveal signatures of Fe d electron itinerancy, weak electronic correlations, and a high degree of Fe-As hybridization related to the bonding topology of the Fe d(xz+yz) states, which are found to contribute substantially at the Fermi level. The energies and detailed orbital character of Fe and As derived unoccupied s and d states are found to be in remarkably good agreement with the predictions of standard density-functional theory.
C1 [Cheney, C. Parks; Callcott, T. A.; Vilmercati, P.; Mannella, N.] Univ Tennessee, Dept Phys & Astron, Knoxville, TN 37996 USA.
[Bondino, F.; Magnano, E.; Parmigiani, F.] IOM CNR Lab TASC, I-34012 Trieste, Italy.
[Ederer, D.] Tulane Univ, Dept Phys, New Orleans, LA 70118 USA.
[Malvestuto, M.] Sincrotrone Trieste SCpA, I-34012 Trieste, Italy.
[Parmigiani, F.] Univ Trieste, Dipartmento Fis, I-34127 Trieste, Italy.
[Sefat, A. S.; McGuire, M. A.; Jin, R.; Sales, B. C.; Mandrus, D.; Singh, D. J.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
[Freeland, J. W.] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
RP Mannella, N (reprint author), Univ Tennessee, Dept Phys & Astron, Knoxville, TN 37996 USA.
EM nmannell@utk.edu
RI McGuire, Michael/B-5453-2009; Singh, David/I-2416-2012; Malvestuto,
Marco/I-4821-2012; Mandrus, David/H-3090-2014; Sefat,
Athena/R-5457-2016; Vilmercati, Paolo/E-5655-2017;
OI Bondino, Federica/0000-0001-6505-9319; McGuire,
Michael/0000-0003-1762-9406; Malvestuto, Marco/0000-0003-4418-035X;
Sefat, Athena/0000-0002-5596-3504; Vilmercati,
Paolo/0000-0002-3872-8828; Parmigiani, Fulvio/0000-0001-9529-7406
FU NSF [DMR-0804902]; U. S. Department of Energy [DE-AC05-00OR22725,
DE-AC02-06CH11357]; Eugene P. Wigner Fellowship at ORNL
FX The work at the ALS, APS, and Elettra is supported by NSF under Grant
No. DMR-0804902. The work at Oak Ridge is sponsored by the Department of
Energy, Division of Materials Sciences and Engineering. Oak Ridge
National Laboratory is managed by UT-Battelle, LLC, for the U. S.
Department of Energy under Contract No. DE-AC05-00OR22725. Work at
Argonne is supported by the U. S. Department of Energy, Office of
Science, under Contract No. DE-AC02-06CH11357. A. S. S. and M. A. M.
acknowledge support from the Eugene P. Wigner Fellowship at ORNL.
NR 20
TC 17
Z9 17
U1 1
U2 8
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104518
DI 10.1103/PhysRevB.81.104518
PG 5
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700112
ER
PT J
AU Clark, SJ
Robertson, J
Lany, S
Zunger, A
AF Clark, S. J.
Robertson, J.
Lany, S.
Zunger, A.
TI Intrinsic defects in ZnO calculated by screened exchange and hybrid
density functionals
SO PHYSICAL REVIEW B
LA English
DT Article
ID ELECTRONIC-STRUCTURE; BAND-STRUCTURE; APPROXIMATION; OXIDES
AB The formation energies of intrinsic defects in ZnO are calculated by a family of screened exchange and hybrid density functionals, which include different fractions of Fock exchange and range separation in the hybrids. All functionals improve on local-density methods and agree remarkably well for formation energies of neutral vacancies but show significant variations for the energy of charge transition levels in the gap. This result highlights that a correct prediction of the band gap by a functional does not guarantee a high accuracy for the defect levels. Hybrid functionals obtain the correct localization of trapped hole states at the Zn vacancy.
C1 [Clark, S. J.] Univ Durham, Dept Phys, Durham, England.
[Robertson, J.] Univ Cambridge, Dept Engn, Cambridge CB2 1PZ, England.
[Lany, S.; Zunger, A.] Natl Renewable Energy Lab, Golden, CO 80401 USA.
RP Clark, SJ (reprint author), Univ Durham, Dept Phys, Durham, England.
EM jr@eng.cam.ac.uk
RI Clark, Stewart/A-3462-2012; Zunger, Alex/A-6733-2013;
OI Lany, Stephan/0000-0002-8127-8885
NR 39
TC 151
Z9 152
U1 7
U2 73
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115311
DI 10.1103/PhysRevB.81.115311
PG 5
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800088
ER
PT J
AU Culcer, D
Hankiewicz, EM
Vignale, G
Winkler, R
AF Culcer, Dimitrie
Hankiewicz, E. M.
Vignale, Giovanni
Winkler, R.
TI Side jumps in the spin Hall effect: Construction of the Boltzmann
collision integral
SO PHYSICAL REVIEW B
LA English
DT Article
ID SEMICONDUCTORS; FERROMAGNETICS; SPINTRONICS
AB We present a systematic derivation of the side-jump contribution to the spin Hall current in systems without band-structure spin-orbit interactions, focusing on the construction of the collision integral for the Boltzmann equation. Starting from the quantum Liouville equation for the density operator we derive an equation describing the dynamics of the density matrix in the first Born approximation and to first order in the driving electric field. Elastic scattering requires conservation of the total energy, including the spin-orbit interaction energy with the electric field: this results in a first correction to the customary collision integral found in the Born approximation. A second correction is due to the change in the carrier position during collisions. It stems from the part of the density-matrix off-diagonal in wave vector. The two corrections to the collision integral add up and are responsible for the total side-jump contribution to the spin Hall current. The spin-orbit-induced correction to the velocity operator also contains terms diagonal and off-diagonal in momentum space, which together involve the total force acting on the system. This force is explicitly shown to vanish (on the average) in the steady state: thus the total contribution to the spin Hall current due to the additional terms in the velocity operator is zero.
C1 [Culcer, Dimitrie] Univ Maryland, Dept Phys, Condensed Matter Theory Ctr, College Pk, MD 20742 USA.
[Hankiewicz, E. M.] Univ Wurzburg, Inst Theoret Phys & Astrophys, D-97074 Wurzburg, Germany.
[Vignale, Giovanni] Univ Missouri, Dept Phys & Astron, Columbia, MO 65211 USA.
[Winkler, R.] Argonne Natl Lab, Div Mat Sci, Argonne, IL 60439 USA.
[Winkler, R.] No Illinois Univ, De Kalb, IL 60115 USA.
RP Culcer, D (reprint author), Univ Maryland, Dept Phys, Condensed Matter Theory Ctr, College Pk, MD 20742 USA.
FU LPS-NSA-CMTC; DFG [HA 5893/1-1]; DOE BES [DE-AC02-06CH11357]; NSF
[DMR-0705460]
FX We would like to acknowledge stimulating discussions with S. Das Sarma,
Jairo Sinova, Hans-Andreas Engel and Peter Schwab. D.C. was supported by
LPS-NSA-CMTC. E.M.H. was financially supported by DFG under Grant No. HA
5893/1-1. Work at Argonne was supported by DOE BES under Contract No.
DE-AC02-06CH11357. G. V. acknowledges support from NSF under Grant No.
DMR-0705460.
NR 52
TC 16
Z9 16
U1 0
U2 5
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9950
EI 2469-9969
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 12
AR 125332
DI 10.1103/PhysRevB.81.125332
PG 9
WC Physics, Condensed Matter
SC Physics
GA 577UG
UT WOS:000276248900116
ER
PT J
AU d'Astuto, M
Calandra, M
Bendiab, N
Loupias, G
Mauri, F
Zhou, SY
Graf, J
Lanzara, A
Emery, N
Herold, C
Lagrange, P
Petitgrand, D
Hoesch, M
AF d'Astuto, Matteo
Calandra, Matteo
Bendiab, Nedjma
Loupias, Genevieve
Mauri, Francesco
Zhou, Shuyun
Graf, Jeff
Lanzara, Alessandra
Emery, Nicolas
Herold, Claire
Lagrange, P.
Petitgrand, Daniel
Hoesch, Moritz
TI Phonon dispersion and low-energy anomaly in CaC6 from inelastic neutron
and x-ray scattering experiments
SO PHYSICAL REVIEW B
LA English
DT Article
ID WANNIER FUNCTIONS; RESOLUTION; C6CA
AB We report measurements of phonon dispersion in CaC6 using inelastic x-ray and neutron scattering. We find good overall agreement, particularly in the 50 meV energy region, between experimental data and first-principles density-functional-theory calculations. However, on the longitudinal dispersion along the (111) axis of the rhombohedral representation, we find an unexpected anticrossing with an additional longitudinal mode, at about 11 meV. At a comparable energy, we observe also unexpected intensity on the in-plane direction. These results resolve the previous incorrect assignment of a longitudinal phonon mode to a transverse mode in the same energy range. By calculating the electron susceptibility from first principles we show that this longitudinal excitation is unlikely to be due to a plasmon and consequently can probably be due to defects or vacancies present in the sample.
C1 [d'Astuto, Matteo; Calandra, Matteo; Bendiab, Nedjma; Loupias, Genevieve; Mauri, Francesco] Univ Paris 06, IMPMC, F-75252 Paris 05, France.
[Zhou, Shuyun; Graf, Jeff; Lanzara, Alessandra] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Mat Sci, Berkeley, CA 94720 USA.
[Zhou, Shuyun; Lanzara, Alessandra] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
[Emery, Nicolas; Herold, Claire; Lagrange, P.] Nancy Univ, CNRS, UMR 7198,Fac Sci & Tech, UPV Metz,Inst Jean Lamour,Dept Chim & Phys Solide, F-54506 Vandoeuvre Les Nancy, France.
[Petitgrand, Daniel] CEA Saclay, CNRS, Lab Leon Brillouin, F-91191 Gif Sur Yvette, France.
[Hoesch, Moritz] European Synchrotron Radiat Facil, F-38043 Grenoble, France.
RP d'Astuto, M (reprint author), Univ Paris 06, IMPMC, Case 115,4 Pl Jussieu, F-75252 Paris 05, France.
EM matteo.dastuto@impmc.upmc.fr
RI Zhou, Shuyun/A-5750-2009; d'Astuto, Matteo/F-8235-2013; Calandra,
Matteo/B-6161-2014; mauri, francesco/K-5726-2012
OI d'Astuto, Matteo/0000-0002-7583-4427; mauri,
francesco/0000-0002-6666-4710
FU U. S. Department of Energy [DE-AC02-05CH11231]; University of
California, Berkeley; ESRF [HS-3189]; LLB [8170]
FX M. D., M. C., G. L. and F. M. enjoyed fruitful discussion with A. C.
Walters, C. A. Howard, M. Ellerby, T. E. Weller, M. P. M. Dean and S. S.
Saxena. We acknowledge M. Krisch for useful discussion and D. Gambetti
for technical help. Calculations were performed at the IDRIS
supercomputing center (Project No. 081202). S.Y.Z., J.G. were supported
by the Director, Office of Science, Office of Basic Energy Sciences,
Materials Sciences and Engineering Division, of the U. S. Department of
Energy under Contract No. DE-AC02-05CH11231. We acknowledge the support
from University of California, Berkeley, through France Berkeley Fund
Grant, for reciprocal visit of the Berkley and Paris team, to perform
experiment, data analysis and discussion. This work was supported by
ESRF through Experiment No. HS-3189 and by LLB through Experiment No.
8170.
NR 26
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U2 7
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104519
DI 10.1103/PhysRevB.81.104519
PG 6
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700113
ER
PT J
AU da Silva, LGGVD
Al-Hassanieh, KA
Feiguin, AE
Reboredo, FA
Dagotto, E
AF da Silva, Luis G. G. V. Dias
Al-Hassanieh, Khaled A.
Feiguin, Adrian E.
Reboredo, Fernando A.
Dagotto, Elbio
TI Real-time dynamics of particle-hole excitations in Mott insulator-metal
junctions
SO PHYSICAL REVIEW B
LA English
DT Article
ID DENSITY-MATRIX RENORMALIZATION; PHYSICS
AB Charge excitations in Mott insulators (MIs) are distinct from their band-insulator counterparts and they can provide a mechanism for energy harvesting in solar cells based on strongly correlated electronic materials. In this paper, we study the real-time dynamics of holon-doublon pairs in an MI connected to metallic leads using the time-dependent density-matrix renormalization-group method. The transfer of charge across the MI-metal interface is controlled by both the electron-electron interaction strength within the MI and the voltage difference between the leads. We find an overall enhancement of the charge transfer as compared to the case of a (noninteracting) band insulator-metal interface with a similar band gap. Moreover, the propagation of holon-doublon excitations within the MI dynamically changes the spin-spin correlations, introducing time-dependent phase shifts in the spin-structure factor.
C1 [da Silva, Luis G. G. V. Dias; Dagotto, Elbio] Univ Tennessee, Dept Phys & Astron, Knoxville, TN 37996 USA.
[da Silva, Luis G. G. V. Dias; Reboredo, Fernando A.; Dagotto, Elbio] Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA.
[Al-Hassanieh, Khaled A.] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
[Feiguin, Adrian E.] Univ Wyoming, Dept Phys & Astron, Laramie, WY 82071 USA.
RP da Silva, LGGVD (reprint author), Univ Tennessee, Dept Phys & Astron, Knoxville, TN 37996 USA.
RI Dias da Silva, Luis/D-8381-2013
OI Dias da Silva, Luis/0000-0002-8156-9463
FU U. S. Department of Energy; National Science Foundation [DMR-0706020]
FX We acknowledge motivating discussions with Ivan Gonzalez, Fabian
Heidrich-Meisner, Hiro Onishi, and Satoshi Okamoto. Research was
sponsored by the Division of Materials Sciences and Engineering, Office
of Basic Energy Sciences, U. S. Department of Energy. Computational
support was provided by the National Energy Research Scientific
Computing Center (NERSC). Work at LANL was carried out under the
auspices of the NNSA of the U. S. DOE under Contract No.
DE-AC52-06NA25396. L. G. G. V. D. S. and E. D. acknowledge support from
the National Science Foundation via Grant No. DMR-0706020.
NR 26
TC 10
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U1 0
U2 7
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 12
AR 125113
DI 10.1103/PhysRevB.81.125113
PG 8
WC Physics, Condensed Matter
SC Physics
GA 577UG
UT WOS:000276248900050
ER
PT J
AU Das, S
Niazi, A
Mudryk, Y
Pecharsky, VK
Johnston, DC
AF Das, S.
Niazi, A.
Mudryk, Y.
Pecharsky, V. K.
Johnston, D. C.
TI Magnetic, thermal, and transport properties of the mixed-valent vanadium
oxides LuV4O8 and YV4O8
SO PHYSICAL REVIEW B
LA English
DT Article
ID INSULATOR TRANSITION; CRYSTAL-STRUCTURE; PHASE-TRANSITION; CALCIUM
FERRITE; METAL; SUSCEPTIBILITY; PARAMETERS; SYSTEM; CHAINS
AB LV4O8(L=Yb,Y,Lu) compounds are reported to crystallize in a structure similar to that of the orthorhombic CaFe2O4 structure type and contain four inequivalent V sites arranged in zigzag chains. We confirm the structure and report the magnetic, thermal, and transport properties of polycrystalline YV4O8 and LuV4O8. A first-order-like phase transition is observed at 50 K in both YV4O8 and LuV4O8. The symmetry remains the same with the lattice parameters changing discontinuously. The structural transition in YV4O8 leads to partial dimerization of the V atoms resulting in a sudden sharp drop in the magnetic susceptibility. The V spins that do not form dimers order in a canted antiferromagnetic state. The magnetic susceptibility of LuV4O8 shows a sharp peak at similar to 50 K. The magnetic entropies calculated from heat capacity versus temperature measurements indicate bulk magnetic transitions below 90 K for both YV4O8 and LuV4O8.
C1 [Das, S.; Niazi, A.; Mudryk, Y.; Pecharsky, V. K.; Johnston, D. C.] Iowa State Univ, Ames Lab, Ames, IA 50011 USA.
[Das, S.; Niazi, A.; Johnston, D. C.] Iowa State Univ, Dept Phys & Astron, Ames, IA 50011 USA.
[Pecharsky, V. K.] Iowa State Univ, Dept Mat Sci & Engn, Ames, IA 50011 USA.
RP Das, S (reprint author), Iowa State Univ, Ames Lab, Ames, IA 50011 USA.
FU Department of Energy-Basic Energy Sciences [DE-AC02-07CH11358]
FX Work at the Ames Laboratory was supported by the Department of
Energy-Basic Energy Sciences under Contract No. DE-AC02-07CH11358.
NR 36
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U1 1
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104432
DI 10.1103/PhysRevB.81.104432
PG 11
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700094
ER
PT J
AU Delaire, O
Lucas, MS
dos Santos, AM
Subedi, A
Sefat, AS
McGuire, MA
Mauger, L
Munoz, JA
Tulk, CA
Xiao, Y
Somayazulu, M
Zhao, JY
Sturhahn, W
Alp, EE
Singh, DJ
Sales, BC
Mandrus, D
Egami, T
AF Delaire, O.
Lucas, M. S.
dos Santos, A. M.
Subedi, A.
Sefat, A. S.
McGuire, M. A.
Mauger, L.
Munoz, J. A.
Tulk, C. A.
Xiao, Y.
Somayazulu, M.
Zhao, J. Y.
Sturhahn, W.
Alp, E. E.
Singh, D. J.
Sales, B. C.
Mandrus, D.
Egami, T.
TI Temperature and pressure dependence of the Fe-specific phonon density of
states in Ba(Fe1-xCox)(2)As-2
SO PHYSICAL REVIEW B
LA English
DT Article
ID NUCLEAR RESONANT SCATTERING
AB The Fe-57 -specific phonon density of states (DOS) of Ba(Fe1-xCox)(2)As-2 single crystals (x=0.0,0.08) was measured at cryogenic temperatures and at high pressures with nuclear-resonant inelastic x-ray scattering. Measurements were conducted for two different orientations of the single crystals, yielding the orientation-projected Fe-57 -phonon density of states for phonon polarizations in-plane and out-of-plane with respect to the basal plane of the crystal structure. In the tetragonal phase at 300 K, a clear stiffening was observed upon doping with Co. Increasing pressure to 4 GPa caused a marked increase of phonon frequencies, with the doped material still stiffer than the parent compound. Upon cooling, both the doped and undoped samples showed a stiffening and the parent compound exhibited a discontinuity across the magnetic and structural phase transitions. These findings are generally compatible with the changes in volume of the system upon doping, increasing pressure, or increasing temperature, but an extra softening of high-energy modes occurs with increasing temperature. First-principles computations of the phonon DOS were performed and showed an overall agreement with the experimental results, but underestimate the Gruneisen parameter. This discrepancy is explained in terms of a magnetic Gruneisen parameter, causing an extra phonon stiffening as magnetism is suppressed under pressure.
C1 [Delaire, O.; Lucas, M. S.; dos Santos, A. M.; Subedi, A.; Sefat, A. S.; McGuire, M. A.; Tulk, C. A.; Singh, D. J.; Sales, B. C.; Mandrus, D.; Egami, T.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
[Subedi, A.; Egami, T.] Univ Tennessee, Dept Phys & Astron, Knoxville, TN 37996 USA.
[Mauger, L.; Munoz, J. A.] CALTECH, WM Keck Lab, Pasadena, CA 91125 USA.
[Xiao, Y.] Carnegie Inst Washington, Geophys Lab, HPCAT, Argonne, IL 60439 USA.
[Somayazulu, M.] Carnegie Inst Sci, Geophys Lab, Washington, DC 20015 USA.
[Zhao, J. Y.; Sturhahn, W.; Alp, E. E.] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
RP Delaire, O (reprint author), Oak Ridge Natl Lab, 1 Bethel Valley Rd, Oak Ridge, TN 37831 USA.
RI McGuire, Michael/B-5453-2009; Munoz, Jorge/C-8427-2011; Singh,
David/I-2416-2012; Mandrus, David/H-3090-2014; dos Santos,
Antonio/A-5602-2016; Sefat, Athena/R-5457-2016; Tulk, Chris/R-6088-2016
OI McGuire, Michael/0000-0003-1762-9406; dos Santos,
Antonio/0000-0001-6900-0816; Sefat, Athena/0000-0002-5596-3504; Tulk,
Chris/0000-0003-3400-3878
FU DOE-BES [DE-AC02-06CH11357]; DOE-NNSA (CDAC); NSF; DOD; TACOM; W. M.
Keck Foundation
FX We thank Steve Nagler for help with providing the isotopically enriched
iron. Experimental work at ORNL was supported by the Scientific User
Facilities Division and the Division of Materials Sciences and
Engineering, Office of Basic Energy Sciences, DOE. Theory work at ORNL
was supported by DOE, Division of Materials Sciences and Engineering.
Use of the HPCAT facility was supported by DOE-BES, DOE-NNSA (CDAC),
NSF, DOD TACOM, and the W. M. Keck Foundation. Use of the APS was
supported by DOE-BES under Contract No. DE-AC02-06CH11357.
NR 43
TC 13
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U1 4
U2 12
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094504
DI 10.1103/PhysRevB.81.094504
PG 9
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300093
ER
PT J
AU Feng, EH
Jones, RE
AF Feng, Edward H.
Jones, Reese E.
TI Equilibrium thermal vibrations of carbon nanotubes
SO PHYSICAL REVIEW B
LA English
DT Article
ID YOUNGS MODULUS; MOLECULAR-DYNAMICS; SHEAR; TEMPERATURE; CANTILEVERS
AB An understanding of thermal vibrations of carbon nanotubes is key to their application as high-frequency mechanical resonators. To this end, we calculate the free thermal vibrations of cantilevered carbon nanotubes using molecular dynamics and explain the resulting power spectral density of the tip displacement with equilibrium statistical mechanics and continuum beam theory.
C1 [Feng, Edward H.; Jones, Reese E.] Sandia Natl Labs, Livermore, CA 94551 USA.
RP Feng, EH (reprint author), Sandia Natl Labs, Livermore, CA 94551 USA.
EM ehfeng@sandia.gov
FU Sandia National Laboratories; United States Department of Energy
[DE-ACO4-94AL85000]
FX We would like to acknowledge the support of the Laboratory Directed
Research and Development program at Sandia National Laboratories. Sandia
is a multiprogram laboratory operated by Sandia Corporation, a Lockheed
Martin Co., for the United States Department of Energy under Contract
No. DE-ACO4-94AL85000.
NR 28
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U1 1
U2 3
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 12
AR 125436
DI 10.1103/PhysRevB.81.125436
PG 5
WC Physics, Condensed Matter
SC Physics
GA 577UG
UT WOS:000276248900153
ER
PT J
AU Fransson, J
Eriksson, O
Balatsky, AV
AF Fransson, J.
Eriksson, O.
Balatsky, A. V.
TI Theory of spin-polarized scanning tunneling microscopy applied to local
spins
SO PHYSICAL REVIEW B
LA English
DT Article
ID MAGNETIC-ANISOTROPY; ATOMIC-SCALE; SPECTROSCOPY; ELECTRONS; SURFACE;
RESONANCE; STATE
AB We provide a theory for scanning tunneling microscopy and spectroscopy using a spin-polarized tip. It it shown that the tunneling conductance can be partitioned into three separate contributions, a background conductance which is independent of the local spin, a dynamical conductance which is proportional to the local-spin moment, and a conductance which is proportional to the noise spectrum of the local-spin interactions. The presented theory is applicable to setups with magnetic tip and substrate in noncollinear arrangement, as well as for nonmagnetic situations. The partitioning of the tunneling current suggests a possibility to extract the total spin moment of the local spin from the dynamical conductance. The dynamical conductance suggests a possibility to generate very high-frequency spin-dependent ac currents and/or voltages. We also propose a measurement of the dynamical conductance that can be used to determine the character of the effective exchange interaction between individual spins in clusters. The third contribution to the tunneling current is associated with the spin-spin correlations induced by the exchange interaction between the local-spin moment and the tunneling electrons. We demonstrate how this term can be used in the analysis of spin excitations recorded in conductance measurements. Finally, we propose to use spin-polarized scanning tunneling microscopy for detailed studies of the spin-excitation spectrum.
C1 [Fransson, J.; Eriksson, O.] Uppsala Univ, Dept Phys & Mat Sci, SE-75121 Uppsala, Sweden.
[Balatsky, A. V.] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
[Balatsky, A. V.] Los Alamos Natl Lab, Ctr Integrated Nanotechnol, Los Alamos, NM 87545 USA.
RP Fransson, J (reprint author), Uppsala Univ, Dept Phys & Mat Sci, POB 530, SE-75121 Uppsala, Sweden.
EM jonas.fransson@fysik.uu.se; avb@lanl.gov
RI Fransson, Jonas/A-9238-2009; Eriksson, Olle/E-3265-2014
OI Eriksson, Olle/0000-0001-5111-1374
FU Swedish Research Council; Royal Swedish Academy of Sciences; U.S. DOE
FX J.F. and O.E. thank the Swedish Research Council (VR) and the Royal
Swedish Academy of Sciences (KVA), and A. V. B. thanks U.S. DOE, for
financial support. J.F. thanks LANL for hospitality during his visit in
2008. Special thanks to A. Bergman, S. Blugel, L. Nordstrom, B. Gyorffy,
and W. Wulfhekel for valuable discussions, and to M. Bode and R.
Wiesendanger for giving critical comments on the manuscript.
NR 42
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PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115454
DI 10.1103/PhysRevB.81.115454
PG 11
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800167
ER
PT J
AU Freeland, JW
Chakhalian, J
Boris, AV
Tonnerre, JM
Kavich, JJ
Yordanov, P
Grenier, S
Zschack, P
Karapetrova, E
Popovich, P
Lee, HN
Keimer, B
AF Freeland, J. W.
Chakhalian, J.
Boris, A. V.
Tonnerre, J. -M.
Kavich, J. J.
Yordanov, P.
Grenier, S.
Zschack, P.
Karapetrova, E.
Popovich, P.
Lee, H. N.
Keimer, B.
TI Charge transport and magnetization profile at the interface between the
correlated metal CaRuO3 and the antiferromagnetic insulator CaMnO3
SO PHYSICAL REVIEW B
LA English
DT Article
ID RAY-ABSORPTION-SPECTROSCOPY; ELECTRONIC-STRUCTURE; TRANSITION; MAGNETISM
AB A combination of spectroscopic probes was used to develop a detailed experimental description of the transport and magnetic properties of superlattices composed of the paramagnetic metal CaRuO3 and the antiferromagnetic insulator CaMnO3. The charge-carrier density and Ru valence state in the superlattices are not significantly different from those of bulk CaRuO3. The small charge transfer across the interface implied by these observations confirms predictions derived from density-functional calculations. However, a ferromagnetic polarization due to canted Mn spins penetrates 3-4 unit cells into CaMnO3, far exceeding the corresponding predictions. The discrepancy may indicate the formation of magnetic polarons at the interface.
C1 [Freeland, J. W.; Zschack, P.; Karapetrova, E.] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
[Chakhalian, J.] Univ Arkansas, Dept Phys, Fayetteville, AR 72701 USA.
[Boris, A. V.; Yordanov, P.; Popovich, P.; Keimer, B.] Max Planck Inst Festkorperforsch, D-70569 Stuttgart, Germany.
[Boris, A. V.] Univ Loughborough, Dept Phys, Loughborough LE11 3TU, Leics, England.
[Tonnerre, J. -M.; Grenier, S.] CNRS, Inst Neel, F-38043 Grenoble 9, France.
[Tonnerre, J. -M.; Grenier, S.] Univ Grenoble 1, F-38043 Grenoble 9, France.
[Kavich, J. J.] Univ Illinois, Dept Phys, Chicago, IL 60607 USA.
[Lee, H. N.] Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA.
RP Freeland, JW (reprint author), Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
RI Popovich, Paul/A-9199-2010; Lee, Ho Nyung/K-2820-2012; Grenier,
Stephane/N-1986-2014; Chakhalian, Jak/F-2274-2015
OI Lee, Ho Nyung/0000-0002-2180-3975; Grenier,
Stephane/0000-0001-8370-7375;
FU U.S. Department of Energy, Office of Science [DE-AC02-06CH11357]; German
Science Foundation [SFB/TRR80]; DOD-ARO [W911NF-08-1-0186]; NSF
[DMR-0747808]; Division of Materials Sciences and Engineering, U.S.
Department of Energy; European Commission [RII3-CT-2004-506008]
FX Work at Argonne, including the Advanced Photon Source, and the Center
for Nanoscale Materials is supported by the U.S. Department of Energy,
Office of Science, under Contract No. DE-AC02-06CH11357. Work in
Stuttgart was partially supported by the German Science Foundation under
collaborative Grant No. SFB/TRR80. We thank Y.-L. Mathis for the support
at ANKA. J.C. was supported by DOD-ARO under Grant No. W911NF-08-1-0186
and NSF under Contract No. DMR-0747808. H.N.L. was sponsored by the
Division of Materials Sciences and Engineering, U.S. Department of
Energy. Work at SLS is supported by the European Commission under the
Sixth Framework Programme: Strengthening the European Research Area,
Research Infrastructures, Contract No. RII3-CT-2004-506008.
NR 41
TC 35
Z9 35
U1 3
U2 26
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094414
DI 10.1103/PhysRevB.81.094414
PG 7
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300064
ER
PT J
AU Gao, Y
Su, WP
Zhu, JX
AF Gao, Yi
Su, Wu-Pei
Zhu, Jian-Xin
TI Interorbital pairing and its physical consequences for iron pnictide
superconductors
SO PHYSICAL REVIEW B
LA English
DT Article
ID BA0.6K0.4FE2AS2; SYMMETRY; ORDER; INSTABILITY; MODEL; GAP; BCS
AB We study interorbital pairings of iron pnictide superconductors within a minimal two-orbital tight-binding model. We find that in real space, a set of self-consistently determined pairing order parameters forms two sublattices with a relative phase of pi and the pairing symmetry is d(x)(2)-y(2)similar to cos k(x)-cos k(y). In momentum space, it corresponds to the eta pairing proposed by Yang [Phys. Rev. Lett. 63, 2144 (1989)], with nonzero momenta of Cooper pairs. One physical consequence of this type of pairing is the existence of a significant amount of zero energy (gapless) states around the Fermi surface even in the absence of disorder, which contradicts current experiments thus excluding such a pairing in iron pnictide superconductors.
C1 [Gao, Yi; Su, Wu-Pei] Univ Houston, Dept Phys, Houston, TX 77204 USA.
[Gao, Yi; Su, Wu-Pei] Univ Houston, Texas Ctr Superconduct, Houston, TX 77204 USA.
[Zhu, Jian-Xin] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
RP Gao, Y (reprint author), Univ Houston, Dept Phys, Houston, TX 77204 USA.
EM flygaoonly@gmail.com
OI Zhu, Jianxin/0000-0001-7991-3918
FU Texas Center for Superconductivity; Robert A. Welch Foundation [E-1070];
U.S. DOE at LANL [DE-AC52-06NA25396]
FX We thank C. S. Ting, Y. Chen, D. G. Zhang, and T. Zhou for helpful
discussions. This work was supported by the Texas Center for
Superconductivity and the Robert A. Welch Foundation (Grant No. E-1070)
(Y.G. and W.P.S), and by U.S. DOE at LANL under Contract No.
DE-AC52-06NA25396 (J.X.Z.)
NR 53
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U2 3
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104504
DI 10.1103/PhysRevB.81.104504
PG 8
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700098
ER
PT J
AU Giustino, F
Cohen, ML
Louie, SG
AF Giustino, Feliciano
Cohen, Marvin L.
Louie, Steven G.
TI GW method with the self-consistent Sternheimer equation
SO PHYSICAL REVIEW B
LA English
DT Article
ID NORM-CONSERVING PSEUDOPOTENTIALS; FUNCTIONAL PERTURBATION-THEORY;
ELECTRON-HOLE EXCITATIONS; AB-INITIO CALCULATIONS; QUASI-PARTICLE;
DIELECTRIC MATRICES; OPTICAL-SPECTRA; GREENS-FUNCTION; SEMICONDUCTORS;
INSULATORS
AB We propose an approach to quasiparticle GW calculations which does not require the computation of unoccupied electronic states. In our approach the screened Coulomb interaction is evaluated by solving self-consistent linear-response Sternheimer equations and the noninteracting Green's function is evaluated by solving inhomogeneous linear systems. The frequency dependence of the screened Coulomb interaction is explicitly taken into account. In order to avoid the singularities of the screened Coulomb interaction the calculations are performed along the imaginary axis, and the results are analytically continued to the real axis through Padeacute approximants. As a proof of concept we implemented the proposed methodology within the empirical pseudopotential formalism and we validated our implementation using silicon as a test case. We examine the advantages and limitations of our method and describe promising future directions.
C1 [Giustino, Feliciano] Univ Oxford, Dept Mat, Oxford OX1 3PH, England.
[Giustino, Feliciano; Cohen, Marvin L.; Louie, Steven G.] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
[Giustino, Feliciano; Cohen, Marvin L.; Louie, Steven G.] Lawrence Berkeley Natl Lab, Div Sci Mat, Berkeley, CA 94720 USA.
RP Giustino, F (reprint author), Univ Oxford, Dept Mat, Parks Rd, Oxford OX1 3PH, England.
EM feliciano.giustino@materials.ox.ac.uk
RI Giustino, Feliciano/F-6343-2013;
OI Giustino, Feliciano/0000-0001-9293-1176
NR 67
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U1 0
U2 9
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115105
DI 10.1103/PhysRevB.81.115105
PG 17
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800035
ER
PT J
AU Han, Y
Unal, B
Jing, DP
Qin, FL
Jenks, CJ
Liu, DJ
Thiel, PA
Evans, JW
AF Han, Yong
Unal, Baris
Jing, Dapeng
Qin, Feili
Jenks, C. J.
Liu, Da-Jiang
Thiel, P. A.
Evans, J. W.
TI Formation and coarsening of Ag(110) bilayer islands on NiAl(110): STM
analysis and atomistic lattice-gas modeling
SO PHYSICAL REVIEW B
LA English
DT Article
ID SCANNING-TUNNELING-MICROSCOPY; THIN METAL-FILMS; EPITAXIAL-GROWTH;
AB-INITIO; SURFACE; PB; NANOSTRUCTURES; HOMOEPITAXY; NUCLEATION; AU(111)
AB Scanning tunneling microscopy analysis of the initial stages of film growth during deposition of Ag on NiAl(110) reveals facile formation of bilayer Ag(110) islands at temperatures of 130 K and above. Annealing subsequent to deposition at 130 K induces coarsening of the bilayer island distribution. The thermodynamic driving force for bilayer island formation reflects a lower relative surface energy for films of even layer thicknesses. This feature derives from quantum size effects due to electron confinement in the Ag film. The kinetics of island formation and relaxation is controlled by terrace and edge-diffusion barriers, detachment barriers, interlayer diffusion barriers, and layer-dependent adsorption and interaction energies. These key energies are determined from density-functional theory analysis and incorporated into an atomistic lattice-gas model for homogeneous island formation, where specification of the adatom hop rates is consistent with detailed balance. Model analysis via kinetic Monte Carlo simulation elucidates the role of strongly anisotropic interactions in development during deposition of elongated island growth shapes and also in facilitating upward mass transport needed for bilayer island formation. The model succeeds in recovering island densities at lower temperatures but experimental densities exceed model predictions at higher temperatures plausibly due to heterogeneous nucleation at surface defects. The same model successfully describes postdeposition coarsening of small islands grown at 130 K.
C1 [Han, Yong; Qin, Feili] Iowa State Univ, Inst Phys Res & Technol, Ames, IA 50011 USA.
[Unal, Baris; Thiel, P. A.] Iowa State Univ, Dept Mat Sci & Engn, Ames, IA 50011 USA.
[Unal, Baris; Jing, Dapeng; Qin, Feili; Jenks, C. J.; Liu, Da-Jiang; Thiel, P. A.; Evans, J. W.] Iowa State Univ, US DOE, Ames Lab, Ames, IA 50011 USA.
[Jing, Dapeng; Thiel, P. A.] Iowa State Univ, Dept Chem, Ames, IA 50011 USA.
[Evans, J. W.] Iowa State Univ, Dept Phys & Astron, Ames, IA 50011 USA.
[Evans, J. W.] Iowa State Univ, Dept Math, Ames, IA 50011 USA.
RP Han, Y (reprint author), Iowa State Univ, Inst Phys Res & Technol, Ames, IA 50011 USA.
EM octavian2009@gmail.com
RI Han, Yong/F-5701-2012; Jing, Dapeng/M-3455-2014
OI Han, Yong/0000-0001-5404-0911; Jing, Dapeng/0000-0001-7600-7071
FU NSF [CHE-0809472]; U.S. DOE BES-Materials Sciences; U.S. DOE
BES-Chemical Sciences; U.S. DOE [DE-AC02-07CH11358]
FX The modeling component of this work by Y.H. and J.W.E. was supported by
NSF under Grant No. CHE-0809472, as were experimental contributions of
F. Q. and P. A. T. Computational support at NERSC was provided by the U.
S. DOE. Experimental contributions of B. U., D.J., and C.J.J. were
supported by U.S. DOE BES-Materials Sciences. DFT analysis by D.J.L. was
supported by U.S. DOE BES-Chemical Sciences. The work was performed at
Ames Laboratory which is operated for the U.S. DOE by ISU under Contract
No. DE-AC02-07CH11358.
NR 53
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U1 1
U2 16
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115462
DI 10.1103/PhysRevB.81.115462
PG 14
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800175
ER
PT J
AU He, JQ
Volkov, VV
Beleggia, M
Asaka, T
Tao, J
Schofield, MA
Zhu, Y
AF He, J. Q.
Volkov, V. V.
Beleggia, M.
Asaka, T.
Tao, J.
Schofield, M. A.
Zhu, Y.
TI Ferromagnetic domain structures and spin configurations measured in
doped manganite
SO PHYSICAL REVIEW B
LA English
DT Article
ID COLOSSAL MAGNETORESISTANCE; ELECTRON HOLOGRAPHY; CMR MANGANITES;
THIN-FILMS; PHASE; WALL
AB We report on measurements of the spin configuration across ferromagnetic domains in La(0.325)Pr(0.3)Ca(0.375)MnO(3) films obtained by means of low-temperature Lorentz electron microscopy with in situ magnetizing capabilities. Due to the particular crystal symmetry of the material, we observe two sets of independent ferromagnetic twin variants, one of which was pinned by crystallographic twinning. The spin orientation and configuration of the domains were measured quantitatively using electron diffraction and electron holography, and verified with structural modeling. The observed deviation of spin orientations from the expected 90 degrees head-to-tail configuration across the domain walls was attributed to the variation in the domains' aspect ratios as a result of the demagnetization field. Our study provides important insight on how the spin configuration coupled with the magnetic structure and the crystal symmetry might affect the magnetoresistivity under an applied magnetic field in a strongly correlated electron system.
C1 [He, J. Q.; Volkov, V. V.; Beleggia, M.; Asaka, T.; Tao, J.; Schofield, M. A.; Zhu, Y.] Brookhaven Natl Lab, Condensed Matter Phys & Mat Sci Dept, Upton, NY 11973 USA.
[He, J. Q.] Northwestern Univ, Dept Mat Sci & Engn, Evanston, IL 60208 USA.
[Beleggia, M.] Tech Univ Denmark, Ctr Electron Nanoscopy, DK-2800 Kongens Lyngby, Denmark.
RP He, JQ (reprint author), Brookhaven Natl Lab, Condensed Matter Phys & Mat Sci Dept, Upton, NY 11973 USA.
EM jiaqing-he@northwestern.edu
RI He, Jiaqing/A-2245-2010; Gao, Jinlong/C-1489-2010; Volkov,
Vyacheslav/D-9786-2016;
OI Beleggia, Marco/0000-0002-2888-1888
FU U.S. Department of Energy, Office of Basic Energy Science
[DE-AC02-98CH10886]
FX This work at BNL was supported by the U.S. Department of Energy, Office
of Basic Energy Science under Contract No. DE-AC02-98CH10886. We thank
S. Chaudhuri and R. C. Budhani for providing samples.
NR 29
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U1 0
U2 26
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094427
DI 10.1103/PhysRevB.81.094427
PG 7
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300077
ER
PT J
AU Hindmarch, AT
Arena, DA
Dempsey, KJ
Henini, M
Marrows, CH
AF Hindmarch, A. T.
Arena, D. A.
Dempsey, K. J.
Henini, M.
Marrows, C. H.
TI Influence of deposition field on the magnetic anisotropy in epitaxial
Co70Fe30 films on GaAs(001)
SO PHYSICAL REVIEW B
LA English
DT Article
ID CIRCULAR-DICHROISM; MICROSCOPIC ORIGIN
AB The effect of the application of a magnetic field during deposition of epitaxial Co70Fe30 onto GaAs(001) is shown; we find an initially counterintuitive result. For field applied along the interfacial uniaxial hard axis the relative effective uniaxial magnetic anisotropy is increased by a factor of two in comparison to both field along the uniaxial easy axis, or no field; usually, application of a deposition field results in a uniaxial easy axis parallel to this field direction. We show that the deposition field changes the maximal projection of the atomic orbital magnetic moments onto the easy axis, which corresponds to a deposition field induced shift in the Helmholtz free-energy landscape of the system.
C1 [Hindmarch, A. T.; Dempsey, K. J.; Marrows, C. H.] Univ Leeds, Sch Phys & Astron, Leeds LS2 9JT, W Yorkshire, England.
[Arena, D. A.] Brookhaven Natl Lab, Natl Synchrotron Light Source, Upton, NY 11973 USA.
[Henini, M.] Univ Nottingham, Sch Phys & Astron, Nottingham Nanotechnol & Nanosci Ctr, Nottingham NG7 2RD, England.
RP Hindmarch, AT (reprint author), Univ Leeds, Sch Phys & Astron, Leeds LS2 9JT, W Yorkshire, England.
RI Marrows, Christopher/D-7980-2011; Hindmarch, Aidan/B-7970-2012; Henini,
Mohamed/E-8520-2012;
OI Henini, Mohamed/0000-0001-9414-8492; Marrows,
Christopher/0000-0003-4812-6393
FU EPSRC; EU [NMP2-CT-2003-505587]
FX The authors acknowledge financial support from EPSRC and from the EU via
Project No. NMP2-CT-2003-505587 "SFINx." We are grateful to Brookhaven
National Laboratory for the provision of NSLS beamtime and thank D.
Taylor for assistance with MBE wafer preparation.
NR 22
TC 7
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U1 0
U2 9
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 100407
DI 10.1103/PhysRevB.81.100407
PG 4
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700013
ER
PT J
AU Hoang, K
Mahanti, SD
Kanatzidis, MG
AF Hoang, Khang
Mahanti, S. D.
Kanatzidis, Mercouri G.
TI Impurity clustering and impurity-induced bands in PbTe-, SnTe-, and
GeTe-based bulk thermoelectrics
SO PHYSICAL REVIEW B
LA English
DT Article
ID TOTAL-ENERGY CALCULATIONS; AUGMENTED-WAVE METHOD; ELECTRONIC-STRUCTURE;
HIGH FIGURE; BASIS-SET; PERFORMANCE; EFFICIENCY; MERIT; SEMICONDUCTORS;
APPROXIMATION
AB Complex multicomponn systems based on PbTe, SnTe, and GeTe are of great interest for infrared devices and high-temperature thermoelectric applications. A deeper understanding of the atomic and electronic structure of these materials is crucial for explaining, predicting, and optimizing their properties, and to suggest materials for better performance. In this work, we present our first-principles studies of the energy bands associated with various monovalent (Na, K, and Ag) and trivalent (Sb and Bi) impurities and impurity clusters in PbTe, SnTe, and GeTe using supercell models. We find that monovalent and trivalent impurity atoms tend to come close to one another and form impurity-rich clusters and the electronic structure of the host materials is strongly perturbed by the impurities. There are impurity-induced bands associated with the trivalent impurities that split off from the conduction-band bottom with large shifts towards the valence-band top. This is due to the interaction between the p states of the trivalent impurity cation and the divalent anion which tends to drive the systems towards metallicity. The introduction of monovalent impurities (in the presence of trivalent impurities) significantly reduces (in PbTe and GeTe) or slightly enhances (in SnTe) the effect of the trivalent impurities. One, therefore, can tailor the band gap and band structure near the band gap (hence transport properties) by choosing the type of impurity and its concentration or tunn the monovalent/trivalent ratio. Based on the calculated band structures, we are able to explain qualitatively the measured transport properties of the whole class of PbTe-, SnTe-, and GeTe-based bulk thermoelectrics.
C1 [Hoang, Khang] Univ Calif Santa Barbara, Dept Mat, Santa Barbara, CA 93106 USA.
[Mahanti, S. D.] Michigan State Univ, Dept Phys & Astron, E Lansing, MI 48824 USA.
[Kanatzidis, Mercouri G.] Northwestern Univ, Dept Chem, Evanston, IL 60208 USA.
[Kanatzidis, Mercouri G.] Argonne Natl Lab, Div Mat Sci, Argonne, IL 60439 USA.
RP Hoang, K (reprint author), Univ Calif Santa Barbara, Dept Mat, Santa Barbara, CA 93106 USA.
RI Hoang, Khang/C-2879-2008
OI Hoang, Khang/0000-0003-1889-0745
FU U.S. Office of Naval Research
FX This work was partially supported by the U.S. Office of Naval Research
and made use of the computing facilities of Michigan State University
High Performance Computing Center.
NR 62
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U1 13
U2 100
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115106
DI 10.1103/PhysRevB.81.115106
PG 15
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800036
ER
PT J
AU Hong, L
Begen, B
Kisliuk, A
Novikov, VN
Sokolov, AP
AF Hong, L.
Begen, B.
Kisliuk, A.
Novikov, V. N.
Sokolov, A. P.
TI Influence of pressure on fast picosecond relaxation in glass-forming
materials
SO PHYSICAL REVIEW B
LA English
DT Article
ID DIAMOND-ANVIL CELL; LOW-TEMPERATURE ANOMALIES; QUASI-ELASTIC-LIGHT;
MEDIUM-RANGE ORDER; SUPERCOOLED LIQUIDS; RAMAN-SCATTERING; BOSON PEAK;
STRUCTURAL RELAXATION; NEUTRON-SCATTERING; ALPHA-RELAXATION
AB Understanding the microscopic mechanism of the fast dynamics (gigahertz-terahertz frequency range) in amorphous materials remains a challenge. Disordered systems usually exhibit two additional contributions in this frequency range in comparison to their crystalline counterparts: a low-frequency excess vibrations, the so-called boson peak, and the fast picosecond relaxation that appears as a quasielastic scattering (QES) in the light- and neutron-scattering spectra. The nature of both contributions remains a subject of active discussions. In particular, QES intensity varies significantly with temperature. These variations might be caused by pure thermal effect and/or by change in density. To separate these two contributions we performed detailed light (Raman and Brillouin) scattering studies of the fast dynamics at different experimental conditions: isothermal, isobaric, isokinetic, and isochoric. The analysis demonstrates that the volume contribution dominates the fast relaxation behavior in a liquid state while the thermal energy becomes more important in the glassy state. Moreover, the presented analysis of the light-scattering data reveals significant difference in sensitivity of the fast dynamics to pressure among seven glass-forming materials (van der Waals-bonding and hydrogen-bonding molecular systems and polymers) studied in this work. It appears that the fast dynamics in orthoterphenyl and glycerol depends on pressure (density) significantly weaker than in other materials. However, the earlier observed correlations between pressure-induced variations in the QES and boson peak intensities and between the boson peak frequency and intensity are confirmed for all the studied materials. The obtained experimental results are compared to predictions of different models.
C1 [Kisliuk, A.; Novikov, V. N.; Sokolov, A. P.] Oak Ridge Natl Lab, Div Chem Sci, Oak Ridge, TN 37831 USA.
[Hong, L.; Begen, B.] Univ Akron, Dept Polymer Sci, Akron, OH 44325 USA.
[Kisliuk, A.; Novikov, V. N.; Sokolov, A. P.] Univ Tennessee, Dept Chem, Knoxville, TN 37996 USA.
[Novikov, V. N.] Russian Acad Sci, Inst Automat & Electrometry, Novosibirsk 630090, Russia.
RP Sokolov, AP (reprint author), Oak Ridge Natl Lab, Div Chem Sci, Oak Ridge, TN 37831 USA.
EM sokolov@utk.edu
RI hong, liang/D-5647-2012
FU NSF [DMR-0804571]; Division of Materials Sciences and Engineering, DOE's
BES; Russian Foundation for Basic Research
FX The authors acknowledge financial support by the NSF Polymer program
(Grant No. DMR-0804571). A. K. acknowledges financial support by the
Division of Materials Sciences and Engineering, DOE's BES. V.N.N.
acknowledges the financial support from the Russian Foundation for Basic
Research.
NR 75
TC 5
Z9 5
U1 3
U2 24
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104207
DI 10.1103/PhysRevB.81.104207
PG 11
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700054
ER
PT J
AU Huang, L
Wang, CZ
Hao, SG
Kramer, MJ
Ho, KM
AF Huang, Li
Wang, C. Z.
Hao, S. G.
Kramer, M. J.
Ho, K. M.
TI Short- and medium-range order in amorphous Zr2Ni metallic alloy
SO PHYSICAL REVIEW B
LA English
DT Article
ID MONTE-CARLO-SIMULATION; AUGMENTED-WAVE METHOD; NI-ZR ALLOYS; STRUCTURAL
MODEL; SIMPLE LIQUIDS; GLASSES; STABILITY; PACKINGS; GEOMETRY
AB Icosahedral clusters are commonly believed to be the key building blocks in many metallic glasses. Here we propose a structural model for Zr2Ni metallic glass which has a small fraction of icosahedral clusters. By analyzing the correlation between the local structure and dynamics in the undercooled liquid and glass, we show that the formation of metallic glass in this system can be attributed to the slow dynamics of < 0,2,8,1 > and < 0,2,8,2 > Ni-centered Voronoi polyhedra. There is a high proportion of less mobile < 0,2,8,4 >, < 0,2,8,5 >, < 0,1,10,4 >, and < 0,1,10,3 > Zr-centered clusters on the first shell of the two types of Ni-centered clusters. These special Ni- and Zr-centered clusters arrange together to form a stringlike backbone network in the metallic glass.
C1 [Huang, Li; Wang, C. Z.; Hao, S. G.; Kramer, M. J.; Ho, K. M.] US DOE, Ames Lab, Ames, IA 50011 USA.
[Wang, C. Z.; Ho, K. M.] Iowa State Univ, Dept Phys, Ames, IA 50011 USA.
[Kramer, M. J.] Iowa State Univ, Dept Mat Sci & Engn, Ames, IA 50011 USA.
RP Huang, L (reprint author), US DOE, Ames Lab, Ames, IA 50011 USA.
RI Hao, Shaogang/E-3527-2010
NR 43
TC 21
Z9 22
U1 8
U2 31
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9950
EI 2469-9969
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094118
DI 10.1103/PhysRevB.81.094118
PG 6
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300042
ER
PT J
AU Johnson, CA
Kaspar, TC
Chambers, SA
Salley, GM
Gamelin, DR
AF Johnson, Claire A.
Kaspar, Tiffany C.
Chambers, Scott A.
Salley, G. Mackay
Gamelin, Daniel R.
TI Sub-band-gap photoconductivity in Co2+-doped ZnO
SO PHYSICAL REVIEW B
LA English
DT Article
ID DILUTED MAGNETIC SEMICONDUCTORS; OPTICAL-ABSORPTION; QUANTUM DOTS;
NANOCRYSTALS; SPECTROSCOPY; CRYSTALS; ELECTRODES; SPECTRA; CO2+
AB Variable-temperature and polarized scanning photoconductivity measurements on Zn1-xCoxO epitaxial films allow description of sub-band-gap Co2+-derived photoionization excited states in this archetypal diluted magnetic oxide. Low-temperature (27 K) measurements demonstrate spontaneous ionization from the photogenerated T-4(1)(P) d-d excited state, despite the highly localized nature of this excitation. Ionization involves relaxation from this d-d state to the lower Co2+/3+ donor-type photoionization level. Variable-temperature photoconductivity measurements reveal an additional thermally assisted ionization process that enhances the d-d photoconductivity at higher temperatures. The energy barrier to thermal ionization from the T-4(1)(P) excited state at low temperatures is estimated to be E-a approximate to 43 meV.
C1 [Johnson, Claire A.; Salley, G. Mackay; Gamelin, Daniel R.] Univ Washington, Dept Chem, Seattle, WA 98195 USA.
[Kaspar, Tiffany C.; Chambers, Scott A.] Pacific NW Natl Lab, Richland, WA 99352 USA.
[Salley, G. Mackay] Wofford Coll, Dept Phys, Spartanburg, SC 29303 USA.
RP Johnson, CA (reprint author), Univ Washington, Dept Chem, Seattle, WA 98195 USA.
EM gamelin@chem.washington.edu
FU U.S. National Science Foundation [CHE 0628252-CRC]; Sloan Foundation;
Dreyfus Foundation; Research Corporation; Department of Energy's Office
of Biological and Environmental Research located at Pacific Northwest
National Laboratory; U.S. Department of Energy, Office of Science,
Office of Basic Energy Sciences, Division of Materials Science and
Engineering Physics
FX This work was supported by the U.S. National Science Foundation (Grant
No. CHE 0628252-CRC). Additional support to D.G. from the Sloan
Foundation, the Dreyfus Foundation, and the Research Corporation is
gratefully acknowledged. A portion of the research was performed using
EMSL, a national scientific user facility sponsored by the Department of
Energy's Office of Biological and Environmental Research located at
Pacific Northwest National Laboratory. This work was supported by the
U.S. Department of Energy, Office of Science, Office of Basic Energy
Sciences, Division of Materials Science and Engineering Physics.
NR 32
TC 19
Z9 19
U1 0
U2 21
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 12
AR 125206
DI 10.1103/PhysRevB.81.125206
PG 5
WC Physics, Condensed Matter
SC Physics
GA 577UG
UT WOS:000276248900079
ER
PT J
AU Jones, RE
Kimmer, CJ
AF Jones, Reese E.
Kimmer, Christopher J.
TI Efficient non-reflecting boundary condition constructed via optimization
of damped layers
SO PHYSICAL REVIEW B
LA English
DT Article
ID MOLECULAR-DYNAMICS SIMULATIONS; SCATTERING; SOLIDS; MODEL
AB In this work we use analytic and numerical techniques to construct optimal, nearly reflectionless boundary layers for lattice dynamics by tuning the mass, stiffness, and damping of those layers. Using a one-dimensional nearest-neighbor chain as a model system, we obtain analytical results for the low and high-frequency behavior of such boundary conditions, as well as a continued fraction solution for the reflection coefficient of multiple layers. In addition, we obtain optimal parameters for the one-dimensional system and a three-dimensional system using wave packets with normal incidence and compare the results to an implementation of the exact boundary condition in one dimension and optimal versions of the commonly used ramped damping in three dimensions.
C1 [Jones, Reese E.] Sandia Natl Labs, Dept Mat & Mech, Livermore, CA 94551 USA.
[Kimmer, Christopher J.] Univ Louisville, Dept Comp Sci & Comp Engn, Louisville, KY 40292 USA.
RP Jones, RE (reprint author), Sandia Natl Labs, Dept Mat & Mech, Livermore, CA 94551 USA.
EM rjones@sandia.gov; chris.kimmer@louisville.edu
NR 23
TC 5
Z9 6
U1 0
U2 1
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094301
DI 10.1103/PhysRevB.81.094301
PG 13
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300049
ER
PT J
AU Khodas, M
Tsvelik, AM
AF Khodas, M.
Tsvelik, A. M.
TI Influence of thermal phase fluctuations on the spectral function for a
two-dimensional d-wave superconductor
SO PHYSICAL REVIEW B
LA English
DT Article
ID FERMI ARCS; PSEUDOGAP; CUPRATE
AB We study the spectral function of a two-dimensional superconductor in a regime of strong phase fluctuations. Although the developed approach is valid for any symmetry, we concentrate on d-wave superconductors. We obtain analytical expressions for the single electron Green's function below the transition temperature and have worked out a way to extrapolate it for a finite temperatures above T(c). The suggested approach is easily generalizable for other models with critical fluctuations.
C1 [Khodas, M.; Tsvelik, A. M.] Brookhaven Natl Lab, Dept Condensed Matter Phys & Mat Sci, Upton, NY 11973 USA.
RP Khodas, M (reprint author), Brookhaven Natl Lab, Dept Condensed Matter Phys & Mat Sci, Upton, NY 11973 USA.
FU U. S. Department of Energy, Office of Science; BNL LDRD [08-002]
FX We are grateful to A. Chubukov and Z. Tesanovic for encouraging
discussions and interest to the work. A. M. T. was supported by the
Center for Emerging Superconductivity funded by the U. S. Department of
Energy, Office of Science. M. K. acknowledges support from BNL LDRD
Grant No. 08-002.
NR 18
TC 7
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U1 1
U2 4
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094514
DI 10.1103/PhysRevB.81.094514
PG 5
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300103
ER
PT J
AU Kienle, D
Vaidyanathan, M
Leonard, F
AF Kienle, Diego
Vaidyanathan, Mani
Leonard, Francois
TI Self-consistent ac quantum transport using nonequilibrium Green
functions
SO PHYSICAL REVIEW B
LA English
DT Article
ID TIME-DEPENDENT TRANSPORT; CARBON NANOTUBE TRANSISTORS; DYNAMIC
CONDUCTANCE; MESOSCOPIC SYSTEMS; DOMAIN; ELECTRONICS; ADMITTANCE;
FREQUENCY; RESONANCE; CONTACTS
AB We develop an approach for self-consistent ac quantum transport in the presence of time-dependent potentials at nontransport terminals. We apply the approach to calculate the high-frequency characteristics of a nanotube transistor with the ac signal applied at the gate terminal. We show that the self-consistent feedback between the ac charge and potential is essential to properly capture the transport properties of the system. In the on-state, this feedback leads to the excitation of plasmons, which appear as pronounced divergent peaks in the dynamic conductance at terahertz frequencies. In the off-state, these collective features vanish, and the conductance exhibits smooth oscillations, a signature of single-particle excitations. The proposed approach is general and will allow the study of the high-frequency characteristics of many other low-dimensional nanoscale materials such as nanowires and graphene-based systems, which are attractive for terahertz devices, including those that exploit plasmonic excitations.
C1 [Kienle, Diego; Leonard, Francois] Sandia Natl Labs, Livermore, CA 94550 USA.
[Vaidyanathan, Mani] Univ Alberta, Dept Elect & Comp Engn, Edmonton, AB T6G 2V4, Canada.
RP Kienle, D (reprint author), Univ Bayreuth, POB 101251, D-95440 Bayreuth, Germany.
EM diego.kienle@unibayreuth.de
FU Laboratory Directed Research and Development program at Sandia National
Laboratories; United States Department of Energy [DEAC01-94-AL85000];
Natural Sciences and Engineering Research Council (NSERC) of Canada
FX It is a pleasure to acknowledge discussions with Mark Lee, Clark
Highstrete, and Eric Shaner. This work was supported by the Laboratory
Directed Research and Development program at Sandia National
Laboratories. Sandia is a multiprogram laboratory operated by Sandia
Corporation, a Lockheed Martin Co., for the United States Department of
Energy under Contract No. DEAC01-94-AL85000. M. V. was supported at the
University of Alberta by the Natural Sciences and Engineering Research
Council (NSERC) of Canada.
NR 66
TC 16
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U1 2
U2 15
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115455
DI 10.1103/PhysRevB.81.115455
PG 10
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800168
ER
PT J
AU Kimminau, G
Erhart, P
Bringa, EM
Remington, B
Wark, JS
AF Kimminau, Giles
Erhart, Paul
Bringa, Eduardo M.
Remington, Bruce
Wark, Justin S.
TI Phonon instabilities in uniaxially compressed fcc metals as seen in
molecular dynamics simulations
SO PHYSICAL REVIEW B
LA English
DT Article
ID SHOCK-WAVE DEFORMATION; SINGLE-CRYSTAL COPPER; DISLOCATION NUCLEATION;
INTERATOMIC POTENTIALS; ATOMISTIC SIMULATIONS; PERFECT CRYSTALS; STRESS;
DEPENDENCE; CRITERION; SYSTEM
AB We show that the generation of stacking faults in perfect face-centered-cubic (fcc) crystals, uniaxially compressed along [001], is due to transverse-acoustic phonon instabilities. The position in reciprocal space where the instability first manifests itself is not a point of high symmetry in the Brillouin zone. This model provides a useful explanation for the magnitude of the elastic limit, in addition to the affects of box size, temperature, and compression on the time scale for the generation of stacking faults. We observe this phenomenon in both simulations that use the Lennard-Jones potential and embedded atom potentials. Not only does this work provide fundamental insight into the microscopic response of the material but it also describes certain behavior seen in previous molecular dynamics simulations of single-crystal fcc metals shock compressed along the principal axis.
C1 [Kimminau, Giles; Wark, Justin S.] Univ Oxford, Dept Phys, Clarendon Lab, Oxford OX1 3PU, England.
[Erhart, Paul; Remington, Bruce] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
[Bringa, Eduardo M.] Univ Nacl Cuyo, CONICET, RA-5500 Mendoza, Argentina.
[Bringa, Eduardo M.] Univ Nacl Cuyo, Inst Ciencias Basicas, RA-5500 Mendoza, Argentina.
RP Kimminau, G (reprint author), Univ Oxford, Dept Phys, Clarendon Lab, Parks Rd, Oxford OX1 3PU, England.
EM justin.wark@physics.ox.ac.uk
RI Bringa, Eduardo/F-8918-2011; Erhart, Paul/G-6260-2011
OI Erhart, Paul/0000-0002-2516-6061
FU LLNL [B566832]; U. S. DOE [DE-AC52-07NA27344]
FX The authors would like to thank J. Belak, A. Higginbotham, W. J. Murphy,
and B. Nagler for helpful discussions. G. K. is grateful for partial
support for this work from LLNL under Subcontract No. B566832. P. E. and
B. R. work under the auspices of the U. S. DOE by LLNL under Contract
No. DE-AC52-07NA27344.
NR 33
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9950
EI 2469-9969
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 092102
DI 10.1103/PhysRevB.81.092102
PG 4
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300002
ER
PT J
AU Kohda, M
Haruyama, O
Ohkubo, T
Egami, T
AF Kohda, M.
Haruyama, O.
Ohkubo, T.
Egami, T.
TI Kinetics of volume and enthalpy relaxation in Pt60Ni15P25 bulk metallic
glass
SO PHYSICAL REVIEW B
LA English
DT Article
ID STRUCTURAL RELAXATION; AMORPHOUS SOLIDS; FORMING ALLOY; TRANSITION;
LIQUID; ENERGY; RANGE
AB We examined the kinetics of the structural relaxation in a Pt60Ni15P25 bulk metallic glass by density and enthalpy measurements. Measurements were made slightly below the glass transition temperature, with and without preannealing at a temperature above the glass transition temperature. The results are elucidated in terms of the two-components model, which includes positive as well as negative fluctuations in local density.
C1 [Kohda, M.; Haruyama, O.] Tokyo Univ Sci, Dept Phys, Fac Sci & Technol, Noda, Chiba 2788510, Japan.
[Ohkubo, T.] Natl Inst Mat Sci, Tsukuba, Ibaraki 3050047, Japan.
[Egami, T.] Univ Tennessee, Dept Mat Sci & Engn, Knoxville, TN 37996 USA.
[Egami, T.] Univ Tennessee, Dept Phys & Astron, Knoxville, TN 37996 USA.
[Egami, T.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
RP Kohda, M (reprint author), Tokyo Univ Sci, Dept Phys, Fac Sci & Technol, Noda, Chiba 2788510, Japan.
FU U. S. Department of Energy [DE-AC05-00OR-22725]
FX We would like to appreciate H. S. Chen for supplying appropriate
suggestions on the mechanism of structural relaxation. The research at
the University of Tennessee and Oak Ridge National Laboratory was
supported by the Division of Materials Sciences and Engineering, Office
of Basic Energy Sciences, U. S. Department of Energy under Contract No.
DE-AC05-00OR-22725 with UT-Battelle.
NR 27
TC 17
Z9 17
U1 0
U2 10
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9950
EI 2469-9969
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 092203
DI 10.1103/PhysRevB.81.092203
PG 4
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300007
ER
PT J
AU Lany, S
Zunger, A
AF Lany, Stephan
Zunger, Alex
TI Many-body GW calculation of the oxygen vacancy in ZnO
SO PHYSICAL REVIEW B
LA English
DT Article
AB Density-functional theory (DFT) calculations of defect levels in semiconductors based on approximate functionals are subject to considerable uncertainties, in particular due to inaccurate band-gap energies. Testing previous correction methods by many-body GW calculations for the O vacancy in ZnO, we find that: (i) The GW quasiparticle shifts of the V(O) defect states increase the spitting between occupied and unoccupied states due to self-interaction correction, and do not reflect the conduction- versus valence-band character. (ii) The GW quasiparticle energies of charged defect states require important corrections for supercell finite-size effects. (iii) The GW results are robust with respect to the choice of the underlying DFT or hybrid-DFT functional, and the (2+/0) donor transition lies below midgap, close to our previous prediction employing rigid band-edge shifts.
C1 [Lany, Stephan; Zunger, Alex] Natl Renewable Energy Lab, Golden, CO 80401 USA.
RP Lany, S (reprint author), Natl Renewable Energy Lab, Golden, CO 80401 USA.
RI Zunger, Alex/A-6733-2013;
OI Lany, Stephan/0000-0002-8127-8885
FU U.S. Department of Energy, Office of Science, Office of Basic Energy
Sciences [DE-AC36-08GO28308]
FX This work was supported by the U.S. Department of Energy, Office of
Science, Office of Basic Energy Sciences under Contract No.
DE-AC36-08GO28308 to NREL. The Center of Inverse Design is a DOE Energy
Frontier Research Center. The use of MPP capabilities at the National
Energy Research Scientific Computing Center is gratefully acknowledged.
S. L. thanks Georg Kresse for providing pseudopotentials for test
purposes that were specifically created for GW- type calculations.
NR 27
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 113201
DI 10.1103/PhysRevB.81.113201
PG 4
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800012
ER
PT J
AU Lei, HC
Hu, RW
Choi, ES
Warren, JB
Petrovic, C
AF Lei, Hechang
Hu, Rongwei
Choi, E. S.
Warren, J. B.
Petrovic, C.
TI Pauli-limited upper critical field of Fe1+yTe1-xSex
SO PHYSICAL REVIEW B
LA English
DT Article
ID MELTING TRANSITION; SINGLE-CRYSTALS; SUPERCONDUCTIVITY; YBA2CU3O7-DELTA;
TEMPERATURE
AB In this work, we investigated the temperature dependence of the upper critical field mu H-0(c2)(T) of Fe1.02(3)Te0.61(4)Se0.39(4) and Fe1.05(3)Te0.89(2)Se0.11(2) single crystals by measuring the magnetotransport properties in stable dc magnetic fields up to 35 T. Both crystals show that mu H-0(c2)(T) in the ab plane and along the c-axis exhibit saturation at low temperatures. The anisotropy of mu H-0(c2)(T) decreases with decreasing temperature, becoming nearly isotropic when the temperature T --> 0. Furthermore, mu H-0(c2)(0) deviates from the conventional Werthamer-Helfand-Hohenberg theoretical prediction values for both field directions. Our analysis indicates that the spin-paramagnetic pair-breaking effect is responsible for the temperature-dependent behavior of mu H-0(c2)(T) in both field directions.
C1 [Lei, Hechang; Hu, Rongwei; Petrovic, C.] Brookhaven Natl Lab, Condensed Matter Phys & Mat Sci Dept, Upton, NY 11973 USA.
[Choi, E. S.] Florida State Univ, NHMFL Phys, Tallahassee, FL 32310 USA.
[Warren, J. B.] Brookhaven Natl Lab, Instrumentat Div, Upton, NY 11973 USA.
RP Lei, HC (reprint author), Brookhaven Natl Lab, Condensed Matter Phys & Mat Sci Dept, Upton, NY 11973 USA.
RI Hu, Rongwei/E-7128-2012; Petrovic, Cedomir/A-8789-2009; LEI,
Hechang/H-3278-2016
OI Petrovic, Cedomir/0000-0001-6063-1881;
FU Brookhaven Science Associates [DE-Ac02-98CH10886]; U. S. Department of
Energy, Office of Science, Office of Basic Energy Sciences; Center for
Emergent Superconductivity (CES); NSF [DMR-0084173]
FX We thank T. P. Murphy for useful discussions and experiment support in
NHMFL. This work was carried out at the Brookhaven National Laboratory,
which is operated for the U. S. Department of Energy by Brookhaven
Science Associates (Grant No. DE-Ac02-98CH10886). This work was in part
supported by the U. S. Department of Energy, Office of Science, Office
of Basic Energy Sciences as part of the Energy Frontier Research Center
(EFRC), Center for Emergent Superconductivity (CES). A portion of this
work was performed at the National High Magnetic Field Laboratory, which
is supported by NSF Cooperative Agreement No. DMR-0084173, by the State
of Florida, and by the U. S. Department of Energy.
NR 47
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U2 22
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094518
DI 10.1103/PhysRevB.81.094518
PG 7
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300107
ER
PT J
AU Lyo, SK
AF Lyo, S. K.
TI Energy transfer from an electron-hole plasma layer to a quantum well in
semiconductor structures
SO PHYSICAL REVIEW B
LA English
DT Article
ID EXCITONS
AB We investigate the energy-transfer rate from a quasi-two-dimensional (2D) quantum well with an electron-hole plasma to an empty quantum well separated by a wide barrier through dipole-dipole interaction. The rates are compared and contrasted with the 2D-2D transfer rates of classical excitons studied previously. The temperature dependence of the 2D-2D transfer rate of plasmas is strikingly different from that of excitons in general. The dependences of the rates on the carrier density, the center-to-center distance between the plasma and the quantum well, and the temperature are studied.
C1 Sandia Natl Labs, Albuquerque, NM 87185 USA.
RP Lyo, SK (reprint author), Sandia Natl Labs, POB 5800, Albuquerque, NM 87185 USA.
FU U. S. Department of Energy, Office of Science, Office of Basic Energy
Sciences, the Energy Frontier Research Center (EFRC)
FX This work was supported by the U. S. Department of Energy, Office of
Science, Office of Basic Energy Sciences through the Energy Frontier
Research Center (EFRC) for Solid-State Lighting Science and the
Electronic Materials program. Sandia National Laboratories is a
multiprogram laboratory operated by Sandia Corporation, a LockheedMartin
Co., for the U. S. Department of Energy under Contract No.
DE-AC04-94AL85000.
NR 17
TC 5
Z9 5
U1 1
U2 3
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115303
DI 10.1103/PhysRevB.81.115303
PG 7
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800080
ER
PT J
AU Malone, BD
Louie, SG
Cohen, ML
AF Malone, Brad D.
Louie, Steven G.
Cohen, Marvin L.
TI Electronic and optical properties of body-centered-tetragonal Si and Ge
SO PHYSICAL REVIEW B
LA English
DT Article
ID AB-INITIO CALCULATION; CRITICAL-POINTS; QUASI-PARTICLE; TOTAL-ENERGY;
SEMICONDUCTORS; SPECTRA; EXCITATIONS; INSULATORS; ABSORPTION; BAND
AB We present a first-principles calculation of the quasiparticle and optical excitation spectra of recently predicted silicon and germanium polytypes in the body-centered-tetragonal (bct) structure. The quasiparticle spectra calculated within the GW approximation predict that both silicon and germanium in the bct structure are small band gap materials with indirect gaps of 0.86 and 0.38 eV, respectively. The optical spectra is evaluated by solving the Bethe-Salpeter equation taking into account electron-hole interactions. We then make comparison to the cubic phases of Si and Ge which suggest the possible utility of the silicon bct phase in photovoltaic applications.
C1 [Malone, Brad D.] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
Univ Calif Berkeley, Lawrence Berkeley Lab, Div Mat Sci, Berkeley, CA 94720 USA.
RP Malone, BD (reprint author), Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
EM bmalone@civet.berkeley.edu
FU National Science Foundation [DMR07-05941]; Director, Office of Science,
Office of Basic Energy Sciences; Division of Materials Sciences and
Engineering Division; U.S. Department of Energy [DE-AC02-05CH11231]
FX The authors would like to thank Susumu Saito and Georgy Samsonidze for
helpful discussions. This work was supported by National Science
Foundation Grant No. DMR07-05941 and by the Director, Office of Science,
Office of Basic Energy Sciences, Division of Materials Sciences and
Engineering Division, U.S. Department of Energy under Contract No.
DE-AC02-05CH11231. Computational resources have been provided by NERSC
and NPACI.
NR 22
TC 14
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U1 1
U2 10
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115201
DI 10.1103/PhysRevB.81.115201
PG 5
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800069
ER
PT J
AU McGuire, MA
Gout, DJ
Garlea, VO
Sefat, AS
Sales, BC
Mandrus, D
AF McGuire, Michael A.
Gout, Delphine J.
Garlea, V. Ovidiu
Sefat, Athena S.
Sales, Brian C.
Mandrus, David
TI Magnetic phase transitions in NdCoAsO
SO PHYSICAL REVIEW B
LA English
DT Article
ID SUPERCONDUCTIVITY; SYSTEMS; METAL
AB NdCoAsO undergoes three magnetic phase transitions below room temperature. Here we report the results of our experimental investigation of this compound, including determination of the crystal and magnetic structures using powder neutron diffraction, as well as measurements of electrical resistivity, thermal conductivity, Seebeck coefficient, magnetization, and heat capacity. These results show that upon cooling a ferromagnetic state emerges near 69 K with a small saturation moment of similar to 0.2 mu(B), likely on Co atoms. At 14 K the material enters an antiferromagnetic state with propagation vector (0 0 1/2) and small ordered moments (similar to 0.4 mu(B)) on Co and Nd. Near 3.5 K a third transition is observed, and corresponds to the antiferromagnetic ordering of larger moments on Nd, with the same propagation vector. The ordered moment on Nd reaches 1.39(5)mu(B) at 300 mK. Anomalies in the magnetization, electrical resistivity, and heat capacity are observed at all three magnetic phase transitions.
C1 [McGuire, Michael A.; Gout, Delphine J.; Garlea, V. Ovidiu; Sefat, Athena S.; Sales, Brian C.; Mandrus, David] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
[Gout, Delphine J.] Spallat Neutron Source, Julich Ctr Neutron Sci Outstat, Oak Ridge, TN 37831 USA.
RP McGuire, MA (reprint author), Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
RI McGuire, Michael/B-5453-2009; Mandrus, David/H-3090-2014; Garlea,
Vasile/A-4994-2016; Sefat, Athena/R-5457-2016
OI McGuire, Michael/0000-0003-1762-9406; Garlea,
Vasile/0000-0002-5322-7271; Sefat, Athena/0000-0002-5596-3504
FU U.S. Department of Energy, Office of Basic Energy Sciences, Division of
Materials Sciences and Engineering; U.S. Department of Energy, Office of
Basic Energy Sciences, Scientific User Facilities Division
FX We gratefully acknowledge helpful discussions with K. V. Vemuru and V.
Petricek. Research supported by the U.S. Department of Energy, Office of
Basic Energy Sciences, Division of Materials Sciences and Engineering
(synthesis and physical property measurements). The work at Oak Ridge
National Laboratory's High Flux Isotope Reactor (neutron diffraction)
was sponsored by the U.S. Department of Energy, Office of Basic Energy
Sciences, Scientific User Facilities Division.
NR 33
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U1 1
U2 13
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104405
DI 10.1103/PhysRevB.81.104405
PG 7
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700067
ER
PT J
AU Merkulov, IA
Alvarez, G
Yakovlev, DR
Schulthess, TC
AF Merkulov, I. A.
Alvarez, G.
Yakovlev, D. R.
Schulthess, T. C.
TI Long-term dynamics of the electron-nuclear spin system of a
semiconductor quantum dot
SO PHYSICAL REVIEW B
LA English
DT Article
ID BOUND MAGNETIC POLARON; FLIP RAMAN-SCATTERING; GAAS; FLUCTUATIONS;
RELAXATION
AB A quasiclassical theoretical description of polarization and relaxation of nuclear spins in a quantum dot with one resident electron is developed for arbitrary mechanisms of electron-spin polarization. The dependence of the electron-nuclear spin dynamics on the correlation time tau(c) of electron-spin precession, with frequency Omega, in the nuclear hyperfine field is analyzed. It is demonstrated that the highest nuclear polarization is achieved for a correlation time close to the period of electron-spin precession in the nuclear field. For these and larger correlation times, the indirect hyperfine field, which acts on nuclear spins, also reaches a maximum. This maximum is of the order of the dipole-dipole magnetic field that nuclei create on each other. This value is nonzero even if the average electron polarization vanishes. It is shown that the transition from short correlation time to Omega tau(c)greater than or similar to 1 does not affect the general structure of the equation for nuclear-spin temperature and nuclear polarization in the Knight field but changes the values of parameters, which now become functions of Omega tau(c). For correlation times larger than the precession time of nuclei in the electron hyperfine field, it is found that three thermodynamic potentials (chi,xi,sigma) characterize the polarized electron-nuclear spin system. The values of these potentials are calculated assuming a sharp transition from short to long correlation times, and the relaxation mechanisms of these potentials are discussed. The relaxation of the nuclear-spin potential is simulated numerically showing that high nuclear polarization decreases relaxation rate.
C1 [Merkulov, I. A.; Yakovlev, D. R.] Russian Acad Sci, AF Ioffe Physicotech Inst, St Petersburg 194021, Russia.
[Alvarez, G.] Oak Ridge Natl Lab, Ctr Nanophase Mat Sci, Oak Ridge, TN 37831 USA.
[Alvarez, G.] Oak Ridge Natl Lab, Comp Sci & Math Div, Oak Ridge, TN 37831 USA.
[Yakovlev, D. R.] TU Dortmund Univ, D-44221 Dortmund, Germany.
[Schulthess, T. C.] Swiss Fed Inst Technol, Inst Theoret Phys, CH-8093 Zurich, Switzerland.
[Schulthess, T. C.] Swiss Fed Inst Technol, Swiss Natl Supercomp Ctr, CH-8093 Zurich, Switzerland.
[Merkulov, I. A.] Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA.
RP Merkulov, IA (reprint author), Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA.
FU Scientific User Facilities Division; Basic Energy Sciences; U.S.
Department of Energy; Deutsche Forschungsgemeinschaft
FX The authors are thankful to M. I. Dyakonov, V. G. Fleisher, and S. M.
Ryabchenko for fruitful discussions. I. A. M. thanks the Program of
Russian Academy of Science, Spin Phenomena in Semiconductor
Nanostructures and Spintronics. We acknowledge the support of the Center
for Nanophase Materials Sciences, sponsored by the Scientific User
Facilities Division, Basic Energy Sciences, U.S. Department of Energy,
under contract with UT-Battelle. D. R. Y. acknowledges support of the
Deutsche Forschungsgemeinschaft.
NR 37
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U2 6
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115107
DI 10.1103/PhysRevB.81.115107
PG 13
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800037
ER
PT J
AU Micklitz, T
Rech, J
Matveev, KA
AF Micklitz, Tobias
Rech, Jerome
Matveev, K. A.
TI Transport properties of partially equilibrated quantum wires
SO PHYSICAL REVIEW B
LA English
DT Article
ID DIMENSIONAL ELECTRON-GAS; POINT CONTACTS; BALLISTIC-RESISTANCE;
CONDUCTANCE; QUANTIZATION
AB We study the effect of thermal equilibration on the transport properties of a weakly interacting one-dimensional electron system. Although equilibration is severely suppressed due to phase-space restrictions and conservation laws, it can lead to intriguing signatures in partially equilibrated quantum wires. We consider an ideal homogeneous quantum wire. At finite temperature we find a correction to the quantized conductance, which for a short wire scales with its length, but saturates in the limit of an infinitely long wire. We also discuss thermoelectric properties of long quantum wires. We show that the uniform quantum wire is a perfect thermoelectric refrigerator, approaching Carnot efficiency with increasing wire length.
C1 [Micklitz, Tobias; Rech, Jerome; Matveev, K. A.] Argonne Natl Lab, Div Mat Sci, Argonne, IL 60439 USA.
[Rech, Jerome] Univ Munich, Dept Phys, Arnold Sommerfeld Ctr Theoret Phys, D-80333 Munich, Germany.
[Rech, Jerome] Univ Munich, Ctr NanoSci, D-80333 Munich, Germany.
RP Micklitz, T (reprint author), Argonne Natl Lab, Div Mat Sci, Argonne, IL 60439 USA.
FU U. S. Department of Energy [DE-AC02-06CH11357]; Deutsche
Forschungsgemeinschaft (DFG) [SFB/TR 12]; Center for Nanoscience (CeNS)
Munich; German Excellence Initiative via the Nanosystems Initiative
Munich (NIM)
FX We are grateful to B. L. Altshuler, A. V. Andreev, and L. I. Glazman for
helpful discussions. This work was supported by the U. S. Department of
Energy, Office of Science, under Contract No. DE-AC02-06CH11357 and
through the Deutsche Forschungsgemeinschaft (DFG), under Contract No.
SFB/TR 12, the Center for Nanoscience (CeNS) Munich, and the German
Excellence Initiative via the Nanosystems Initiative Munich (NIM).
NR 38
TC 28
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U2 1
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115313
DI 10.1103/PhysRevB.81.115313
PG 19
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800090
ER
PT J
AU Milano, J
Grimsditch, M
AF Milano, J.
Grimsditch, M.
TI Magnetic field effects on the NiO magnon spectra
SO PHYSICAL REVIEW B
LA English
DT Article
ID LIGHT-SCATTERING; DOMAIN WALLS; RESONANCE; MNO; NANOPARTICLES;
EXCITATIONS; DEPENDENCE; DISPERSION; ANISOTROPY; CRYSTALS
AB The effect of an external magnetic field on the eight antiferromagnetic resonance (AFMR) modes of NiO has been studied experimentally using Brillouin light scattering. The results are reproduced by a model that includes the effects of exchange, dipolar coupling, a small cubic anisotropy, and Zeeman terms. Magnetic fields up to 7 T were applied along several NiO crystalline directions. The agreement between theory and experiment provides additional proof that the model, recently introduced to explain the existence of the AFMR multiplet, is indeed valid. Deviations between simulations and experiments, together with a review of previously published results, indicate that large magnetostrictive effects are present in NiO.
C1 [Milano, J.] Ctr Atom Bariloche, CNEA, San Carlos De Bariloche, Rio Negro, Argentina.
[Grimsditch, M.] Argonne Natl Lab, Div Mat Sci, Argonne, IL 60439 USA.
[Grimsditch, M.] CIC Nanogune, Donostia San Sebastian, Spain.
RP Milano, J (reprint author), Ctr Atom Bariloche, CNEA, R8402AGP, San Carlos De Bariloche, Rio Negro, Argentina.
RI nanoGUNE, CIC/A-2623-2015
FU U.S. DOE, Basic Energy Sciences, Materials Sciences [W-31-109-ENG-38];
Ikerbasque foundation; [PIP 6016]
FX Work at ANL was supported by the U.S. DOE, Basic Energy Sciences,
Materials Sciences under Contract No. W-31-109-ENG-38. Work at CNEA was
partially funded by PIP 6016. J.M. is member of CONICET Argentina. M. G.
acknowledges support from the Ikerbasque foundation.
NR 25
TC 2
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U1 1
U2 23
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094415
DI 10.1103/PhysRevB.81.094415
PG 7
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300065
ER
PT J
AU Morosan, E
Wagner, KE
Zhao, LL
Hor, Y
Williams, AJ
Tao, J
Zhu, Y
Cava, RJ
AF Morosan, E.
Wagner, K. E.
Zhao, Liang L.
Hor, Y.
Williams, A. J.
Tao, J.
Zhu, Y.
Cava, R. J.
TI Multiple electronic transitions and superconductivity in PdxTiSe2
SO PHYSICAL REVIEW B
LA English
DT Article
ID ANGLE-RESOLVED PHOTOEMISSION; CHARGE-DENSITY WAVES; BAND-STRUCTURE;
SUPERLATTICE FORMATION; LATTICE INSTABILITY; TISE2; DICHALCOGENIDES;
CONNECTION; 1T-TISE2; PRESSURE
AB We report the synthesis and characterization of PdxTiSe2 via magnetization, resistivity, specific heat measurements, and low-temperature electron diffraction. At very low levels of intercalation, near Pd0.01TiSe2, the commensurate charge density wave transition in the TiSe2 parent compound near 220 K becomes substantially stronger; a distinct transition to a more resistive state is seen at about 80 K. Originally semimetallic, TiSe2 becomes an insulator at low temperatures for 0.01 <= x <= 0.06 in PdxTiSe2. Increasing Pd intercalation beyond this level begins to suppress the insulating behavior until a 2 K superconductor is found in the narrow composition range of 0.11 <= x <= 0.12. Beyond x=0.12, a normal metallic state (down to 0.3 K) is induced.
C1 [Morosan, E.; Zhao, Liang L.] Rice Univ, Dept Phys & Astron, Houston, TX 77005 USA.
[Wagner, K. E.; Hor, Y.; Williams, A. J.; Cava, R. J.] Princeton Univ, Dept Chem, Princeton, NJ 08540 USA.
[Tao, J.; Zhu, Y.] Brookhaven Natl Lab, Upton, NY 11973 USA.
RP Morosan, E (reprint author), Rice Univ, Dept Phys & Astron, Houston, TX 77005 USA.
EM emorosan@rice.edu
FU Rice University; U. S. DOE Division of Basic Energy Sciences
[DE-FG02-96-45702, DE-AC02-98CH10886]
FX EM acknowledges support from Rice University. Work at Princeton was
supported by the U. S. DOE Division of Basic Energy Sciences, Grant No.
DE-FG02-96-45702. Work at Brookhaven National Laboratory was supported
by the U. S. DOE Division of Basic Energy Sciences under Contract No.
DE-AC02-98CH10886.
NR 27
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U1 3
U2 35
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094524
DI 10.1103/PhysRevB.81.094524
PG 5
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300113
ER
PT J
AU Nemkovski, KS
Alekseev, PA
Mignot, JM
Goremychkin, EA
Nikonov, AA
Parfenov, OE
Lazukov, VN
Shitsevalova, NY
Dukhnenko, AV
AF Nemkovski, K. S.
Alekseev, P. A.
Mignot, J. -M.
Goremychkin, E. A.
Nikonov, A. A.
Parfenov, O. E.
Lazukov, V. N.
Shitsevalova, N. Yu.
Dukhnenko, A. V.
TI Spin dynamics in the electron-doped Kondo insulator Yb1-xZrxB12 (x=0.2)
SO PHYSICAL REVIEW B
LA English
DT Article
ID NEUTRON-SCATTERING; YBB12; SEMICONDUCTOR; YB1-XLUXB12; EXCITATIONS
AB Electron doping of the Kondo insulator YbB12 has been achieved by substitution of tetravalent Zr in the newly synthesized Yb0.8Zr0.2B12 solid solution. Neutron-scattering measurements of the spin dynamics are reported, together with electrical resistivity and ac magnetic-susceptibility data. Zr doping transforms the spin-gap spectral response into a pseudogap shape and makes its temperature evolution much smoother than in the Yb1-xLuxB12 family studied previously. The results obtained are discussed in connection with the local bound-state picture for the Kondo insulator.
C1 [Nemkovski, K. S.; Alekseev, P. A.; Nikonov, A. A.; Parfenov, O. E.; Lazukov, V. N.] RRC Kurchatov Inst, Moscow 123182, Russia.
[Mignot, J. -M.] CEA Saclay, CNRS, Lab Leon Brillouin, F-91191 Gif Sur Yvette, France.
[Goremychkin, E. A.] Argonne Natl Lab, Div Mat Sci, Argonne, IL 60439 USA.
[Goremychkin, E. A.] Rutherford Appleton Lab, ISIS Pulsed Neutron & Muon Facil, Didcot OX11 0QX, Oxon, England.
[Shitsevalova, N. Yu.; Dukhnenko, A. V.] NASU, Inst Problems Mat Sci, Kiev, Ukraine.
RP Nemkovski, KS (reprint author), RRC Kurchatov Inst, Kurchatov Sq 1, Moscow 123182, Russia.
RI Alekseev, Pavel/A-5645-2014; Mignot, Jean-Michel/A-8305-2008;
OI Mignot, Jean-Michel/0000-0001-8503-6712; Nemkovski,
Kirill/0000-0001-7752-4927
FU RFBR [08-02-00430]
FX We are grateful to L. A. Maksimov, A. F. Barabanov, P. Thalmeier, L.-P.
Regnault, and Ph. Bourges for stimulating discussions. The work was
supported by the RFBR under Grant No. 08-02-00430.
NR 21
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U1 0
U2 7
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 12
AR 125108
DI 10.1103/PhysRevB.81.125108
PG 5
WC Physics, Condensed Matter
SC Physics
GA 577UG
UT WOS:000276248900045
ER
PT J
AU Ohta, T
Bartelt, NC
Nie, S
Thurmer, K
Kellogg, GL
AF Ohta, Taisuke
Bartelt, N. C.
Nie, Shu
Thuermer, Konrad
Kellogg, G. L.
TI Role of carbon surface diffusion on the growth of epitaxial graphene on
SiC
SO PHYSICAL REVIEW B
LA English
DT Article
ID 6H-SIC(0001)
AB We have observed the formation of graphene on SiC by Si sublimation in an Ar atmosphere using low-energy electron microscopy, scanning tunneling microcopy, and atomic force microscopy. This work reveals unanticipated growth mechanisms, which depend strongly on the initial surface morphology. Carbon diffusion governs the spatial relationship between SiC decomposition and graphene growth. Isolated bilayer SiC steps generate narrow ribbons of graphene by a distinctive cooperative process, whereas triple bilayer steps allow large graphene sheets to grow by step flow. We demonstrate how graphene quality can be improved by controlling the initial surface morphology to avoid the instabilities inherent in diffusion-limited growth.
C1 [Ohta, Taisuke] Sandia Natl Labs, Albuquerque, NM 87185 USA.
Sandia Natl Labs, Livermore, CA 94550 USA.
RP Ohta, T (reprint author), Sandia Natl Labs, POB 5800, Albuquerque, NM 87185 USA.
RI Bartelt, Norman/G-2927-2012; Thurmer, Konrad/L-4699-2013
OI Thurmer, Konrad/0000-0002-3078-7372
FU LDRD; U. S. DOE Office of Basic Energy Sciences, Division of Materials
Science and Engineering [DE-AC04-94AL85000]
FX We thank E. Bussmann, D. Rademacher, and D. Pete for help with
experiments, and R. Loehman, B. Swartzentruber, and Th. Seyller for
fruitful discussions. This work was supported by the LDRD program at
SNL, and the U. S. DOE Office of Basic Energy Sciences, Division of
Materials Science and Engineering (Contract No. DE-AC04-94AL85000), and
was performed in part at CINT (Contract No. DE-AC04-94AL85000). Sandia
is a multiprogram laboratory operated by Sandia Corporation, a Lockheed
Martin Co., for the U. S. DOE NNSA (Contract No. DE-AC04-94AL85000).
NR 24
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 12
AR 121411
DI 10.1103/PhysRevB.81.121411
PG 4
WC Physics, Condensed Matter
SC Physics
GA 577UG
UT WOS:000276248900031
ER
PT J
AU Olejnik, K
Wadley, P
Haigh, JA
Edmonds, KW
Campion, RP
Rushforth, AW
Gallagher, BL
Foxon, CT
Jungwirth, T
Wunderlich, J
Dhesi, SS
Cavill, SA
van der Laan, G
Arenholz, E
AF Olejnik, K.
Wadley, P.
Haigh, J. A.
Edmonds, K. W.
Campion, R. P.
Rushforth, A. W.
Gallagher, B. L.
Foxon, C. T.
Jungwirth, T.
Wunderlich, J.
Dhesi, S. S.
Cavill, S. A.
van der Laan, G.
Arenholz, E.
TI Exchange bias in a ferromagnetic semiconductor induced by a
ferromagnetic metal: Fe/(Ga,Mn)As bilayer films studied by XMCD
measurements and SQUID magnetometry
SO PHYSICAL REVIEW B
LA English
DT Article
ID RAY CIRCULAR-DICHROISM; ABSORPTION-SPECTRA
AB We demonstrate an exchange bias in (Ga,Mn)As induced by antiferromagnetic coupling to a thin overlayer of Fe. Bias fields of up to 240 Oe are observed. Using element-specific x-ray magnetic circular dichroism measurements, we distinguish a strongly exchange-coupled (Ga,Mn)As interface layer in addition to the biased bulk of the (Ga,Mn)As film. The interface layer remains polarized at room temperature.
C1 [Olejnik, K.; Wunderlich, J.] Hitachi Cambridge Lab, Cambridge CB3 0HE, England.
[Olejnik, K.; Jungwirth, T.; Wunderlich, J.] Acad Sci Czech Republic, Inst Phys, Vvi, Prague 16253 6, Czech Republic.
[Wadley, P.; Haigh, J. A.; Edmonds, K. W.; Campion, R. P.; Rushforth, A. W.; Gallagher, B. L.; Foxon, C. T.; Jungwirth, T.] Univ Nottingham, Sch Phys & Astron, Nottingham NG7 2RD, England.
[Dhesi, S. S.; Cavill, S. A.; van der Laan, G.] Diamond Light Source, Didcot OX11 0DE, Oxon, England.
[Arenholz, E.] Univ Calif Berkeley, Lawrence Berkeley Lab, Adv Light Source, Berkeley, CA 94720 USA.
RP Olejnik, K (reprint author), Hitachi Cambridge Lab, Cambridge CB3 0HE, England.
RI Olejnik, Kamil/I-7085-2012; Wunderlich, Joerg/G-6918-2014; Jungwirth,
Tomas/G-8952-2014; Cavill, Stuart/C-5002-2015; van der Laan,
Gerrit/Q-1662-2015; Gallagher, Bryan/B-8116-2013;
OI Jungwirth, Tomas/0000-0002-9910-1674; Cavill,
Stuart/0000-0002-1359-4958; van der Laan, Gerrit/0000-0001-6852-2495;
Edmonds, Kevin/0000-0002-9793-4170; Gallagher,
Bryan/0000-0001-8310-0899; Campion, Richard/0000-0001-8990-8987;
Rushforth, Andrew/0000-0001-8774-6662
FU EU [SemiSpinNet-215368, NAMASTE-214499]; STFC [CMPC07100]; Praemium
Academiae; Academy of Sciences and Ministry of Education of the Czech
Repubic [AV0Z10100521, KAN400100652, LC510]; U.S. Department of Energy
under [DE-AC02-05CH11231]
FX We acknowledge support from EU under Grants No. SemiSpinNet-215368 and
No. NAMASTE-214499, STFC under Grant No. CMPC07100, and Praemium
Academiae and Grants AV0Z10100521, KAN400100652, and LC510 of the
Academy of Sciences and Ministry of Education of the Czech Repubic. The
Advanced Light Source is supported by the U.S. Department of Energy
under Contract No. DE-AC02-05CH11231. We thank Leigh Shelford for help
during the Diamond beamtime.
NR 23
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104402
DI 10.1103/PhysRevB.81.104402
PG 5
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700064
ER
PT J
AU Palczewski, AD
Kondo, T
Wen, JS
Xu, GZJ
Gu, G
Kaminski, A
AF Palczewski, A. D.
Kondo, Takeshi
Wen, J. S.
Xu, G. Z. J.
Gu, G.
Kaminski, A.
TI Controlling the carrier concentration of the high-temperature
superconductor Bi2Sr2CaCu2O8+delta in angle-resolved photoemission
spectroscopy experiments
SO PHYSICAL REVIEW B
LA English
DT Article
ID T-C; GAP ANISOTROPY; FERMI-SURFACE; NORMAL-STATE; DISPERSION; SCALE
AB We study the variation of the electronic properties at the surface of a high-temperature superconductor as a function of vacuum conditions in angle-resolved photoemission spectroscopy experiments. Normally, under inadequate ultrahigh vacuum (UHV) conditions the carrier concentration of Bi2Sr2CaCu2O8+delta (Bi2212) increases with time due to the absorption of oxygen from CO2/CO molecules that are prime contaminants present in UHV systems. We find that in an optimal vacuum environment at low temperatures, the surface of Bi2212 is quite stable (the carrier concentration remains constant); however at elevated temperatures the carrier concentration decreases due to the loss of oxygen atoms from the Bi-O layer. These two effects can be used to control the carrier concentration in situ. Our finding opens the possibility of studying the electronic properties of the cuprates as a function of doping across the phase diagram on the same surface of sample (i.e., with the same impurities and nondopant defects). We envision that this method could be utilized in other surface sensitive techniques such as scanning tunneling microscopy/spectroscopy.
C1 [Palczewski, A. D.; Kondo, Takeshi; Kaminski, A.] Iowa State Univ, Ames Lab, Ames, IA 50011 USA.
[Palczewski, A. D.; Kondo, Takeshi; Kaminski, A.] Iowa State Univ, Dept Phys & Astron, Ames, IA 50011 USA.
[Wen, J. S.; Xu, G. Z. J.; Gu, G.] Brookhaven Natl Lab, Condensed Matter Phys & Mat Sci Dept, Upton, NY 11973 USA.
RP Palczewski, AD (reprint author), Iowa State Univ, Ames Lab, Ames, IA 50011 USA.
RI xu, zhijun/A-3264-2013; Kondo, Takeshi/H-2680-2016; Wen,
Jinsheng/F-4209-2010
OI xu, zhijun/0000-0001-7486-2015; Wen, Jinsheng/0000-0001-5864-1466
FU U. S. DOE; Department of Energy-Basic Energy Sciences
[DE-AC02-07CH11358, DE-AC02-98CH10886]; National Science Foundation
[DMR-0537588]
FX This work was supported by the Director's Office for Basic Energy
Sciences, U. S. DOE. Work at Ames Laboratory was supported by the
Department of Energy-Basic Energy Sciences under Contract No.
DE-AC02-07CH11358. The work at B.N.L. was supported by Department of
Energy-Basic Energy Sciences under Contract No. DE-AC02-98CH10886.
Synchrotron Radiation Center is supported by the National Science
Foundation under Grant No. DMR-0537588.
NR 25
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U1 2
U2 10
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104521
DI 10.1103/PhysRevB.81.104521
PG 6
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700115
ER
PT J
AU Prozorov, R
Tanatar, MA
Roy, B
Ni, N
Bud'ko, SL
Canfield, PC
Hua, J
Welp, U
Kwok, WK
AF Prozorov, R.
Tanatar, M. A.
Roy, B.
Ni, N.
Bud'ko, S. L.
Canfield, P. C.
Hua, J.
Welp, U.
Kwok, W. K.
TI Magneto-optical study of Ba(Fe1-xMx)(2)As-2 (M=Co and Ni) single
crystals irradiated with heavy ions
SO PHYSICAL REVIEW B
LA English
DT Article
ID SUPERCONDUCTORS
AB Optimally doped single crystals of Ba(Fe1-xMx)(2)As-2 (M=Co, Ni) were irradiated with 1.4 GeV Pb-208(56+) ions at fluences corresponding to matching fields of B-phi=0.1, 0.5, 1, and 2 T. Magneto-optical imaging has been used to map the distribution of the magnetic induction in the irradiated samples. The imaging is complemented by the magnetization measurements. The results show a substantial enhancement of the apparent critical current densities as revealed by the much larger Bean penetration fields and an increase in the hysteretic magnetization. However, the effect depends on the compound, temperature, and applied magnetic field. In Ba(Fe0.926Co0.074)(2)As-2 crystals, at 15 K and low fields, the enhancement appears to scale with the irradiation dose at a rate of about 0.27 MA.cm(-2) T-1, whereas in Ba (Fe0.954Ni0.046)(2)As-2 crystals, higher irradiation doses are less effective. Our results suggest that moderate irradiation with heavy ions is an effective way to homogeneously enhance the current-currying capabilities of pnictide superconductors.
C1 [Prozorov, R.; Tanatar, M. A.; Roy, B.; Ni, N.; Bud'ko, S. L.; Canfield, P. C.] Iowa State Univ, Ames Lab, Ames, IA 50011 USA.
[Prozorov, R.; Tanatar, M. A.; Roy, B.; Ni, N.; Bud'ko, S. L.; Canfield, P. C.] Iowa State Univ, Dept Phys & Astron, Ames, IA 50011 USA.
[Hua, J.; Welp, U.; Kwok, W. K.] Argonne Natl Lab, Div Mat Sci, Argonne, IL 60439 USA.
RP Prozorov, R (reprint author), Iowa State Univ, Ames Lab, Ames, IA 50011 USA.
EM prozorov@ameslab.gov
RI Canfield, Paul/H-2698-2014; Prozorov, Ruslan/A-2487-2008
OI Prozorov, Ruslan/0000-0002-8088-6096
FU Department of Energy-Office of Basic Energy Sciences
[DE-AC02-07CH11358]; U. S. Department of Energy, Office of Science,
Office of Basic Energy Sciences [DE-AC02-06CH11357]
FX We thank R. T. Gordon for help in improving the manuscript. Work at the
Ames Laboratory was supported by the Department of Energy-Office of
Basic Energy Sciences under Contract No. DE-AC02-07CH11358. Work at
Argonne National Laboratory was supported by the U. S. Department of
Energy, Office of Science, Office of Basic Energy Sciences under
Contract No. DE-AC02-06CH11357. The heavy-ion irradiation was performed
at the ATLAS facility at Argonne. R.P. acknowledges support from the
Alfred P. Sloan Foundation.
NR 21
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
EI 1550-235X
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094509
DI 10.1103/PhysRevB.81.094509
PG 5
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300098
ER
PT J
AU Reichhardt, C
Reichhardt, CJO
AF Reichhardt, C.
Reichhardt, C. J. Olson
TI Shear banding and spatiotemporal oscillations in vortex matter in
nanostructured superconductors
SO PHYSICAL REVIEW B
LA English
DT Article
ID EQUILIBRIUM POLYMERS; REGULAR ARRAY; TRANSITION; FILMS; FLOW
AB We propose a simple nanostructured pinning array geometry where a rich variety of complex vortex shear banding phenomena can be realized. A single row of pinning sites is removed from a square pinning array. Shear banding effects arise when vortex motion in the pin-free channel nucleates motion of vortices in the surrounding pinned regions, creating discrete steps in the vortex velocity profile away from the channel. Near the global depinning transition, the width of the band of moving vortices undergoes oscillations or fluctuations that can span the entire system. We use simulations to show that these effects should be observable in the transport properties of the system. Similar large oscillations and shear banding effects are known to occur for sheared complex fluids in which different dynamical phases coexist.
C1 [Reichhardt, C.; Reichhardt, C. J. Olson] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
RP Reichhardt, C (reprint author), Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
OI Reichhardt, Cynthia/0000-0002-3487-5089
FU U.S. DOE at LANL [DEAC52-06NA25396]
FX This work was carried out under the auspices of the NNSA of the U.S. DOE
at LANL under Contract No. DEAC52-06NA25396.
NR 27
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U2 1
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9950
EI 2469-9969
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 100506
DI 10.1103/PhysRevB.81.100506
PG 4
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700025
ER
PT J
AU Saha, KK
Lu, WC
Bernholc, J
Meunier, V
AF Saha, Kamal K.
Lu, Wenchang
Bernholc, J.
Meunier, Vincent
TI Electron transport in multiterminal molecular devices: A density
functional theory study
SO PHYSICAL REVIEW B
LA English
DT Article
ID JUNCTIONS; CONDUCTANCE; TRANSISTORS; STATES
AB The electron transport properties of a four-terminal molecular device are computed within the framework of density functional theory and nonequilibrium Keldysh theory. The additional two terminals lead to new properties, including a pronounced negative differential resistance not present in a two-terminal setup, and a pseudogating effect. In general, quantum interference between the four terminals and the central molecule leads to a complex nonlinear behavior of the current, which depends on the alignment of individual molecular states under bias and their coupling to the leads.
C1 [Saha, Kamal K.; Lu, Wenchang; Bernholc, J.; Meunier, Vincent] Oak Ridge Natl Lab, Div Math & Comp Sci, Oak Ridge, TN 37831 USA.
[Lu, Wenchang; Bernholc, J.] N Carolina State Univ, Ctr High Performance Simulat, Raleigh, NC 27695 USA.
[Lu, Wenchang; Bernholc, J.] N Carolina State Univ, Dept Phys, Raleigh, NC 27695 USA.
[Meunier, Vincent] Oak Ridge Natl Lab, Ctr Nanophase Mat Sci, Oak Ridge, TN 37831 USA.
RP Meunier, V (reprint author), Oak Ridge Natl Lab, Div Math & Comp Sci, Oak Ridge, TN 37831 USA.
EM meunierv@ornl.gov
RI Meunier, Vincent/F-9391-2010
OI Meunier, Vincent/0000-0002-7013-179X
FU U. S. Department of Energy [De-AC05-00OR22725, DE-FG02-98ER45685]; ONR
[N000141010179]
FX This research was sponsored in part by the Laboratory Directed Research
and Development Program of Oak Ridge National Laboratory (ORNL), managed
by UT-Battelle, LLC for the U. S. Department of Energy under Contract
No. De-AC05-00OR22725. Work at NCSU was partially funded by DOE Grant
No. DE-FG02-98ER45685 and ONR Grant No. N000141010179.
NR 43
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U1 0
U2 13
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 12
AR 125420
DI 10.1103/PhysRevB.81.125420
PG 6
WC Physics, Condensed Matter
SC Physics
GA 577UG
UT WOS:000276248900137
ER
PT J
AU Samulon, EC
Al-Hassanieh, KA
Jo, YJ
Shapiro, MC
Balicas, L
Batista, CD
Fisher, IR
AF Samulon, E. C.
Al-Hassanieh, K. A.
Jo, Y. -J.
Shapiro, M. C.
Balicas, L.
Batista, C. D.
Fisher, I. R.
TI Anisotropic phase diagram of the frustrated spin dimer compound Ba3Mn2O8
SO PHYSICAL REVIEW B
LA English
DT Article
AB Heat-capacity and magnetic torque measurements are used to probe the anisotropic temperature-field phase diagram of the frustrated spin dimer compound Ba3Mn2O8 in the field range from 0 to 18 T. For fields oriented along the c axis, a single magnetically ordered phase is found in this field range whereas for fields oriented along the a axis, two distinct phases are observed. The present measurements reveal a surprising nonmonotonic evolution of the phase diagram as the magnetic field is rotated in the [001]-[100] plane. The angle dependence of the critical field (H-c1) that marks the closing of the spin gap can be quantitatively accounted for using a minimal spin Hamiltonian comprising superexchange between nearest and next-nearest Mn ions, the Zeeman energy, and single-ion anisotropy. This Hamiltonian also predicts a nonmonotonic evolution of the transition between the two ordered states as the field is rotated in the a-c plane. However, the observed effect is found to be significantly larger in magnitude, implying that either this minimal spin Hamiltonian is incomplete or that the magnetically ordered states have a slightly different structure than previously proposed.
C1 [Samulon, E. C.; Shapiro, M. C.; Fisher, I. R.] Stanford Univ, Geballe Lab Adv Mat, Stanford, CA 94305 USA.
[Samulon, E. C.; Shapiro, M. C.; Fisher, I. R.] Stanford Univ, Dept Appl Phys, Stanford, CA 94305 USA.
[Al-Hassanieh, K. A.; Batista, C. D.] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
[Jo, Y. -J.; Balicas, L.] Florida State Univ, Natl High Magnet Field Lab, Tallahassee, FL 32306 USA.
[Jo, Y. -J.] Ewha Womans Univ, Dept Phys, Seoul 120750, South Korea.
RP Samulon, EC (reprint author), Stanford Univ, Geballe Lab Adv Mat, Stanford, CA 94305 USA.
RI Batista, Cristian/J-8008-2016
FU Division of Materials Research, National Science Foundation
[DMR-0705087]; DOE-BES [DE-SC0002613]; NHMFL-UCGP; National Science
Foundation [DMR-0084173]; Department of Energy
FX Work at Stanford University is supported by the Division of Materials
Research, National Science Foundation under Grant No. DMR-0705087. L. B.
is supported by DOE-BES, contract DE-SC0002613 and the NHMFL-UCGP
program. A portion of this work was performed at the National High
Magnetic Field Laboratory, which is supported by the National Science
Foundation under Cooperative Agreement No. DMR-0084173, by the state of
Florida and the Department of Energy.
NR 10
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U2 13
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PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104421
DI 10.1103/PhysRevB.81.104421
PG 6
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700083
ER
PT J
AU Si, WD
Jie, Q
Wu, LJ
Zhou, J
Gu, GD
Johnson, PD
Li, Q
AF Si, Weidong
Jie, Qing
Wu, Lijun
Zhou, Juan
Gu, Genda
Johnson, P. D.
Li, Qiang
TI Superconductivity in epitaxial thin films of Fe1.08Te:O-x
SO PHYSICAL REVIEW B
LA English
DT Article
ID FIELD; SPIN
AB Superconducting thin films of Fe1.08Te:O-x have been epitaxially grown on SrTiO3 substrates by pulsed-laser deposition in controlled oxygen atmosphere. Although the bulk Fe1.08Te is not superconducting, thin films with oxygen are superconducting with an onset and a zero resistance transition temperature around 12 and 8 K, respectively. Oxygen was found to be crucial to the superconducting properties of these films, suggesting that the oxygen incorporation can induce superconductivity in FeTe thin films. A metal-insulator transition is found at about 60 K, lower than that of bulk (similar to 70 K). From magnetoresistive measurements, we obtained the irreversibility line and the upper critical field.
C1 [Si, Weidong; Jie, Qing; Wu, Lijun; Zhou, Juan; Gu, Genda; Johnson, P. D.; Li, Qiang] Brookhaven Natl Lab, Dept Condensed Matter Phys & Mat Sci, Upton, NY 11973 USA.
RP Si, WD (reprint author), Brookhaven Natl Lab, Dept Condensed Matter Phys & Mat Sci, Upton, NY 11973 USA.
EM wds@bnl.gov
RI Jie, Qing/H-3780-2011; Jie, Qing/N-8673-2013
FU U.S. Department of Energy, Office of Basic Energy Science
[DE-AC02-98CH10886]
FX This work was supported by the U.S. Department of Energy, Office of
Basic Energy Science, under Contract No. DE-AC02-98CH10886.
NR 14
TC 36
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U1 3
U2 22
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 092506
DI 10.1103/PhysRevB.81.092506
PG 4
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300020
ER
PT J
AU Solontsov, A
Antropov, VP
AF Solontsov, A.
Antropov, V. P.
TI Phenomenological model of longitudinal spin fluctuations in itinerant
antiferromagnets
SO PHYSICAL REVIEW B
LA English
DT Article
ID ELECTRON FERROMAGNETS; MAGNETIC FLUCTUATIONS; CRITICAL DYNAMICS; T-C;
EXCITATIONS
AB We present the phenomenological analysis of the spectrum of longitudinal spin fluctuations in isotropic itinerant electron antiferromagnets with account of spin anharmonicity giving rise to coupling of transverse and longitudinal normal modes. The spectrum consists of a quasielastic part forming a central peak or a dip, depending on temperature and the Landau relaxation rate. Effects of spin-fluctuation coupling also give rise to an inelastic part of the spectrum which has a form of resonances or antiresonances near the magnon frequencies related to nonpropagating longitudinal excitations.
C1 [Solontsov, A.; Antropov, V. P.] US DOE, Ames Lab, Ames, IA 50011 USA.
[Solontsov, A.] AA Bochvar Inorgan Mat Res Inst, Moscow 123060, Russia.
[Solontsov, A.] State Ctr Condensed Matter Phys, Moscow 155569, Russia.
RP Solontsov, A (reprint author), US DOE, Ames Lab, Ames, IA 50011 USA.
FU Department of Energy, Basic Energy Sciences [DE-AC02-07CH11358];
ROSATOM; Russian Foundation for Basic Research [06-02-17291]
FX Work at the Ames Laboratory was supported by Department of Energy, Basic
Energy Sciences, under Contract No. DE-AC02-07CH11358. A. S. would also
acknowledge the support of ROSATOM and Russian Foundation for Basic
Research (Grant No. 06-02-17291).
NR 28
TC 3
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U1 1
U2 6
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104403
DI 10.1103/PhysRevB.81.104403
PG 7
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700065
ER
PT J
AU Souvatzis, P
Legut, D
Eriksson, O
Katsnelson, MI
AF Souvatzis, Petros
Legut, Dominik
Eriksson, Olle
Katsnelson, Mikhail I.
TI Ab initio study of interacting lattice vibrations and stabilization of
the beta phase in Ni-Ti shape-memory alloy
SO PHYSICAL REVIEW B
LA English
DT Article
ID TOTAL-ENERGY CALCULATIONS; EQUIATOMIC TINI; TRANSFORMATION; DYNAMICS;
METALS
AB Lattice dynamical methods used to predict phase transformations in crystals typically evaluate the harmonic phonon spectra and therefore do not work in frequent and important situations where the crystal structure is unstable in the harmonic approximation, such as the beta structure when it appears as a high-temperature phase of the shape memory alloy Ni-Ti. Here it is shown by self-consistent ab initio lattice dynamical calculations that the critical temperature for the premartensitic R-to-beta phase transformation in Ni-Ti can be effectively calculated with good accuracy, and that the beta phase is a result primarily of the stabilizing interaction between different lattice vibrations.
C1 [Souvatzis, Petros] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
[Legut, Dominik; Eriksson, Olle] Uppsala Univ, Dept Phys & Astron, Div Mat Theory, SE-75121 Uppsala, Sweden.
[Legut, Dominik] Acad Sci Czech Republic, Inst Phys Mat, Vvi, CZ-61662 Brno, Czech Republic.
[Katsnelson, Mikhail I.] Radboud Univ Nijmegen, Inst Mol & Mat, NL-6525 ED Nijmegen, Netherlands.
RP Souvatzis, P (reprint author), Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
RI Katsnelson, Mikhail/D-4359-2012; Eriksson, Olle/E-3265-2014
OI Eriksson, Olle/0000-0001-5111-1374
FU Department of Energy [DE-AC52-06NA25396]
FX The Department of Energy supported this work under Contract No.
DE-AC52-06NA25396. We thank Bruce N. Harmon for all the helpful
discussions.
NR 27
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U1 1
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 092201
DI 10.1103/PhysRevB.81.092201
PG 4
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300005
ER
PT J
AU Tanaka, K
Yoshida, T
Shen, KM
Lu, DH
Lee, WS
Yagi, H
Fujimori, A
Shen, ZX
Risdiana, R
Fujii, T
Terasaki, I
AF Tanaka, K.
Yoshida, T.
Shen, K. M.
Lu, D. H.
Lee, W. S.
Yagi, H.
Fujimori, A.
Shen, Z. -X.
Risdiana, R.
Fujii, T.
Terasaki, I.
TI Evolution of electronic structure from insulator to superconductor in
Bi2Sr2-xLax(Ca,Y)Cu2O8+delta
SO PHYSICAL REVIEW B
LA English
DT Article
ID FERMI-SURFACE; LA2-XSRXCUO4
AB La-doped and Y-doped Bi2Sr2CaCu2O8+delta compounds Bi2Sr2-xLax(Ca,Y)Cu2O8+delta, which range from the insulator to the deeply underdoped superconductor, have been studied by angle-resolved photoemission spectroscopy. We have observed that the lower Hubbard band (LHB) of the parent insulator is gradually shifted upward with doping without significantly changing the band dispersions, which implies a downward shift of the chemical potential with hole doping. This behavior is analogous to Bi2Sr2-xLaxCuO6+delta and Ca2-xNaxCuO2Cl2 but is different from La2-xSrxCuO4, where the LHB stays well below the chemical potential and does not move while its intensity quickly diminishes in the underdoped region.
C1 [Tanaka, K.; Yoshida, T.; Yagi, H.; Fujimori, A.] Univ Tokyo, Dept Phys, Tokyo 1130033, Japan.
[Shen, K. M.; Lu, D. H.; Lee, W. S.; Shen, Z. -X.] Stanford Univ, Dept Appl Phys, Stanford, CA 94305 USA.
[Shen, K. M.; Lu, D. H.; Lee, W. S.; Shen, Z. -X.] Stanford Univ, Stanford Synchrotron Radiat Lab, Stanford, CA 94305 USA.
[Shen, K. M.] Cornell Univ, Atom & Solid State Phys Lab, Dept Phys, Ithaca, NY 14853 USA.
[Risdiana, R.; Fujii, T.; Terasaki, I.] Waseda Univ, Dept Appl Phys, Tokyo 1698555, Japan.
[Fujii, T.] Univ Tokyo, Cryogen Ctr, Bunkyo Ku, Tokyo 1130032, Japan.
RP Tanaka, K (reprint author), Univ Tokyo, Dept Phys, Tokyo 1130033, Japan.
RI TERASAKI, Ichiro/I-7083-2014
OI TERASAKI, Ichiro/0000-0002-6073-2639
FU MEXT, Japan [16076208]; DOE Office of Basic Energy Science Divisions of
Chemical Sciences and Material Sciences
FX We acknowledge technical help by N. P. Armitage. This work was supported
by a grant-in-Aid for Scientific Research in Priority Area "Invention of
Anomalous Quantum Materials" (Grant No. 16076208) from MEXT, Japan. SSRL
is operated by the DOE Office of Basic Energy Science Divisions of
Chemical Sciences and Material Sciences.
NR 26
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U1 2
U2 12
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9950
EI 2469-9969
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 12
AR 125115
DI 10.1103/PhysRevB.81.125115
PG 5
WC Physics, Condensed Matter
SC Physics
GA 577UG
UT WOS:000276248900052
ER
PT J
AU Thirupathaiah, S
de Jong, S
Ovsyannikov, R
Durr, HA
Varykhalov, A
Follath, R
Huang, Y
Huisman, R
Golden, MS
Zhang, YZ
Jeschke, HO
Valenti, R
Erb, A
Gloskovskii, A
Fink, J
AF Thirupathaiah, S.
de Jong, S.
Ovsyannikov, R.
Duerr, H. A.
Varykhalov, A.
Follath, R.
Huang, Y.
Huisman, R.
Golden, M. S.
Zhang, Yu-Zhong
Jeschke, H. O.
Valenti, R.
Erb, A.
Gloskovskii, A.
Fink, J.
TI Orbital character variation of the Fermi surface and doping dependent
changes of the dimensionality in BaFe2-xCoxAs2 from angle-resolved
photoemission spectroscopy
SO PHYSICAL REVIEW B
LA English
DT Article
ID SUPERCONDUCTOR
AB From a combination of high resolution angle-resolved photoemission spectroscopy and density functional calculations, we derive information on the dimensionality and the orbital character of the electronic states of BaFe2-xCoxAs2. Upon increasing Co doping, the electronic states in the vicinity of the Fermi level take on increasingly three-dimensional character. Both the orbital variation with k(z) and the more three-dimensional nature of the doped compounds have important consequences for the nesting conditions and thus possibly also for the appearance of antiferromagnetic and superconducting phases.
C1 [Thirupathaiah, S.; Ovsyannikov, R.; Duerr, H. A.; Varykhalov, A.; Follath, R.; Fink, J.] Helmholtz Zentrum Berlin, D-12489 Berlin, Germany.
[de Jong, S.; Huang, Y.; Huisman, R.; Golden, M. S.] Univ Amsterdam, Van der Waals Zeeman Inst, NL-1018 XE Amsterdam, Netherlands.
[Duerr, H. A.] Stanford Linear Accelerator Ctr, Pulse Inst, Menlo Pk, CA 94025 USA.
[Zhang, Yu-Zhong; Jeschke, H. O.; Valenti, R.] Goethe Univ, Inst Theor Phys, D-60438 Frankfurt, Germany.
[Erb, A.] Walther Meissner Inst Tieftemp Forsch, D-85748 Garching, Germany.
[Gloskovskii, A.] Johannes Gutenberg Univ Mainz, Inst Anorgan Chem & Analyt Chem, D-55099 Mainz, Germany.
[Fink, J.] Leibniz Inst Solid State & Mat Res Dresden, D-01171 Dresden, Germany.
RP Thirupathaiah, S (reprint author), Helmholtz Zentrum Berlin, Albert Einstein Str 15, D-12489 Berlin, Germany.
RI Zhang, Yu-Zhong/E-7139-2010; Erb, Andreas/F-2210-2010; Varykhalov,
Andrei/I-3571-2013; Jeschke, Harald/C-3507-2009; Fink,
Joerg/A-6003-2012; Ovsyannikov, Ruslan/H-7824-2014; Durr,
Hermann/F-6205-2012; Hloskovsky, Andrei/A-3009-2012; Golden,
Mark/D-3469-2011
OI Setti, Thirupathaiah/0000-0003-1258-0981; Zhang,
Yu-Zhong/0000-0002-1766-6664; Varykhalov, Andrei/0000-0002-7901-3562;
Jeschke, Harald/0000-0002-8091-7024; Ovsyannikov,
Ruslan/0000-0001-6311-5516;
FU DFG [538]; Stichting voor Fundamenteel Onderzoek der Materie (FOM);
Nederlandse Organisatie voor Wetenschappelijk Onderzoek (NWO)
FX We acknowledge the characterization of single crystals by H. Luigjes.
Financial support by the DFG is appreciated by J. F. (Forschergruppe FOR
538). This work is part of the research program of the "Stichting voor
Fundamenteel Onderzoek der Materie (FOM)," which is financially
supported by the "Nederlandse Organisatie voor Wetenschappelijk
Onderzoek (NWO)."
NR 34
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U1 1
U2 10
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
EI 1550-235X
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104512
DI 10.1103/PhysRevB.81.104512
PG 7
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700106
ER
PT J
AU Uddin, J
Baskes, MI
Srinivasan, SG
Cundari, TR
Wilson, AK
AF Uddin, Jamal
Baskes, M. I.
Srinivasan, S. G.
Cundari, Thomas R.
Wilson, Angela K.
TI Modified embedded atom method study of the mechanical properties of
carbon nanotube reinforced nickel composites
SO PHYSICAL REVIEW B
LA English
DT Article
ID ELASTIC PROPERTIES; MOLECULAR-DYNAMICS; YOUNGS MODULUS;
RAMAN-SPECTROSCOPY; TENSILE-STRENGTH; METALS; SIMULATIONS; IMPURITIES;
CRYSTALS; ROPES
AB We report an atomistic simulation study of the behavior of nanocomposite materials that are formed by incorporating single-walled carbon nanotubes (SWCNTs), with three different diameters, and a multiwalled carbon nanotube (MWCNT) into a single-crystal nickel matrix. The interactions between carbon and nickel atoms are described by a modified embedded atom method potential. Mechanical properties of these nanocomposite materials are predicted by atomistic calculations and compared with that of fcc nickel and pristine CNTs. Our simulations predict that all Ni/CNT composites studied in this work are mechanically stable. Their elastic properties depend on the volume fraction and diameter of embedded CNTs. The single-crystal Young's modulus (E(11)) of Ni/SWCNT composites exhibit a large increase in the direction of CNTs alignment compared to that of a single-crystal nickel. However, a moderate but gradual decrease is seen for E(22) and E(33) in the transverse directions with increase in CNT diameters. As a consequence, Ni/SWCNTs show a gradual decrease for the polycrystalline Young's, bulk and shear moduli with the increasing CNT diameters and volume fractions. These reductions, although moderate, suggest that enhancement of mechanical properties for polycrystalline Ni/SWCNT nanocomposites are not achievable at any CNT volume fraction. The Ni/MWCNT composite with high CNT volume fraction shows the highest increase in E(11). Unlike the E(22) and E(33) for Ni/SWCNTs, there is a significant increase in the E(22) and the E(33) for Ni/MWCNT. As a result, polycrystalline Ni/MWCNT composites show slight increase in the elastic properties. This suggests that nickel nanocomposites with enhanced mechanical properties can be fabricated using large volume fractions of larger diameter MWCNTs. Depending on type, alignment and volume fraction, Ni/CNT composites show varying degrees of elastic anisotropy and Poisson's ratio compared to pure Ni. Simulation predicts strong adhesion at the Ni/CNT interface and a significant interfacial stress transfer between CNT and Ni matrix.
C1 [Uddin, Jamal; Cundari, Thomas R.; Wilson, Angela K.] Univ N Texas, Dept Chem, Denton, TX 76203 USA.
[Uddin, Jamal; Srinivasan, S. G.; Cundari, Thomas R.; Wilson, Angela K.] Univ N Texas, Ctr Adv Sci Comp & Modeling, Denton, TX 76203 USA.
[Baskes, M. I.] Los Alamos Natl Lab, Mat Sci & Technol Div, Los Alamos, NM 87545 USA.
[Srinivasan, S. G.] Univ N Texas, Dept Mat Sci & Engn, Denton, TX 76203 USA.
RP Uddin, J (reprint author), Univ N Texas, Dept Chem, 1155 Union Circle,305070, Denton, TX 76203 USA.
EM jamal.uddin@unt.edu
FU Air Force Research Laboratory [FA8650-08-C-5226]; National Science
Foundation [CHE-0342824, CHE-0741936]; UNT; [CMMI-0846444]
FX The authors gratefully acknowledge financial support from the Air Force
Research Laboratory (Contract No. FA8650-08-C-5226, Manager Jay Tiley).
The support from the National Science Foundation for computing
infrastructure (Grants No. CHE-0342824 and No. CHE-0741936) and for
studying deformation in light-weight materials (Grant No. CMMI-0846444),
and the CASCaM for computational sources are gratefully acknowledged. We
acknowledge support from UNT through the Material Modeling Research
Cluster. We would also like to thank Kyeongjae Cho (UT-Dallas) for
providing his MEAM parameters before their publication.
NR 63
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104103
DI 10.1103/PhysRevB.81.104103
PG 12
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700036
ER
PT J
AU Vasseur, R
Lookman, T
AF Vasseur, Romain
Lookman, Turab
TI Effects of disorder in ferroelastics: A spin model for strain glass
SO PHYSICAL REVIEW B
LA English
DT Article
ID MEAN-FIELD THEORY; ISING-MODEL; MARTENSITIC TRANSFORMATIONS;
PHASE-TRANSITIONS; CRYSTAL-FIELD; LANDAU THEORY; ALLOYS; TWEED; FLUIDS
AB We demonstrate that a strain pseudospin model for martensitic alloys predicts a glass phase in the presence of disorder, consistent with recent experiments on binary and ternary alloys that have established the existence of such a phase above a critical composition. We find that the glass phase, as characterized by the Edwards-Anderson order parameter, exists even in the absence of elastic long-range interactions, which compete with the disorder to shift the glass transition to higher values of disorder. Our model predicts a second-order phase transition between the martensite and strain glass phases as a function of the disorder. Together with the cusp in the susceptibility and the history dependence in the glass phase in zero-field-cooling and field-cooling curves, these predictions may be tested experimentally by varying the alloy composition. Our approach using mean-field analysis and Monte Carlo simulations may be generalized to the study of glassy behavior in more complex structural transformations in two and three dimensions.
C1 [Vasseur, Romain; Lookman, Turab] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
[Vasseur, Romain; Lookman, Turab] Los Alamos Natl Lab, Ctr Nonlinear Studies, Los Alamos, NM 87545 USA.
[Vasseur, Romain] Ecole Normale Super Lyon, F-69007 Lyon, France.
RP Vasseur, R (reprint author), Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
OI Lookman, Turab/0000-0001-8122-5671
NR 45
TC 23
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U1 1
U2 24
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094107
DI 10.1103/PhysRevB.81.094107
PG 7
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300031
ER
PT J
AU Visani, C
Nemes, NM
Rocci, M
Sefrioui, Z
Leon, C
te Velthuis, SGE
Hoffmann, A
Fitzsimmons, MR
Simon, F
Feher, T
Garcia-Hernandez, M
Santamaria, J
AF Visani, C.
Nemes, N. M.
Rocci, M.
Sefrioui, Z.
Leon, C.
te Velthuis, S. G. E.
Hoffmann, A.
Fitzsimmons, M. R.
Simon, F.
Feher, T.
Garcia-Hernandez, M.
Santamaria, J.
TI Directionally controlled superconductivity in
ferromagnet/superconductor/ferromagnet trilayers with biaxial easy axes
SO PHYSICAL REVIEW B
LA English
DT Article
ID EPITAXIAL THIN-FILMS; MAGNETIC-ANISOTROPY; GIANT MAGNETORESISTANCE;
FERROMAGNET HYBRIDS; SPIN-IMBALANCE; SUPERLATTICES; ENHANCEMENT;
PARALLEL; STRAIN; FIELD
AB We report on the magnetic anisotropy controlled modulation of the superconductivity in La(0.7)Ca(0.3)MnO(3)/YBa(2)Cu(3)O(7-delta)/La(0.7)Ca(0.3)MnO(3) ferromagnet/superconductor/ferromagnet hybrids with biaxial easy axes. The magnetoresistance (MR) is determined by the local misalignment of the magnetizations in the two layers and exhibits a positive MR plateau for antiparallel alignment along the easy axes and negative MR peaks at the coercive field near the hard axes. This evidences the importance of spin-dependent interfacial scattering effects (as opposed to stray fields) in the MR behavior of superconducting oxide inverse spin switches.
C1 [Visani, C.; Nemes, N. M.; Rocci, M.; Sefrioui, Z.; Leon, C.; Santamaria, J.] Univ Complutense Madrid, GFMC, Depto Fis Aplicada 3, E-28040 Madrid, Spain.
[te Velthuis, S. G. E.; Hoffmann, A.] Argonne Natl Lab, Div Mat Sci, Argonne, IL 60439 USA.
[Fitzsimmons, M. R.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
[Simon, F.; Feher, T.] Budapest Univ Technol & Econ, Dept Phys, H-1521 Budapest, Hungary.
[Simon, F.; Feher, T.] HAS, Condensed Matter Phys Res Grp, H-1521 Budapest, Hungary.
[Garcia-Hernandez, M.] CSIC, Inst Ciencia Mat Madrid, Canto Blanco 28049, Spain.
RP Visani, C (reprint author), Univ Complutense Madrid, GFMC, Depto Fis Aplicada 3, Campus Moncloa, E-28040 Madrid, Spain.
RI Hoffmann, Axel/A-8152-2009; Leon, Carlos/A-5587-2008; Simon,
Ferenc/G-7580-2011; Lujan Center, LANL/G-4896-2012; Nemes, Norbert
Marcel/B-6275-2009; te Velthuis, Suzanne/I-6735-2013; Garcia-Hernandez,
Mar/J-9520-2014; Santamaria, Jacobo/N-8783-2016; Sefrioui,
Zouhair/C-2728-2017
OI Hoffmann, Axel/0000-0002-1808-2767; Leon, Carlos/0000-0002-3262-1843;
Simon, Ferenc/0000-0001-9822-4309; Rocci, Mirko/0000-0002-3907-5275;
Nemes, Norbert Marcel/0000-0002-7856-3642; te Velthuis,
Suzanne/0000-0002-1023-8384; Garcia-Hernandez, Mar/0000-0002-5987-0647;
Santamaria, Jacobo/0000-0003-4594-2686; Sefrioui,
Zouhair/0000-0002-6703-3339
FU U. S.-Spain NSF Materials World Network [709584]; U. S. Department of
Energy, Basic Energy Science [DE-AC02-06CH11357, DE-AC02NA25396];
Spanish MICINN [MAT2008-06517]; Consolider Ingenio 2010 Grant
[CSD2009-00013]; CAM [S2009/Mat-1756]; OTKA [F61733, K68807, PF63954];
Hungarian Academy of Sciences
FX We thank A. Goldman for fruitful discussions within the framework of the
joint U. S.-Spain NSF Materials World Network under Grant No. 709584.
This work was supported by the U. S. Department of Energy, Basic Energy
Science, under Contracts No. DE-AC02-06CH11357 and No. DE-AC02NA25396,
by Spanish MICINN under Grant No. MAT2008-06517, Consolider Ingenio 2010
Grant CSD2009-00013 (Imagine), and "Ramon y Cajal" program, by CAM under
Grant S2009/Mat-1756 (Phama), and by OTKA under Grants No. F61733, No.
K68807, and No. PF63954, and the "Bolyai" program of the Hungarian
Academy of Sciences.
NR 44
TC 13
Z9 13
U1 0
U2 14
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR 1
PY 2010
VL 81
IS 9
AR 094512
DI 10.1103/PhysRevB.81.094512
PG 7
WC Physics, Condensed Matter
SC Physics
GA 577FI
UT WOS:000276207300101
ER
PT J
AU Wehling, TO
Balatsky, AV
Katsnelson, MI
Lichtenstein, AI
Rosch, A
AF Wehling, T. O.
Balatsky, A. V.
Katsnelson, M. I.
Lichtenstein, A. I.
Rosch, A.
TI Orbitally controlled Kondo effect of Co adatoms on graphene
SO PHYSICAL REVIEW B
LA English
DT Article
ID AUGMENTED-WAVE METHOD; ULTRASOFT PSEUDOPOTENTIALS; IMPURITY
AB Based on ab initio calculations we identify possible scenarios for the Kondo effect due to Co adatoms on graphene. General symmetry arguments show that for magnetic atoms in high-symmetry positions, the Kondo effect in graphene is controlled not only by the spin but also by the orbital degree of freedom. For a Co atom absorbed on top of a carbon atom, the Kondo effect is quenched by spin-orbit coupling below an energy scale of similar to 15 K. For Co with spin S=1/2 located in the center of a hexagon, an SU(4) Kondo model describes the entanglement of orbital moment and spin at higher energies, while below similar to 60 meV spin-orbit coupling leads to a more conventional SU(2) Kondo effect. The interplay of the orbital Co physics and the peculiar band structure of graphene is directly accessible in Fourier transform tunneling spectroscopy or in the gate-voltage dependence of the Kondo temperature displaying a very strong, characteristic particle-hole asymmetry.
C1 [Wehling, T. O.; Lichtenstein, A. I.] Univ Hamburg, Inst Theoret Phys 1, D-20355 Hamburg, Germany.
[Balatsky, A. V.] Los Alamos Natl Lab, Div Theoret, Los Alamos, NM 87545 USA.
[Balatsky, A. V.] Los Alamos Natl Lab, Ctr Integrated Nanotechnol, Los Alamos, NM 87545 USA.
[Katsnelson, M. I.] Radboud Univ Nijmegen, Inst Mol & Mat, NL-6525 AJ Nijmegen, Netherlands.
[Rosch, A.] Univ Cologne, Inst Theoret Phys, D-50937 Cologne, Germany.
RP Wehling, TO (reprint author), Univ Hamburg, Inst Theoret Phys 1, D-20355 Hamburg, Germany.
RI Rosch, Achim/A-2962-2009; Katsnelson, Mikhail/D-4359-2012; Wehling,
Tim/O-4642-2014; Lichtenstein, Alexander/K-8730-2012
OI Rosch, Achim/0000-0002-6586-5721; Wehling, Tim/0000-0002-5579-2231;
Lichtenstein, Alexander/0000-0003-0152-7122
FU Stichting voor Fundamenteel Onderzoek der Materie (FOM); Netherlands;
DFG [SFB-668, SFB 608, SFB TR12]; Cluster of Excellence
"Nanospintronics'' (LExI Hamburg); NSF [PHY05-51164]; U.S. Department of
Energy, OBES [DE-AC52-06NA25396]
FX We are grateful to R. Bulla, J. von Delft, M. Vojta, and especially H.
Manoharan for useful discussions. We thank I. Kolorenc for providing us
his exact diagonalization code. This work was supported by Stichting
voor Fundamenteel Onderzoek der Materie (FOM), the Netherlands, by
Grants No SFB-668 (A3), No. SFB 608, and No. SFB TR12 of the DFG, the
Cluster of Excellence "Nanospintronics'' (LExI Hamburg), and Grant No.
PHY05-51164 of the NSF. Work At Los Alamos was performed at the Center
for Integrated Nanotechnologies, a U.S. Department of Energy, OBES
(Contract No. DE-AC52-06NA25396). Computer time at HLRN is acknowledged.
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PI COLLEGE PK
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SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115427
DI 10.1103/PhysRevB.81.115427
PG 6
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800140
ER
PT J
AU Wen, JS
Xu, GY
Xu, ZJ
Lin, ZW
Li, Q
Chen, Y
Chi, SX
Gu, GD
Tranquada, JM
AF Wen, Jinsheng
Xu, Guangyong
Xu, Zhijun
Lin, Zhi Wei
Li, Qiang
Chen, Ying
Chi, Songxue
Gu, Genda
Tranquada, J. M.
TI Effect of magnetic field on the spin resonance in FeTe0.5Se0.5 as seen
via inelastic neutron scattering
SO PHYSICAL REVIEW B
LA English
DT Article
ID HIGH-TEMPERATURE SUPERCONDUCTOR; 43 K; IRON; COMPOUND; ORDER
AB Inelastic neutron scattering and susceptibility measurements have been performed on the optimally doped Fe-based superconductor FeTe0.5Se0.5, which has a critical temperature, T-c of 14 K. The magnetic scattering at the stripe antiferromagnetic wave vector Q=(0.5,0.5) exhibits a "resonance" at similar to 6 meV, where the scattering intensity increases abruptly when cooled below T-c. In a 7-T magnetic field parallel to the a-b plane, T-c is slightly reduced to similar to 12 K, based on susceptibility measurements. The resonance in the neutron-scattering measurements is also affected by the field. The resonance intensity under field cooling starts to rise at a lower temperature similar to 12 K, and the low-temperature intensity is also reduced from the zero-field value. Our results provide clear evidence for the intimate relationship between superconductivity and the resonance measured in magnetic excitations of Fe-based superconductors.
C1 [Wen, Jinsheng; Xu, Guangyong; Lin, Zhi Wei; Li, Qiang; Gu, Genda; Tranquada, J. M.] Brookhaven Natl Lab, Condensed Matter Phys & Mat Sci Dept, Upton, NY 11973 USA.
[Wen, Jinsheng] SUNY Stony Brook, Dept Mat Sci & Engn, Stony Brook, NY 11794 USA.
[Xu, Zhijun] CUNY City Coll, Dept Phys, New York, NY 10031 USA.
[Chen, Ying; Chi, Songxue] NIST, Ctr Neutron Res, Gaithersburg, MD 20899 USA.
RP Wen, JS (reprint author), Brookhaven Natl Lab, Condensed Matter Phys & Mat Sci Dept, Upton, NY 11973 USA.
RI Tranquada, John/A-9832-2009; Wen, Jinsheng/F-4209-2010; Xu,
Guangyong/A-8707-2010; xu, zhijun/A-3264-2013; Chi, Songxue/A-6713-2013
OI Tranquada, John/0000-0003-4984-8857; Wen, Jinsheng/0000-0001-5864-1466;
Xu, Guangyong/0000-0003-1441-8275; xu, zhijun/0000-0001-7486-2015; Chi,
Songxue/0000-0002-3851-9153
FU U. S. Department of Energy, Office of Basic Energy Sciences, Division of
Materials Sciences and Engineering [DE-AC02-98CH10886]
FX The work at Brookhaven National Laboratory was supported by the U. S.
Department of Energy, Office of Basic Energy Sciences, Division of
Materials Sciences and Engineering, under Contract No.
DE-AC02-98CH10886.
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PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 100513
DI 10.1103/PhysRevB.81.100513
PG 4
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700032
ER
PT J
AU Yang, HS
Cahill, DG
Liu, X
Feldman, JL
Crandall, RS
Sperling, BA
Abelson, JR
AF Yang, Ho-Soon
Cahill, David G.
Liu, X.
Feldman, J. L.
Crandall, R. S.
Sperling, B. A.
Abelson, J. R.
TI Anomalously high thermal conductivity of amorphous Si deposited by
hot-wire chemical vapor deposition
SO PHYSICAL REVIEW B
LA English
DT Article
ID RAMAN-SPECTRA; SILICON; QUALITY; MODEL; HEAT
AB The thermal conductivities of thin films of amorphous Si (a-Si) deposited by hot-wire chemical vapor deposition (HWCVD) are measured by time-domain thermoreflectance (TDTR). Amorphous Si samples prepared at the National Renewable Energy Laboratory (NREL) show an anomalous enhancement in thermal conductivity compared to other forms of a-Si and compared to the prediction of the model of the minimum thermal conductivity. The thermal conductivity of the NREL HWCVD a-Si samples also decreases with increasing frequency of the temperature fields used in the experiment. This frequency dependence of the thermal conductivity is nearly identical to the results of our previous studies of crystalline semiconductor alloys; a comparison of the frequency dependence to a phonon-scattering model suggests that Rayleigh-type scattering controls the mean-free path of similar to 5 meV phonons in this material. Amorphous Si films prepared at University of Illinois (U. Illinois) do not show an enhanced thermal conductivity even though Raman vibrational spectra of the U. Illinois and NREL samples are nearly identical. Thus, the thermal conductivity of a-Si depends on details of the microstructure that are not revealed by vibrational spectroscopy and measurements by TDTR provide a convenient method of identifying novel microstructures in amorphous materials.
C1 [Yang, Ho-Soon] Pusan Natl Univ, Dept Phys, Pusan 609735, South Korea.
[Cahill, David G.; Sperling, B. A.; Abelson, J. R.] Univ Illinois, Dept Mat Sci & Engn, Urbana, IL 61801 USA.
[Cahill, David G.] Univ Illinois, Mat Res Lab, Urbana, IL 61801 USA.
[Feldman, J. L.] USN, Res Lab, Ctr Computat Mat Sci, Washington, DC 20375 USA.
[Crandall, R. S.] Natl Renewable Energy Lab, Golden, CO 80401 USA.
[Feldman, J. L.] George Mason Univ, Dept Computat & Data Sci, Fairfax, VA 22030 USA.
RP Yang, HS (reprint author), Pusan Natl Univ, Dept Phys, Pusan 609735, South Korea.
EM d-cahill@uiuc.edu
RI Cahill, David/B-3495-2014
FU U. S. Department of Energy [DE-FG02-07ER46459, DE-FG02-07ER46453,
DE-FG02-07ER46471]; Korean Science and Engineering Foundation
[R01-2006-000-10742-0]; Office of Naval Research
FX This research was supported by the U. S. Department of Energy under
Award No. DE-FG02-07ER46459, by Grant No. R01-2006-000-10742-0 from the
Korean Science and Engineering Foundation, and the Office of Naval
Research. Experiments were carried out in the Laser and Spectroscopy
Laboratory of the Materials Research Laboratory at the University of
Illinois, which is partially supported by the U. S. Department of Energy
under Grants No. DE-FG02-07ER46453 and No. DE-FG02-07ER46471. We thank
Y. K. Koh for his help with the TDTR experiments and W. Wang for Raman
spectra at 785 nm.
NR 25
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PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9950
EI 2469-9969
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 10
AR 104203
DI 10.1103/PhysRevB.81.104203
PG 7
WC Physics, Condensed Matter
SC Physics
GA 577UE
UT WOS:000276248700050
ER
PT J
AU Zhang, HZ
Chen, B
Ren, Y
Waychunas, GA
Banfield, JF
AF Zhang, Hengzhong
Chen, Bin
Ren, Yang
Waychunas, Glenn A.
Banfield, Jillian F.
TI Response of nanoparticle structure to different types of surface
environments: Wide-angle x-ray scattering and molecular dynamics
simulations
SO PHYSICAL REVIEW B
LA English
DT Article
ID PAIR DISTRIBUTION FUNCTION; ZINC-SULFIDE; PSEUDOPOTENTIALS; TEMPERATURE;
NANOSCALE; ROOM; ZNS
AB The structure of nanoparticles is nonstationary and changes in response to the surface environment where the nanoparticles are situated. Nanoparticle-environment interaction determines the nature of the structure change, an important consideration for evaluating subsequent environmental impact. In this work, we used ZnS nanoparticles to interact with surface environments that contain different inorganic salts, water, and organic molecules. From analysis of the pair-distribution function (PDF) derived from wide-angle x-ray scattering experiments, we found that a stronger surface interaction results in a thicker crystalline core and a thinner distorted shell, corresponding to PDF curves having larger peaks and more peaks at longer radial distances. Plane-wave electronic calculations were used to quantify the interaction strength. An analogous atomic view of the nanoparticle-environmental interactions and structures was provided by molecular dynamics simulations. The extent of response of the nanoparticle structure to various surface environments is used as a measure of the interaction strength between them.
C1 [Zhang, Hengzhong; Chen, Bin; Banfield, Jillian F.] Univ Calif Berkeley, Dept Earth & Planetary Sci, Berkeley, CA 94720 USA.
[Ren, Yang] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
[Waychunas, Glenn A.; Banfield, Jillian F.] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Earth Sci, Berkeley, CA 94720 USA.
RP Zhang, HZ (reprint author), Univ Calif Berkeley, Dept Earth & Planetary Sci, Berkeley, CA 94720 USA.
EM heng@eps.berkeley.edu
FU U. S. Department of Energy, Office of Science [DE-AC02-06CH11357,
DE-FG03-01ER15218]; National Science Foundation [EAR-0123967]
FX We thank B. Gilbert for helpful discussions. Use of the Advanced Photon
Source is supported by the U. S. Department of Energy, Office of
Science, under Contract No. DE-AC02-06CH11357. Computations were carried
out in the Geochemistry Computer Cluster, Lawrence Berkeley National
Laboratory. Financial support was provided by the U. S. Department of
Energy (Grant No. DE-FG03-01ER15218) and the National Science Foundation
(Grant No. EAR-0123967).
NR 26
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 12
AR 125444
DI 10.1103/PhysRevB.81.125444
PG 6
WC Physics, Condensed Matter
SC Physics
GA 577UG
UT WOS:000276248900161
ER
PT J
AU Zhu, JX
Bishop, AR
AF Zhu, Jian-Xin
Bishop, A. R.
TI Exciton condensate modulation in electron-hole bilayers: A real-space
visualization
SO PHYSICAL REVIEW B
LA English
DT Article
ID LARKIN-OVCHINNIKOV STATE; SUPERCONDUCTOR; FIELD
AB We study the texture of the exciton condensate at low temperatures in an independently gated electron-hole bilayer system. A model Hamiltonian is solved in real space within a mean-field approximation. It is found that, with increased electron-hole density polarization, the system experiences phase transformations from the zero center-of-mass momentum superfluid state, through one- and two-dimensional exciton pair modulated states, into the normal state. At weak density polarization, the modulating state resembles the Larkin-Ovchinnikov state in superconductors in the presence of an exchange field in the weak-coupling BCS limit and becomes stripe-like in the strong-coupling BEC limit. In the one-dimensional modulated phase, the density of states exhibits low-energy intragap resonance quasiparticle states, which are localized in the nodal region.
C1 [Zhu, Jian-Xin; Bishop, A. R.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Zhu, JX (reprint author), Los Alamos Natl Lab, POB 1663, Los Alamos, NM 87545 USA.
OI Zhu, Jianxin/0000-0001-7991-3918
FU National Nuclear Security Administration of the U.S. DOE at the Los
Alamos National Laboratory [DE-AC52-06NA25396]; U.S. DOE Office of
Science; LDRD Program at LANL
FX We acknowledge the support of the National Nuclear Security
Administration of the U.S. DOE at the Los Alamos National Laboratory
under Contract No. DE-AC52-06NA25396, the U.S. DOE Office of Science,
and the LDRD Program at LANL.
NR 30
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PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-0121
J9 PHYS REV B
JI Phys. Rev. B
PD MAR
PY 2010
VL 81
IS 11
AR 115329
DI 10.1103/PhysRevB.81.115329
PG 5
WC Physics, Condensed Matter
SC Physics
GA 577UF
UT WOS:000276248800106
ER
PT J
AU Adare, A
Afanasiev, S
Aidala, C
Ajitanand, NN
Akiba, Y
Al-Bataineh, H
Alexander, J
Al-Jamel, A
Aoki, K
Aphecetche, L
Armendariz, R
Aronson, SH
Asai, J
Atomssa, ET
Averbeck, R
Awes, TC
Azmoun, B
Babintsev, V
Baksay, G
Baksay, L
Baldisseri, A
Barish, KN
Barnes, PD
Bassalleck, B
Bathe, S
Batsouli, S
Baublis, V
Bauer, F
Bazilevsky, A
Belikov, S
Bennett, R
Berdnikov, Y
Bickley, AA
Bjorndal, MT
Boissevain, JG
Borel, H
Boyle, K
Brooks, ML
Brown, DS
Bucher, D
Buesching, H
Bumazhnov, V
Bunce, G
Burward-Hoy, JM
Butsyk, S
Campbell, S
Chai, JS
Chang, BS
Charvet, JL
Chernichenko, S
Chiba, J
Chi, CY
Chiu, M
Choi, IJ
Chujo, T
Chung, P
Churyn, A
Cianciolo, V
Cleven, CR
Cobigo, Y
Cole, BA
Comets, MP
Constantin, P
Csanad, M
Csorgo, T
Dahms, T
Das, K
David, G
Deaton, MB
Dehmelt, K
Delagrange, H
Denisov, A
d'Enterria, D
Deshpande, A
Desmond, EJ
Dietzsch, O
Dion, A
Donadelli, M
Drachenberg, JL
Drapier, O
Drees, A
Dubey, AK
Durum, A
Dzhordzhadze, V
Efremenko, YV
Egdemir, J
Ellinghaus, F
Emam, WS
Enokizono, A
En'yo, H
Espagnon, B
Esumi, S
Eyser, KO
Fields, DE
Finger, M
Finger, M
Fleuret, F
Fokin, SL
Forestier, B
Fraenkel, Z
Frantz, JE
Franz, A
Frawley, AD
Fujiwara, K
Fukao, Y
Fung, SY
Fusayasu, T
Gadrat, S
Garishvili, I
Gastineau, F
Germain, M
Glenn, A
Gong, H
Gonin, M
Gosset, J
Goto, Y
de Cassagnac, RG
Grau, N
Greene, SV
Perdekamp, MG
Gunji, T
Gustafsson, HA
Hachiya, T
Henni, AH
Haegemann, C
Haggerty, JS
Hagiwara, MN
Hamagaki, H
Han, R
Harada, H
Hartouni, EP
Haruna, K
Harvey, M
Haslum, E
Hasuko, K
Hayano, R
Heffner, M
Hemmick, TK
Hester, T
Heuser, JM
He, X
Hiejima, H
Hill, JC
Hobbs, R
Hohlmann, M
Holmes, M
Holzmann, W
Homma, K
Hong, B
Horaguchi, T
Hornback, D
Hur, MG
Ichihara, T
Imai, K
Inaba, M
Inoue, Y
Isenhower, D
Isenhower, L
Ishihara, M
Isobe, T
Issah, M
Isupov, A
Jacak, BV
Jia, J
Jin, J
Jinnouchi, O
Johnson, BM
Joo, KS
Jouan, D
Kajihara, F
Kametani, S
Kamihara, N
Kamin, J
Kaneta, M
Kang, JH
Kanou, H
Kawagishi, T
Kawall, D
Kazantsev, AV
Kelly, S
Khanzadeev, A
Kikuchi, J
Kim, DH
Kim, DJ
Kim, E
Kim, YS
Kinney, E
Kiss, A
Kistenev, E
Kiyomichi, A
Klay, J
Klein-Boesing, C
Kochenda, L
Kochetkov, V
Komkov, B
Konno, M
Kotchetkov, D
Kozlov, A
Kral, A
Kravitz, A
Kroon, PJ
Kubart, J
Kunde, GJ
Kurihara, N
Kurita, K
Kweon, MJ
Kwon, Y
Kyle, GS
Lacey, R
Lai, YS
Lajoie, JG
Lebedev, A
Le Bornec, Y
Leckey, S
Lee, DM
Lee, MK
Lee, T
Leitch, MJ
Leite, MAL
Lenzi, B
Lim, H
Liska, T
Litvinenko, A
Liu, MX
Li, X
Li, XH
Love, B
Lynch, D
Maguire, CF
Makdisi, YI
Malakhov, A
Malik, MD
Manko, VI
Mao, Y
Masek, L
Masui, H
Matathias, F
McCain, MC
McCumber, M
McGaughey, PL
Miake, Y
Mikes, P
Miki, K
Miller, TE
Milov, A
Mioduszewski, S
Mishra, GC
Mishra, M
Mitchell, JT
Mitrovski, M
Morreale, A
Morrison, DP
Moss, JM
Moukhanova, TV
Mukhopadhyay, D
Murata, J
Nagamiya, S
Nagata, Y
Nagle, JL
Naglis, M
Nakagawa, I
Nakamiya, Y
Nakamura, T
Nakano, K
Newby, J
Nguyen, M
Norman, BE
Nouicer, R
Nyanin, AS
Nystrand, J
O'Brien, E
Oda, SX
Ogilvie, CA
Ohnishi, H
Ojha, ID
Okada, H
Okada, K
Oka, M
Omiwade, OO
Oskarsson, A
Otterlund, I
Ouchida, M
Ozawa, K
Pak, R
Pal, D
Palounek, APT
Pantuev, V
Papavassiliou, V
Park, J
Park, WJ
Pate, SF
Pei, H
Peng, JC
Pereira, H
Peresedov, V
Peressounko, DY
Pinkenburg, C
Pisani, RP
Purschke, ML
Purwar, AK
Qu, H
Rak, J
Rakotozafindrabe, A
Ravinovich, I
Read, KF
Rembeczki, S
Reuter, M
Reygers, K
Riabov, V
Riabov, Y
Roche, G
Romana, A
Rosati, M
Rosendahl, SSE
Rosnet, P
Rukoyatkin, P
Rykov, VL
Ryu, SS
Sahlmueller, B
Saito, N
Sakaguchi, T
Sakai, S
Sakata, H
Samsonov, V
Sato, HD
Sato, S
Sawada, S
Seele, J
Seidl, R
Semenov, V
Seto, R
Sharma, D
Shea, TK
Shein, I
Shevel, A
Shibata, TA
Shigaki, K
Shimomura, M
Shohjoh, T
Shoji, K
Sickles, A
Silva, CL
Silvermyr, D
Silvestre, C
Sim, KS
Singh, CP
Singh, V
Skutnik, S
Slunecka, M
Smith, WC
Soldatov, A
Soltz, RA
Sondheim, WE
Sorensen, SP
Sourikova, IV
Staley, F
Stankus, PW
Stenlund, E
Stepanov, M
Ster, A
Stoll, SP
Sugitate, T
Suire, C
Sullivan, JP
Sziklai, J
Tabaru, T
Takagi, S
Takagui, EM
Taketani, A
Tanaka, KH
Tanaka, Y
Tanida, K
Tannenbaum, MJ
Taranenko, A
Tarjan, P
Thomas, TL
Togawa, M
Toia, A
Tojo, J
Tomasek, L
Torii, H
Towell, RS
Tram, VN
Tserruya, I
Tsuchimoto, Y
Tuli, SK
Tydesjo, H
Tyurin, N
Vale, C
Valle, H
van Hecke, HW
Velkovska, J
Vertesi, R
Vinogradov, AA
Virius, M
Vrba, V
Vznuzdaev, E
Wagner, M
Walker, D
Wang, XR
Watanabe, Y
Wessels, J
White, SN
Willis, N
Winter, D
Woody, CL
Wysocki, M
Xie, W
Yamaguchi, YL
Yanovich, A
Yasin, Z
Ying, J
Yokkaichi, S
Young, GR
Younus, I
Yushmanov, IE
Zajc, WA
Zaudtke, O
Zhang, C
Zhou, S
Zimanyi, J
Zolin, L
AF Adare, A.
Afanasiev, S.
Aidala, C.
Ajitanand, N. N.
Akiba, Y.
Al-Bataineh, H.
Alexander, J.
Al-Jamel, A.
Aoki, K.
Aphecetche, L.
Armendariz, R.
Aronson, S. H.
Asai, J.
Atomssa, E. T.
Averbeck, R.
Awes, T. C.
Azmoun, B.
Babintsev, V.
Baksay, G.
Baksay, L.
Baldisseri, A.
Barish, K. N.
Barnes, P. D.
Bassalleck, B.
Bathe, S.
Batsouli, S.
Baublis, V.
Bauer, F.
Bazilevsky, A.
Belikov, S.
Bennett, R.
Berdnikov, Y.
Bickley, A. A.
Bjorndal, M. T.
Boissevain, J. G.
Borel, H.
Boyle, K.
Brooks, M. L.
Brown, D. S.
Bucher, D.
Buesching, H.
Bumazhnov, V.
Bunce, G.
Burward-Hoy, J. M.
Butsyk, S.
Campbell, S.
Chai, J-S.
Chang, B. S.
Charvet, J-L.
Chernichenko, S.
Chiba, J.
Chi, C. Y.
Chiu, M.
Choi, I. J.
Chujo, T.
Chung, P.
Churyn, A.
Cianciolo, V.
Cleven, C. R.
Cobigo, Y.
Cole, B. A.
Comets, M. P.
Constantin, P.
Csanad, M.
Csorgo, T.
Dahms, T.
Das, K.
David, G.
Deaton, M. B.
Dehmelt, K.
Delagrange, H.
Denisov, A.
d'Enterria, D.
Deshpande, A.
Desmond, E. J.
Dietzsch, O.
Dion, A.
Donadelli, M.
Drachenberg, J. L.
Drapier, O.
Drees, A.
Dubey, A. K.
Durum, A.
Dzhordzhadze, V.
Efremenko, Y. V.
Egdemir, J.
Ellinghaus, F.
Emam, W. S.
Enokizono, A.
En'yo, H.
Espagnon, B.
Esumi, S.
Eyser, K. O.
Fields, D. E.
Finger, M., Jr.
Finger, M.
Fleuret, F.
Fokin, S. L.
Forestier, B.
Fraenkel, Z.
Frantz, J. E.
Franz, A.
Frawley, A. D.
Fujiwara, K.
Fukao, Y.
Fung, S-Y.
Fusayasu, T.
Gadrat, S.
Garishvili, I.
Gastineau, F.
Germain, M.
Glenn, A.
Gong, H.
Gonin, M.
Gosset, J.
Goto, Y.
de Cassagnac, R. Granier
Grau, N.
Greene, S. V.
Perdekamp, M. Grosse
Gunji, T.
Gustafsson, H-A
Hachiya, T.
Henni, A. Hadj
Haegemann, C.
Haggerty, J. S.
Hagiwara, M. N.
Hamagaki, H.
Han, R.
Harada, H.
Hartouni, E. P.
Haruna, K.
Harvey, M.
Haslum, E.
Hasuko, K.
Hayano, R.
Heffner, M.
Hemmick, T. K.
Hester, T.
Heuser, J. M.
He, X.
Hiejima, H.
Hill, J. C.
Hobbs, R.
Hohlmann, M.
Holmes, M.
Holzmann, W.
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Woody, C. L.
Wysocki, M.
Xie, W.
Yamaguchi, Y. L.
Yanovich, A.
Yasin, Z.
Ying, J.
Yokkaichi, S.
Young, G. R.
Younus, I.
Yushmanov, I. E.
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Zaudtke, O.
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Zimanyi, J.
Zolin, L.
CA PHENIX Collaboration
TI Detailed measurement of the e(+)e(-) pair continuum in p plus p and Au
plus Au collisions at root s(NN)=200 GeV and implications for direct
photon production
SO PHYSICAL REVIEW C
LA English
DT Article
ID HEAVY-ION COLLISIONS; NUCLEUS-NUCLEUS COLLISIONS; SUPER-PROTON
SYNCHROTRON; MASS ELECTRON PAIRS; QUARK-GLUON PLASMA; LIGHT MESONS;
CERN-SPS; DILEPTON PRODUCTION; PHENIX EXPERIMENT; DIMUON PRODUCTION
AB PHENIX has measured the e(+)e(-) pair continuum in root s(NN) = 200 GeV Au+Au and p+p collisions over a wide range of mass and transverse momenta. The e(+)e(-) yield is compared to the expectations from hadronic sources, based on PHENIX measurements. In the intermediate-mass region, between the masses of the phi and the J/psi meson, the yield is consistent with expectations from correlated c (c) over bar production, although other mechanisms are not ruled out. In the low-mass region, below the phi, the p+p inclusive mass spectrum is well described by known contributions from light meson decays. In contrast, the Au+Au minimum bias inclusive mass spectrum in this region shows an enhancement by a factor of 4.7 +/- 0.4(stat) +/- 1.5(syst) +/- 0.9(model). At low mass (m(ee) < 0.3 GeV/c(2)) and high p(T) (1 < p(T) < 5 GeV/c) an enhanced e(+)e(-) pair yield is observed that is consistent with production of virtual direct photons. This excess is used to infer the yield of real direct photons. In central Au+Au collisions, the excess of the direct photon yield over the p+p is exponential in p(T), with inverse slope T = 221 +/- 19(stat) +/- 19(syst) MeV. Hydrodynamical models with initial temperatures ranging from T-init similar or equal to 300-600 MeV at times of 0.6-0.15 fm/c after the collision are in qualitative agreement with the direct photon data in Au+Au. For low p(T) < 1 GeV/c the low-mass region shows a further significant enhancement that increases with centrality and has an inverse slope of T similar or equal to 100 MeV. Theoretical models underpredict the low-mass, low-p(T) enhancement.
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EM jacak@skipper.physics.sunysb.edu
RI Dahms, Torsten/A-8453-2015; En'yo, Hideto/B-2440-2015; Hayano,
Ryugo/F-7889-2012; seto, richard/G-8467-2011; Csanad, Mate/D-5960-2012;
Csorgo, Tamas/I-4183-2012; YANG, BOGEUM/I-8251-2012; Tomasek,
Lukas/G-6370-2014; HAMAGAKI, HIDEKI/G-4899-2014; Durum,
Artur/C-3027-2014; Sorensen, Soren /K-1195-2016; Yokkaichi,
Satoshi/C-6215-2017; Taketani, Atsushi/E-1803-2017; Semenov,
Vitaliy/E-9584-2017
OI Dahms, Torsten/0000-0003-4274-5476; Hayano, Ryugo/0000-0002-1214-7806;
Tomasek, Lukas/0000-0002-5224-1936; Sorensen, Soren
/0000-0002-5595-5643; Taketani, Atsushi/0000-0002-4776-2315;
FU Office of Nuclear Physics in the Office of Science of the Department of
Energy; National Science Foundation; Abilene Christian University
Research Council; Research Foundation of SUNY; Dean of the College of
Arts and Sciences, Vanderbilt University (USA); Ministry of Education,
Culture, Sports, Science, and Technology; Japan Society for the
Promotion of Science (Japan); Conselho Nacional de Desenvolvimento
Cientifico e Tecnologico and Fundacao de Amparo a Pesquisa do Estado de
Sao Paulo (Brazil); Natural Science Foundation of China; Ministry of
Education, Youth and Sports (Czech Republic); Centre National de la
Recherche Scientifique; Commissariat a l'Energie Atomique, and Institut
National de Physique Nucleaire et de Physique des Particules (France);
Ministry of Industry, Science and Tekhnologies, Bundesministerium fur
Bildung und Forschung, Deutscher Akademischer Austausch Dienst, and
Alexander von Humboldt Stiftung (Germany); Hungarian National Science
Fund, OTKA (Hungary); Department of Atomic Energy (India); Israel
Science Foundation (Israel); National Research Foundation (Korea);
Ministry of Education and Science, Russia Academy of Sciences, Federal
Agency of Atomic Energy (Russia); VR and the Wallenberg Foundation
(Sweden); US Civilian Research and Development Foundation for the
Independent States of the Former Soviet Union; US-Hungarian
NSF-OTKA-MTA; U.S.-Israel Binational Science Foundation
FX We thank the staff of the Collider-Accelerator and Physics Departments
at Brookhaven National Laboratory and the staff of the other PHENIX
participating institutions for their vital contributions. We thank E. L.
Bratkovskaya, W. Cassing, and O. Linnyk; K. Dusling and I. Zahed; and R.
Rapp and H. van Hees for the use of unpublished calculations and we
thank all of them and Y. Hidaka for useful discussions. We acknowledge
support from the Office of Nuclear Physics in the Office of Science of
the Department of Energy, the National Science Foundation, Abilene
Christian University Research Council, Research Foundation of SUNY, and
Dean of the College of Arts and Sciences, Vanderbilt University (USA);
Ministry of Education, Culture, Sports, Science, and Technology and the
Japan Society for the Promotion of Science (Japan); Conselho Nacional de
Desenvolvimento Cientifico e Tecnologico and Fundacao de Amparo a
Pesquisa do Estado de Sao Paulo (Brazil); Natural Science Foundation of
China (People's Republic of China); Ministry of Education, Youth and
Sports (Czech Republic); Centre National de la Recherche Scientifique;
Commissariat a l'Energie Atomique, and Institut National de Physique
Nucleaire et de Physique des Particules (France); Ministry of Industry,
Science and Tekhnologies, Bundesministerium fur Bildung und Forschung,
Deutscher Akademischer Austausch Dienst, and Alexander von Humboldt
Stiftung (Germany); Hungarian National Science Fund, OTKA (Hungary);
Department of Atomic Energy (India); Israel Science Foundation (Israel);
National Research Foundation (Korea); Ministry of Education and Science,
Russia Academy of Sciences, Federal Agency of Atomic Energy (Russia); VR
and the Wallenberg Foundation (Sweden); the US Civilian Research and
Development Foundation for the Independent States of the Former Soviet
Union; the US-Hungarian NSF-OTKA-MTA; and the U.S.-Israel Binational
Science Foundation.
NR 111
TC 193
Z9 197
U1 5
U2 23
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9985
EI 2469-9993
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 034911
DI 10.1103/PhysRevC.81.034911
PG 56
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400063
ER
PT J
AU Airapetian, A
Akopov, N
Akopov, Z
Amarian, M
Aschenauer, EC
Augustyniak, W
Avakian, R
Avetissian, A
Avetisyan, E
Ball, B
Belostotski, S
Bianchi, N
Blok, HP
Bottcher, H
Borissov, A
Bowles, J
Bryzgalov, V
Burns, J
Capiluppi, M
Capitani, GP
Cisbani, E
Ciullo, G
Contalbrigo, M
Dalpiaz, PF
Deconinck, W
De Leo, R
De Nardo, L
De Sanctis, E
Diefenthaler, M
Di Nezza, P
Duren, M
Ehrenfried, M
Elbakian, G
Ellinghaus, F
Fabbri, R
Fantoni, A
Felawka, L
Frullani, S
Gabbert, D
Gapienko, G
Gapienko, V
Garibaldi, F
Gavrilov, G
Gharibyan, V
Giordano, F
Gliske, S
Guler, H
Guzey, V
Haan, S
Hadjidakis, C
Hartig, M
Hasch, D
Hill, G
Hillenbrand, A
Hoek, M
Holler, Y
Hristova, I
Imazu, Y
Ivanilov, A
Jackson, HE
Jo, HS
Joosten, S
Kaiser, R
Karyan, G
Keri, T
Kinney, E
Kisselev, A
Korotkov, V
Kozlov, V
Kravchenko, P
Lagamba, L
Lamb, R
Lapikas, L
Lehmann, I
Lenisa, P
Ruiz, AL
Lorenzon, W
Lu, XG
Lu, XR
Ma, BQ
Mahon, D
Makins, NCR
Manaenkov, SI
Manfre, L
Mao, Y
Marianski, B
de la Ossa, AM
Marukyan, H
Miller, CA
Miyachi, Y
Movsisyan, A
Muccifora, V
Murray, M
Mussgiller, A
Nappi, E
Naryshkin, Y
Nass, A
Negodaev, M
Nowak, WD
Pappalardo, LL
Perez-Benito, R
Raithel, M
Reimer, PE
Reolon, AR
Riedl, C
Rith, K
Rosner, G
Rostomyan, A
Rubin, J
Ryckbosch, D
Salomatin, Y
Schafer, A
Schnell, G
Schuler, KP
Shanidze, R
Shibata, TA
Shutov, V
Stancari, M
Statera, M
Steffens, E
Steijger, JJM
Stewart, J
Stinzing, F
Taroian, S
Terkulov, A
Trzcinski, A
Tytgat, M
Vandenbroucke, A
Van Haarlem, Y
Van Hulse, C
Varanda, M
Veretennikov, D
Vikhrov, V
Vilardi, I
Wang, S
Yaschenko, S
Ye, H
Ye, Z
Yu, W
Zeiler, D
Zihlmann, B
Zupranski, P
AF Airapetian, A.
Akopov, N.
Akopov, Z.
Amarian, M.
Aschenauer, E. C.
Augustyniak, W.
Avakian, R.
Avetissian, A.
Avetisyan, E.
Ball, B.
Belostotski, S.
Bianchi, N.
Blok, H. P.
Boettcher, H.
Borissov, A.
Bowles, J.
Bryzgalov, V.
Burns, J.
Capiluppi, M.
Capitani, G. P.
Cisbani, E.
Ciullo, G.
Contalbrigo, M.
Dalpiaz, P. F.
Deconinck, W.
De Leo, R.
De Nardo, L.
De Sanctis, E.
Diefenthaler, M.
Di Nezza, P.
Dueren, M.
Ehrenfried, M.
Elbakian, G.
Ellinghaus, F.
Fabbri, R.
Fantoni, A.
Felawka, L.
Frullani, S.
Gabbert, D.
Gapienko, G.
Gapienko, V.
Garibaldi, F.
Gavrilov, G.
Gharibyan, V.
Giordano, F.
Gliske, S.
Guler, H.
Guzey, V.
Haan, S.
Hadjidakis, C.
Hartig, M.
Hasch, D.
Hill, G.
Hillenbrand, A.
Hoek, M.
Holler, Y.
Hristova, I.
Imazu, Y.
Ivanilov, A.
Jackson, H. E.
Jo, H. S.
Joosten, S.
Kaiser, R.
Karyan, G.
Keri, T.
Kinney, E.
Kisselev, A.
Korotkov, V.
Kozlov, V.
Kravchenko, P.
Lagamba, L.
Lamb, R.
Lapikas, L.
Lehmann, I.
Lenisa, P.
Ruiz, A. Lopez
Lorenzon, W.
Lu, X. -G.
Lu, X. -R.
Ma, B. -Q.
Mahon, D.
Makins, N. C. R.
Manaenkov, S. I.
Manfre, L.
Mao, Y.
Marianski, B.
de la Ossa, A. Martinez
Marukyan, H.
Miller, C. A.
Miyachi, Y.
Movsisyan, A.
Muccifora, V.
Murray, M.
Mussgiller, A.
Nappi, E.
Naryshkin, Y.
Nass, A.
Negodaev, M.
Nowak, W. -D.
Pappalardo, L. L.
Perez-Benito, R.
Raithel, M.
Reimer, P. E.
Reolon, A. R.
Riedl, C.
Rith, K.
Rosner, G.
Rostomyan, A.
Rubin, J.
Ryckbosch, D.
Salomatin, Y.
Schaefer, A.
Schnell, G.
Schueler, K. P.
Shanidze, R.
Shibata, T. -A.
Shutov, V.
Stancari, M.
Statera, M.
Steffens, E.
Steijger, J. J. M.
Stewart, J.
Stinzing, F.
Taroian, S.
Terkulov, A.
Trzcinski, A.
Tytgat, M.
Vandenbroucke, A.
Van Haarlem, Y.
Van Hulse, C.
Varanda, M.
Veretennikov, D.
Vikhrov, V.
Vilardi, I.
Wang, S.
Yaschenko, S.
Ye, H.
Ye, Z.
Yu, W.
Zeiler, D.
Zihlmann, B.
Zupranski, P.
CA HERMES Collaboration
TI Nuclear-mass dependence of azimuthal beam-helicity and beam-charge
asymmetries in deeply virtual Compton scattering
SO PHYSICAL REVIEW C
LA English
DT Article
ID GENERALIZED PARTON DISTRIBUTIONS; IMPACT PARAMETER SPACE; SPIN; HERA
AB The nuclear-mass dependence of azimuthal cross-section asymmetries with respect to charge and longitudinal polarization of the lepton beam is studied for hard exclusive electroproduction of real photons. The observed beam-charge and beam-helicity asymmetries are attributed to the interference between the Bethe-Heitler and the deeply virtual Compton scattering processes. For various nuclei, the asymmetries are extracted for both coherent and incoherent-enriched regions, which involve different (combinations of) generalized parton distributions. For both regions, the asymmetries are compared to those for a free proton, and no nuclear-mass dependence is found.
C1 [Airapetian, A.; Dueren, M.; Ehrenfried, M.; Keri, T.; Perez-Benito, R.; Yu, W.] Univ Giessen, Inst Phys, D-35392 Giessen, Germany.
[Jackson, H. E.; Reimer, P. E.] Argonne Natl Lab, Div Phys, Argonne, IL 60439 USA.
[De Leo, R.; Lagamba, L.; Nappi, E.; Vilardi, I.] Ist Nazl Fis Nucl, Sez Bari, I-70124 Bari, Italy.
[Ma, B. -Q.; Mao, Y.; Wang, S.; Ye, H.] Peking Univ, Sch Phys, Beijing 100871, Peoples R China.
[Ellinghaus, F.; Kinney, E.; de la Ossa, A. Martinez] Univ Colorado, Nucl Phys Lab, Boulder, CO 80309 USA.
[Airapetian, A.; Akopov, Z.; Avetisyan, E.; Borissov, A.; Deconinck, W.; De Nardo, L.; Gavrilov, G.; Giordano, F.; Hartig, M.; Holler, Y.; Mussgiller, A.; Rostomyan, A.; Schueler, K. P.; Varanda, M.; Ye, Z.; Zihlmann, B.] DESY, D-22603 Hamburg, Germany.
[Amarian, M.; Aschenauer, E. C.; Boettcher, H.; Fabbri, R.; Gabbert, D.; Guler, H.; Haan, S.; Hillenbrand, A.; Hristova, I.; Lu, X. -G.; Negodaev, M.; Nowak, W. -D.; Riedl, C.; Schnell, G.; Stewart, J.; Yaschenko, S.] DESY, D-15738 Zeuthen, Germany.
[Shutov, V.] Joint Inst Nucl Res, RU-141980 Dubna, Russia.
[Diefenthaler, M.; Mussgiller, A.; Nass, A.; Raithel, M.; Rith, K.; Shanidze, R.; Steffens, E.; Stinzing, F.; Yaschenko, S.; Zeiler, D.] Univ Erlangen Nurnberg, Inst Phys, D-91058 Erlangen, Germany.
[Capiluppi, M.; Ciullo, G.; Contalbrigo, M.; Dalpiaz, P. F.; Giordano, F.; Lenisa, P.; Pappalardo, L. L.; Stancari, M.; Statera, M.] Univ Ferrara, Ist Nazl Fis Nucl, Sez Ferrara, I-44100 Ferrara, Italy.
[Capiluppi, M.; Ciullo, G.; Contalbrigo, M.; Dalpiaz, P. F.; Giordano, F.; Lenisa, P.; Pappalardo, L. L.; Stancari, M.; Statera, M.] Univ Ferrara, Dipartimento Fis, I-44100 Ferrara, Italy.
[Bianchi, N.; Capitani, G. P.; De Sanctis, E.; Di Nezza, P.; Fantoni, A.; Hadjidakis, C.; Hasch, D.; Muccifora, V.; Reolon, A. R.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Gabbert, D.; Jo, H. S.; Joosten, S.; Ruiz, A. Lopez; Ryckbosch, D.; Schnell, G.; Tytgat, M.; Vandenbroucke, A.; Van Haarlem, Y.; Van Hulse, C.] Univ Ghent, Dept Subat & Radiat Phys, B-9000 Ghent, Belgium.
[Bowles, J.; Burns, J.; Hill, G.; Hoek, M.; Kaiser, R.; Keri, T.; Lehmann, I.; Mahon, D.; Murray, M.; Rosner, G.] Univ Glasgow, Dept Phys & Astron, Glasgow G12 8QQ, Lanark, Scotland.
[Diefenthaler, M.; Joosten, S.; Lamb, R.; Makins, N. C. R.; Rubin, J.] Univ Illinois, Dept Phys, Urbana, IL 61801 USA.
[Airapetian, A.; Ball, B.; Deconinck, W.; De Nardo, L.; Gliske, S.; Lorenzon, W.] Univ Michigan, Randall Lab Phys, Ann Arbor, MI 48109 USA.
[Kozlov, V.; Terkulov, A.] PN Lebedev Phys Inst, RU-117924 Moscow, Russia.
[Blok, H. P.; Lapikas, L.; Steijger, J. J. M.] Natl Inst Subat Phys Nikhef, NL-1009 DB Amsterdam, Netherlands.
[Belostotski, S.; Gavrilov, G.; Kisselev, A.; Kravchenko, P.; Manaenkov, S. I.; Naryshkin, Y.; Veretennikov, D.; Vikhrov, V.] Petersburg Nucl Phys Inst, RU-188300 Gatchina, Leningrad Reg, Russia.
[Bryzgalov, V.; Gapienko, G.; Gapienko, V.; Ivanilov, A.; Korotkov, V.; Salomatin, Y.] Inst High Energy Phys, RU-142281 Protvino, Moscow Region, Russia.
[Schaefer, A.] Univ Regensburg, Inst Theoret Phys, D-93040 Regensburg, Germany.
[Cisbani, E.; Frullani, S.; Garibaldi, F.; Manfre, L.] Ist Super Sanita, Ist Nazl Fis Nucl, Sez Roma 1, Grp Sanit & Phys Lab, I-00161 Rome, Italy.
[Felawka, L.; Gavrilov, G.; Miller, C. A.] TRIUMF, Vancouver, BC V6T 2A3, Canada.
[Imazu, Y.; Lu, X. -R.; Miyachi, Y.; Shibata, T. -A.] Tokyo Inst Technol, Dept Phys, Tokyo 152, Japan.
[Blok, H. P.] Vrije Univ Amsterdam, Dept Phys, NL-1081 HV Amsterdam, Netherlands.
[Augustyniak, W.; Marianski, B.; Trzcinski, A.; Zupranski, P.] Andrzej Soltan Inst Nucl Studies, PL-00689 Warsaw, Poland.
[Akopov, N.; Avakian, R.; Avetissian, A.; Elbakian, G.; Gharibyan, V.; Karyan, G.; Marukyan, H.; Movsisyan, A.; Taroian, S.] Yerevan Phys Inst, Yerevan 375036, Armenia.
RP Airapetian, A (reprint author), Univ Giessen, Inst Phys, D-35392 Giessen, Germany.
EM klaus.rith@desy.de
RI Cisbani, Evaristo/C-9249-2011; Deconinck, Wouter/F-4054-2012; Gavrilov,
Gennady/C-6260-2013; Reimer, Paul/E-2223-2013; Negodaev,
Mikhail/A-7026-2014; Taroian, Sarkis/E-1668-2014; Kozlov,
Valentin/M-8000-2015; Terkulov, Adel/M-8581-2015;
OI Cisbani, Evaristo/0000-0002-6774-8473; Lagamba,
Luigi/0000-0002-0233-9812; Guzey, Vadim/0000-0002-2393-8507; Deconinck,
Wouter/0000-0003-4033-6716
FU DESY; FWO-Flanders; IWT, Belgium; Natural Sciences and Engineering
Research Council of Canada; National Natural Science Foundation of
China; Alexander von Humboldt Stiftung; German Bundesmin-isterium fur
Bildung und Forschung (BMBF); Deutsche Forschungsgemeinschaft (DFG);
Italian Istituto Nazionale di Fisica Nucleare (INFN); MEXT; JSPS; G-COE
of Japan; Dutch Foundation for Fundamenteel Onderzoek der Materie (FOM);
UK Engineering and Physical Sciences Research Council,; Science and
Technology Facilities Council; Scottish Universities Physics Alliance;
US Department of Energy (DOE); National Science Foundation (NSF);
Russian Academy of Science; Russian Federal Agency for Science and
Innovations; Ministry of Economy; Ministry of Education and Science of
Armenia; European Community-Research Infrastructure Activity
[RII3-CT-2004-506078]
FX We thank M. Diehl, S. Liuti, and M. Siddikov for many interesting
discussions. We gratefully acknowledge the DESY management for its
support and the staff at DESY and the collaborating institutions for
their significant effort. This work was supported by the FWO-Flanders
and IWT, Belgium; the Natural Sciences and Engineering Research Council
of Canada; the National Natural Science Foundation of China; the
Alexander von Humboldt Stiftung; the German Bundesmin-isterium fur
Bildung und Forschung (BMBF); the Deutsche Forschungsgemeinschaft (DFG);
the Italian Istituto Nazionale di Fisica Nucleare (INFN); the MEXT,
JSPS, and G-COE of Japan; the Dutch Foundation for Fundamenteel
Onderzoek der Materie (FOM); the UK Engineering and Physical Sciences
Research Council, the Science and Technology Facilities Council, and the
Scottish Universities Physics Alliance; the US Department of Energy
(DOE) and the National Science Foundation (NSF); the Russian Academy of
Science and the Russian Federal Agency for Science and Innovations; the
Ministry of Economy and the Ministry of Education and Science of
Armenia; and the European Community-Research Infrastructure Activity
under the FP6 "Structuring the European Research Area" program
(HadronPhysics, Contract No. RII3-CT-2004-506078).
NR 55
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U1 1
U2 6
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 035202
DI 10.1103/PhysRevC.81.035202
PG 10
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400069
ER
PT J
AU Alver, B
Back, BB
Baker, MD
Ballintijn, M
Barton, DS
Betts, RR
Bickley, AA
Bindel, R
Busza, W
Carroll, A
Chai, Z
Decowski, MP
Garcia, E
Gburek, T
George, N
Gulbrandsen, K
Halliwell, C
Hamblen, J
Hauer, M
Henderson, C
Hofman, DJ
Hollis, RS
Holynski, R
Holzman, B
Iordanova, A
Johnson, E
Kane, JL
Khan, N
Kulinich, P
Kuo, CM
Li, W
Lin, T
Loizides, C
Manly, S
Mignerey, AC
Nouicer, R
Olszewski, A
Pak, R
Reed, C
Roland, C
Roland, G
Sagerer, J
Seals, H
Sedykh, I
Smith, CE
Stankiewicz, MA
Steinberg, P
Stephans, GSF
Sukhanov, A
Tonjes, MB
Trzupek, A
Vale, C
van Nieuwenhuizen, GJ
Vaurynovich, SS
Verdier, R
Veres, GI
Walters, P
Wenger, E
Wolfs, FLH
Wosiek, B
Wozniak, K
Wyslouch, B
AF Alver, B.
Back, B. B.
Baker, M. D.
Ballintijn, M.
Barton, D. S.
Betts, R. R.
Bickley, A. A.
Bindel, R.
Busza, W.
Carroll, A.
Chai, Z.
Decowski, M. P.
Garcia, E.
Gburek, T.
George, N.
Gulbrandsen, K.
Halliwell, C.
Hamblen, J.
Hauer, M.
Henderson, C.
Hofman, D. J.
Hollis, R. S.
Holynski, R.
Holzman, B.
Iordanova, A.
Johnson, E.
Kane, J. L.
Khan, N.
Kulinich, P.
Kuo, C. M.
Li, W.
Lin, T.
Loizides, C.
Manly, S.
Mignerey, A. C.
Nouicer, R.
Olszewski, A.
Pak, R.
Reed, C.
Roland, C.
Roland, G.
Sagerer, J.
Seals, H.
Sedykh, I.
Smith, C. E.
Stankiewicz, M. A.
Steinberg, P.
Stephans, G. S. F.
Sukhanov, A.
Tonjes, M. B.
Trzupek, A.
Vale, C.
van Nieuwenhuizen, G. J.
Vaurynovich, S. S.
Verdier, R.
Veres, G. I.
Walters, P.
Wenger, E.
Wolfs, F. L. H.
Wosiek, B.
Wozniak, K.
Wyslouch, B.
CA PHOBOS Collaboration
TI Non-flow correlations and elliptic flow fluctuations in Au plus Au
collisions at root s(NN)=200 GeV
SO PHYSICAL REVIEW C
LA English
DT Article
ID COLLABORATION
AB This article presents results on event-by-event elliptic flow fluctuations in Au+Au collisions at root s(NN) = 200 GeV, where the contribution from non-flow correlations has been subtracted. An analysis method is introduced to measure non-flow correlations, relying on the assumption that non-flow correlations are most prominent at short ranges (vertical bar Delta eta vertical bar<2). Assuming that non-flow correlations are of the order that is observed in p+p collisions for long-range correlations (vertical bar Delta eta vertical bar>2), relative elliptic flow fluctuations of approximately 30-40% are observed. These results are consistent with predictions based on spatial fluctuations of the participating nucleons in the initial nuclear overlap region. It is found that the long-range non-flow correlations in Au+Au collisions would have to be more than an order of magnitude stronger compared to the p+p data to lead to the observed azimuthal anisotropy fluctuations with no intrinsic elliptic flow fluctuations.
C1 [Alver, B.; Ballintijn, M.; Busza, W.; Decowski, M. P.; Gulbrandsen, K.; Henderson, C.; Kane, J. L.; Kulinich, P.; Li, W.; Loizides, C.; Reed, C.; Roland, C.; Roland, G.; Stephans, G. S. F.; Vale, C.; van Nieuwenhuizen, G. J.; Vaurynovich, S. S.; Verdier, R.; Veres, G. I.; Wenger, E.; Wyslouch, B.] MIT, Nucl Sci Lab, Cambridge, MA 02139 USA.
[Back, B. B.] Argonne Natl Lab, Div Phys, Argonne, IL 60439 USA.
[Baker, M. D.; Barton, D. S.; Carroll, A.; Chai, Z.; George, N.; Hauer, M.; Holzman, B.; Nouicer, R.; Pak, R.; Seals, H.; Sedykh, I.; Stankiewicz, M. A.; Steinberg, P.; Sukhanov, A.] Brookhaven Natl Lab, Dept Phys, Upton, NY 11973 USA.
[Baker, M. D.; Barton, D. S.; Carroll, A.; Chai, Z.; George, N.; Hauer, M.; Holzman, B.; Nouicer, R.; Pak, R.; Seals, H.; Sedykh, I.; Stankiewicz, M. A.; Steinberg, P.; Sukhanov, A.] Brookhaven Natl Lab, CA Dept, Upton, NY 11973 USA.
[Gburek, T.; Holynski, R.; Olszewski, A.; Trzupek, A.; Wosiek, B.; Wozniak, K.] Inst Nucl Phys PAN, Krakow, Poland.
[Kuo, C. M.; Lin, T.] Natl Cent Univ, Dept Phys, Chungli 32054, Taiwan.
[Betts, R. R.; Garcia, E.; Halliwell, C.; Hofman, D. J.; Hollis, R. S.; Iordanova, A.; Nouicer, R.; Sagerer, J.; Smith, C. E.] Univ Illinois, Dept Phys, Chicago, IL 60607 USA.
[Bickley, A. A.; Bindel, R.; Mignerey, A. C.; Tonjes, M. B.] Univ Maryland, Dept Chem, College Pk, MD 20742 USA.
[Hamblen, J.; Johnson, E.; Khan, N.; Manly, S.; Walters, P.; Wolfs, F. L. H.] Univ Rochester, Dept Phys & Astron, Rochester, NY 14627 USA.
RP Alver, B (reprint author), MIT, Nucl Sci Lab, Cambridge, MA 02139 USA.
RI Decowski, Patrick/A-4341-2011; Mignerey, Alice/D-6623-2011
FU US DOE [DE-AC02-98CH10886, DE-FG02-93ER40802, DE-FG02-94ER40818,
DE-FG02-94ER40865, DE-FG02-99ER41099, DE-AC02-06CH11357]; US NSF
[9603486, 0072204, 0245011]; Polish MNiSW [N N202 282234]; NSC of Taiwan
[NSC 89-2112-M-008-024]; Hungarian OTKA [F049823]
FX This work was partially supported by US DOE Grants DE-AC02-98CH10886,
DE-FG02-93ER40802, DE-FG02-94ER40818, DE-FG02-94ER40865,
DE-FG02-99ER41099, and DE-AC02-06CH11357; by US NSF Grants 9603486,
0072204, and 0245011; by Polish MNiSW Grant N N202 282234 (2008-2010);
by NSC of Taiwan Contract NSC 89-2112-M-008-024; and by Hungarian OTKA
Grant (F049823).
NR 24
TC 42
Z9 42
U1 0
U2 0
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 034915
DI 10.1103/PhysRevC.81.034915
PG 8
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400067
ER
PT J
AU Bzdak, A
Wozniak, K
AF Bzdak, Adam
Wozniak, Krzysztof
TI Forward-backward multiplicity fluctuations in heavy nuclei collisions in
the wounded nucleon model
SO PHYSICAL REVIEW C
LA English
DT Article
ID HIGH-ENERGIES; QUARK; DISTRIBUTIONS
AB We use the wounded nucleon model to study the forward-backward multiplicity fluctuations measured by the PHOBOS Collaboration in Au + Au collisions at root s(NN) = 200 GeV. The enhancement of forward-backward fluctuations in Au + Au collisions with respect to the elementary p + p interactions is explained in this model by the asymmetric shape of the pseudorapidity density of produced particles from a single wounded nucleon and the fluctuations of the number of wounded nucleons in the colliding nuclei. The wounded nucleon model describes these experimental data better than the HIJING, AMPT, or UrQMD models do.
C1 [Bzdak, Adam; Wozniak, Krzysztof] Polish Acad Sci, Inst Nucl Phys, PL-31342 Krakow, Poland.
[Bzdak, Adam] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
RP Bzdak, A (reprint author), Polish Acad Sci, Inst Nucl Phys, Radzikowskiego 152, PL-31342 Krakow, Poland.
EM Adam.Bzdak@ifj.edu.pl; Krzysztof.Wozniak@ifj.edu.pl
FU Polish Ministry of Science and Higher Education [N202 125437, N202 034
32/0918, N202 282234]; US Department of Energy [DE-AC02-05CH11231];
Foundation for Polish Science (KOLUMB program)
FX We thank the PHOBOS Collaboration for the access to the simulation data,
which enabled us to calculate the model predictions most compatible with
the experimental conditions. Discussions with A. Bialas and K.
Fialkowski are highly appreciated. This investigation was supported in
part by the Polish Ministry of Science and Higher Education, Grant Nos.
N202 125437, N202 034 32/0918, and N202 282234 (2008-2010), and by the
director, Office of Energy Research, Office of High Energy and Nuclear
Physics, Divisions of Nuclear Physics, of the US Department of Energy
under Contract No. DE-AC02-05CH11231. AB acknowledges support from the
Foundation for Polish Science (KOLUMB program).
NR 26
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9985
EI 2469-9993
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 034908
DI 10.1103/PhysRevC.81.034908
PG 7
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400060
ER
PT J
AU Bzdak, A
Koch, V
Liao, JF
AF Bzdak, Adam
Koch, Volker
Liao, Jinfeng
TI Remarks on possible local parity violation in heavy ion collisions
SO PHYSICAL REVIEW C
LA English
DT Article
AB In this Rapid Communication we discuss some observations concerning the possible local parity violation in heavy ion collisions recently announced by the STAR Collaboration. Our results can be summarized as follows (i) the measured correlations for same-charge pairs are mainly in-plane and not out of plane, (ii) if there is a parity-violating component it is large and surprisingly of the same magnitude as the background, and (iii) the observed dependence of the signal on the transverse momentum (p(t)) is consistent with a soft boost in p(t) and thus in line with expectations from the proposed chiral magnetic effect.
C1 [Bzdak, Adam; Koch, Volker; Liao, Jinfeng] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
[Bzdak, Adam] Polish Acad Sci, Inst Nucl Phys, PL-31342 Krakow, Poland.
RP Bzdak, A (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, 1 Cyclotron Rd MS70R0319, Berkeley, CA 94720 USA.
EM ABzdak@lbl.gov; VKoch@lbl.gov; JLiao@lbl.gov
FU Office of Energy Research, Office of High Energy and Nuclear Physics,
Divisions of Nuclear Physics, of the US Department of Energy
[DE-AC02-05CH11231]; Polish Ministry of Science, and Higher Education
[N202 125437, N202 034 32/0918]; Foundation for Polish Science
FX We thank D. Kharzeev, L. McLerran, S. Voloshin, and F. Wang for useful
discussions. This work was supported in part by the Director, Office of
Energy Research, Office of High Energy and Nuclear Physics, Divisions of
Nuclear Physics, of the US Department of Energy under Contract No.
DE-AC02-05CH11231 and by the Polish Ministry of Science, and Higher
Education, Grant Nos. N202 125437 and N202 034 32/0918. A. B. also
acknowledges support from the Foundation for Polish Science (KOLUMB
program).
NR 7
TC 61
Z9 61
U1 0
U2 1
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 031901
DI 10.1103/PhysRevC.81.031901
PG 4
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400005
ER
PT J
AU Chang, L
Liu, YX
Roberts, CD
Shi, YM
Sun, WM
Zong, HS
AF Chang, Lei
Liu, Yu-Xin
Roberts, Craig D.
Shi, Yuan-Mei
Sun, Wei-Min
Zong, Hong-Shi
TI Vacuum pseudoscalar susceptibility
SO PHYSICAL REVIEW C
LA English
DT Article
ID QCD; NUCLEON; VECTOR; DYSON; CONFINEMENT; COUPLINGS; EQUATIONS;
SPECTRUM; PHYSICS; THEOREM
AB We derive a novel model-independent result for the pion susceptibility in QCD via the isovector-pseudoscalar vacuum polarization. In the neighbourhood of the chiral limit, the pion susceptibility can be expressed as a sum of two independent terms. The first expresses the pion-pole contribution. The second is identical to the vacuum chiral susceptibility, which describes the response of QCD's ground state to a fluctuation in the current-quark mass. In this result one finds a straightforward explanation of a mismatch between extant estimates of the pion susceptibility.
C1 [Chang, Lei] Inst Appl Phys & Computat Math, Beijing 100094, Peoples R China.
[Liu, Yu-Xin; Roberts, Craig D.] Peking Univ, Dept Phys, Beijing 100871, Peoples R China.
[Liu, Yu-Xin] Peking Univ, State Key Lab Nucl Phys & Technol, Beijing 100871, Peoples R China.
[Liu, Yu-Xin] Natl Lab Heavy Ion Accelerator, Ctr Theoret Nucl Phys, Lanzhou 730000, Peoples R China.
[Roberts, Craig D.] Argonne Natl Lab, Div Phys, Argonne, IL 60439 USA.
[Shi, Yuan-Mei] Nanjing Xiaozhuang Coll, Dept Phys, Nanjing 211171, Peoples R China.
[Sun, Wei-Min; Zong, Hong-Shi] Nanjing Univ, Dept Phys, Nanjing 210093, Peoples R China.
[Sun, Wei-Min; Zong, Hong-Shi] Joint Ctr Particle Nucl Phys & Cosmol, Nanjing 210093, Peoples R China.
RP Chang, L (reprint author), Inst Appl Phys & Computat Math, Beijing 100094, Peoples R China.
OI Roberts, Craig/0000-0002-2937-1361
FU National Natural Science Foundation of China [10425521, 10675007,
10705002, 10775069, 10935001]; Major State Basic Research Development
Program [G2007CB815000]; United States Department of Energy, Office of
Nuclear Physics [DE-AC02-06CH11357]
FX This work was supported by the National Natural Science Foundation of
China, under Contract Nos. 10425521, 10675007, 10705002, 10775069, and
10935001; the Major State Basic Research Development Program under
Contract No. G2007CB815000; and the United States Department of Energy,
Office of Nuclear Physics, Contract No. DE-AC02-06CH11357.
NR 31
TC 17
Z9 17
U1 1
U2 4
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 032201
DI 10.1103/PhysRevC.81.032201
PG 4
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400008
ER
PT J
AU Daugas, JM
Faul, T
Grawe, H
Pfutzner, M
Grzywacz, R
Lewitowicz, M
Achouri, NL
Angelique, JC
Baiborodin, D
Bentida, R
Beraud, R
Borcea, C
Bingham, CR
Catford, WN
Emsallem, A
de France, G
Grzywacz, KL
Lemmon, RC
Jimenez, MJL
Santos, FD
Regan, PH
Rykaczewski, K
Sauvestre, JE
Sawicka, M
Stanoiu, M
Sieja, K
Nowacki, F
AF Daugas, J. M.
Faul, T.
Grawe, H.
Pfuetzner, M.
Grzywacz, R.
Lewitowicz, M.
Achouri, N. L.
Angelique, J. C.
Baiborodin, D.
Bentida, R.
Beraud, R.
Borcea, C.
Bingham, C. R.
Catford, W. N.
Emsallem, A.
de France, G.
Grzywacz, K. L.
Lemmon, R. C.
Jimenez, M. J. Lopez
Santos, F. de Oliveira
Regan, P. H.
Rykaczewski, K.
Sauvestre, J. E.
Sawicka, M.
Stanoiu, M.
Sieja, K.
Nowacki, F.
TI Low-lying isomeric levels in Cu-75
SO PHYSICAL REVIEW C
LA English
DT Article
ID MU-S-ISOMERS; NI-78; ISOTOPES; NUCLEI
AB Isomeric low-lying states were identified and investigated in the Cu-75 nucleus. Two states at 61.8(5)- and 128.3(7)-keV excitation energies with half-lives of 370(40)- and 170(15)-ns were assigned as Cu-75m1 and Cu-75m2, respectively. The measured half-lives combined with the recent spin assignment of the ground state allow one to deduce tentatively spin and parity of the two isomers and the dominant multipolarities of the isomeric transitions with respect to the systematics of the Cu isotopes. Shell-model calculations using an up-to-date effective interaction reproduce the evolution of the 1/2(-), 3/2(-), and 5/2(-) states for the neutron-rich odd-mass Cu isotopes when filling the nu g(9/2). The results indicate a significant change in the nuclear structure in this region, where a single-particle 5/2(-) state coexists with more and more collective 3/2(-) and 1/2(-) levels at low excitation energies.
C1 [Daugas, J. M.; Faul, T.; Sauvestre, J. E.] CEA, DAM, DIF, F-91297 Arpajon, France.
[Grawe, H.; Sieja, K.] GSI Hemholtzzentrum Schwerionenforsch, D-64220 Darmstadt, Germany.
[Pfuetzner, M.; Sawicka, M.] Warsaw Univ, IEP, PL-00681 Warsaw, Poland.
[Grzywacz, R.; Bingham, C. R.; Grzywacz, K. L.] Univ Tennessee, Dept Phys & Astron, Knoxville, TN 37996 USA.
[Grzywacz, R.; Rykaczewski, K.] Oak Ridge Natl Lab, Div Phys, Oak Ridge, TN 37831 USA.
[Lewitowicz, M.; de France, G.; Jimenez, M. J. Lopez; Santos, F. de Oliveira; Stanoiu, M.] CEA DSM CNRS IN2P3, F-14076 Caen 5, France.
[Achouri, N. L.; Angelique, J. C.] CNRS, IN2P3, UMR 6534, Phys Corpusculaire Lab,ENSICAEN, F-14050 Caen, France.
[Baiborodin, D.] Acad Sci Czech Republic, Inst Nucl Phys, CZ-25068 Rez, Czech Republic.
[Achouri, N. L.; Angelique, J. C.] Univ Caen, F-14050 Caen, France.
[Bentida, R.; Beraud, R.; Emsallem, A.] Univ Lyon 1, CNRS, Inst Phys Nucl Lyon, IN2P3, F-69622 Villeurbanne, France.
[Borcea, C.; Stanoiu, M.] Horia Hulubei Natl Inst Phys & Nucl Engn, Bucharest, Romania.
[Catford, W. N.; Regan, P. H.] Univ Surrey, Dept Phys, Guildford GU2 5XH, Surrey, England.
[Lemmon, R. C.] CCLRC Daresbury Lab, Warrington WA4 4AD, Cheshire, England.
[Sieja, K.] Tech Univ Darmstadt, Inst Kernphys, D-64289 Darmstadt, Germany.
[Sieja, K.; Nowacki, F.] Inst Pluridisciplinaire Hubert Curien, F-67037 Strasbourg, France.
RP Daugas, JM (reprint author), CEA, DAM, DIF, F-91297 Arpajon, France.
RI sauvestre, jean-etienne/C-8819-2009; Jones, Katherine/B-8487-2011
OI Jones, Katherine/0000-0001-7335-1379
FU POLONIUM [98275]; KBN [2P03B03615]; US Department of Energy
[DE-AC05-96OR22464]; University of Surrey and GANIL and Engineering and
Physical Sciences Research Council (United Kingdom) [98029]; Helmholtz
International center (HIC); DFG (German Research Foundation) [SFB 634]
FX We are grateful for the technical support provided to us by staff at the
GANIL facility. We gratefully thank the Niels Bohr Institute
(Copenhagen, Denmark) for providing a clover Ge detector. This work was
partially supported by the POLONIUM project (Grant No. 98275), KBN
(Grant No. 2P03B03615), US Department of Energy (Contract No.
DE-AC05-96OR22464), and the Alliance (Grant No. 98029) between
University of Surrey and GANIL and Engineering and Physical Sciences
Research Council (United Kingdom). K. S. was supported by the state of
Hesse within the Helmholtz International center for FAIR (HIC for FAIR)
and the DFG (German Research Foundation) under Grant No. SFB 634.
NR 28
TC 41
Z9 41
U1 0
U2 5
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 034304
DI 10.1103/PhysRevC.81.034304
PG 6
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400020
ER
PT J
AU Dusling, K
Moore, GD
Teaney, D
AF Dusling, Kevin
Moore, Guy D.
Teaney, Derek
TI Radiative energy loss and v(2) spectra for viscous hydrodynamics
SO PHYSICAL REVIEW C
LA English
DT Article
ID QUARK-GLUON PLASMA; HEAVY-ION COLLISIONS; MULTIPLE PARTON SCATTERING;
COLOR GLASS CONDENSATE; COMPLEX FLUIDS; ELLIPTIC FLOW; GENERAL
FORMALISM; THERMODYNAMICS; DYNAMICS; TRANSPORT
AB This work investigates the first correction to the equilibrium phase-space distribution and its effects on spectra and elliptic flow in heavy-ion collisions. We show that the departure from equilibrium on the freeze-out surface is the largest part of the viscous corrections to v(2)(p(T)). However, the momentum dependence of the departure from equilibrium is not known a priori, and it is probably not proportional to p(T)(2) as has been assumed in hydrodynamic simulations. At high momentum in weakly coupled plasmas, it is determined by the rate of radiative energy loss and is proportional to p(T)(3/2). The weaker p(T) dependence leads to straighter v(2)(p(T)) curves at the same value of viscosity. Furthermore, the departure from equilibrium is generally species dependent. A species-dependent equilibration rate, with baryons equilibrating faster than mesons, can explain "constituent quark scaling" without invoking coalescence models.
C1 [Dusling, Kevin] Brookhaven Natl Lab, Dept Phys, Upton, NY 11973 USA.
[Moore, Guy D.] McGill Univ, Dept Phys, Montreal, PQ H3A 2T8, Canada.
[Teaney, Derek] SUNY Stony Brook, Dept Phys & Astron, Stony Brook, NY 11794 USA.
RP Dusling, K (reprint author), Brookhaven Natl Lab, Dept Phys, Bldg 510A, Upton, NY 11973 USA.
OI Dusling, Kevin/0000-0001-9598-0416
FU US Department of Energy [DE-AC02-98CH10886]; US DOE OJI
[DE-FG-02-08ER4154]; Sloan Foundation; Alexander von Humboldt
Foundation; Natural Sciences and Engineering Research Council of Canada
FX K.D. is supported by the US Department of Energy Grant No.
DE-AC02-98CH10886. D.T. thanks Paul Sorenson, Raimond Snellings, and
Jiangyong Jia for informative discussions. D.T. is supported in part by
the US DOE OJI Grant No. DE-FG-02-08ER4154 and the Sloan Foundation.
G.M. thanks Paul Romatschke for useful conversations, the physics
department at the Universidad Autonoma Madrid for hospitality while this
work was completed, and the Alexander von Humboldt Foundation for its
support. G.M. was also supported in part by the Natural Sciences and
Engineering Research Council of Canada.
NR 75
TC 87
Z9 88
U1 0
U2 0
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9985
EI 2469-9993
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 034907
DI 10.1103/PhysRevC.81.034907
PG 17
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400059
ER
PT J
AU Esbensen, H
AF Esbensen, Henning
TI Complete fusion of Be-9 with spherical targets
SO PHYSICAL REVIEW C
LA English
DT Article
ID HEAVY-ION REACTIONS; COUPLED EQUATIONS; SCATTERING; REDUCTION; NUCLEI
AB The complete fusion of Be-9 with Sm-144 and Pb-208 targets is calculated in the coupled-channels approach. The calculations include couplings among the 3/2-, 5/2-, and 7/2-states in the K = 3/2 ground-state rotational band of Be-9. It is shown that the B(E2) values for the excitation of these states are accurately described in the rotor model. The interaction of the strongly deformed Be-9 nucleus with a spherical target is calculated using the double-folding technique and the effective M3Y interaction, which is supplemented with a repulsive term that is adjusted to optimize the fit to the data for the Sm-144 target. The complete fusion is described by ingoing-wave boundary conditions. The decay of the unbound excited states in Be-9 is considered explicitly in the calculations by using complex excitation energies. The model gives an excellent account of the complete fusion (CF) data for Be-9+ Sm-144, and the cross sections for the decay of the excited states are in surprisingly good agreement with the incomplete fusion (ICF) data. Similar calculations for Be-9 + Pb-208 explain the total fusion data at high energies but fail to explain the CF data, which are suppressed by 20%, and the calculated cross section for the decay of excited states is a factor of 3 smaller than the ICF data at high energies. Possible reasons for these discrepancies are discussed.
C1 Argonne Natl Lab, Div Phys, Argonne, IL 60439 USA.
RP Esbensen, H (reprint author), Argonne Natl Lab, Div Phys, Argonne, IL 60439 USA.
EM esbensen@phy.anl.gov
FU US Department of Energy, Office of Nuclear Physics [DE-AC02-06CH11357]
FX This work was supported by the US Department of Energy, Office of
Nuclear Physics, under Contract No. DE-AC02-06CH11357.
NR 20
TC 12
Z9 12
U1 0
U2 1
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2469-9985
EI 2469-9993
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 034606
DI 10.1103/PhysRevC.81.034606
PG 8
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400045
ER
PT J
AU Fotiades, N
Nelson, RO
Devlin, M
AF Fotiades, N.
Nelson, R. O.
Devlin, M.
TI First 3(-) excited state of Fe-56
SO PHYSICAL REVIEW C
LA English
DT Article
ID SCATTERING; LEVEL
AB There is no reliable evidence for the existence of the 3.076 MeV (3(-)) level adopted in the ENSDF evaluation for Fe-56 although it has been reported in a few experiments. Previous reports of the observation of this level appear to be based on an incorrect assignment in early (e, e') work. Recent neutron inelastic scattering measurements by Demidov et al. [Phys. At. Nucl. 67, 1884, (2004)] show that the assigned gamma-ray decay of this state does not occur at a level consistent with known properties of inelastic scattering. In the present work the Fe-56( n, n'gamma) reaction was used to populate excited states in Fe-56. Neutrons in the energy range from 1 to 250 MeV were provided by the pulsed neutron source of the Los Alamos Neutron Science Center's WNR facility. Deexciting gamma rays were detected with the GEANIE spectrometer, a Compton suppressed array of 26 Ge detectors. The gamma-gamma data obtained with GEANIE were used to establish coincidence relations between transitions. All previously reported levels up to E-x = 3.6 MeV excitation energy were observed except for the 3.076 MeV (3(-)) level. The 991- and 2229-keV transitions, previously reported to deexcite this level, were not observed in the gamma-gamma coincidence data obtained in the present experiment. The present work supports the assignment of the 4509.6 keV level as the first 3(-) excited state in Fe-56 by observation of two previously known transitions deexciting this state.
C1 [Fotiades, N.; Nelson, R. O.; Devlin, M.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Fotiades, N (reprint author), Los Alamos Natl Lab, POB 1663, Los Alamos, NM 87545 USA.
EM fotia@lanl.gov
RI Devlin, Matthew/B-5089-2013;
OI Devlin, Matthew/0000-0002-6948-2154; Fotiadis,
Nikolaos/0000-0003-1410-3871
FU US Department of Energy (DOE) by the Los Alamos National Security, LLC,
Los Alamos National Laboratory [DE-AC52-06NA25396]
FX This work was performed under the auspices of the US Department of
Energy (DOE) by the Los Alamos National Security, LLC, Los Alamos
National Laboratory, under Contract No. DE-AC52-06NA25396. This work has
benefited from use of the LANSCE accelerator facility supported under
DOE Contract No. DE-AC52-06NA25396.
NR 14
TC 3
Z9 3
U1 0
U2 1
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 037304
DI 10.1103/PhysRevC.81.037304
PG 3
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400086
ER
PT J
AU Girlanda, L
Pastore, S
Schiavilla, R
Viviani, M
AF Girlanda, L.
Pastore, S.
Schiavilla, R.
Viviani, M.
TI Relativity constraints on the two-nucleon contact interaction
SO PHYSICAL REVIEW C
LA English
DT Article
ID EFFECTIVE-FIELD-THEORY; POINCARE INVARIANCE CONSTRAINTS; MONTE-CARLO
CALCULATIONS; NUCLEAR-FORCES; CHIRAL LAGRANGIANS; SYSTEMS; HE-4; H-3
AB We construct the most general, relativistically invariant, contact Lagrangian at order Q(2) in the power counting, with Q denoting the low momentum scale. A complete, but nonminimal, set of (contact) interaction terms is identified, which upon nonrelativistic reduction generate two leading independent operator combinations of order Q(0) and seven subleading ones of order Q(2)-a result derived previously in the heavy-baryon formulation of effective field theories (EFTs). We show that Poincare covariance of the theory requires that additional terms with fixed coefficients be included, to describe the two-nucleon potential in reference frames other than the center-of-mass frame. These terms will contribute in systems with mass numberA > 2, and their impact on EFT calculations of binding energies and scattering observables in these systems should be studied.
C1 [Girlanda, L.] Univ Pisa, Dept Phys, I-56127 Pisa, Italy.
[Girlanda, L.; Viviani, M.] Ist Nazl Fis Nucl, I-56127 Pisa, Italy.
[Pastore, S.; Schiavilla, R.] Old Dominion Univ, Dept Phys, Norfolk, VA 23529 USA.
[Schiavilla, R.] Jefferson Lab, Newport News, VA 23606 USA.
RP Girlanda, L (reprint author), Univ Pisa, Dept Phys, I-56127 Pisa, Italy.
OI Girlanda, Luca/0000-0002-5560-005X
FU US Department of Energy, Office of Nuclear Physics [DE-AC05-06OR23177]
FX One of the authors (R.S.) would like to thank the Physics Department of
the University of Pisa, the INFN Pisa branch, and especially the Pisa
group for the support and warm hospitality extended to him on several
occasions. The work of R.S. is supported by the US Department of Energy,
Office of Nuclear Physics, under Contract No. DE-AC05-06OR23177.
NR 31
TC 19
Z9 19
U1 0
U2 0
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 034005
DI 10.1103/PhysRevC.81.034005
PG 9
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400014
ER
PT J
AU Koch, V
Schuster, T
AF Koch, Volker
Schuster, Tim
TI Energy dependence of K/pi fluctuations in relativistic heavy-ion
collisions
SO PHYSICAL REVIEW C
LA English
DT Article
ID BY-EVENT FLUCTUATIONS; TRANSVERSE-MOMENTUM
AB In this article we will discuss the energy dependence of particle ratio fluctuations in heavy-ion collisions. We study how the inherent multiplicity dependence of ratio fluctuations is reflected in the excitation function of the dynamical fluctuations. Specifically, we will show that the observed excitation function of dynamical K/pi fluctuations is consistent with the expected dependence on the number of accepted pions and kaons in both the STAR and the NA49 experiments.
C1 [Koch, Volker] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Nucl Sci, Berkeley, CA 94720 USA.
[Schuster, Tim] Goethe Univ Frankfurt, Dept Phys, Frankfurt, Germany.
RP Koch, V (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, Div Nucl Sci, Berkeley, CA 94720 USA.
EM vkoch@lbl.gov; Tim.Schuster@cern.ch
FU Nuclear Theory (INT) in Seattle, WA; US Department of Energy
[DE-AC02-05CH11231]; Deutsche Forschungsgemeinschaft (DFG); Helmholtz
Research School on Quark Matter Studies
FX The authors thank G. Westfall and R. Stock for useful discussions. This
work was initiated during the Program "The QCD Critical Point" at the
Institute for Nuclear Theory (INT) in Seattle, WA. The authors thank the
INT for the hospitality during this program. This work is supported by
the director of the Office of Energy Research, Office of High Energy and
Nuclear Physics, Divisions of Nuclear Physics, of the US Department of
Energy under Contract No. DE-AC02-05CH11231. The authors also
acknowledge support by the Deutsche Forschungsgemeinschaft (DFG) and the
Helmholtz Research School on Quark Matter Studies.
NR 27
TC 18
Z9 18
U1 0
U2 1
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 034910
DI 10.1103/PhysRevC.81.034910
PG 7
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400062
ER
PT J
AU Liu, SH
Hamilton, JH
Ramayya, AV
Covello, A
Gargano, A
Itaco, N
Luo, YX
Rasmussen, JO
Hwang, JK
Daniel, AV
Ter-Akopian, GM
Zhu, SJ
Ma, WC
AF Liu, S. H.
Hamilton, J. H.
Ramayya, A. V.
Covello, A.
Gargano, A.
Itaco, N.
Luo, Y. X.
Rasmussen, J. O.
Hwang, J. K.
Daniel, A. V.
Ter-Akopian, G. M.
Zhu, S. J.
Ma, W. C.
TI Comment on "High spin structure of the neutron-rich nuclei I-137 and
Cs-139" Reply
SO PHYSICAL REVIEW C
LA English
DT Letter
C1 [Liu, S. H.; Hamilton, J. H.; Ramayya, A. V.; Luo, Y. X.; Hwang, J. K.; Daniel, A. V.] Vanderbilt Univ, Dept Phys & Astron, Nashville, TN 37235 USA.
[Covello, A.; Itaco, N.] Dipartimento Sci Fisiche, I-80126 Naples, Italy.
[Covello, A.; Gargano, A.; Itaco, N.] Ist Nazl Fis Nucl, I-80126 Naples, Italy.
[Luo, Y. X.; Rasmussen, J. O.] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
[Daniel, A. V.; Ter-Akopian, G. M.] JINR, Flerov Lab Nucl React, Dubna, Russia.
[Zhu, S. J.] Tsinghua Univ, Dept Phys, Beijing 100084, Peoples R China.
[Ma, W. C.] Mississippi State Univ, Dept Phys & Astron, Mississippi State, MS 39762 USA.
RP Liu, SH (reprint author), Vanderbilt Univ, Dept Phys & Astron, Nashville, TN 37235 USA.
RI Itaco, Nunzio/C-3838-2009
OI Itaco, Nunzio/0000-0002-9508-2613
NR 0
TC 0
Z9 0
U1 0
U2 5
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 039804
DI 10.1103/PhysRevC.81.039804
PG 1
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400096
ER
PT J
AU Liu, SH
Hamilton, JH
Ramayya, AV
Luo, YX
Rasmussen, JO
Hwang, JK
Daniel, AV
Ter-Akopian, GM
Zhu, SJ
Ma, WC
AF Liu, S. H.
Hamilton, J. H.
Ramayya, A. V.
Luo, Y. X.
Rasmussen, J. O.
Hwang, J. K.
Daniel, A. V.
Ter-Akopian, G. M.
Zhu, S. J.
Ma, W. C.
TI Nuclear structure of the odd-odd N=85 neutron-rich nucleus Cs-140
SO PHYSICAL REVIEW C
LA English
DT Article
ID OCTUPOLE DEFORMATION; FISSION; SHAPES; CF-252; STATES; CS
AB High-spin excited states in the neutron-rich nucleus Cs-140 were re-investigated from the spontaneous fission of Cf-252 with the Gammasphere detector array. Seven new transitions at low and moderate spin and 13 at high spin were observed in Cs-140 and the level scheme of Cs-140 was extended to 3794 keV with a new sideband. Spins and parities were assigned to levels based on angular correlation measurements and the systematics in the N = 85 isotones.
C1 [Liu, S. H.; Hamilton, J. H.; Ramayya, A. V.; Luo, Y. X.; Hwang, J. K.; Daniel, A. V.] Vanderbilt Univ, Dept Phys & Astron, Nashville, TN 37235 USA.
[Luo, Y. X.; Rasmussen, J. O.] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
[Zhu, S. J.] Tsinghua Univ, Dept Phys, Beijing 100084, Peoples R China.
[Daniel, A. V.; Ter-Akopian, G. M.] JINR, Flerov Lab Nucl React, Dubna, Russia.
[Ma, W. C.] Mississippi State Univ, Dept Phys & Astron, Mississippi State, MS 39762 USA.
RP Liu, SH (reprint author), Vanderbilt Univ, Dept Phys & Astron, Nashville, TN 37235 USA.
FU US Department of Energy [DE-FG05-88ER40407, DE-FG02-95ER40939, DE-
AC03-76SF00098]; National Natural Science Foundation of China
[10775078]; Major State Basic Research Development Program
[2007CB815005]
FX The work at Vanderbilt University, Mississippi State University, and
Lawrence Berkeley National Laboratory is supported by the US Department
of Energy under Grant and Contract Nos. DE-FG05-88ER40407,
DE-FG02-95ER40939, and DE- AC03-76SF00098. The work at Tsinghua
University is supported by the National Natural Science Foundation of
China under Grant No. 10775078 and by the Major State Basic Research
Development Program under Grant No. 2007CB815005.
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SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 037302
DI 10.1103/PhysRevC.81.037302
PG 4
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400084
ER
PT J
AU Nakamura, SX
Sato, T
Lee, TSH
Szczerbinska, B
Kubodera, K
AF Nakamura, S. X.
Sato, T.
Lee, T. -S. H.
Szczerbinska, B.
Kubodera, K.
TI Dynamical model of coherent pion production in neutrino-nucleus
scattering
SO PHYSICAL REVIEW C
LA English
DT Article
ID MOMENTUM-SPACE; ELASTIC-SCATTERING; SHELL NUCLEI; PHOTOPRODUCTION;
STATES; GAMMA
AB We study coherent pion production in neutrino-nucleus scattering in the energy region relevant to neutrino oscillation experiments of current interest. Our approach is based on the combined use of the Sato-Lee model of electroweak pion production on a nucleon and the Delta-hole model of pion-nucleus reactions. Thus we develop a model that describes pion-nucleus scattering and electroweak coherent pion production in a unified manner. Numerical calculations are carried out for the case of the C-12 target. All the free parameters in our model are fixed by fitting to both total and elastic differential cross sections for pi-C-12 scattering. Then we demonstrate the reliability of our approach by comparing our prediction for coherent pion photoproductions with the data. Finally, we calculate total and differential cross sections for neutrino-induced coherent pion production, and some of the results are compared with recent data from K2K, SciBooNE, and MiniBooNE. We also study the effect of nonlocality of Delta propagation in the nucleus and compare the elementary amplitudes used in different microscopic calculations.
C1 [Nakamura, S. X.] Univ Sao Paulo, Inst Fis, BR-05315970 Sao Paulo, Brazil.
[Sato, T.] Osaka Univ, Dept Phys, Osaka 5600043, Japan.
[Lee, T. -S. H.] Argonne Natl Lab, Div Phys, Argonne, IL 60439 USA.
[Szczerbinska, B.] Dakota State Univ, Coll Arts & Sci, Madison, SD 57042 USA.
[Kubodera, K.] Univ S Carolina, Dept Phys & Astron, Columbia, SC 29208 USA.
RP Nakamura, SX (reprint author), Thomas Jefferson Natl Accelerator Facil, EBAC, Newport News, VA 23606 USA.
EM satoshi@jlab.org
RI Nakamura, Satoshi/M-9097-2016
OI Nakamura, Satoshi/0000-0002-7542-8859
FU Natural Sciences and Engineering Research Council of Canada;
Universidade de Sao Paulo; US Department of Energy, Office of Nuclear
Physics [DE-AC02-06CH11357]; Japan Society for the Promotion of Science
[20540270]; US National Science Foundation [PHY-0758114]
FX S.X.N. acknowledges informative discussions with Hidekazu Tanaka and
Hirohisa Tanaka about the SciBooNE and MiniBooNE experiments. S.X.N.
also thanks Akira Konaka and Issei Kato for stimulating discussions.
This work was supported by the Natural Sciences and Engineering Research
Council of Canada and Universidade de Sao Paulo (SXN), by the US
Department of Energy, Office of Nuclear Physics, under Contract No.
DE-AC02-06CH11357 (T.S.H.L.), by the Japan Society for the Promotion of
Science, under Grant-in-Aid for Scientific Research(C) No. 20540270
(T.S.), and by the US National Science Foundation under Contract No.
PHY-0758114 (K.K.).
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PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 035502
DI 10.1103/PhysRevC.81.035502
PG 22
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400078
ER
PT J
AU Pang, LG
Wang, Q
Wang, XN
Xu, R
AF Pang, Long-gang
Wang, Qun
Wang, Xin-Nian
Xu, Rong
TI Minijet thermalization and diffusion of transverse momentum correlation
in high-energy heavy-ion collisions
SO PHYSICAL REVIEW C
LA English
DT Article
ID NUCLEUS-NUCLEUS COLLISIONS; PLUS AU COLLISIONS; PARTON; QUARK; FLOW; PHI
AB Transverse momentum correlations in the azimuthal angle of hadrons produced owing to minijets are first studied within the HIJING Monte Carlo model in high-energy heavy-ion collisions. Quenching of minijets during thermalization is shown to lead to significant diffusion (broadening) of the correlation. Evolution of the transverse momentum density fluctuation that gives rise to this correlation in azimuthal angle in the later stage of heavy-ion collisions is further investigated within a linearized diffusion-like equation and is shown to be determined by the shear viscosity of the evolving dense matter. This diffusion equation for the transverse momentum fluctuation is solved with initial values given by HIJING and together with the hydrodynamic equation for the bulk medium. The final transverse momentum correlation in azimuthal angle is calculated along the freeze-out hypersurface and is found to be further diffused for higher values of the shear viscosity to entropy density ratio, eta/s similar to 0.2-0.4. Therefore the final transverse momentum correlation in azimuthal angle can be used to study the thermalization of minijets in the early stage of heavy-ion collisions and the viscous effect in the hydrodynamic evolution of strongly coupled quark-gluon plasma.
C1 [Pang, Long-gang; Wang, Qun] Univ Sci & Technol China, Interdisciplinary Ctr Theoret Study, Hefei 230026, Peoples R China.
[Pang, Long-gang; Wang, Qun] Univ Sci & Technol China, Dept Modern Phys, Hefei 230026, Peoples R China.
[Wang, Xin-Nian] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Nucl Sci, Berkeley, CA 94720 USA.
[Wang, Xin-Nian; Xu, Rong] Goethe Univ Frankfurt, Inst Theoret Phys, D-60438 Frankfurt, Germany.
[Xu, Rong] Huazhong Normal Univ, Inst Particle Phys, Wuhan 430079, Peoples R China.
RP Pang, LG (reprint author), Univ Sci & Technol China, Interdisciplinary Ctr Theoret Study, Hefei 230026, Peoples R China.
EM qunwang@ustc.edu.cn
OI Wang, Xin-Nian/0000-0002-9734-9967
FU NSFC of China [10825523, 10675109, 1073504]; MOE of China [IRT0624];
Office of Energy Research, Office of High Energy and Nuclear Physics,
Division of Nuclear Physics, of the US Department of Energy
[DE-AC02-05CH11231]; CAS; Helmholtz International Center; Helmholtz
Association [HA216/EMMI]
FX We thank Y. F. Wu for insightful discussions that got us interested in
this problem and U. Heinz for provision of the code for solving the
ideal hydrodynamic equations. We also thank J. Dunlop and L. Ray for
discussions on experimental measurements of the transverse momentum
correlation. This work was supported by the NSFC of China under Project
Nos. 10825523, 10675109 and 1073504, by the MOE of China under Project
No. IRT0624, and by the Director, Office of Energy Research, Office of
High Energy and Nuclear Physics, Division of Nuclear Physics, of the US
Department of Energy under Contract No. DE-AC02-05CH11231. Q. Wang was
supported in part by the "100 Talents" project of the CAS. During the
completion of this work, R. Xu was supported in part by the Helmholtz
International Center for FAIR within the framework of the LOEWE
(Landes-Offensive zur Entwicklung Wissenschaftlich-okonomischer
Exzellenz) program launched by the State of Hesse, Germany. X.-N. Wang
appreciates the hospitality of the Institut fur Theoretische Physik,
JohannWolfgang Goethe-Universitat, and the support by the ExtreMe Matter
Institute (EMMI) in the framework of the Helmholtz Alliance Program of
the Helmholtz Association (HA216/EMMI) during the completion of this
work.
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SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 031903
DI 10.1103/PhysRevC.81.031903
PG 5
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400007
ER
PT J
AU Scielzo, ND
Escher, JE
Allmond, JM
Basunia, MS
Beausang, CW
Bernstein, LA
Bleuel, DL
Burke, JT
Clark, RM
Dietrich, FS
Fallon, P
Gibelin, J
Goldblum, BL
Lesher, SR
McMahan, MA
Norman, EB
Phair, L
Rodriquez-Vieitez, E
Sheets, SA
Thompson, IJ
Wiedeking, M
AF Scielzo, N. D.
Escher, J. E.
Allmond, J. M.
Basunia, M. S.
Beausang, C. W.
Bernstein, L. A.
Bleuel, D. L.
Burke, J. T.
Clark, R. M.
Dietrich, F. S.
Fallon, P.
Gibelin, J.
Goldblum, B. L.
Lesher, S. R.
McMahan, M. A.
Norman, E. B.
Phair, L.
Rodriquez-Vieitez, E.
Sheets, S. A.
Thompson, I. J.
Wiedeking, M.
TI Measurement of gamma-emission branching ratios for Gd-154,Gd-156,Gd-158
compound nuclei: Tests of surrogate nuclear reaction approximations for
(n,gamma) cross sections
SO PHYSICAL REVIEW C
LA English
DT Article
ID TRANSFER-REACTION TH-232(HE-3; ELEMENTS; CAPTURE; DETECTORS; P)PA-234;
PA-233(N; CLOVER; RANGE; STARS
AB The surrogate nuclear reaction method can be used to determine neutron-induced reaction cross sections from measured decay properties of a compound nucleus created using a different reaction and calculated formation cross sections. The reliability of (n,gamma) cross sections determined using the Weisskopf-Ewing and ratio approximations are explored for the (155,157)(n,gamma) reactions. Enriched gadolinium targets were bombarded with 22-MeV protons and gamma rays were detected in coincidence with scattered protons using the Silicon Telescope Array for Reaction Studies/Livermore-Berkeley Array for Collaborative Experiments (STARS/LiBerACE) silicon and germanium detector arrays. The gamma-emission probabilities for the Gd-154,Gd-156,Gd-158 compound nuclei were measured at excitation energies up to 12 MeV. It is found that the approximations yield results that deviate from directly measured Gd-155,Gd-157(n,gamma) cross sections at low energies. To extract reliable cross sections, a more sophisticated analysis should be developed that takes into account angular-momentum differences between the neutron-induced and surrogate reactions.
C1 [Scielzo, N. D.; Escher, J. E.; Bernstein, L. A.; Bleuel, D. L.; Burke, J. T.; Dietrich, F. S.; Lesher, S. R.; Norman, E. B.; Sheets, S. A.; Thompson, I. J.; Wiedeking, M.] Lawrence Livermore Natl Lab, Phys Sci Directorate, Livermore, CA 94551 USA.
[Allmond, J. M.; Beausang, C. W.] Univ Richmond, Dept Phys, Richmond, VA 23173 USA.
[Basunia, M. S.; Clark, R. M.; Fallon, P.; Gibelin, J.; McMahan, M. A.; Norman, E. B.; Phair, L.; Rodriquez-Vieitez, E.; Wiedeking, M.] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Nucl Sci, Berkeley, CA 94720 USA.
[Goldblum, B. L.; Norman, E. B.; Rodriquez-Vieitez, E.] Univ Calif Berkeley, Dept Nucl Engn, Berkeley, CA 94720 USA.
RP Scielzo, ND (reprint author), Lawrence Livermore Natl Lab, Phys Sci Directorate, Livermore, CA 94551 USA.
RI Escher, Jutta/E-1965-2013; Burke, Jason/I-4580-2012
FU US Department of Energy by Lawrence Livermore National Laboratory
[W-7405-Eng-48, DE-AC52-07NA27344]; University of California DOE
[DE-AC0376SF0098]; University of Richmond [DE-FG-05NA25929,
DE-FG02-05ER41379]
FX We thank the 88-Inch Cyclotron operations and staff at Lawrence Berkeley
National Laboratory for their support in performing these experiments.
A.O. Macchiavelli's contributions to the development of STARS/LiBerACE
are gratefully acknowledged. This work was performed under the auspices
of the US Department of Energy by Lawrence Livermore National Laboratory
in part under Contract No. W-7405-Eng-48 and in part under Contract No.
DE-AC52-07NA27344 and the University of California DOE Contract No.
DE-AC0376SF0098 and the University of Richmond Contract Nos.
DE-FG-05NA25929 and DE-FG02-05ER41379.
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PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 034608
DI 10.1103/PhysRevC.81.034608
PG 12
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400047
ER
PT J
AU Shriner, JF
Bardayan, DW
Blackmon, JC
Chae, KY
Kozub, RL
Smith, MS
AF Shriner, J. F., Jr.
Bardayan, D. W.
Blackmon, J. C.
Chae, K. Y.
Kozub, R. L.
Smith, M. S.
TI Comment on "Low-energy F-18(p,alpha)O-15 cross section measurements
relevant to nova gamma- ray emission"
SO PHYSICAL REVIEW C
LA English
DT Letter
AB A recent discussion of the F-18(p,alpha) reaction [N. de Sereville et al., Phys. Rev. C 79, 015801 (2009)] questions our previous analysis of interference effects in this reaction. We address these questions and demonstrate that our previous analysis is indeed appropriate.
C1 [Shriner, J. F., Jr.; Kozub, R. L.] Tennessee Technol Univ, Dept Phys, Cookeville, TN 38505 USA.
[Bardayan, D. W.; Blackmon, J. C.; Smith, M. S.] Oak Ridge Natl Lab, Div Phys, Oak Ridge, TN 37831 USA.
[Blackmon, J. C.] Louisiana State Univ, Dept Phys & Astron, Baton Rouge, LA 70803 USA.
[Chae, K. Y.] Univ Tennessee, Dept Phys & Astron, Knoxville, TN 37996 USA.
RP Shriner, JF (reprint author), Tennessee Technol Univ, Dept Phys, Cookeville, TN 38505 USA.
NR 8
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PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 0556-2813
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 039801
DI 10.1103/PhysRevC.81.039801
PG 2
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400093
ER
PT J
AU Vary, JP
Honkanen, H
Li, J
Maris, P
Brodsky, SJ
Harindranath, A
de Teramond, GF
Sternberg, P
Ng, EG
Yang, C
AF Vary, J. P.
Honkanen, H.
Li, Jun
Maris, P.
Brodsky, S. J.
Harindranath, A.
de Teramond, G. F.
Sternberg, P.
Ng, E. G.
Yang, C.
TI Hamiltonian light-front field theory in a basis function approach
SO PHYSICAL REVIEW C
LA English
DT Article
ID SHELL-MODEL; QCD
AB Hamiltonian light-front quantum field theory constitutes a framework for the nonperturbative solution of invariant masses and correlated parton amplitudes of self-bound systems. By choosing the light-front gauge and adopting a basis function representation, a large, sparse, Hamiltonian matrix for mass eigenstates of gauge theories is obtained that is solvable by adapting the ab initio no-core methods of nuclear many-body theory. Full covariance is recovered in the continuum limit, the infinite matrix limit. There is considerable freedom in the choice of the orthonormal and complete set of basis functions with convenience and convergence rates providing key considerations. Here we use a two-dimensional harmonic oscillator basis for transverse modes that corresponds with eigensolutions of the soft-wall anti-de Sitter/quantum chromodynamics (AdS/QCD) model obtained from light-front holography. We outline our approach and present illustrative features of some noninteracting systems in a cavity. We illustrate the first steps toward solving quantum electrodynamics (QED) by obtaining the mass eigenstates of an electron in a cavity in small basis spaces and discuss the computational challenges.
C1 [Vary, J. P.; Honkanen, H.; Li, Jun; Maris, P.] Iowa State Univ, Dept Phys & Astron, Ames, IA 50011 USA.
[Brodsky, S. J.] Stanford Univ, Natl Accelerator Lab, Stanford Linear Accelerator Ctr, Menlo Pk, CA 94025 USA.
[Harindranath, A.] Saha Inst Nucl Phys, Theory Grp, Kolkata 700064, W Bengal, India.
[de Teramond, G. F.] Univ Costa Rica, San Jose, Costa Rica.
[Sternberg, P.; Ng, E. G.; Yang, C.] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
RP Vary, JP (reprint author), Iowa State Univ, Dept Phys & Astron, Ames, IA 50011 USA.
FU DOE [DE-FG02-87ER40371, DE-AC02-76SF00515]
FX The authors thank V. Karmanov, J. Hiller, J. W. Qiu, and K. Tuchin for
fruitful discussions. This work was supported in part by DOE Grant No.
DE-FG02-87ER40371 and by DOE Contract No. DE-AC02-76SF00515.
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PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 0556-2813
EI 1089-490X
J9 PHYS REV C
JI Phys. Rev. C
PD MAR
PY 2010
VL 81
IS 3
AR 035205
DI 10.1103/PhysRevC.81.035205
PG 14
WC Physics, Nuclear
SC Physics
GA 584RE
UT WOS:000276769400072
ER
PT J
AU Aaltonen, T
Adelman, J
Gonzalez, BA
Amerio, S
Amidei, D
Anastassov, A
Annovi, A
Antos, J
Apollinari, G
Appel, J
Apresyan, A
Arisawa, T
Artikov, A
Asaadi, J
Ashmanskas, W
Attal, A
Aurisano, A
Azfar, F
Badgett, W
Barbaro-Galtieri, A
Barnes, VE
Barnett, BA
Barria, P
Bartos, P
Bauer, G
Beauchemin, PH
Bedeschi, F
Beecher, D
Behari, S
Bellettini, G
Bellinger, J
Benjamin, D
Beretvas, A
Bhatti, A
Binkley, M
Bisello, D
Bizjak, I
Blair, RE
Blocker, C
Blumenfeld, B
Bocci, A
Bodek, A
Boisvert, V
Bortoletto, D
Boudreau, J
Boveia, A
Brau, B
Bridgeman, A
Brigliadori, L
Bromberg, C
Brubaker, E
Budagov, J
Budd, HS
Budd, S
Burkett, K
Busetto, G
Bussey, P
Buzatu, A
Byrum, KL
Cabrera, S
Calancha, C
Camarda, S
Campanelli, M
Campbell, M
Canelli, F
Canepa, A
Carls, B
Carlsmith, D
Carosi, R
Carrillo, S
Carron, S
Casal, B
Casarsa, M
Castro, A
Catastini, P
Cauz, D
Cavaliere, V
Cavalli-Sforza, M
Cerri, A
Cerrito, L
Chang, SH
Chen, YC
Chertok, M
Chiarelli, G
Chlachidze, G
Chlebana, F
Cho, K
Chokheli, D
Chou, JP
Chung, K
Chung, WH
Chung, YS
Chwalek, T
Ciobanu, CI
Ciocci, MA
Clark, A
Clark, D
Compostella, G
Convery, ME
Conway, J
Corbo, M
Cordelli, M
Cox, CA
Cox, DJ
Crescioli, F
Almenar, CC
Cuevas, J
Culbertson, R
Cully, JC
Dagenhart, D
d'Ascenzo, N
Datta, M
Davies, T
de Barbaro, P
De Cecco, S
Deisher, A
De Lorenzo, G
Dell'Orso, M
Deluca, C
Demortier, L
Deng, J
Deninno, M
d'Errico, M
Di Canto, A
Di Ruzza, B
Dittmann, JR
D'Onofrio, M
Donati, S
Dong, P
Dorigo, T
Dube, S
Ebina, K
Elagin, A
Erbacher, R
Errede, D
Errede, S
Ershaidat, N
Eusebi, R
Fang, HC
Farrington, S
Fedorko, WT
Feild, RG
Feindt, M
Fernandez, JP
Ferrazza, C
Field, R
Flanagan, G
Forrest, R
Frank, MJ
Franklin, M
Freeman, JC
Furic, I
Gallinaro, M
Galyardt, J
Garberson, F
Garcia, JE
Garfinkel, AF
Garosi, P
Gerberich, H
Gerdes, D
Gessler, A
Giagu, S
Giakoumopoulou, V
Giannetti, P
Gibson, K
Gimmell, JL
Ginsburg, CM
Giokaris, N
Giordani, M
Giromini, P
Giunta, M
Giurgiu, G
Glagolev, V
Glenzinski, D
Gold, M
Goldschmidt, N
Golossanov, A
Gomez, G
Gomez-Ceballos, G
Goncharov, M
Gonzalez, O
Gorelov, I
Goshaw, AT
Goulianos, K
Gresele, A
Grinstein, S
Grosso-Pilcher, C
Group, RC
Grundler, U
da Costa, JG
Gunay-Unalan, Z
Haber, C
Hahn, SR
Halkiadakis, E
Han, BY
Han, JY
Happacher, F
Hara, K
Hare, D
Hare, M
Harr, RF
Hartz, M
Hatakeyama, K
Hays, C
Heck, M
Heinrich, J
Herndon, M
Heuser, J
Hewamanage, S
Hidas, D
Hill, CS
Hirschbuehl, D
Hocker, A
Hou, S
Houlden, M
Hsu, SC
Hughes, RE
Hurwitz, M
Husemann, U
Hussein, M
Huston, J
Incandela, J
Introzzi, G
Iori, M
Ivanov, A
James, E
Jang, D
Jayatilaka, B
Jeon, EJ
Jha, MK
Jindariani, S
Johnson, W
Jones, M
Joo, KK
Jun, SY
Jung, JE
Junk, TR
Kamon, T
Kar, D
Karchin, PE
Kato, Y
Kephart, R
Ketchum, W
Keung, J
Khotilovich, V
Kilminster, B
Kim, DH
Kim, HS
Kim, HW
Kim, JE
Kim, MJ
Kim, SB
Kim, SH
Kim, YK
Kimura, N
Kirsch, L
Klimenko, S
Kondo, K
Kong, DJ
Konigsberg, J
Korytov, A
Kotwal, AV
Kreps, M
Kroll, J
Krop, D
Krumnack, N
Kruse, M
Krutelyov, V
Kuhr, T
Kulkarni, NP
Kurata, M
Kwang, S
Laasanen, AT
Lami, S
Lammel, S
Lancaster, M
Lander, RL
Lannon, K
Lath, A
Latino, G
Lazzizzera, I
LeCompte, T
Lee, E
Lee, HS
Lee, JS
Lee, SW
Leone, S
Lewis, JD
Lin, CJ
Linacre, J
Lindgren, M
Lipeles, E
Lister, A
Litvintsev, DO
Liu, C
Liu, T
Lockyer, NS
Loginov, A
Lovas, L
Lucchesi, D
Lueck, J
Lujan, P
Lukens, P
Lungu, G
Lys, J
Lysak, R
MacQueen, D
Madrak, R
Maeshima, K
Makhoul, K
Maksimovic, P
Malde, S
Malik, S
Manca, G
Manousakis-Katsikakis, A
Margaroli, F
Marino, C
Marino, CP
Martin, A
Martin, V
Martinez, M
Martinez-Ballarin, R
Mastrandrea, P
Mathis, M
Mattson, ME
Mazzanti, P
McFarland, KS
McIntyre, P
McNulty, R
Mehta, A
Mehtala, P
Menzione, A
Mesropian, C
Miao, T
Mietlicki, D
Miladinovic, N
Miller, R
Mills, C
Milnik, M
Mitra, A
Mitselmakher, G
Miyake, H
Moed, S
Moggi, N
Mondragon, MN
Moon, CS
Moore, R
Morello, MJ
Morlock, J
Fernandez, PM
Mulmenstadt, J
Mukherjee, A
Muller, T
Murat, P
Mussini, M
Nachtman, J
Nagai, Y
Naganoma, J
Nakamura, K
Nakano, I
Napier, A
Nett, J
Neu, C
Neubauer, MS
Neubauer, S
Nielsen, J
Nodulman, L
Norman, M
Norniella, O
Nurse, E
Oakes, L
Oh, SH
Oh, YD
Oksuzian, I
Okusawa, T
Orava, R
Osterberg, K
Griso, SP
Pagliarone, C
Palencia, E
Papadimitriou, V
Papaikonomou, A
Paramanov, AA
Parks, B
Pashapour, S
Patrick, J
Pauletta, G
Paulini, M
Paus, C
Peiffer, T
Pellett, DE
Penzo, A
Phillips, TJ
Piacentino, G
Pianori, E
Pinera, L
Pitts, K
Plager, C
Pondrom, L
Potamianos, K
Poukhov, O
Prokoshin, F
Pronko, A
Ptohos, F
Pueschel, E
Punzi, G
Pursley, J
Rademacker, J
Rahaman, A
Ramakrishnan, V
Ranjan, N
Redondo, I
Renton, P
Renz, M
Rescigno, M
Richter, S
Rimondi, F
Ristori, L
Robson, A
Rodrigo, T
Rodriguez, T
Rogers, E
Rolli, S
Roser, R
Rossi, M
Rossin, R
Roy, P
Ruiz, A
Russ, J
Rusu, V
Rutherford, B
Saarikko, H
Safonov, A
Sakumoto, WK
Santi, L
Sartori, L
Sato, K
Saveliev, V
Savoy-Navarro, A
Schlabach, P
Schmidt, A
Schmidt, EE
Schmidt, MA
Schmidt, MP
Schmitt, M
Schwarz, T
Scodellaro, L
Scribano, A
Scuri, F
Sedov, A
Seidel, S
Seiya, Y
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Sforza, F
Sfyrla, A
Shalhout, SZ
Shears, T
Shepard, PF
Shimojima, M
Shiraishi, S
Shochet, M
Shon, Y
Shreyber, I
Simonenko, A
Sinervo, P
Sisakyan, A
Slaughter, AJ
Slaunwhite, J
Sliwa, K
Smith, JR
Snider, FD
Snihur, R
Soha, A
Somalwar, S
Sorin, V
Squillacioti, P
Stanitzki, M
Denis, RS
Stelzer, B
Stelzer-Chilton, O
Stentz, D
Strologas, J
Strycker, GL
Suh, JS
Sukhanov, A
Suslov, I
Taffard, A
Takashima, R
Takeuchi, Y
Tanaka, R
Tang, J
Tecchio, M
Teng, PK
Thom, J
Thome, J
Thompson, GA
Thomson, E
Tipton, P
Ttito-Guzman, P
Tkaczyk, S
Toback, D
Tokar, S
Tollefson, K
Tomura, T
Tonelli, D
Torre, S
Torretta, D
Totaro, P
Trovato, M
Tsai, SY
Tu, Y
Turini, N
Ukegawa, F
Uozumi, S
van Remortel, N
Varganov, A
Vataga, E
Vazquez, F
Velev, G
Vellidis, C
Vidal, M
Vila, I
Vilar, R
Vogel, M
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Volpi, G
Wagner, P
Wagner, RG
Wagner, RL
Wagner, W
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Wakisaka, T
Wallny, R
Wang, SM
Warburton, A
Waters, D
Weinberger, M
Weinelt, J
Wester, WC
Whitehouse, B
Whiteson, D
Wicklund, AB
Wicklund, E
Wilbur, S
Williams, G
Williams, HH
Wilson, P
Winer, BL
Wittich, P
Wolbers, S
Wolfe, C
Wolfe, H
Wright, T
Wu, X
Wurthwein, F
Yagil, A
Yamamoto, K
Yamaoka, J
Yang, UK
Yang, YC
Yao, WM
Yeh, GP
Yi, K
Yoh, J
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Binkley, M.
Bisello, D.
Bizjak, I.
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Blocker, C.
Blumenfeld, B.
Bocci, A.
Bodek, A.
Boisvert, V.
Bortoletto, D.
Boudreau, J.
Boveia, A.
Brau, B.
Bridgeman, A.
Brigliadori, L.
Bromberg, C.
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de Barbaro, P.
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Dell'Orso, M.
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d'Errico, M.
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Nagai, Y.
Naganoma, J.
Nakamura, K.
Nakano, I.
Napier, A.
Nett, J.
Neu, C.
Neubauer, M. S.
Neubauer, S.
Nielsen, J.
Nodulman, L.
Norman, M.
Norniella, O.
Nurse, E.
Oakes, L.
Oh, S. H.
Oh, Y. D.
Oksuzian, I.
Okusawa, T.
Orava, R.
Osterberg, K.
Griso, S. Pagan
Pagliarone, C.
Palencia, E.
Papadimitriou, V.
Papaikonomou, A.
Paramanov, A. A.
Parks, B.
Pashapour, S.
Patrick, J.
Pauletta, G.
Paulini, M.
Paus, C.
Peiffer, T.
Pellett, D. E.
Penzo, A.
Phillips, T. J.
Piacentino, G.
Pianori, E.
Pinera, L.
Pitts, K.
Plager, C.
Pondrom, L.
Potamianos, K.
Poukhov, O.
Prokoshin, F.
Pronko, A.
Ptohos, F.
Pueschel, E.
Punzi, G.
Pursley, J.
Rademacker, J.
Rahaman, A.
Ramakrishnan, V.
Ranjan, N.
Redondo, I.
Renton, P.
Renz, M.
Rescigno, M.
Richter, S.
Rimondi, F.
Ristori, L.
Robson, A.
Rodrigo, T.
Rodriguez, T.
Rogers, E.
Rolli, S.
Roser, R.
Rossi, M.
Rossin, R.
Roy, P.
Ruiz, A.
Russ, J.
Rusu, V.
Rutherford, B.
Saarikko, H.
Safonov, A.
Sakumoto, W. K.
Santi, L.
Sartori, L.
Sato, K.
Saveliev, V.
Savoy-Navarro, A.
Schlabach, P.
Schmidt, A.
Schmidt, E. E.
Schmidt, M. A.
Schmidt, M. P.
Schmitt, M.
Schwarz, T.
Scodellaro, L.
Scribano, A.
Scuri, F.
Sedov, A.
Seidel, S.
Seiya, Y.
Semenov, A.
Sexton-Kennedy, L.
Sforza, F.
Sfyrla, A.
Shalhout, S. Z.
Shears, T.
Shepard, P. F.
Shimojima, M.
Shiraishi, S.
Shochet, M.
Shon, Y.
Shreyber, I.
Simonenko, A.
Sinervo, P.
Sisakyan, A.
Slaughter, A. J.
Slaunwhite, J.
Sliwa, K.
Smith, J. R.
Snider, F. D.
Snihur, R.
Soha, A.
Somalwar, S.
Sorin, V.
Squillacioti, P.
Stanitzki, M.
Denis, R. St.
Stelzer, B.
Stelzer-Chilton, O.
Stentz, D.
Strologas, J.
Strycker, G. L.
Suh, J. S.
Sukhanov, A.
Suslov, I.
Taffard, A.
Takashima, R.
Takeuchi, Y.
Tanaka, R.
Tang, J.
Tecchio, M.
Teng, P. K.
Thom, J.
Thome, J.
Thompson, G. A.
Thomson, E.
Tipton, P.
Ttito-Guzman, P.
Tkaczyk, S.
Toback, D.
Tokar, S.
Tollefson, K.
Tomura, T.
Tonelli, D.
Torre, S.
Torretta, D.
Totaro, P.
Trovato, M.
Tsai, S. -Y.
Tu, Y.
Turini, N.
Ukegawa, F.
Uozumi, S.
van Remortel, N.
Varganov, A.
Vataga, E.
Vazquez, F.
Velev, G.
Vellidis, C.
Vidal, M.
Vila, I.
Vilar, R.
Vogel, M.
Volobouev, I.
Volpi, G.
Wagner, P.
Wagner, R. G.
Wagner, R. L.
Wagner, W.
Wagner-Kuhr, J.
Wakisaka, T.
Wallny, R.
Wang, S. M.
Warburton, A.
Waters, D.
Weinberger, M.
Weinelt, J.
Wester, W. C., III
Whitehouse, B.
Whiteson, D.
Wicklund, A. B.
Wicklund, E.
Wilbur, S.
Williams, G.
Williams, H. H.
Wilson, P.
Winer, B. L.
Wittich, P.
Wolbers, S.
Wolfe, C.
Wolfe, H.
Wright, T.
Wu, X.
Wuerthwein, F.
Yagil, A.
Yamamoto, K.
Yamaoka, J.
Yang, U. K.
Yang, Y. C.
Yao, W. M.
Yeh, G. P.
Yi, K.
Yoh, J.
Yorita, K.
Yoshida, T.
Yu, G. B.
Yu, I.
Yu, S. S.
Yun, J. C.
Zanetti, A.
Zeng, Y.
Zhang, X.
Zheng, Y.
Zucchelli, S.
CA CDF Collaboration
TI Measurement of the top quark mass and p(p)over-bar -> t(t)over-bar cross
section in the all-hadronic mode with the CDF II detector
SO PHYSICAL REVIEW D
LA English
DT Article
ID ELECTROMAGNETIC CALORIMETER; PARTON DISTRIBUTIONS; PHYSICS; QCD
AB We present a measurement of the top quark mass and of the top-antitop (t (t) over bar) pair production cross section using p (p) over bar data collected with the CDF II detector at the Tevatron Collider at the Fermi National Accelerator Laboratory and corresponding to an integrated luminosity of 2.9 fb(-1). We select events with six or more jets satisfying a number of kinematical requirements imposed by means of a neural-network algorithm. At least one of these jets must originate from a b quark, as identified by the reconstruction of a secondary vertex inside the jet. The mass measurement is based on a likelihood fit incorporating reconstructed mass distributions representative of signal and background, where the absolute jet energy scale ( JES) is measured simultaneously with the top quark mass. The measurement yields a value of 174.8 +/- 2.4(stat + JES)(-1.0)(+1.2)(syst) GeV/c(2), where the uncertainty from the absolute jet energy scale is evaluated together with the statistical uncertainty. The procedure also measures the amount of signal from which we derive a cross section, sigma(t (t$) over bar) = 7.2 +/- 0.5(stat) +/- 1.0(syst) +/- 0.4(lum) pb, for the measured values of top quark mass and JES.
C1 [Aaltonen, T.; Anastassov, A.; Mehtala, P.; Orava, R.; Osterberg, K.; Saarikko, H.; van Remortel, N.] Univ Helsinki, Dept Phys, Div High Energy Phys, FIN-00014 Helsinki, Finland.
[Chen, Y. C.; Hou, S.; Mitra, A.; Teng, P. K.; Tsai, S. -Y.; Wang, S. M.] Acad Sinica, Inst Phys, Taipei 11529, Taiwan.
[Anastassov, A.; Blair, R. E.; Byrum, K. L.; LeCompte, T.; Nodulman, L.; Paramanov, A. A.; Wagner, R. G.; Wicklund, A. B.] Argonne Natl Lab, Argonne, IL 60439 USA.
[Giakoumopoulou, V.; Giokaris, N.; Manousakis-Katsikakis, A.; Vellidis, C.] Univ Athens, GR-15771 Athens, Greece.
[Attal, A.; Camarda, S.; Cavalli-Sforza, M.; De Lorenzo, G.; Deluca, C.; D'Onofrio, M.; Grinstein, S.; Martinez, M.; Sorin, V.] Univ Autonoma Barcelona, Inst Fis Altes Energies, E-08193 Barcelona, Spain.
[Dittmann, J. R.; Frank, M. J.; Hatakeyama, K.; Hewamanage, S.; Krumnack, N.] Baylor Univ, Waco, TX 76798 USA.
[Castro, A.; Deninno, M.; Jha, M. K.; Mazzanti, P.; Moggi, N.; Mussini, M.; Rimondi, F.; Zucchelli, S.] Ist Nazl Fis Nucl, I-40127 Bologna, Italy.
[Castro, A.; Mussini, M.; Rimondi, F.; Zucchelli, S.] Univ Bologna, I-40127 Bologna, Italy.
[Blocker, C.; Clark, D.; Kirsch, L.; Miladinovic, N.] Brandeis Univ, Waltham, MA 02254 USA.
[Chertok, M.; Conway, J.; Cox, C. A.; Cox, D. J.; Erbacher, R.; Forrest, R.; Ivanov, A.; Johnson, W.; Lander, R. L.; Pellett, D. E.; Schwarz, T.; Smith, J. R.] Univ Calif Davis, Davis, CA 95616 USA.
[Plager, C.; Wallny, R.; Zheng, Y.] Univ Calif Los Angeles, Los Angeles, CA 90024 USA.
[Norman, M.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Boveia, A.; Brau, B.; Garberson, F.; Hill, C. S.; Incandela, J.; Krutelyov, V.; Rossin, R.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Alvarez Gonzalez, B.; Casal, B.; Cuevas, J.; Gomez, G.; Rodrigo, T.; Ruiz, A.; Scodellaro, L.; Vila, I.; Vilar, R.] Univ Cantabria, CSIC, Inst Fis Cantabria, E-39005 Santander, Spain.
[Galyardt, J.; Jang, D.; Jun, S. Y.; Paulini, M.; Pueschel, E.; Russ, J.; Thome, J.; Tokar, S.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Adelman, J.; Canelli, F.; Fedorko, W. T.; Grosso-Pilcher, C.; Hurwitz, M.; Ketchum, W.; Kim, Y. K.; Krop, D.; Kwang, S.; Lee, H. S.; Schmidt, M. A.; Shiraishi, S.; Shochet, M.; Tang, J.; Wilbur, S.; Wolfe, C.; Yang, U. K.] Univ Chicago, Enrico Fermi Inst, Chicago, IL 60637 USA.
[Antos, J.; Bartos, P.; Lovas, L.; Lysak, R.] Comenius Univ, Bratislava 84248, Slovakia.
[Antos, J.; Bartos, P.; Lovas, L.; Lysak, R.] Slovak Acad Sci, Inst Expt Phys, Kosice 04001, Slovakia.
[Artikov, A.; Chokheli, D.; Glagolev, V.; Poukhov, O.; Prokoshin, F.; Semenov, A.; Simonenko, A.; Sisakyan, A.; Suslov, I.] Joint Inst Nucl Res, RU-141980 Dubna, Russia.
[Anastassov, A.; Benjamin, D.; Bocci, A.; Brigliadori, L.; Cabrera, S.; Deng, J.; Goshaw, A. T.; Jayatilaka, B.; Kotwal, A. V.; Kruse, M.; Oh, S. H.; Phillips, T. J.; Yamaoka, J.; Yu, G. B.; Zeng, Y.] Duke Univ, Durham, NC 27708 USA.
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[Bauer, G.; Gomez-Ceballos, G.; Goncharov, M.; Makhoul, K.; Paus, C.] MIT, Cambridge, MA 02139 USA.
[Beauchemin, P. -H.; Buzatu, A.; MacQueen, D.; Pashapour, S.; Roy, P.; Sinervo, P.; Snihur, R.; Stelzer, B.; Stelzer-Chilton, O.; Warburton, A.; Williams, G.] McGill Univ, Inst Particle Phys, Montreal, PQ H3A 2T8, Canada.
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[Beauchemin, P. -H.; Buzatu, A.; MacQueen, D.; Pashapour, S.; Roy, P.; Sinervo, P.; Snihur, R.; Stelzer, B.; Stelzer-Chilton, O.; Warburton, A.; Williams, G.] TRIUMF, Vancouver, BC V6T 2A3, Canada.
[Amidei, D.; Campbell, M.; Cully, J. C.; Gerdes, D.; Mietlicki, D.; Strycker, G. L.; Tecchio, M.; Varganov, A.; Wright, T.] Univ Michigan, Ann Arbor, MI 48109 USA.
[Gunay-Unalan, Z.; Hussein, M.; Huston, J.; Miller, R.; Tollefson, K.] Michigan State Univ, E Lansing, MI 48824 USA.
[Shreyber, I.] Inst Theoret & Expt Phys, Moscow 117259, Russia.
[Gold, M.; Gorelov, I.; Seidel, S.; Strologas, J.; Vogel, M.] Univ New Mexico, Albuquerque, NM 87131 USA.
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[Nakano, I.; Takashima, R.; Tanaka, R.] Okayama Univ, Okayama 7008530, Japan.
[Kato, Y.; Okusawa, T.; Seiya, Y.; Wakisaka, T.; Yamamoto, K.; Yoshida, T.] Osaka City Univ, Osaka 588, Japan.
[Azfar, F.; Farrington, S.; Hays, C.; Linacre, J.; Malde, S.; Oakes, L.; Rademacker, J.; Renton, P.] Univ Oxford, Oxford OX1 3RH, England.
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[Amerio, S.; Bisello, D.; Busetto, G.; d'Errico, M.; Gresele, A.; Lazzizzera, I.; Lucchesi, D.; Griso, S. Pagan] Univ Padua, I-35131 Padua, Italy.
[Ciobanu, C. I.; Corbo, M.; d'Ascenzo, N.; Ershaidat, N.; Saveliev, V.; Savoy-Navarro, A.] Univ Paris 06, IN2P3, CNRS, LPNHE,UMR7585, F-75252 Paris, France.
[Canepa, A.; Heinrich, J.; Keung, J.; Kroll, J.; Lipeles, E.; Lockyer, N. S.; Neu, C.; Pianori, E.; Rodriguez, T.; Thomson, E.; Tu, Y.; Wagner, P.; Whiteson, D.; Williams, H. H.] Univ Penn, Philadelphia, PA 19104 USA.
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[Bellettini, G.; Crescioli, F.; Dell'Orso, M.; Di Canto, A.; Donati, S.; Punzi, G.; Sforza, F.] Univ Pisa, I-56127 Pisa, Italy.
[Barria, P.; Catastini, P.; Cavaliere, V.; Ciocci, M. A.; Garosi, P.; Latino, G.; Scribano, A.; Squillacioti, P.; Turini, N.] Univ Siena, I-56127 Pisa, Italy.
[Ferrazza, C.; Trovato, M.; Vataga, E.] Scuola Normale Super Pisa, I-56127 Pisa, Italy.
[Boudreau, J.; Gibson, K.; Hartz, M.; Liu, C.; Rahaman, A.; Shepard, P. F.] Univ Pittsburgh, Pittsburgh, PA 15260 USA.
[Apresyan, A.; Barnes, V. E.; Bortoletto, D.; Flanagan, G.; Garfinkel, A. F.; Jones, M.; Laasanen, A. T.; Margaroli, F.; Potamianos, K.; Ranjan, N.; Sedov, A.] Purdue Univ, W Lafayette, IN 47907 USA.
[Bodek, A.; Boisvert, V.; Brubaker, E.; Budagov, J.; Budd, H. S.; Chung, Y. S.; de Barbaro, P.; Gimmell, J. L.; Han, B. -Y.; Han, J. Y.; McFarland, K. S.; Sakumoto, W. K.] Univ Rochester, Rochester, NY 14627 USA.
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[Giagu, S.; Iori, M.] Univ Roma La Sapienza, I-00185 Rome, Italy.
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[Asaadi, J.; Aurisano, A.; Elagin, A.; Eusebi, R.; Kamon, T.; Khotilovich, V.; Lee, E.; Lee, S. W.; McIntyre, P.; Safonov, A.; Toback, D.; Weinberger, M.] Texas A&M Univ, College Stn, TX 77843 USA.
[Cauz, D.; Giordani, M.; Pagliarone, C.; Pauletta, G.; Penzo, A.; Rossi, M.; Santi, L.; Totaro, P.; Zanetti, A.] Ist Nazl Fis Nucl Trieste Udine, I-33100 Udine, Italy.
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[Bellinger, J.; Carlsmith, D.; Chung, W. H.; Herndon, M.; Nett, J.; Pondrom, L.; Pursley, J.; Ramakrishnan, V.; Shon, Y.] Univ Wisconsin, Madison, WI 53706 USA.
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RP Aaltonen, T (reprint author), Univ Helsinki, Dept Phys, Div High Energy Phys, FIN-00014 Helsinki, Finland.
RI Scodellaro, Luca/K-9091-2014; Grinstein, Sebastian/N-3988-2014; Paulini,
Manfred/N-7794-2014; Russ, James/P-3092-2014; unalan,
zeynep/C-6660-2015; vilar, rocio/P-8480-2014; Cabrera Urban,
Susana/H-1376-2015; Garcia, Jose /H-6339-2015; ciocci, maria agnese
/I-2153-2015; Cavalli-Sforza, Matteo/H-7102-2015; Chiarelli,
Giorgio/E-8953-2012; Muelmenstaedt, Johannes/K-2432-2015; Moon,
Chang-Seong/J-3619-2014; Ruiz, Alberto/E-4473-2011; Robson,
Aidan/G-1087-2011; De Cecco, Sandro/B-1016-2012; manca,
giulia/I-9264-2012; Amerio, Silvia/J-4605-2012; Punzi,
Giovanni/J-4947-2012; Zeng, Yu/C-1438-2013; Annovi, Alberto/G-6028-2012;
Ivanov, Andrew/A-7982-2013; Warburton, Andreas/N-8028-2013; Kim,
Soo-Bong/B-7061-2014; Lysak, Roman/H-2995-2014; Introzzi,
Gianluca/K-2497-2015; Gorelov, Igor/J-9010-2015; Canelli,
Florencia/O-9693-2016
OI Scodellaro, Luca/0000-0002-4974-8330; Grinstein,
Sebastian/0000-0002-6460-8694; Paulini, Manfred/0000-0002-6714-5787;
Russ, James/0000-0001-9856-9155; unalan, zeynep/0000-0003-2570-7611;
ciocci, maria agnese /0000-0003-0002-5462; Chiarelli,
Giorgio/0000-0001-9851-4816; Muelmenstaedt,
Johannes/0000-0003-1105-6678; Moon, Chang-Seong/0000-0001-8229-7829;
Ruiz, Alberto/0000-0002-3639-0368; Punzi, Giovanni/0000-0002-8346-9052;
Annovi, Alberto/0000-0002-4649-4398; Ivanov, Andrew/0000-0002-9270-5643;
Warburton, Andreas/0000-0002-2298-7315; Introzzi,
Gianluca/0000-0002-1314-2580; Gorelov, Igor/0000-0001-5570-0133;
Canelli, Florencia/0000-0001-6361-2117
FU U.S. Department of Energy and National Science Foundation; Italian
Istituto Nazionale di Fisica Nucleare; Ministry of Education, Culture,
Sports, Science and Technology of Japan; Natural Sciences and
Engineering Research Council of Canada; National Science Council of the
Republic of China; Swiss National Science Foundation; A.P. Sloan
Foundation; Bundesministerium fur Bildung und Forschung, Germany; World
Class University Program; National Research Foundation of Korea; Science
and Technology Facilities Council; Royal Society, United Kingdom;
Institut National de Physique Nucleaire et Physique des Particules/CNRS;
Russian Foundation for Basic Research; Ministerio de Ciencia e
Innovacion; Programa Consolider-Ingenio 2010, Spain; Slovak RD Agency;
Academy of Finland
FX We thank the Fermilab staff and the technical staffs of the
participating institutions for their vital contributions. This work was
supported by the U.S. Department of Energy and National Science
Foundation; the Italian Istituto Nazionale di Fisica Nucleare; the
Ministry of Education, Culture, Sports, Science and Technology of Japan;
the Natural Sciences and Engineering Research Council of Canada; the
National Science Council of the Republic of China; the Swiss National
Science Foundation; the A.P. Sloan Foundation; the Bundesministerium fur
Bildung und Forschung, Germany; the World Class University Program, the
National Research Foundation of Korea; the Science and Technology
Facilities Council and the Royal Society, United Kingdom; the Institut
National de Physique Nucleaire et Physique des Particules/CNRS; the
Russian Foundation for Basic Research; the Ministerio de Ciencia e
Innovacion, and Programa Consolider-Ingenio 2010, Spain; the Slovak R&D
Agency; and the Academy of Finland.
NR 35
TC 22
Z9 22
U1 2
U2 16
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 052011
DI 10.1103/PhysRevD.81.052011
PG 20
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200019
ER
PT J
AU Aaltonen, T
Adelman, J
Gonzalez, BA
Amerio, S
Amidei, D
Anastassov, A
Annovi, A
Antos, J
Apollinari, G
Apresyan, A
Arisawa, T
Artikov, A
Asaadi, J
Ashmanskas, W
Attal, A
Aurisano, A
Azfar, F
Badgett, W
Barbaro-Galtieri, A
Barnes, VE
Barnett, BA
Barria, P
Bartos, P
Bauer, G
Beauchemin, PH
Bedeschi, F
Beecher, D
Behari, S
Bellettini, G
Bellinger, J
Benjamin, D
Beretvas, A
Bhatti, A
Binkley, M
Bisello, D
Bizjak, I
Blair, RE
Blocker, C
Blumenfeld, B
Bocci, A
Bodek, A
Boisvert, V
Bortoletto, D
Boudreau, J
Boveia, A
Brau, B
Bridgeman, A
Brigliadori, L
Bromberg, C
Brubaker, E
Budagov, J
Budd, HS
Budd, S
Burkett, K
Busetto, G
Bussey, P
Buzatu, A
Byrum, KL
Cabrera, S
Calancha, C
Camarda, S
Campanelli, M
Campbell, M
Canelli, F
Canepa, A
Carls, B
Carlsmith, D
Carosi, R
Carrillo, S
Carron, S
Casal, B
Casarsa, M
Castro, A
Catastini, P
Cauz, D
Cavaliere, V
Cavalli-Sforza, M
Cerri, A
Cerrito, L
Chang, SH
Chen, YC
Chertok, M
Chiarelli, G
Chlachidze, G
Chlebana, F
Cho, K
Chokheli, D
Chou, JP
Chung, K
Chung, WH
Chung, YS
Chwalek, T
Ciobanu, CI
Ciocci, MA
Clark, A
Clark, D
Compostella, G
Convery, ME
Conway, J
Corbo, M
Cordelli, M
Cox, CA
Cox, DJ
Crescioli, F
Almenar, CC
Cuevas, J
Culbertson, R
Cully, JC
Dagenhart, D
Datta, M
Davies, T
de Barbaro, P
De Cecco, S
Deisher, A
De Lorenzo, G
Dell'Orso, M
Deluca, C
Demortier, L
Deng, J
Deninno, M
d'Errico, M
Di Canto, A
di Giovanni, GP
Di Ruzza, B
Dittmann, JR
D'Onofrio, M
Donati, S
Dong, P
Dorigo, T
Dube, S
Ebina, K
Elagin, A
Erbacher, R
Errede, D
Errede, S
Ershaidat, N
Eusebi, R
Fang, HC
Farrington, S
Fedorko, WT
Feild, RG
Feindt, M
Fernandez, JP
Ferrazza, C
Field, R
Flanagan, G
Forrest, R
Frank, MJ
Franklin, M
Freeman, JC
Furic, I
Gallinaro, M
Galyardt, J
Garberson, F
Garcia, JE
Garfinkel, AF
Garosi, P
Gerberich, H
Gerdes, D
Gessler, A
Giagu, S
Giakoumopoulou, V
Giannetti, P
Gibson, K
Gimmell, JL
Ginsburg, CM
Giokaris, N
Giordani, M
Giromini, P
Giunta, M
Giurgiu, G
Glagolev, V
Glenzinski, D
Gold, M
Goldschmidt, N
Golossanov, A
Gomez, G
Gomez-Ceballos, G
Goncharov, M
Gonzalez, O
Gorelov, I
Goshaw, AT
Goulianos, K
Gresele, A
Grinstein, S
Grosso-Pilcher, C
Group, RC
Grundler, U
da Costa, JG
Gunay-Unalan, Z
Haber, C
Hahn, SR
Halkiadakis, E
Han, BY
Han, JY
Happacher, F
Hara, K
Hare, D
Hare, M
Harr, RF
Hartz, M
Hatakeyama, K
Hays, C
Heck, M
Heinrich, J
Herndon, M
Heuser, J
Hewamanage, S
Hidas, D
Hill, CS
Hirschbuehl, D
Hocker, A
Hou, S
Houlden, M
Hsu, SC
Hughes, RE
Hurwitz, M
Husemann, U
Hussein, M
Huston, J
Incandela, J
Introzzi, G
Iori, M
Ivanov, A
James, E
Jang, D
Jayatilaka, B
Jeon, EJ
Jha, MK
Jindariani, S
Johnson, W
Jones, M
Joo, KK
Jun, SY
Jung, JE
Junk, TR
Kamon, T
Kar, D
Karchin, PE
Kato, Y
Kephart, R
Ketchum, W
Keung, J
Khotilovich, V
Kilminster, B
Kim, DH
Kim, HS
Kim, HW
Kim, JE
Kim, MJ
Kim, SB
Kim, SH
Kim, YK
Kimura, N
Kirsch, L
Klimenko, S
Kondo, K
Kong, DJ
Konigsberg, J
Korytov, A
Kotwal, AV
Kreps, M
Kroll, J
Krop, D
Krumnack, N
Kruse, M
Krutelyov, V
Kuhr, T
Kulkarni, NP
Kurata, M
Kwang, S
Laasanen, AT
Lami, S
Lammel, S
Lancaster, M
Lander, RL
Lannon, K
Lath, A
Latino, G
Lazzizzera, I
LeCompte, T
Lee, E
Lee, HS
Lee, JS
Lee, SW
Leone, S
Lewis, JD
Lin, CJ
Linacre, J
Lindgren, M
Lipeles, E
Lister, A
Litvintsev, DO
Liu, C
Liu, T
Lockyer, NS
Loginov, A
Lovas, L
Lucchesi, D
Lueck, J
Lujan, P
Lukens, P
Lungu, G
Lys, J
Lysak, R
MacQueen, D
Madrak, R
Maeshima, K
Makhoul, K
Maksimovic, P
Malde, S
Malik, S
Manca, G
Manousakis-Katsikakis, A
Margaroli, F
Marino, C
Marino, CP
Martin, A
Martin, V
Martinez, M
Martinez-Ballarin, R
Mastrandrea, P
Mathis, M
Mattson, ME
Mazzanti, P
McFarland, KS
McIntyre, P
McNulty, R
Mehta, A
Mehtala, P
Menzione, A
Mesropian, C
Miao, T
Mietlicki, D
Miladinovic, N
Miller, R
Mills, C
Milnik, M
Mitra, A
Mitselmakher, G
Miyake, H
Moed, S
Moggi, N
Mondragon, MN
Moon, CS
Moore, R
Morello, MJ
Morlock, J
Fernandez, PM
Mulmenstadt, J
Mukherjee, A
Muller, T
Murat, P
Mussini, M
Nachtman, J
Nagai, Y
Naganoma, J
Nakamura, K
Nakano, I
Napier, A
Nett, J
Neu, C
Neubauer, MS
Neubauer, S
Nielsen, J
Nodulman, L
Norman, M
Norniella, O
Nurse, E
Oakes, L
Oh, SH
Oh, YD
Oksuzian, I
Okusawa, T
Orava, R
Osterberg, K
Griso, SP
Pagliarone, C
Palencia, E
Papadimitriou, V
Papaikonomou, A
Paramanov, AA
Parks, B
Pashapour, S
Patrick, J
Pauletta, G
Paulini, M
Paus, C
Peiffer, T
Pellett, DE
Penzo, A
Phillips, TJ
Piacentino, G
Pianori, E
Pinera, L
Pitts, K
Plager, C
Pondrom, L
Potamianos, K
Poukhov, O
Prokoshin, F
Pronko, A
Ptohos, F
Pueschel, E
Punzi, G
Pursley, J
Rademacker, J
Rahaman, A
Ramakrishnan, V
Ranjan, N
Redondo, I
Renton, P
Renz, M
Rescigno, M
Richter, S
Rimondi, F
Ristori, L
Robson, A
Rodrigo, T
Rodriguez, T
Rogers, E
Rolli, S
Roser, R
Rossi, M
Rossin, R
Roy, P
Ruiz, A
Russ, J
Rusu, V
Rutherford, B
Saarikko, H
Safonov, A
Sakumoto, WK
Santi, L
Sartori, L
Sato, AK
Savoy-Navarro, A
Schlabach, P
Schmidt, A
Schmidt, EE
Schmidt, MA
Schmidt, MP
Schmitt, M
Schwarz, T
Scodellaro, L
Scribano, A
Scuri, F
Sedov, A
Seidel, S
Seiya, Y
Semenov, A
Sexton-Kennedy, L
Sforza, F
Sfyrla, A
Shalhout, SZ
Shears, T
Shepard, PF
Shimojima, M
Shiraishi, S
Shochet, M
Shon, Y
Shreyber, I
Simonenko, A
Sinervo, P
Sisakyan, A
Slaughter, AJ
Slaunwhite, J
Sliwa, K
Smith, JR
Snider, FD
Snihur, R
Soha, A
Somalwar, S
Sorin, V
Squillacioti, P
Stanitzki, M
Denis, RS
Stelzer, B
Stelzer-Chilton, O
Stentz, D
Strologas, J
Strycker, GL
Suh, JS
Sukhanov, A
Suslov, I
Taffard, A
Takashima, R
Takeuchi, Y
Tanaka, R
Tang, J
Tecchio, M
Teng, PK
Thom, J
Thome, J
Thompson, GA
Thomson, E
Tipton, P
Ttito-Guzman, P
Tkaczyk, S
Toback, D
Tokar, S
Tollefson, K
Tomura, T
Tonelli, D
Torre, S
Torretta, D
Totaro, P
Tourneur, S
Trovato, M
Tsai, SY
Tu, Y
Turini, N
Ukegawa, F
Uozumi, S
van Remortel, N
Varganov, A
Vataga, E
Vazquez, F
Velev, G
Vellidis, C
Vidal, M
Vila, I
Vilar, R
Vogel, M
Volobouev, I
Volpi, G
Wagner, P
Wagner, RG
Wagner, RL
Wagner, W
Wagner-Kuhr, J
Wakisaka, T
Wallny, R
Wang, SM
Warburton, A
Waters, D
Weinberger, M
Weinelt, J
Wester, WC
Whitehouse, B
Whiteson, D
Wicklund, AB
Wicklund, E
Wilbur, S
Williams, G
Williams, HH
Wilson, P
Winer, BL
Wittich, P
Wolbers, S
Wolfe, C
Wolfe, H
Wright, T
Wu, X
Wurthwein, F
Yagil, A
Yamamoto, K
Yamaoka, J
Yang, UK
Yang, YC
Yao, WM
Yeh, GP
Yi, K
Yoh, J
Yorita, K
Yoshida, T
Yu, GB
Yu, I
Yu, SS
Yun, JC
Zanetti, A
Zeng, Y
Zhang, X
Zheng, Y
Zucchelli, S
AF Aaltonen, T.
Adelman, J.
Alvarez Gonzalez, B.
Amerio, S.
Amidei, D.
Anastassov, A.
Annovi, A.
Antos, J.
Apollinari, G.
Apresyan, A.
Arisawa, T.
Artikov, A.
Asaadi, J.
Ashmanskas, W.
Attal, A.
Aurisano, A.
Azfar, F.
Badgett, W.
Barbaro-Galtieri, A.
Barnes, V. E.
Barnett, B. A.
Barria, P.
Bartos, P.
Bauer, G.
Beauchemin, P. -H.
Bedeschi, F.
Beecher, D.
Behari, S.
Bellettini, G.
Bellinger, J.
Benjamin, D.
Beretvas, A.
Bhatti, A.
Binkley, M.
Bisello, D.
Bizjak, I.
Blair, R. E.
Blocker, C.
Blumenfeld, B.
Bocci, A.
Bodek, A.
Boisvert, V.
Bortoletto, D.
Boudreau, J.
Boveia, A.
Brau, B.
Bridgeman, A.
Brigliadori, L.
Bromberg, C.
Brubaker, E.
Budagov, J.
Budd, H. S.
Budd, S.
Burkett, K.
Busetto, G.
Bussey, P.
Buzatu, A.
Byrum, K. L.
Cabrera, S.
Calancha, C.
Camarda, S.
Campanelli, M.
Campbell, M.
Canelli, F.
Canepa, A.
Carls, B.
Carlsmith, D.
Carosi, R.
Carrillo, S.
Carron, S.
Casal, B.
Casarsa, M.
Castro, A.
Catastini, P.
Cauz, D.
Cavaliere, V.
Cavalli-Sforza, M.
Cerri, A.
Cerrito, L.
Chang, S. H.
Chen, Y. C.
Chertok, M.
Chiarelli, G.
Chlachidze, G.
Chlebana, F.
Cho, K.
Chokheli, D.
Chou, J. P.
Chung, K.
Chung, W. H.
Chung, Y. S.
Chwalek, T.
Ciobanu, C. I.
Ciocci, M. A.
Clark, A.
Clark, D.
Compostella, G.
Convery, M. E.
Conway, J.
Corbo, M.
Cordelli, M.
Cox, C. A.
Cox, D. J.
Crescioli, F.
Almenar, C. Cuenca
Cuevas, J.
Culbertson, R.
Cully, J. C.
Dagenhart, D.
Datta, M.
Davies, T.
de Barbaro, P.
De Cecco, S.
Deisher, A.
De Lorenzo, G.
Dell'Orso, M.
Deluca, C.
Demortier, L.
Deng, J.
Deninno, M.
d'Errico, M.
Di Canto, A.
di Giovanni, G. P.
Di Ruzza, B.
Dittmann, J. R.
D'Onofrio, M.
Donati, S.
Dong, P.
Dorigo, T.
Dube, S.
Ebina, K.
Elagin, A.
Erbacher, R.
Errede, D.
Errede, S.
Ershaidat, N.
Eusebi, R.
Fang, H. C.
Farrington, S.
Fedorko, W. T.
Feild, R. G.
Feindt, M.
Fernandez, J. P.
Ferrazza, C.
Field, R.
Flanagan, G.
Forrest, R.
Frank, M. J.
Franklin, M.
Freeman, J. C.
Furic, I.
Gallinaro, M.
Galyardt, J.
Garberson, F.
Garcia, J. E.
Garfinkel, A. F.
Garosi, P.
Gerberich, H.
Gerdes, D.
Gessler, A.
Giagu, S.
Giakoumopoulou, V.
Giannetti, P.
Gibson, K.
Gimmell, J. L.
Ginsburg, C. M.
Giokaris, N.
Giordani, M.
Giromini, P.
Giunta, M.
Giurgiu, G.
Glagolev, V.
Glenzinski, D.
Gold, M.
Goldschmidt, N.
Golossanov, A.
Gomez, G.
Gomez-Ceballos, G.
Goncharov, M.
Gonzalez, O.
Gorelov, I.
Goshaw, A. T.
Goulianos, K.
Gresele, A.
Grinstein, S.
Grosso-Pilcher, C.
Group, R. C.
Grundler, U.
da Costa, J. Guimaraes
Gunay-Unalan, Z.
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Hartz, M.
Hatakeyama, K.
Hays, C.
Heck, M.
Heinrich, J.
Herndon, M.
Heuser, J.
Hewamanage, S.
Hidas, D.
Hill, C. S.
Hirschbuehl, D.
Hocker, A.
Hou, S.
Houlden, M.
Hsu, S. -C.
Hughes, R. E.
Hurwitz, M.
Husemann, U.
Hussein, M.
Huston, J.
Incandela, J.
Introzzi, G.
Iori, M.
Ivanov, A.
James, E.
Jang, D.
Jayatilaka, B.
Jeon, E. J.
Jha, M. K.
Jindariani, S.
Johnson, W.
Jones, M.
Joo, K. K.
Jun, S. Y.
Jung, J. E.
Junk, T. R.
Kamon, T.
Kar, D.
Karchin, P. E.
Kato, Y.
Kephart, R.
Ketchum, W.
Keung, J.
Khotilovich, V.
Kilminster, B.
Kim, D. H.
Kim, H. S.
Kim, H. W.
Kim, J. E.
Kim, M. J.
Kim, S. B.
Kim, S. H.
Kim, Y. K.
Kimura, N.
Kirsch, L.
Klimenko, S.
Kondo, K.
Kong, D. J.
Konigsberg, J.
Korytov, A.
Kotwal, A. V.
Kreps, M.
Kroll, J.
Krop, D.
Krumnack, N.
Kruse, M.
Krutelyov, V.
Kuhr, T.
Kulkarni, N. P.
Kurata, M.
Kwang, S.
Laasanen, A. T.
Lami, S.
Lammel, S.
Lancaster, M.
Lander, R. L.
Lannon, K.
Lath, A.
Latino, G.
Lazzizzera, I.
LeCompte, T.
Lee, E.
Lee, H. S.
Lee, J. S.
Lee, S. W.
Leone, S.
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Linacre, J.
Lindgren, M.
Lipeles, E.
Lister, A.
Litvintsev, D. O.
Liu, C.
Liu, T.
Lockyer, N. S.
Loginov, A.
Lovas, L.
Lucchesi, D.
Lueck, J.
Lujan, P.
Lukens, P.
Lungu, G.
Lys, J.
Lysak, R.
MacQueen, D.
Madrak, R.
Maeshima, K.
Makhoul, K.
Maksimovic, P.
Malde, S.
Malik, S.
Manca, G.
Manousakis-Katsikakis, A.
Margaroli, F.
Marino, C.
Marino, C. P.
Martin, A.
Martin, V.
Martinez, M.
Martinez-Ballarin, R.
Mastrandrea, P.
Mathis, M.
Mattson, M. E.
Mazzanti, P.
McFarland, K. S.
McIntyre, P.
McNulty, R.
Mehta, A.
Mehtala, P.
Menzione, A.
Mesropian, C.
Miao, T.
Mietlicki, D.
Miladinovic, N.
Miller, R.
Mills, C.
Milnik, M.
Mitra, A.
Mitselmakher, G.
Miyake, H.
Moed, S.
Moggi, N.
Mondragon, M. N.
Moon, C. S.
Moore, R.
Morello, M. J.
Morlock, J.
Fernandez, P. Movilla
Mulmenstadt, J.
Mukherjee, A.
Muller, Th.
Murat, P.
Mussini, M.
Nachtman, J.
Nagai, Y.
Naganoma, J.
Nakamura, K.
Nakano, I.
Napier, A.
Nett, J.
Neu, C.
Neubauer, M. S.
Neubauer, S.
Nielsen, J.
Nodulman, L.
Norman, M.
Norniella, O.
Nurse, E.
Oakes, L.
Oh, S. H.
Oh, Y. D.
Oksuzian, I.
Okusawa, T.
Orava, R.
Osterberg, K.
Griso, S. Pagan
Pagliarone, C.
Palencia, E.
Papadimitriou, V.
Papaikonomou, A.
Paramanov, A. A.
Parks, B.
Pashapour, S.
Patrick, J.
Pauletta, G.
Paulini, M.
Paus, C.
Peiffer, T.
Pellett, D. E.
Penzo, A.
Phillips, T. J.
Piacentino, G.
Pianori, E.
Pinera, L.
Pitts, K.
Plager, C.
Pondrom, L.
Potamianos, K.
Poukhov, O.
Prokoshin, F.
Pronko, A.
Ptohos, F.
Pueschel, E.
Punzi, G.
Pursley, J.
Rademacker, J.
Rahaman, A.
Ramakrishnan, V.
Ranjan, N.
Redondo, I.
Renton, P.
Renz, M.
Rescigno, M.
Richter, S.
Rimondi, F.
Ristori, L.
Robson, A.
Rodrigo, T.
Rodriguez, T.
Rogers, E.
Rolli, S.
Roser, R.
Rossi, M.
Rossin, R.
Roy, P.
Ruiz, A.
Russ, J.
Rusu, V.
Rutherford, B.
Saarikko, H.
Safonov, A.
Sakumoto, W. K.
Santi, L.
Sartori, L.
Sato, A. K.
Savoy-Navarro, A.
Schlabach, P.
Schmidt, A.
Schmidt, E. E.
Schmidt, M. A.
Schmidt, M. P.
Schmitt, M.
Schwarz, T.
Scodellaro, L.
Scribano, A.
Scuri, F.
Sedov, A.
Seidel, S.
Seiya, Y.
Semenov, A.
Sexton-Kennedy, L.
Sforza, F.
Sfyrla, A.
Shalhout, S. Z.
Shears, T.
Shepard, P. F.
Shimojima, M.
Shiraishi, S.
Shochet, M.
Shon, Y.
Shreyber, I.
Simonenko, A.
Sinervo, P.
Sisakyan, A.
Slaughter, A. J.
Slaunwhite, J.
Sliwa, K.
Smith, J. R.
Snider, F. D.
Snihur, R.
Soha, A.
Somalwar, S.
Sorin, V.
Squillacioti, P.
Stanitzki, M.
Denis, R. St.
Stelzer, B.
Stelzer-Chilton, O.
Stentz, D.
Strologas, J.
Strycker, G. L.
Suh, J. S.
Sukhanov, A.
Suslov, I.
Taffard, A.
Takashima, R.
Takeuchi, Y.
Tanaka, R.
Tang, J.
Tecchio, M.
Teng, P. K.
Thom, J.
Thome, J.
Thompson, G. A.
Thomson, E.
Tipton, P.
Ttito-Guzman, P.
Tkaczyk, S.
Toback, D.
Tokar, S.
Tollefson, K.
Tomura, T.
Tonelli, D.
Torre, S.
Torretta, D.
Totaro, P.
Tourneur, S.
Trovato, M.
Tsai, S. -Y.
Tu, Y.
Turini, N.
Ukegawa, F.
Uozumi, S.
van Remortel, N.
Varganov, A.
Vataga, E.
Vazquez, F.
Velev, G.
Vellidis, C.
Vidal, M.
Vila, I.
Vilar, R.
Vogel, M.
Volobouev, I.
Volpi, G.
Wagner, P.
Wagner, R. G.
Wagner, R. L.
Wagner, W.
Wagner-Kuhr, J.
Wakisaka, T.
Wallny, R.
Wang, S. M.
Warburton, A.
Waters, D.
Weinberger, M.
Weinelt, J.
Wester, W. C., III
Whitehouse, B.
Whiteson, D.
Wicklund, A. B.
Wicklund, E.
Wilbur, S.
Williams, G.
Williams, H. H.
Wilson, P.
Winer, B. L.
Wittich, P.
Wolbers, S.
Wolfe, C.
Wolfe, H.
Wright, T.
Wu, X.
Wuerthwein, F.
Yagil, A.
Yamamoto, K.
Yamaoka, J.
Yang, U. K.
Yang, Y. C.
Yao, W. M.
Yeh, G. P.
Yi, K.
Yoh, J.
Yorita, K.
Yoshida, T.
Yu, G. B.
Yu, I.
Yu, S. S.
Yun, J. C.
Zanetti, A.
Zeng, Y.
Zhang, X.
Zheng, Y.
Zucchelli, S.
CA CDF Collaboration
TI Study of the associated production of photons and b-quark jets in
p(p)over-bar collisions at root s=1.96 TeV
SO PHYSICAL REVIEW D
LA English
DT Article
ID ELECTROMAGNETIC CALORIMETER; CDF
AB The cross section for photon production in association with at least one jet containing a b quark has been measured in proton antiproton collisions at root s = 1.96 TeV. The data sample used corresponds to an integrated luminosity of 340 pb(-1) collected with the CDF II detector. Both the differential cross section as a function of photon transverse energy E(T)(gamma) and the total cross section are measured and compared to a next-to-leading order prediction for the process.
C1 [Aaltonen, T.; Mehtala, P.; Orava, R.; Osterberg, K.; Saarikko, H.; van Remortel, N.] Univ Helsinki, Dept Phys, Div High Energy Phys, FIN-00014 Helsinki, Finland.
[Chen, Y. C.; Hou, S.; Mitra, A.; Teng, P. K.; Tsai, S. -Y.; Wang, S. M.] Acad Sinica, Inst Phys, Taipei 11529, Taiwan.
[Blair, R. E.; Byrum, K. L.; LeCompte, T.; Nodulman, L.; Paramanov, A. A.; Wagner, R. G.; Wicklund, A. B.] Argonne Natl Lab, Argonne, IL 60439 USA.
[Giakoumopoulou, V.; Giokaris, N.; Manousakis-Katsikakis, A.; Vellidis, C.] Univ Athens, GR-15771 Athens, Greece.
[Attal, A.; Camarda, S.; Cavalli-Sforza, M.; De Lorenzo, G.; Deluca, C.; D'Onofrio, M.; Grinstein, S.; Martinez, M.; Sorin, V.] Univ Autonoma Barcelona, Inst Fis Altes Energies, E-08193 Barcelona, Spain.
[Dittmann, J. R.; Frank, M. J.; Hatakeyama, K.; Hewamanage, S.; Krumnack, N.] Baylor Univ, Waco, TX 76798 USA.
[Brigliadori, L.; Castro, A.; Deninno, M.; Jha, M. K.; Mazzanti, P.; Moggi, N.; Mussini, M.; Rimondi, F.; Zucchelli, S.] Ist Nazl Fis Nucl, I-40127 Bologna, Italy.
[Brigliadori, L.; Castro, A.; Mussini, M.; Rimondi, F.; Zucchelli, S.] Univ Bologna, I-40127 Bologna, Italy.
[Blocker, C.; Clark, D.; Kirsch, L.; Miladinovic, N.] Brandeis Univ, Waltham, MA 02254 USA.
[Chertok, M.; Conway, J.; Cox, C. A.; Cox, D. J.; Erbacher, R.; Forrest, R.; Ivanov, A.; Johnson, W.; Lander, R. L.; Pellett, D. E.; Schwarz, T.; Smith, J. R.] Univ Calif Davis, Davis, CA 95616 USA.
[Plager, C.; Wallny, R.; Zheng, Y.] Univ Calif Los Angeles, Los Angeles, CA 90024 USA.
[Norman, M.; Wuerthwein, F.; Yagil, A.] Univ Calif San Diego, San Diego, CA 92093 USA.
[Boveia, A.; Brau, B.; Garberson, F.; Hill, C. S.; Incandela, J.; Krutelyov, V.; Rossin, R.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Alvarez Gonzalez, B.; Casal, B.; Cuevas, J.; Gomez, G.; Rodrigo, T.; Ruiz, A.; Scodellaro, L.; Vila, I.; Vilar, R.] Univ Cantabria, CSIC, Inst Fis Cantabria, E-39005 Santander, Spain.
[Galyardt, J.; Jang, D.; Jun, S. Y.; Paulini, M.; Pueschel, E.; Russ, J.; Thome, J.] Carnegie Mellon Univ, Pittsburgh, PA 15213 USA.
[Adelman, J.; Brubaker, E.; Canelli, F.; Fedorko, W. T.; Grosso-Pilcher, C.; Hurwitz, M.; Ketchum, W.; Kim, Y. K.; Krop, D.; Kwang, S.; Lee, H. S.; Schmidt, M. A.; Shiraishi, S.; Shochet, M.; Tang, J.; Wilbur, S.; Wolfe, C.; Yang, U. K.] Univ Chicago, Enrico Fermi Inst, Chicago, IL 60637 USA.
[Antos, J.; Bartos, P.; Lovas, L.; Lysak, R.; Tokar, S.] Slovak Acad Sci, Inst Expt Phys, Kosice 04001, Slovakia.
[Antos, J.; Bartos, P.; Lovas, L.; Lysak, R.; Tokar, S.] Comenius Univ, Bratislava 84248, Slovakia.
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[Ciobanu, C. I.; Corbo, M.; di Giovanni, G. P.; Ershaidat, N.; Savoy-Navarro, A.; Tourneur, S.] Univ Paris 06, CNRS, IN2P3, LPNHE,UMR7585, F-75252 Paris, France.
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RP Aaltonen, T (reprint author), Univ Helsinki, Dept Phys, Div High Energy Phys, FIN-00014 Helsinki, Finland.
RI Gorelov, Igor/J-9010-2015; Canelli, Florencia/O-9693-2016; Scodellaro,
Luca/K-9091-2014; Grinstein, Sebastian/N-3988-2014; Paulini,
Manfred/N-7794-2014; Russ, James/P-3092-2014; unalan,
zeynep/C-6660-2015; Cabrera Urban, Susana/H-1376-2015; Garcia, Jose
/H-6339-2015; ciocci, maria agnese /I-2153-2015; Cavalli-Sforza,
Matteo/H-7102-2015; Chiarelli, Giorgio/E-8953-2012; Muelmenstaedt,
Johannes/K-2432-2015; Introzzi, Gianluca/K-2497-2015; Ruiz,
Alberto/E-4473-2011; Kim, Soo-Bong/B-7061-2014; Lysak,
Roman/H-2995-2014; Moon, Chang-Seong/J-3619-2014; Robson,
Aidan/G-1087-2011; De Cecco, Sandro/B-1016-2012; manca,
giulia/I-9264-2012; Amerio, Silvia/J-4605-2012; Punzi,
Giovanni/J-4947-2012; Zeng, Yu/C-1438-2013; Annovi, Alberto/G-6028-2012;
Ivanov, Andrew/A-7982-2013; Warburton, Andreas/N-8028-2013
OI Gorelov, Igor/0000-0001-5570-0133; Canelli,
Florencia/0000-0001-6361-2117; Scodellaro, Luca/0000-0002-4974-8330;
Grinstein, Sebastian/0000-0002-6460-8694; Paulini,
Manfred/0000-0002-6714-5787; Russ, James/0000-0001-9856-9155; unalan,
zeynep/0000-0003-2570-7611; ciocci, maria agnese /0000-0003-0002-5462;
Chiarelli, Giorgio/0000-0001-9851-4816; Muelmenstaedt,
Johannes/0000-0003-1105-6678; Introzzi, Gianluca/0000-0002-1314-2580;
Ruiz, Alberto/0000-0002-3639-0368; Moon,
Chang-Seong/0000-0001-8229-7829; Punzi, Giovanni/0000-0002-8346-9052;
Annovi, Alberto/0000-0002-4649-4398; Ivanov, Andrew/0000-0002-9270-5643;
Warburton, Andreas/0000-0002-2298-7315
FU U.S. Department of Energy; National Science Foundation; Italian Istituto
Nazionale di Fisica Nucleare; Ministry of Education, Culture, Sports,
Science and Technology of Japan; Natural Sciences and Engineering
Research Council of Canada; National Science Council of the Republic of
China; Swiss National Science Foundation; A.P. Sloan Foundation;
Bundes-ministerium fur Bildung und Forschung, Germany; World Class
University Program; National Research Foundation of Korea; Science and
Technology Facilities Council; Royal Society, UK; Institut National de
Physique Nucleaire et Physique des Particules/CNRS; Russian Foundation
for Basic Research; Ministerio de Ciencia e Innovacion; Programa
Consolider-Ingenio 2010, Spain; Slovak RD Agency; Academy of Finland
FX We thank the Fermilab staff and the technical staffs of the
participating institutions for their vital contributions. This work was
supported by the U.S. Department of Energy and National Science
Foundation; the Italian Istituto Nazionale di Fisica Nucleare; the
Ministry of Education, Culture, Sports, Science and Technology of Japan;
the Natural Sciences and Engineering Research Council of Canada; the
National Science Council of the Republic of China; the Swiss National
Science Foundation; the A.P. Sloan Foundation; the Bundes-ministerium
fur Bildung und Forschung, Germany; the World Class University Program,
the National Research Foundation of Korea; the Science and Technology
Facilities Council and the Royal Society, UK; the Institut National de
Physique Nucleaire et Physique des Particules/CNRS; the Russian
Foundation for Basic Research; the Ministerio de Ciencia e Innovacion,
and Programa Consolider-Ingenio 2010, Spain; the Slovak R&D Agency; and
the Academy of Finland.
NR 23
TC 17
Z9 17
U1 1
U2 14
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 052006
DI 10.1103/PhysRevD.81.052006
PG 8
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200014
ER
PT J
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Wimpenny, S. J.
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Zelitch, S.
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Zverev, E. G.
CA D0 Collaboration
TI Double parton interactions in gamma+3 jet events in p(p)over-bar
collisions at root s=1.96 TeV
SO PHYSICAL REVIEW D
LA English
DT Article
ID TOTAL CROSS-SECTION; ROOT S=1.8 TEV; 4-JET EVENTS; (P)OVER-BAR-P
COLLISIONS; HADRON-COLLISIONS; SCATTERING; DISTRIBUTIONS; COLLIDER
AB We have used a sample of gamma + 3 jets events collected by the D0 experiment with an integrated luminosity of about 1 fb(-1) to determine the fraction of events with double parton scattering (f(DP)) in a single p (p) over bar collision at root s = 1.96 TeV. The DP fraction and effective cross section (sigma(eff)), a process-independent scale parameter related to the parton density inside the nucleon, are measured in three intervals of the second (ordered in p(T)) jet transverse momentum p(T)(jet2) within the range 15 <= p(T)(jet2) <= 30 GeV. In this range, f(DP) varies between 0.23 <= f(DP) <= 0.47, while sigma(eff) has the average value sigma(ave)(eff) = 16.4 +/- 0.3(stat) +/- 2.3(syst) mb.
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[Ellison, J.; Heinson, A. P.; Li, L.; Padilla, M.; Wimpenny, S. J.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Adams, T.; Askew, A.; Blessing, S.; Carrera, E.; Hagopian, S.; Hoang, T.; Wahl, H. D.] Florida State Univ, Tallahassee, FL 32306 USA.
[Aoki, M.; Bagby, L.; Baldin, B.; Bartlett, J. F.; Bellantoni, L.; Bhat, P. C.; Boehnlein, A.; Bross, A.; Casey, B. C. K.; Cihangir, S.; Cooke, M.; Cooper, W. E.; Demarteau, M.; Denisov, D.; Desai, S.; Diehl, H. T.; Diesburg, M.; Elvira, V. D.; Fisk, H. E.; Fuess, S.; Ginther, G.; Greenlee, H.; Gruenendahl, S.; Gutierrez, G.; Illingworth, R.; Ito, A. S.; Johnson, M.; Jonckheere, A.; Juste, A.; Kasper, P. A.; Khalatyan, N.; Lee, W. M.; Li, Q. Z.; Lincoln, D.; Lipton, R.; Lyon, A. L.; Penning, B.; Podstavkov, V. M.; Rubinov, P.; Sanghi, B.; Savage, G.; Sirotenko, V.; Stutte, L.; Verzocchi, M.; Weber, M.; Xie, Y.; Yamada, R.; Yasuda, T.; Ye, Z.; Youn, S. W.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Adams, M.; Gerber, C. E.; Strom, D.; Varelas, N.] Univ Illinois, Chicago, IL 60607 USA.
[Blazey, G.; Chakraborty, D.; Dyshkant, A.; Fortner, M.; Hedin, D.; Menezes, D.; Uzunyan, S.; Zutshi, V.] Univ Illinois, De Kalb, IL 60115 USA.
[Buchholz, D.; Kirby, M. H.; Schellman, H.; Yacoob, S.] Northwestern Univ, Evanston, IL 60208 USA.
[Chandra, A.; Evans, H.; Lammers, S.; Parua, N.; Price, D.; Van Kooten, R.; Zieminska, D.] Indiana Univ, Bloomington, IN 47405 USA.
[Parashar, N.] Purdue Univ Calumet, Hammond, IN 46323 USA.
[Chan, K. M.; Hildreth, M. D.; Lam, D.; Osta, J.; Ruchti, R.; Smirnov, D.; Warchol, J.; Wayne, M.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Hauptman, J. M.] Iowa State Univ, Ames, IA 50011 USA.
[Baringer, P.; Bean, A.; Clutter, J.; McGivern, C. L.; Moulik, T.; Sekaric, J.; Wilson, G. W.] Univ Kansas, Lawrence, KS 66045 USA.
[Bandurin, D. V.; Bolton, T. A.; Maravin, Y.; Onoprienko, D.] Kansas State Univ, Manhattan, KS 66506 USA.
[Arov, M.; Greenwood, Z. D.; Sawyer, L.; Wobisch, M.] Louisiana Tech Univ, Ruston, LA 71272 USA.
[Eno, S.; Wetstein, M.] Univ Maryland, College Pk, MD 20742 USA.
[Boline, D.; Bose, T.; Cho, D. K.; Ferbel, T.; Jabeen, S.] Boston Univ, Boston, MA 02215 USA.
[Alverson, G.; Barberis, E.; Facini, G.; Haley, J.; Hesketh, G.; Wood, D. R.] Northeastern Univ, Boston, MA 02115 USA.
[Herner, K.; Neal, H. A.; Qian, J.; Strandberg, J.; Xu, C.; Zhou, B.] Univ Michigan, Ann Arbor, MI 48109 USA.
[Abolins, M.; Alton, A.; Benitez, J. A.; Brock, R.; Edmunds, D.; Fisher, W.; Geng, W.; Hall, I.; Kraus, J.; Linnemann, J.; Piper, J.; Schwienhorst, R.; Unalan, R.] Michigan State Univ, E Lansing, MI 48824 USA.
[Melnitchouk, A.; Quinn, B.] Univ Mississippi, University, MS 38677 USA.
[Bloom, K.; Claes, D.; DeVaughan, K.; Dominguez, A.; Eads, M.; Johnston, D.; Katsanos, I.; Malik, S.; Snow, G. R.] Univ Nebraska, Lincoln, NE 68588 USA.
[Atramentov, O.; Duggan, D.; Gershtein, Y.] Rutgers State Univ, Piscataway, NJ 08855 USA.
[Gerbaudo, D.; Tully, C.] Princeton Univ, Princeton, NJ 08544 USA.
[Iashvili, I.; Jain, S.; Kharchilava, A.; Kumar, A.; Strang, M. A.] SUNY Buffalo, Buffalo, NY 14260 USA.
[Brooijmans, G.; Haas, A.; Johnson, C.; Parsons, J.; Tuts, P. M.; Zivkovic, L.] Columbia Univ, New York, NY 10027 USA.
[Cammin, J.; Demina, R.; Ferbel, T.; Garcia-Bellido, A.; Ginther, G.; Harel, A.; Slattery, P.; Wang, M. H. L. S.; Zielinski, M.] Univ Rochester, Rochester, NY 14627 USA.
[Chakrabarti, S.; Grannis, P. D.; Guo, F.; Guo, J.; Hobbs, J. D.; Hu, Y.; McCarthy, R.; Rijssenbeek, M.; Schamberger, R. D.; Strauss, E.; Tsybychev, D.; Zhu, J.] SUNY Stony Brook, Stony Brook, NY 11794 USA.
[Begel, M.; Evdokimov, A.; Gadfort, T.; Patwa, A.; Pleier, M. -A.; Protopopescu, S.; Snyder, S.; Yip, K.] Brookhaven Natl Lab, Upton, NY 11973 USA.
[Snow, J.] Langston Univ, Langston, OK 73050 USA.
[Abbott, B.; Gutierrez, P.; Hossain, S.; Rominsky, M.; Severini, H.; Skubic, P.; Strauss, M.] Univ Oklahoma, Norman, OK 73019 USA.
[Khanov, A.; Rizatdinova, F.] Oklahoma State Univ, Stillwater, OK 74078 USA.
[Cutts, D.; Ferapontov, A. V.; Heintz, U.; Khatidze, D.; Landsberg, G.; Narain, M.; Pangilinan, M.; Parihar, V.; Partridge, R.; Yoo, H. D.] Brown Univ, Providence, RI 02912 USA.
[Brandt, A.; De, K.; Kaushik, V.; Sosebee, M.; Spurlock, B.; White, A.; Yu, J.] Univ Texas Arlington, Arlington, TX 76019 USA.
[Kehoe, R.; Renkel, P.] So Methodist Univ, Dallas, TX 75275 USA.
[Corcoran, M.; Mackin, D.; Padley, P.; Prewitt, M.] Rice Univ, Houston, TX 77005 USA.
[Buehler, M.; Hirosky, R.; Mulhearn, M.; Zelitch, S.] Univ Virginia, Charlottesville, VA 22901 USA.
[BackusMayes, J.; Burnett, T. H.; Dorland, T.; Goussiou, A.; Lubatti, H. J.; Schlobohm, S.; Watts, G.; Zhao, T.] Univ Washington, Seattle, WA 98195 USA.
RP Abazov, VM (reprint author), Joint Inst Nucl Res, Dubna, Russia.
RI Li, Liang/O-1107-2015; Yip, Kin/D-6860-2013; Fisher, Wade/N-4491-2013;
De, Kaushik/N-1953-2013; Ancu, Lucian Stefan/F-1812-2010; Alves,
Gilvan/C-4007-2013; Deliot, Frederic/F-3321-2014; Sharyy,
Viatcheslav/F-9057-2014; Lokajicek, Milos/G-7800-2014; Kupco,
Alexander/G-9713-2014; Kozelov, Alexander/J-3812-2014; Christoudias,
Theodoros/E-7305-2015; Guo, Jun/O-5202-2015; Gerbaudo,
Davide/J-4536-2012; Leflat, Alexander/D-7284-2012; Perfilov,
Maxim/E-1064-2012; Boos, Eduard/D-9748-2012; Novaes, Sergio/D-3532-2012;
Mercadante, Pedro/K-1918-2012; Mundim, Luiz/A-1291-2012; Gutierrez,
Phillip/C-1161-2011; Bolton, Tim/A-7951-2012; bu, xuebing/D-1121-2012;
Merkin, Mikhail/D-6809-2012; Dudko, Lev/D-7127-2012
OI Li, Liang/0000-0001-6411-6107; Yip, Kin/0000-0002-8576-4311; De,
Kaushik/0000-0002-5647-4489; Ancu, Lucian Stefan/0000-0001-5068-6723;
Sharyy, Viatcheslav/0000-0002-7161-2616; Christoudias,
Theodoros/0000-0001-9050-3880; Guo, Jun/0000-0001-8125-9433; Gerbaudo,
Davide/0000-0002-4463-0878; Novaes, Sergio/0000-0003-0471-8549; Mundim,
Luiz/0000-0001-9964-7805; Dudko, Lev/0000-0002-4462-3192
FU DOE and NSF (USA); CEA and CNRS/IN2P3 (France); FASI, Rosatom and RFBR
(Russia); CNPq, FAPERJ, FAPESP and FUNDUNESP (Brazil); DAE and DST
(India); Colciencias (Colombia); CONACyT (Mexico); KRF and KOSEF
(Korea); CONICET and UBACyT (Argentina); FOM (The Netherlands); STFC and
the Royal Society (United Kingdom); MSMT and GACR (Czech Republic); CRC
Program, CFI, NSERC and WestGrid Project (Canada); BMBF and DFG
(Germany); SFI (Ireland); Swedish Research Council (Sweden); CAS and
CNSF (China)
FX We would like to thank T. Sjostrand and P. Skands for very useful
discussions. We also thank the staffs at Fermilab and collaborating
institutions, and acknowledge support from the DOE and NSF (USA); CEA
and CNRS/IN2P3 (France); FASI, Rosatom and RFBR (Russia); CNPq, FAPERJ,
FAPESP and FUNDUNESP (Brazil); DAE and DST (India); Colciencias
(Colombia); CONACyT (Mexico); KRF and KOSEF (Korea); CONICET and UBACyT
(Argentina); FOM (The Netherlands); STFC and the Royal Society (United
Kingdom); MSMT and GACR (Czech Republic); CRC Program, CFI, NSERC and
WestGrid Project (Canada); BMBF and DFG (Germany); SFI (Ireland); The
Swedish Research Council (Sweden); and CAS and CNSF (China).
NR 45
TC 96
Z9 96
U1 1
U2 8
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 052012
DI 10.1103/PhysRevD.81.052012
PG 15
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200020
ER
PT J
AU Abbasi, R
Abdou, Y
Abu-Zayyad, T
Adams, J
Aguilar, JA
Ahlers, M
Andeen, K
Auffenberg, J
Bai, X
Baker, M
Barwick, SW
Bay, R
Alba, JLB
Beattie, K
Beatty, JJ
Bechet, S
Becker, JK
Becker, KH
Benabderrahmane, ML
Berdermann, J
Berghaus, P
Berley, D
Bernardini, E
Bertrand, D
Besson, DZ
Bissok, M
Blaufuss, E
Boersma, DJ
Bohm, C
Bolmont, J
Botner, O
Bradley, L
Braun, J
Breder, D
Carson, M
Castermans, T
Chirkin, D
Christy, B
Clem, J
Cohen, S
Cowen, DF
D'Agostino, MV
Danninger, M
Day, CT
De Clercq, C
Demirors, L
Depaepe, O
Descamps, F
Desiati, P
de Vries-Uiterweerd, G
DeYoung, T
Diaz-Velez, JC
Dreyer, J
Dumm, JP
Duvoort, MR
Edwards, WR
Ehrlich, R
Eisch, J
Ellsworth, RW
Engdegard, O
Euler, S
Evenson, PA
Fadiran, O
Fazely, AR
Feusels, T
Filimonov, K
Finley, C
Foerster, MM
Fox, BD
Franckowiak, A
Franke, R
Gaisser, TK
Gallagher, J
Ganugapati, R
Gerhardt, L
Gladstone, L
Goldschmidt, A
Goodman, JA
Gozzini, R
Grant, D
Griesel, T
Gross, A
Grullon, S
Gunasingha, RM
Gurtner, M
Ha, C
Hallgren, A
Halzen, F
Han, K
Hanson, K
Hasegawa, Y
Helbing, K
Herquet, P
Hickford, S
Hill, GC
Hoffman, KD
Homeier, A
Hoshina, K
Hubert, D
Huelsnitz, W
Hulss, JP
Hulth, PO
Hultqvist, K
Hussain, S
Imlay, RL
Inaba, M
Ishihara, A
Jacobsen, J
Japaridze, GS
Johansson, H
Joseph, JM
Kampert, KH
Kappes, A
Karg, T
Karle, A
Kelley, JL
Kemming, N
Kenny, P
Kiryluk, J
Kislat, F
Klein, SR
Knops, S
Kohnen, G
Kolanoski, H
Kopke, L
Koskinen, DJ
Kowalski, M
Kowarik, T
Krasberg, M
Krings, T
Kroll, G
Kuehn, K
Kuwabara, T
Labare, M
Lafebre, S
Laihem, K
Landsman, H
Lauer, R
Lehmann, R
Lennarz, D
Lucke, A
Lundberg, J
Lunemann, J
Madsen, J
Majumdar, P
Maruyama, R
Mase, K
Matis, HS
McParland, CP
Meagher, K
Merck, M
Meszaros, P
Meures, T
Middell, E
Milke, N
Miyamoto, H
Montaruli, T
Morse, R
Movit, SM
Nahnhauer, R
Nam, JW
Niessen, P
Nygren, DR
Odrowski, S
Olivas, A
Olivo, M
Ono, M
Panknin, S
Patton, S
Paul, L
Heros, CPDL
Petrovic, J
Piegsa, A
Pieloth, D
Pohl, AC
Porrata, R
Potthoff, N
Price, PB
Prikockis, M
Przybylski, GT
Rawlins, K
Redl, P
Resconi, E
Rhode, W
Ribordy, M
Rizzo, A
Rodrigues, JP
Roth, P
Rothmaier, F
Rott, C
Roucelle, C
Rutledge, D
Ruzybayev, B
Ryckbosch, D
Sander, HG
Sarkar, S
Schatto, K
Schlenstedt, S
Schmidt, T
Schneider, D
Schukraft, A
Schulz, O
Schunck, M
Seckel, D
Semburg, B
Seo, SH
Sestayo, Y
Seunarine, S
Silvestri, A
Slipak, A
Spiczak, GM
Spiering, C
Stamatikos, M
Stanev, T
Stephens, G
Stezelberger, T
Stokstad, RG
Stoufer, MC
Stoyanov, S
Strahler, EA
Straszheim, T
Sulanke, KH
Sullivan, GW
Swillens, Q
Taboada, I
Tamburro, A
Tarasova, O
Tepe, A
Ter-Antonyan, S
Terranova, C
Tilav, S
Toale, PA
Tooker, J
Tosi, D
Turcan, D
van Eijndhoven, N
Vandenbroucke, J
Van Overloop, A
van Santen, J
Voigt, B
Walck, C
Waldenmaier, T
Wallraff, M
Walter, M
Wendt, C
Westerhoff, S
Whitehorn, N
Wiebe, K
Wiebusch, CH
Wiedemann, A
Wikstrom, G
Williams, DR
Wischnewski, R
Wissing, H
Woschnagg, K
Xu, C
Xu, XW
Yodh, G
Yoshida, S
AF Abbasi, R.
Abdou, Y.
Abu-Zayyad, T.
Adams, J.
Aguilar, J. A.
Ahlers, M.
Andeen, K.
Auffenberg, J.
Bai, X.
Baker, M.
Barwick, S. W.
Bay, R.
Alba, J. L. Bazo
Beattie, K.
Beatty, J. J.
Bechet, S.
Becker, J. K.
Becker, K. -H.
Benabderrahmane, M. L.
Berdermann, J.
Berghaus, P.
Berley, D.
Bernardini, E.
Bertrand, D.
Besson, D. Z.
Bissok, M.
Blaufuss, E.
Boersma, D. J.
Bohm, C.
Bolmont, J.
Botner, O.
Bradley, L.
Braun, J.
Breder, D.
Carson, M.
Castermans, T.
Chirkin, D.
Christy, B.
Clem, J.
Cohen, S.
Cowen, D. F.
D'Agostino, M. V.
Danninger, M.
Day, C. T.
De Clercq, C.
Demiroers, L.
Depaepe, O.
Descamps, F.
Desiati, P.
de Vries-Uiterweerd, G.
DeYoung, T.
Diaz-Velez, J. C.
Dreyer, J.
Dumm, J. P.
Duvoort, M. R.
Edwards, W. R.
Ehrlich, R.
Eisch, J.
Ellsworth, R. W.
Engdegard, O.
Euler, S.
Evenson, P. A.
Fadiran, O.
Fazely, A. R.
Feusels, T.
Filimonov, K.
Finley, C.
Foerster, M. M.
Fox, B. D.
Franckowiak, A.
Franke, R.
Gaisser, T. K.
Gallagher, J.
Ganugapati, R.
Gerhardt, L.
Gladstone, L.
Goldschmidt, A.
Goodman, J. A.
Gozzini, R.
Grant, D.
Griesel, T.
Gross, A.
Grullon, S.
Gunasingha, R. M.
Gurtner, M.
Ha, C.
Hallgren, A.
Halzen, F.
Han, K.
Hanson, K.
Hasegawa, Y.
Helbing, K.
Herquet, P.
Hickford, S.
Hill, G. C.
Hoffman, K. D.
Homeier, A.
Hoshina, K.
Hubert, D.
Huelsnitz, W.
Huelss, J.-P.
Hulth, P. O.
Hultqvist, K.
Hussain, S.
Imlay, R. L.
Inaba, M.
Ishihara, A.
Jacobsen, J.
Japaridze, G. S.
Johansson, H.
Joseph, J. M.
Kampert, K. -H.
Kappes, A.
Karg, T.
Karle, A.
Kelley, J. L.
Kemming, N.
Kenny, P.
Kiryluk, J.
Kislat, F.
Klein, S. R.
Knops, S.
Kohnen, G.
Kolanoski, H.
Koepke, L.
Koskinen, D. J.
Kowalski, M.
Kowarik, T.
Krasberg, M.
Krings, T.
Kroll, G.
Kuehn, K.
Kuwabara, T.
Labare, M.
Lafebre, S.
Laihem, K.
Landsman, H.
Lauer, R.
Lehmann, R.
Lennarz, D.
Lucke, A.
Lundberg, J.
Luenemann, J.
Madsen, J.
Majumdar, P.
Maruyama, R.
Mase, K.
Matis, H. S.
McParland, C. P.
Meagher, K.
Merck, M.
Meszaros, P.
Meures, T.
Middell, E.
Milke, N.
Miyamoto, H.
Montaruli, T.
Morse, R.
Movit, S. M.
Nahnhauer, R.
Nam, J. W.
Niessen, P.
Nygren, D. R.
Odrowski, S.
Olivas, A.
Olivo, M.
Ono, M.
Panknin, S.
Patton, S.
Paul, L.
de los Heros, C. Perez
Petrovic, J.
Piegsa, A.
Pieloth, D.
Pohl, A. C.
Porrata, R.
Potthoff, N.
Price, P. B.
Prikockis, M.
Przybylski, G. T.
Rawlins, K.
Redl, P.
Resconi, E.
Rhode, W.
Ribordy, M.
Rizzo, A.
Rodrigues, J. P.
Roth, P.
Rothmaier, F.
Rott, C.
Roucelle, C.
Rutledge, D.
Ruzybayev, B.
Ryckbosch, D.
Sander, H. -G.
Sarkar, S.
Schatto, K.
Schlenstedt, S.
Schmidt, T.
Schneider, D.
Schukraft, A.
Schulz, O.
Schunck, M.
Seckel, D.
Semburg, B.
Seo, S. H.
Sestayo, Y.
Seunarine, S.
Silvestri, A.
Slipak, A.
Spiczak, G. M.
Spiering, C.
Stamatikos, M.
Stanev, T.
Stephens, G.
Stezelberger, T.
Stokstad, R. G.
Stoufer, M. C.
Stoyanov, S.
Strahler, E. A.
Straszheim, T.
Sulanke, K. -H.
Sullivan, G. W.
Swillens, Q.
Taboada, I.
Tamburro, A.
Tarasova, O.
Tepe, A.
Ter-Antonyan, S.
Terranova, C.
Tilav, S.
Toale, P. A.
Tooker, J.
Tosi, D.
Turcan, D.
van Eijndhoven, N.
Vandenbroucke, J.
Van Overloop, A.
van Santen, J.
Voigt, B.
Walck, C.
Waldenmaier, T.
Wallraff, M.
Walter, M.
Wendt, C.
Westerhoff, S.
Whitehorn, N.
Wiebe, K.
Wiebusch, C. H.
Wiedemann, A.
Wikstrom, G.
Williams, D. R.
Wischnewski, R.
Wissing, H.
Woschnagg, K.
Xu, C.
Xu, X. W.
Yodh, G.
Yoshida, S.
CA IceCube Collaboration
TI Limits on a muon flux from Kaluza-Klein dark matter annihilations in the
Sun from the IceCube 22-string detector
SO PHYSICAL REVIEW D
LA English
DT Article
AB A search for muon neutrinos from Kaluza-Klein dark matter annihilations in the Sun has been performed with the 22-string configuration of the IceCube neutrino detector using data collected in 104.3 days of live time in 2007. No excess over the expected atmospheric background has been observed. Upper limits have been obtained on the annihilation rate of captured lightest Kaluza-Klein particle (LKP) WIMPs in the Sun and converted to limits on the LKP-proton cross sections for LKP masses in the range 250-3000 GeV. These results are the most stringent limits to date on LKP annihilation in the Sun.
C1 [Bohm, C.; Danninger, M.; Finley, C.; Hulth, P. O.; Hultqvist, K.; Johansson, H.; Seo, S. H.; Walck, C.; Wikstrom, G.] Stockholm Univ, Oskar Klein Ctr, SE-10691 Stockholm, Sweden.
[Bohm, C.; Danninger, M.; Finley, C.; Hulth, P. O.; Hultqvist, K.; Johansson, H.; Seo, S. H.; Walck, C.; Wikstrom, G.] Stockholm Univ, Dept Phys, SE-10691 Stockholm, Sweden.
[Bissok, M.; Boersma, D. J.; Euler, S.; Huelss, J.-P.; Knops, S.; Krings, T.; Laihem, K.; Lennarz, D.; Meures, T.; Paul, L.; Schukraft, A.; Schunck, M.; Wallraff, M.; Wiebusch, C. H.] Rhein Westfal TH Aachen, Inst Phys 3, D-52056 Aachen, Germany.
[Williams, D. R.] Univ Alabama, Dept Phys & Astron, Tuscaloosa, AL 35487 USA.
[Rawlins, K.] Univ Alaska Anchorage, Dept Phys & Astron, Anchorage, AK 99508 USA.
[Fadiran, O.; Japaridze, G. S.] Clark Atlanta Univ, CTSPS, Atlanta, GA 30314 USA.
[Taboada, I.; Tooker, J.] Georgia Inst Technol, Sch Phys, Atlanta, GA 30332 USA.
[Taboada, I.; Tooker, J.] Georgia Inst Technol, Ctr Relativist Astrophys, Atlanta, GA 30332 USA.
[Fazely, A. R.; Gunasingha, R. M.; Imlay, R. L.; Ter-Antonyan, S.; Xu, X. W.] Southern Univ, Dept Phys, Baton Rouge, LA 70813 USA.
[Bay, R.; D'Agostino, M. V.; Filimonov, K.; Gerhardt, L.; Kiryluk, J.; Klein, S. R.; Porrata, R.; Price, P. B.; Vandenbroucke, J.; Woschnagg, K.] Univ Calif Berkeley, Dept Phys, Berkeley, CA 94720 USA.
[Beattie, K.; Day, C. T.; Gerhardt, L.; Goldschmidt, A.; Joseph, J. M.; Kiryluk, J.; Klein, S. R.; Matis, H. S.; McParland, C. P.; Nygren, D. R.; Patton, S.; Przybylski, G. T.; Stezelberger, T.; Stokstad, R. G.; Stoufer, M. C.] Lawrence Berkeley Natl Lab, Berkeley, CA 94720 USA.
[Franckowiak, A.; Homeier, A.; Kemming, N.; Kolanoski, H.; Lehmann, R.; Lucke, A.; Panknin, S.; van Santen, J.; Waldenmaier, T.] Humboldt Univ, Inst Phys, D-12489 Berlin, Germany.
[Becker, J. K.; Dreyer, J.; Olivo, M.] Ruhr Univ Bochum, Fak Phys & Astron, D-44780 Bochum, Germany.
[Kowalski, M.] Univ Bonn, Inst Phys, D-53115 Bonn, Germany.
[Bechet, S.; Bertrand, D.; Labare, M.; Petrovic, J.; Swillens, Q.] Univ Libre Bruxelles, Fac Sci, B-1050 Brussels, Belgium.
[De Clercq, C.; Depaepe, O.; Hubert, D.; Rizzo, A.; van Eijndhoven, N.] Vrije Univ Brussel, Dienst ELEM, B-1050 Brussels, Belgium.
[Hasegawa, Y.; Inaba, M.; Ishihara, A.; Mase, K.; Miyamoto, H.; Ono, M.; Yoshida, S.] Chiba Univ, Dept Phys, Chiba 2638522, Japan.
[Adams, J.; Gross, A.; Han, K.; Hickford, S.; Seunarine, S.] Univ Canterbury, Dept Phys & Astron, Christchurch 1, New Zealand.
[Berley, D.; Blaufuss, E.; Christy, B.; Ehrlich, R.; Ellsworth, R. W.; Goodman, J. A.; Hoffman, K. D.; Huelsnitz, W.; Meagher, K.; Olivas, A.; Redl, P.; Roth, P.; Schmidt, T.; Straszheim, T.; Sullivan, G. W.; Turcan, D.; Wissing, H.] Univ Maryland, Dept Phys, College Pk, MD 20742 USA.
[Beatty, J. J.; Kuehn, K.; Rott, C.; Stamatikos, M.] Ohio State Univ, Dept Phys, Columbus, OH 43210 USA.
[Beatty, J. J.; Kuehn, K.; Rott, C.; Stamatikos, M.] Ohio State Univ, Ctr Cosmol & Astroparticle Phys, Columbus, OH 43210 USA.
[Beatty, J. J.] Ohio State Univ, Dept Astron, Columbus, OH 43210 USA.
[Dreyer, J.; Milke, N.; Pieloth, D.; Rhode, W.; Wiedemann, A.] TU Dortmund Univ, Dept Phys, D-44221 Dortmund, Germany.
[Abdou, Y.; Carson, M.; Descamps, F.; de Vries-Uiterweerd, G.; Feusels, T.; Ryckbosch, D.; Van Overloop, A.] Univ Ghent, Dept Subat & Radiat Phys, B-9000 Ghent, Belgium.
[Gross, A.; Odrowski, S.; Resconi, E.; Roucelle, C.; Schulz, O.; Sestayo, Y.] Max Planck Inst Kernphys, D-69177 Heidelberg, Germany.
[Barwick, S. W.; Nam, J. W.; Silvestri, A.; Yodh, G.] Univ Calif Irvine, Dept Phys & Astron, Irvine, CA 92697 USA.
[Cohen, S.; Demiroers, L.; Ribordy, M.; Terranova, C.] Ecole Polytech Fed Lausanne, High Energy Phys Lab, CH-1015 Lausanne, Switzerland.
[Besson, D. Z.; Kenny, P.] Univ Kansas, Dept Phys & Astron, Lawrence, KS 66045 USA.
[Gallagher, J.] Univ Wisconsin, Dept Astron, Madison, WI 53706 USA.
[Abbasi, R.; Aguilar, J. A.; Andeen, K.; Baker, M.; Berghaus, P.; Braun, J.; Chirkin, D.; Desiati, P.; Diaz-Velez, J. C.; Dumm, J. P.; Eisch, J.; Ganugapati, R.; Gladstone, L.; Grullon, S.; Halzen, F.; Hanson, K.; Hill, G. C.; Hoshina, K.; Jacobsen, J.; Kappes, A.; Karle, A.; Kelley, J. L.; Krasberg, M.; Landsman, H.; Maruyama, R.; Merck, M.; Montaruli, T.; Morse, R.; Rodrigues, J. P.; Schneider, D.; Strahler, E. A.; Wendt, C.; Westerhoff, S.; Whitehorn, N.] Univ Wisconsin, Dept Phys, Madison, WI 53706 USA.
[Gozzini, R.; Griesel, T.; Koepke, L.; Kowarik, T.; Kroll, G.; Luenemann, J.; Piegsa, A.; Rothmaier, F.; Sander, H. -G.; Schatto, K.; Wiebe, K.] Johannes Gutenberg Univ Mainz, Inst Phys, D-55099 Mainz, Germany.
[Castermans, T.; Herquet, P.; Kohnen, G.] Univ Mons, B-7000 Mons, Belgium.
[Bai, X.; Clem, J.; Evenson, P. A.; Gaisser, T. K.; Hussain, S.; Kuwabara, T.; Niessen, P.; Ruzybayev, B.; Seckel, D.; Stanev, T.; Stoyanov, S.; Tilav, S.; Xu, C.] Univ Delaware, Dept Phys & Astron, Newark, DE 19716 USA.
[Bai, X.; Clem, J.; Evenson, P. A.; Gaisser, T. K.; Hussain, S.; Kuwabara, T.; Niessen, P.; Ruzybayev, B.; Seckel, D.; Stanev, T.; Stoyanov, S.; Tilav, S.; Xu, C.] Univ Delaware, Bartol Res Inst, Newark, DE 19716 USA.
[Ahlers, M.; Sarkar, S.] Univ Oxford, Dept Phys, Oxford OX1 3NP, England.
[Abu-Zayyad, T.; Madsen, J.; Spiczak, G. M.; Tamburro, A.] Univ Wisconsin, Dept Phys, River Falls, WI 54022 USA.
[Cowen, D. F.; Meszaros, P.; Movit, S. M.] Penn State Univ, Dept Astron & Astrophys, University Pk, PA 16802 USA.
[Bradley, L.; Cowen, D. F.; DeYoung, T.; Foerster, M. M.; Fox, B. D.; Grant, D.; Ha, C.; Koskinen, D. J.; Lafebre, S.; Meszaros, P.; Prikockis, M.; Rutledge, D.; Slipak, A.; Stephens, G.; Toale, P. A.] Penn State Univ, Dept Phys, University Pk, PA 16802 USA.
[Botner, O.; Engdegard, O.; Hallgren, A.; Lundberg, J.; Olivo, M.; de los Heros, C. Perez; Pohl, A. C.] Uppsala Univ, Dept Phys & Astron, S-75120 Uppsala, Sweden.
[Duvoort, M. R.] Univ Utrecht, Dept Phys & Astron, SRON, NL-3584 CC Utrecht, Netherlands.
[Auffenberg, J.; Becker, K. -H.; Breder, D.; Gurtner, M.; Helbing, K.; Kampert, K. -H.; Karg, T.; Potthoff, N.; Semburg, B.; Tepe, A.] Univ Wuppertal, Dept Phys, D-42119 Wuppertal, Germany.
[Alba, J. L. Bazo; Benabderrahmane, M. L.; Berdermann, J.; Bernardini, E.; Bolmont, J.; Franke, R.; Kislat, F.; Lauer, R.; Majumdar, P.; Middell, E.; Nahnhauer, R.; Schlenstedt, S.; Spiering, C.; Sulanke, K. -H.; Tarasova, O.; Tosi, D.; Voigt, B.; Walter, M.; Wischnewski, R.] DESY, D-15735 Zeuthen, Germany.
[Kappes, A.] Univ Erlangen Nurnberg, Inst Phys, D-91058 Erlangen, Germany.
[Pohl, A. C.] Kalmar Univ, Sch Pure & Appl Nat Sci, S-39182 Kalmar, Sweden.
RP Danninger, M (reprint author), Stockholm Univ, Oskar Klein Ctr, SE-10691 Stockholm, Sweden.
EM danning@fysik.su.se; wikstrom@fysik.su.se
RI Wiebusch, Christopher/G-6490-2012; Kowalski, Marek/G-5546-2012;
Tamburro, Alessio/A-5703-2013; Botner, Olga/A-9110-2013; Hallgren,
Allan/A-8963-2013; Tjus, Julia/G-8145-2012; Auffenberg, Jan/D-3954-2014;
Koskinen, David/G-3236-2014; Aguilar Sanchez, Juan Antonio/H-4467-2015;
Sarkar, Subir/G-5978-2011; Beatty, James/D-9310-2011; Maruyama,
Reina/A-1064-2013
OI Schukraft, Anne/0000-0002-9112-5479; Perez de los Heros,
Carlos/0000-0002-2084-5866; Carson, Michael/0000-0003-0400-7819; Hubert,
Daan/0000-0002-4365-865X; Benabderrahmane, Mohamed
Lotfi/0000-0003-4410-5886; Wiebusch, Christopher/0000-0002-6418-3008;
Auffenberg, Jan/0000-0002-1185-9094; Koskinen,
David/0000-0002-0514-5917; Aguilar Sanchez, Juan
Antonio/0000-0003-2252-9514; Sarkar, Subir/0000-0002-3542-858X; Beatty,
James/0000-0003-0481-4952; Ter-Antonyan, Samvel/0000-0002-5788-1369;
Maruyama, Reina/0000-0003-2794-512X
FU U. S. National Science Foundation-Office of Polar Programs; U. S.
National Science Foundation-Physics Division; University of Wisconsin
Alumni Research Foundation; U. S. Department of Energy; NERSC; LONI
grid; Swedish Research Council, K. A; Wallenberg Foundation, Sweden;
German Ministry for Education and Research; Deutsche
Forschungsgemeinschaft; Fund for Scientific Research, IWT-Flanders,
BELSPO, Belgium; Netherlands Organisation for Scientific Research; SNF
(Switzerland); EU
FX We thank the following agencies: U. S. National Science
Foundation-Office of Polar Programs, U. S. National Science
Foundation-Physics Division, University of Wisconsin Alumni Research
Foundation, U. S. Department of Energy, NERSC, the LONI grid; Swedish
Research Council, K.& A. Wallenberg Foundation, Sweden; German Ministry
for Education and Research, Deutsche Forschungsgemeinschaft; Fund for
Scientific Research, IWT-Flanders, BELSPO, Belgium; the Netherlands
Organisation for Scientific Research; M. Ribordy is supported by SNF
(Switzerland); A. Kappes and A. Gross are supported by the EU Marie
Curie OIF Program. We thank S. Arrenberg and K. Kong for helpful
correspondence and details on their paper.
NR 27
TC 15
Z9 15
U1 0
U2 1
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2470-0010
EI 2470-0029
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 057101
DI 10.1103/PhysRevD.81.057101
PG 6
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200102
ER
PT J
AU Abouzaid, E
Arenton, M
Barker, AR
Bellantoni, L
Blucher, E
Bock, GJ
Cheu, E
Coleman, R
Corcoran, MD
Cox, B
Erwin, AR
Escobar, CO
Glazov, A
Gomes, RA
Gouffon, P
Hsiung, YB
Jensen, DA
Kessler, R
Kotera, K
Ledovskoy, A
McBride, PL
Monnier, E
Nguyen, H
Niclasen, R
Phillips, DG
Ramberg, EJ
Ray, RE
Ronquest, M
Santos, E
Slater, W
Smith, D
Solomey, N
Swallow, EC
Toale, PA
Tschirhart, R
Wah, YW
Wang, J
White, HB
Whitmore, J
Wilking, MJ
Winston, R
Worcester, ET
Yamanaka, T
Zimmerman, ED
Zukanovich, RF
Bernard, V
Oertel, M
Passemar, E
Stern, J
AF Abouzaid, E.
Arenton, M.
Barker, A. R.
Bellantoni, L.
Blucher, E.
Bock, G. J.
Cheu, E.
Coleman, R.
Corcoran, M. D.
Cox, B.
Erwin, A. R.
Escobar, C. O.
Glazov, A.
Gomes, R. A.
Gouffon, P.
Hsiung, Y. B.
Jensen, D. A.
Kessler, R.
Kotera, K.
Ledovskoy, A.
McBride, P. L.
Monnier, E.
Nguyen, H.
Niclasen, R.
Phillips, D. G., II
Ramberg, E. J.
Ray, R. E.
Ronquest, M.
Santos, E.
Slater, W.
Smith, D.
Solomey, N.
Swallow, E. C.
Toale, P. A.
Tschirhart, R.
Wah, Y. W.
Wang, J.
White, H. B.
Whitmore, J.
Wilking, M. J.
Winston, R.
Worcester, E. T.
Yamanaka, T.
Zimmerman, E. D.
Zukanovich, R. F.
Bernard, Veronique
Oertel, Micaela
Passemar, Emilie
Stern, Jan
CA KTeV Collaboration
TI Dispersive analysis of KL mu 3 and KLe3 scalar and vector form factors
using KTeV data
SO PHYSICAL REVIEW D
LA English
DT Article
ID RADIATIVE-CORRECTIONS; STANDARD MODEL; V-US; DECAYS; CONSTRAINTS;
SCATTERING; CURRENTS
AB Using the published KTeV samples of K(L) -> pi(+/-)e(-/+)nu and K(L) -> pi(+/-)mu(-/+)nu decays, we perform a reanalysis of the scalar and vector form factors based on the dispersive parametrization. We obtain phase-space integrals I(K)(e) = 0.15446 +/- 0.00025 and I(K)(mu) = 0.10219 +/- 0.00025. For the scalar form factor parametrization, the only free parameter is the normalized form factor value at the Callan-Treiman point (C); our best-fit results in InC = 0.1915 +/- 0.0122. We also study the sensitivity of C to different parametrizations of the vector form factor. The results for the phase-space integrals and C are then used to make tests of the standard model. Finally, we compare our results with lattice QCD calculations of F(K)/F(pi) and f(+)(0).
C1 [Abouzaid, E.; Blucher, E.; Glazov, A.; Kessler, R.; Monnier, E.; Ramberg, E. J.; Solomey, N.; Swallow, E. C.; Wah, Y. W.; Winston, R.; Worcester, E. T.] Univ Chicago, Enrico Fermi Inst, Chicago, IL 60637 USA.
[Cheu, E.; Wang, J.] Univ Arizona, Tucson, AZ 85721 USA.
[Slater, W.] Univ Calif Los Angeles, Los Angeles, CA 90095 USA.
[Escobar, C. O.; Gomes, R. A.] Univ Estadual Campinas, BR-13083970 Campinas, SP, Brazil.
[Barker, A. R.; Niclasen, R.; Toale, P. A.; Wilking, M. J.; Zimmerman, E. D.] Univ Colorado, Boulder, CO 80309 USA.
[Swallow, E. C.] Elmhurst Coll, Elmhurst, IL 60126 USA.
[Bellantoni, L.; Coleman, R.; Hsiung, Y. B.; Jensen, D. A.; McBride, P. L.; Nguyen, H.; Ray, R. E.; Tschirhart, R.; White, H. B.; Whitmore, J.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Kotera, K.; Yamanaka, T.] Osaka Univ, Osaka 5600043, Japan.
[Corcoran, M. D.] Rice Univ, Houston, TX 77005 USA.
[Gouffon, P.; Santos, E.; Zukanovich, R. F.] Univ Sao Paulo, BR-05315970 Sao Paulo, Brazil.
[Arenton, M.; Cox, B.; Ledovskoy, A.; Phillips, D. G., II; Ronquest, M.; Smith, D.] Univ Virginia, Dept Phys, Charlottesville, VA 22901 USA.
[Arenton, M.; Cox, B.; Ledovskoy, A.; Phillips, D. G., II; Ronquest, M.; Smith, D.] Univ Virginia, Inst Nucl & Particle Phys, Charlottesville, VA 22901 USA.
[Erwin, A. R.] Univ Wisconsin, Madison, WI 53706 USA.
[Bernard, Veronique; Stern, Jan] Univ Paris 11, IPN, Grp Phys Theor, F-91406 Orsay, France.
[Oertel, Micaela] Univ Paris Diderot, CNRS, Observ Paris, LUTH, F-92195 Meudon, France.
[Passemar, Emilie] Univ Bern, Inst Theoret Phys, Albert Einstein Ctr Fundamental Phys, CH-3012 Bern, Switzerland.
[Monnier, E.] CNRS, CPP Marseille, F-75700 Paris, France.
RP Abouzaid, E (reprint author), Univ Chicago, Enrico Fermi Inst, 5640 S Ellis Ave, Chicago, IL 60637 USA.
EM bernard@ipno.in2p3.fr; micaela.oertel@obspm.fr
RI Gomes, Ricardo/B-6899-2008; Zukanovich Funchal, Renata/C-5829-2013;
Moura Santos, Edivaldo/K-5313-2016; Gouffon, Philippe/I-4549-2012; Inst.
of Physics, Gleb Wataghin/A-9780-2017;
OI Gomes, Ricardo/0000-0003-0278-4876; Zukanovich Funchal,
Renata/0000-0001-6749-0022; Moura Santos, Edivaldo/0000-0002-2818-8813;
Gouffon, Philippe/0000-0001-7511-4115; HSIUNG, YEE/0000-0003-4801-1238
FU EU [MRTN-CT2006-035482]; EU Integrated Infrastructure Initiative Hadron
Physics [RH3-CT-2004-506078]; Swiss National Science Foundation; IN2P3
FX One of us (V. B.) would like to thank S. Descotes-Genon and B.
Moussallam for interesting discussions. This work has been partially
supported by EU Contract No. MRTN-CT2006-035482 ("Flavianet''), the EU
Integrated Infrastructure Initiative Hadron Physics
(RH3-CT-2004-506078), the Swiss National Science Foundation, and the
IN2P3 projet theorie "Signature experimentale des couplages
electrofaibles nonstandards des quarks.'' Veronique Bernard, Micaela
Oertel, and Emilie Passemar deeply regret the loss of their colleague
and coauthor Jan Stern who sadly passed away before the final version of
this paper was written.
NR 52
TC 13
Z9 13
U1 1
U2 6
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 052001
DI 10.1103/PhysRevD.81.052001
PG 9
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200009
ER
PT J
AU Adamson, P
Andreopoulos, C
Auty, DJ
Ayres, DS
Backhouse, C
Barnes, PD
Barr, G
Barrett, WL
Bishai, M
Blake, A
Bock, GJ
Boehnlein, DJ
Bogert, D
Bower, C
Cavanaugh, S
Chapman, JD
Cherdack, D
Childress, S
Choudhary, BC
Coelho, JAB
Cobb, JH
Coleman, SJ
Cravens, JP
Cronin-Hennessy, D
Culling, AJ
Danko, IZ
de Jong, JK
Devenish, NE
Diwan, MV
Dorman, M
Erwin, AR
Escobar, CO
Evans, JJ
Falk, E
Feldman, GJ
Frohne, MV
Gallagher, HR
Godley, A
Goodman, MC
Gouffon, P
Gran, R
Grashorn, EW
Grzelak, K
Habig, A
Harris, D
Harris, PG
Hartnell, J
Hatcher, R
Heller, K
Himmel, A
Holin, A
Huang, X
Hylen, J
Irwin, GM
Isvan, Z
Jaffe, DE
James, C
Jensen, D
Kafka, T
Kasahara, SMS
Koizumi, G
Kopp, S
Kordosky, M
Koskinen, DJ
Krahn, Z
Kreymer, A
Lang, K
Ling, J
Litchfield, PJ
Litchfield, RP
Loiacono, L
Lucas, P
Ma, J
Mann, WA
Marchionni, A
Marshak, ML
Marshall, JS
Mayer, N
McGowan, AM
Mehdiyev, R
Meier, JR
Messier, MD
Metelko, CJ
Michael, DG
Miller, WH
Mishra, SR
Mitchell, J
Moore, CD
Morfin, J
Mualem, L
Mufson, S
Musser, J
Naples, D
Nelson, JK
Newman, HB
Nichol, RJ
Nicholls, TC
Ochoa-Ricoux, JP
Oliver, WP
Orchanian, M
Osiecki, T
Ospanov, R
Paley, J
Paolone, V
Patterson, RB
Pavlovic, Z
Pawloski, G
Pearce, GF
Pittam, R
Plunkett, RK
Rahaman, A
Rameika, RA
Raufer, TM
Rebel, B
Rodrigues, PA
Rosenfeld, C
Rubin, HA
Ryabov, VA
Sanchez, MC
Saoulidou, N
Schneps, J
Schreiner, P
Shanahan, P
Smart, W
Smith, C
Sousa, A
Stamoulis, P
Strait, M
Tagg, N
Talaga, RL
Thomas, J
Thomson, MA
Tinti, G
Toner, R
Tzanakos, G
Urheim, J
Vahle, P
Viren, B
Watabe, M
Weber, A
Webb, RC
West, N
White, C
Whitehead, L
Wojcicki, SG
Wright, DM
Yang, T
Zhang, K
Zwaska, R
AF Adamson, P.
Andreopoulos, C.
Auty, D. J.
Ayres, D. S.
Backhouse, C.
Barnes, P. D., Jr.
Barr, G.
Barrett, W. L.
Bishai, M.
Blake, A.
Bock, G. J.
Boehnlein, D. J.
Bogert, D.
Bower, C.
Cavanaugh, S.
Chapman, J. D.
Cherdack, D.
Childress, S.
Choudhary, B. C.
Coelho, J. A. B.
Cobb, J. H.
Coleman, S. J.
Cravens, J. P.
Cronin-Hennessy, D.
Culling, A. J.
Danko, I. Z.
de Jong, J. K.
Devenish, N. E.
Diwan, M. V.
Dorman, M.
Erwin, A. R.
Escobar, C. O.
Evans, J. J.
Falk, E.
Feldman, G. J.
Frohne, M. V.
Gallagher, H. R.
Godley, A.
Goodman, M. C.
Gouffon, P.
Gran, R.
Grashorn, E. W.
Grzelak, K.
Habig, A.
Harris, D.
Harris, P. G.
Hartnell, J.
Hatcher, R.
Heller, K.
Himmel, A.
Holin, A.
Huang, X.
Hylen, J.
Irwin, G. M.
Isvan, Z.
Jaffe, D. E.
James, C.
Jensen, D.
Kafka, T.
Kasahara, S. M. S.
Koizumi, G.
Kopp, S.
Kordosky, M.
Koskinen, D. J.
Krahn, Z.
Kreymer, A.
Lang, K.
Ling, J.
Litchfield, P. J.
Litchfield, R. P.
Loiacono, L.
Lucas, P.
Ma, J.
Mann, W. A.
Marchionni, A.
Marshak, M. L.
Marshall, J. S.
Mayer, N.
McGowan, A. M.
Mehdiyev, R.
Meier, J. R.
Messier, M. D.
Metelko, C. J.
Michael, D. G.
Miller, W. H.
Mishra, S. R.
Mitchell, J.
Moore, C. D.
Morfin, J.
Mualem, L.
Mufson, S.
Musser, J.
Naples, D.
Nelson, J. K.
Newman, H. B.
Nichol, R. J.
Nicholls, T. C.
Ochoa-Ricoux, J. P.
Oliver, W. P.
Orchanian, M.
Osiecki, T.
Ospanov, R.
Paley, J.
Paolone, V.
Patterson, R. B.
Pavlovic, Z.
Pawloski, G.
Pearce, G. F.
Pittam, R.
Plunkett, R. K.
Rahaman, A.
Rameika, R. A.
Raufer, T. M.
Rebel, B.
Rodrigues, P. A.
Rosenfeld, C.
Rubin, H. A.
Ryabov, V. A.
Sanchez, M. C.
Saoulidou, N.
Schneps, J.
Schreiner, P.
Shanahan, P.
Smart, W.
Smith, C.
Sousa, A.
Stamoulis, P.
Strait, M.
Tagg, N.
Talaga, R. L.
Thomas, J.
Thomson, M. A.
Tinti, G.
Toner, R.
Tzanakos, G.
Urheim, J.
Vahle, P.
Viren, B.
Watabe, M.
Weber, A.
Webb, R. C.
West, N.
White, C.
Whitehead, L.
Wojcicki, S. G.
Wright, D. M.
Yang, T.
Zhang, K.
Zwaska, R.
CA MINOS Collaboration
TI Search for sterile neutrino mixing in the MINOS long-baseline experiment
SO PHYSICAL REVIEW D
LA English
DT Article
ID LEPTON CHARGE; R-PROCESS; OSCILLATIONS; PHOTOMULTIPLIERS; KAMIOKANDE;
DETECTOR; FIBERS; MATTER; DECAY
AB A search for depletion of the combined flux of active neutrino species over a 735 km baseline is reported using neutral-current interaction data recorded by the MINOS detectors in the NuMI neutrino beam. Such a depletion is not expected according to conventional interpretations of neutrino oscillation data involving the three known neutrino flavors. A depletion would be a signature of oscillations or decay to postulated noninteracting sterile neutrinos, scenarios not ruled out by existing data. From an exposure of 3.18 x 10(20) protons on target in which neutrinos of energies between similar to 500 MeV and 120 GeV are produced predominantly as nu(mu), the visible energy spectrum of candidate neutral-current reactions in the MINOS far detector is reconstructed. Comparison of this spectrum to that inferred from a similarly selected near-detector sample shows that of the portion of the nu(mu) flux observed to disappear in charged-current interaction data, the fraction that could be converting to a sterile state is less than 52% at 90% confidence level (C. L.). The hypothesis that active neutrinos mix with a single sterile neutrino via oscillations is tested by fitting the data to various models. In the particular four-neutrino models considered, the mixing angles theta(24) and theta(34) are constrained to be less than 11 degrees and 56 degrees at 90% C. L., respectively. The possibility that active neutrinos may decay to sterile neutrinos is also investigated. Pure neutrino decay without oscillations is ruled out at 5.4 standard deviations. For the scenario in which active neutrinos decay into sterile states concurrently with neutrino oscillations, a lower limit is established for the neutrino decay lifetime tau(3)/m(3) > 2.1 x 10(-12) s/eV at 90% C.L.
C1 [Adamson, P.; Bock, G. J.; Boehnlein, D. J.; Bogert, D.; Childress, S.; Choudhary, B. C.; Harris, D.; Hatcher, R.; Hylen, J.; James, C.; Jensen, D.; Koizumi, G.; Kreymer, A.; Lucas, P.; Marchionni, A.; Moore, C. D.; Morfin, J.; Plunkett, R. K.; Rameika, R. A.; Rebel, B.; Saoulidou, N.; Shanahan, P.; Smart, W.; Zwaska, R.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
[Ayres, D. S.; Goodman, M. C.; Huang, X.; McGowan, A. M.; Talaga, R. L.] Argonne Natl Lab, Argonne, IL 60439 USA.
[Stamoulis, P.; Tzanakos, G.] Univ Athens, Dept Phys, GR-15771 Athens, Greece.
[Frohne, M. V.; Schreiner, P.] Benedictine Univ, Dept Phys, Lisle, IL 60532 USA.
[Bishai, M.; Diwan, M. V.; Jaffe, D. E.; Viren, B.; Whitehead, L.; Zhang, K.] Brookhaven Natl Lab, Upton, NY 11973 USA.
[Himmel, A.; Michael, D. G.; Mualem, L.; Newman, H. B.; Ochoa-Ricoux, J. P.; Orchanian, M.; Patterson, R. B.] CALTECH, Lauritsen Lab, Pasadena, CA 91125 USA.
[Blake, A.; Chapman, J. D.; Culling, A. J.; Marshall, J. S.; Mitchell, J.; Thomson, M. A.; Toner, R.] Univ Cambridge, Cavendish Lab, Cambridge CB3 0HE, England.
[Coelho, J. A. B.; Escobar, C. O.] Univ Estadual Campinas, IFGW, UNICAMP, BR-13083970 Campinas, SP, Brazil.
[Cavanaugh, S.; Feldman, G. J.; Sousa, A.] Harvard Univ, Dept Phys, Cambridge, MA 02138 USA.
[Frohne, M. V.] Coll Holy Cross, Notre Dame, IN 46556 USA.
[de Jong, J. K.; Rubin, H. A.; White, C.] IIT, Div Phys, Chicago, IL 60616 USA.
[Bower, C.; Mayer, N.; Messier, M. D.; Mufson, S.; Musser, J.; Paley, J.; Urheim, J.] Indiana Univ, Bloomington, IN 47405 USA.
[Sanchez, M. C.] Iowa State Univ, Dept Phys & Astron, Ames, IA 50011 USA.
[Ryabov, V. A.] PN Lebedev Phys Inst, Dept Nucl Phys, Moscow 119991, Russia.
[Barnes, P. D., Jr.; Wright, D. M.] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
[Dorman, M.; Evans, J. J.; Holin, A.; Kordosky, M.; Koskinen, D. J.; Nichol, R. J.; Smith, C.; Thomas, J.; Vahle, P.] UCL, Dept Phys & Astron, London WC1E 6BT, England.
[Cronin-Hennessy, D.; Grashorn, E. W.; Heller, K.; Kasahara, S. M. S.; Krahn, Z.; Litchfield, P. J.; Marshak, M. L.; McGowan, A. M.; Meier, J. R.; Miller, W. H.; Strait, M.] Univ Minnesota, Minneapolis, MN 55455 USA.
[Gran, R.; Habig, A.] Univ Minnesota, Dept Phys, Duluth, MN 55812 USA.
[Tagg, N.] Otterbein Coll, Westerville, OH 43081 USA.
[Backhouse, C.; Barr, G.; Cobb, J. H.; de Jong, J. K.; Evans, J. J.; Grzelak, K.; Litchfield, R. P.; Pittam, R.; Rodrigues, P. A.; Sousa, A.; Tinti, G.; Weber, A.; West, N.] Univ Oxford, Subdept Particle Phys, Oxford OX1 3RH, England.
[Danko, I. Z.; Isvan, Z.; Naples, D.; Paolone, V.] Univ Pittsburgh, Dept Phys & Astron, Pittsburgh, PA 15260 USA.
[Andreopoulos, C.; Dorman, M.; Hartnell, J.; Metelko, C. J.; Nicholls, T. C.; Pearce, G. F.; Raufer, T. M.] Rutherford Appleton Lab, Sci & Technol Facil Council, Didcot OX11 0QX, Oxon, England.
[Gouffon, P.] Univ Sao Paulo, Inst Fis, BR-05315970 Sao Paulo, Brazil.
[Godley, A.; Ling, J.; Mishra, S. R.; Rahaman, A.; Rosenfeld, C.] Univ S Carolina, Dept Phys & Astron, Columbia, SC 29208 USA.
[Irwin, G. M.; Pawloski, G.; Wojcicki, S. G.; Yang, T.] Stanford Univ, Dept Phys, Stanford, CA 94305 USA.
[Auty, D. J.; Devenish, N. E.; Falk, E.; Harris, P. G.; Hartnell, J.; Smith, C.] Univ Sussex, Dept Phys & Astron, Brighton BN1 9QH, E Sussex, England.
[Watabe, M.; Webb, R. C.] Texas A&M Univ, Dept Phys, College Stn, TX 77843 USA.
[Cravens, J. P.; Kopp, S.; Lang, K.; Loiacono, L.; Ma, J.; Mehdiyev, R.; Osiecki, T.; Ospanov, R.; Pavlovic, Z.] Univ Texas Austin, Dept Phys, Austin, TX 78712 USA.
[Cherdack, D.; Gallagher, H. R.; Kafka, T.; Mann, W. A.; Oliver, W. P.; Schneps, J.; Tagg, N.] Tufts Univ, Dept Phys, Medford, MA 02155 USA.
[Grzelak, K.] Warsaw Univ, Dept Phys, PL-00681 Warsaw, Poland.
[Barrett, W. L.] Western Washington Univ, Dept Phys, Bellingham, WA 98225 USA.
[Coleman, S. J.; Kordosky, M.; Nelson, J. K.; Vahle, P.] Coll William & Mary, Dept Phys, Williamsburg, VA 23187 USA.
[Erwin, A. R.] Univ Wisconsin, Dept Phys, Madison, WI 53706 USA.
RP Adamson, P (reprint author), Fermilab Natl Accelerator Lab, POB 500, Batavia, IL 60510 USA.
RI Nichol, Ryan/C-1645-2008; Harris, Philip/I-7419-2012; Coelho,
Joao/D-3546-2013; Tinti, Gemma/I-5886-2013; Ryabov,
Vladimir/E-1281-2014; Koskinen, David/G-3236-2014; Evans,
Justin/P-4981-2014; Gouffon, Philippe/I-4549-2012; Ling,
Jiajie/I-9173-2014; Inst. of Physics, Gleb Wataghin/A-9780-2017;
OI Hartnell, Jeffrey/0000-0002-1744-7955; Cherdack,
Daniel/0000-0002-3829-728X; Weber, Alfons/0000-0002-8222-6681; Harris,
Philip/0000-0003-4369-3874; Koskinen, David/0000-0002-0514-5917; Evans,
Justin/0000-0003-4697-3337; Gouffon, Philippe/0000-0001-7511-4115; Ling,
Jiajie/0000-0003-2982-0670; COLEMAN, STEPHEN/0000-0002-4621-9169;
Marchionni, Alberto/0000-0003-3039-9537
FU U.S. Department of Energy; U.S. National Science Foundation; U.K.
Science and Technology Facilities Council; State and University of
Minnesota; Office of Special Accounts for Research Grants of the
University of Athens, Greece, FAPESP; CNPq (Conselho Nacional de
Desenvolvimento Cientifico e Tecnologico) in Brazil
FX We thank S. Parke and P. Huber for useful discussions concerning
oscillations between active and sterile neutrinos. This work was
supported by the U.S. Department of Energy, the U.S. National Science
Foundation, the U.K. Science and Technology Facilities Council, the
State and University of Minnesota, the Office of Special Accounts for
Research Grants of the University of Athens, Greece, FAPESP (Fundacao de
Amparo a Pesquisa do Estado de Sao Paulo) and CNPq (Conselho Nacional de
Desenvolvimento Cientifico e Tecnologico) in Brazil. We gratefully
acknowledge the Minnesota Department of Natural Resources for their
assistance and for allowing access to the facilities of the Soudan
Underground Mine State Park. We thank the crew of the Soudan Underground
Physics Laboratory for their tireless work in building and operating the
MINOS far detector.
NR 54
TC 52
Z9 52
U1 0
U2 8
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 052004
DI 10.1103/PhysRevD.81.052004
PG 18
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200012
ER
PT J
AU Aubert, B
Karyotakis, Y
Lees, JP
Poireau, V
Prencipe, E
Prudent, X
Tisserand, V
Tico, JG
Grauges, E
Martinelli, M
Palano, A
Pappagallo, M
Eigen, G
Stugu, B
Sun, L
Battaglia, M
Brown, DN
Hooberman, B
Kerth, LT
Kolomensky, YG
Lynch, G
Osipenkov, IL
Tackmann, K
Tanabe, T
Hawkes, CM
Soni, N
Watson, AT
Koch, H
Schroeder, T
Asgeirsson, DJ
Hearty, C
Mattison, TS
McKenna, JA
Barrett, M
Khan, A
Randle-Conde, A
Blinov, VE
Bukin, AD
Buzykaev, AR
Druzhinin, VP
Golubev, VB
Onuchin, AP
Serednyakov, SI
Skovpen, YI
Solodov, EP
Todyshev, KY
Bondioli, M
Curry, S
Eschrich, I
Kirkby, D
Lankford, AJ
Lund, P
Mandelkern, M
Martin, EC
Stoker, DP
Atmacan, H
Gary, JW
Liu, F
Long, O
Vitug, GM
Yasin, Z
Sharma, V
Campagnari, C
Hong, TM
Kovalskyi, D
Mazur, MA
Richman, JD
Beck, TW
Eisner, AM
Heusch, CA
Kroseberg, J
Lockman, WS
Martinez, AJ
Schalk, T
Schumm, BA
Seiden, A
Wang, L
Winstrom, LO
Cheng, CH
Doll, DA
Echenard, B
Fang, F
Hitlin, DG
Narsky, I
Ongmongkolkul, P
Piatenko, T
Porter, FC
Andreassen, R
Mancinelli, G
Meadows, BT
Mishra, K
Sokoloff, MD
Bloom, PC
Ford, WT
Gaz, A
Hirschauer, JF
Nagel, M
Nauenberg, U
Smith, JG
Wagner, SR
Ayad, R
Toki, WH
Wilson, RJ
Feltresi, E
Hauke, A
Jasper, H
Karbach, TM
Merkel, J
Petzold, A
Spaan, B
Wacker, K
Kobel, MJ
Nogowski, R
Schubert, KR
Schwierz, R
Bernard, D
Latour, E
Verderi, M
Clark, PJ
Playfer, S
Watson, JE
Andreotti, M
Bettoni, D
Bozzi, C
Calabrese, R
Cecchi, A
Cibinetto, G
Fioravanti, E
Franchini, P
Luppi, E
Munerato, M
Negrini, M
Petrella, A
Piemontese, L
Santoro, V
Baldini-Ferroli, R
Calcaterra, A
de Sangro, R
Finocchiaro, G
Pacetti, S
Patteri, P
Peruzzi, IM
Piccolo, M
Rama, M
Zallo, A
Contri, R
Guido, E
Lo Vetere, M
Monge, MR
Passaggio, S
Patrignani, C
Robutti, E
Tosi, S
Chaisanguanthum, KS
Morii, M
Adametz, A
Marks, J
Schenk, S
Uwer, U
Bernlochner, FU
Klose, V
Lacker, HM
Lueck, T
Volk, A
Bard, DJ
Dauncey, PD
Tibbetts, M
Behera, PK
Charles, MJ
Mallik, U
Cochran, J
Crawley, HB
Dong, L
Eyges, V
Meyer, WT
Prell, S
Rosenberg, EI
Rubin, AE
Gao, YY
Gritsan, AV
Guo, ZJ
Arnaud, N
Bequilleux, J
D'Orazio, A
Davier, M
Derkach, D
da Costa, JF
Grosdidier, G
Le Diberder, F
Lepeltier, V
Lutz, AM
Malaescu, B
Pruvot, S
Roudeau, P
Schune, MH
Serrano, J
Sordini, V
Stocchi, A
Wormser, G
Lange, DJ
Wright, DM
Bingham, I
Burke, JP
Chavez, CA
Fry, JR
Gabathuler, E
Gamet, R
Hutchcroft, DE
Payne, DJ
Touramanis, C
Bevan, AJ
Clarke, CK
Di Lodovico, F
Sacco, R
Sigamani, M
Cowan, G
Paramesvaran, S
Wren, AC
Brown, DN
Davis, CL
Denig, AG
Fritsch, M
Gradl, W
Hafner, A
Alwyn, KE
Bailey, D
Barlow, RJ
Jackson, G
Lafferty, GD
West, TJ
Yi, JI
Anderson, J
Chen, C
Jawahery, A
Roberts, DA
Simi, G
Tuggle, JM
Dallapiccola, C
Salvati, E
Cowan, R
Dujmic, D
Fisher, PH
Henderson, SW
Sciolla, G
Spitznagel, M
Yamamoto, RK
Zhao, M
Patel, PM
Robertson, SH
Schram, M
Biassoni, P
Lazzaro, A
Lombardo, V
Palombo, F
Stracka, S
Cremaldi, L
Godang, R
Kroeger, R
Sonnek, P
Summers, DJ
Zhao, HW
Simard, M
Taras, P
Nicholson, H
De Nardo, G
Lista, L
Monorchio, D
Onorato, G
Sciacca, C
Raven, G
Snoek, HL
Jessop, CP
Knoepfel, KJ
LoSecco, JM
Wang, WF
Corwin, LA
Honscheid, K
Kagan, H
Kass, R
Morris, JP
Rahimi, AM
Sekula, SJ
Wong, QK
Blount, NL
Brau, J
Frey, R
Igonkina, O
Kolb, JA
Lu, M
Rahmat, R
Sinev, NB
Strom, D
Strube, J
Torrence, E
Castelli, G
Gagliardi, N
Margoni, M
Morandin, M
Posocco, M
Rotondo, M
Simonetto, F
Stroili, R
Voci, C
Sanchez, PD
Ben-Haim, E
Bonneaud, GR
Briand, H
Chauveau, J
Hamon, O
Leruste, P
Marchiori, G
Ocariz, J
Perez, A
Prendki, J
Sitt, S
Gladney, L
Biasini, M
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Angelini, C
Batignani, G
Bettarini, S
Calderini, G
Carpinelli, M
Cervelli, A
Forti, F
Giorgi, MA
Lusiani, A
Morganti, M
Neri, N
Paoloni, E
Rizzo, G
Walsh, JJ
Pegna, DL
Lu, C
Olsen, J
Smith, AJS
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Anulli, F
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Faccini, R
Ferrarotto, F
Ferroni, F
Gaspero, M
Jackson, PD
Gioi, LL
Mazzoni, MA
Morganti, S
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Renga, F
Voena, C
Ebert, M
Hartmann, T
Schroder, H
Waldi, R
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Franek, B
Olaiya, EO
Wilson, FF
Emery, S
Esteve, L
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Kozanecki, W
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Cenci, R
Coleman, JP
Convery, MR
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Dubois-Felsmann, GP
Dunwoodie, W
Field, RC
Sevilla, MF
Fulsom, BG
Gabareen, AM
Graham, MT
Grenier, P
Hast, C
Innes, WR
Kaminski, J
Kelsey, MH
Kim, H
Kim, P
Kocian, ML
Leith, DWGS
Li, S
Lindquist, B
Luitz, S
Luth, V
Lynch, HL
MacFarlane, DB
Marsiske, H
Messner, R
Muller, DR
Neal, H
Nelson, S
O'Grady, CP
Ofte, I
Perl, M
Ratcliff, BN
Roodman, A
Salnikov, AA
Schindler, RH
Schwiening, J
Snyder, A
Su, D
Sullivan, MK
Suzuki, K
Swain, SK
Thompson, JM
Va'vra, J
Wagner, AP
Weaver, M
West, CA
Wisniewski, WJ
Wittgen, M
Wright, DH
Wulsin, HW
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Young, CC
Ziegler, V
Chen, XR
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Puccio, EMT
Band, HR
Chen, X
Dasu, S
Flood, KT
Pan, Y
Prepost, R
Vuosalo, CO
Wu, SL
AF Aubert, B.
Karyotakis, Y.
Lees, J. P.
Poireau, V.
Prencipe, E.
Prudent, X.
Tisserand, V.
Garra Tico, J.
Grauges, E.
Martinelli, M.
Palano, A.
Pappagallo, M.
Eigen, G.
Stugu, B.
Sun, L.
Battaglia, M.
Brown, D. N.
Hooberman, B.
Kerth, L. T.
Kolomensky, Yu. G.
Lynch, G.
Osipenkov, I. L.
Tackmann, K.
Tanabe, T.
Hawkes, C. M.
Soni, N.
Watson, A. T.
Koch, H.
Schroeder, T.
Asgeirsson, D. J.
Hearty, C.
Mattison, T. S.
McKenna, J. A.
Barrett, M.
Khan, A.
Randle-Conde, A.
Blinov, V. E.
Bukin, A. D.
Buzykaev, A. R.
Druzhinin, V. P.
Golubev, V. B.
Onuchin, A. P.
Serednyakov, S. I.
Skovpen, Yu. I.
Solodov, E. P.
Todyshev, K. Yu.
Bondioli, M.
Curry, S.
Eschrich, I.
Kirkby, D.
Lankford, A. J.
Lund, P.
Mandelkern, M.
Martin, E. C.
Stoker, D. P.
Atmacan, H.
Gary, J. W.
Liu, F.
Long, O.
Vitug, G. M.
Yasin, Z.
Sharma, V.
Campagnari, C.
Hong, T. M.
Kovalskyi, D.
Mazur, M. A.
Richman, J. D.
Beck, T. W.
Eisner, A. M.
Heusch, C. A.
Kroseberg, J.
Lockman, W. S.
Martinez, A. J.
Schalk, T.
Schumm, B. A.
Seiden, A.
Wang, L.
Winstrom, L. O.
Cheng, C. H.
Doll, D. A.
Echenard, B.
Fang, F.
Hitlin, D. G.
Narsky, I.
Ongmongkolkul, P.
Piatenko, T.
Porter, F. C.
Andreassen, R.
Mancinelli, G.
Meadows, B. T.
Mishra, K.
Sokoloff, M. D.
Bloom, P. C.
Ford, W. T.
Gaz, A.
Hirschauer, J. F.
Nagel, M.
Nauenberg, U.
Smith, J. G.
Wagner, S. R.
Ayad, R.
Toki, W. H.
Wilson, R. J.
Feltresi, E.
Hauke, A.
Jasper, H.
Karbach, T. M.
Merkel, J.
Petzold, A.
Spaan, B.
Wacker, K.
Kobel, M. J.
Nogowski, R.
Schubert, K. R.
Schwierz, R.
Bernard, D.
Latour, E.
Verderi, M.
Clark, P. J.
Playfer, S.
Watson, J. E.
Andreotti, M.
Bettoni, D.
Bozzi, C.
Calabrese, R.
Cecchi, A.
Cibinetto, G.
Fioravanti, E.
Franchini, P.
Luppi, E.
Munerato, M.
Negrini, M.
Petrella, A.
Piemontese, L.
Santoro, V.
Baldini-Ferroli, R.
Calcaterra, A.
de Sangro, R.
Finocchiaro, G.
Pacetti, S.
Patteri, P.
Peruzzi, I. M.
Piccolo, M.
Rama, M.
Zallo, A.
Contri, R.
Guido, E.
Lo Vetere, M.
Monge, M. R.
Passaggio, S.
Patrignani, C.
Robutti, E.
Tosi, S.
Chaisanguanthum, K. S.
Morii, M.
Adametz, A.
Marks, J.
Schenk, S.
Uwer, U.
Bernlochner, F. U.
Klose, V.
Lacker, H. M.
Lueck, T.
Volk, A.
Bard, D. J.
Dauncey, P. D.
Tibbetts, M.
Behera, P. K.
Charles, M. J.
Mallik, U.
Cochran, J.
Crawley, H. B.
Dong, L.
Eyges, V.
Meyer, W. T.
Prell, S.
Rosenberg, E. I.
Rubin, A. E.
Gao, Y. Y.
Gritsan, A. V.
Guo, Z. J.
Arnaud, N.
Bequilleux, J.
D'Orazio, A.
Davier, M.
Derkach, D.
da Costa, J. Firmino
Grosdidier, G.
Le Diberder, F.
Lepeltier, V.
Lutz, A. M.
Malaescu, B.
Pruvot, S.
Roudeau, P.
Schune, M. H.
Serrano, J.
Sordini, V.
Stocchi, A.
Wormser, G.
Lange, D. J.
Wright, D. M.
Bingham, I.
Burke, J. P.
Chavez, C. A.
Fry, J. R.
Gabathuler, E.
Gamet, R.
Hutchcroft, D. E.
Payne, D. J.
Touramanis, C.
Bevan, A. J.
Clarke, C. K.
Di Lodovico, F.
Sacco, R.
Sigamani, M.
Cowan, G.
Paramesvaran, S.
Wren, A. C.
Brown, D. N.
Davis, C. L.
Denig, A. G.
Fritsch, M.
Gradl, W.
Hafner, A.
Alwyn, K. E.
Bailey, D.
Barlow, R. J.
Jackson, G.
Lafferty, G. D.
West, T. J.
Yi, J. I.
Anderson, J.
Chen, C.
Jawahery, A.
Roberts, D. A.
Simi, G.
Tuggle, J. M.
Dallapiccola, C.
Salvati, E.
Cowan, R.
Dujmic, D.
Fisher, P. H.
Henderson, S. W.
Sciolla, G.
Spitznagel, M.
Yamamoto, R. K.
Zhao, M.
Patel, P. M.
Robertson, S. H.
Schram, M.
Biassoni, P.
Lazzaro, A.
Lombardo, V.
Palombo, F.
Stracka, S.
Cremaldi, L.
Godang, R.
Kroeger, R.
Sonnek, P.
Summers, D. J.
Zhao, H. W.
Simard, M.
Taras, P.
Nicholson, H.
De Nardo, G.
Lista, L.
Monorchio, D.
Onorato, G.
Sciacca, C.
Raven, G.
Snoek, H. L.
Jessop, C. P.
Knoepfel, K. J.
LoSecco, J. M.
Wang, W. F.
Corwin, L. A.
Honscheid, K.
Kagan, H.
Kass, R.
Morris, J. P.
Rahimi, A. M.
Sekula, S. J.
Wong, Q. K.
Blount, N. L.
Brau, J.
Frey, R.
Igonkina, O.
Kolb, J. A.
Lu, M.
Rahmat, R.
Sinev, N. B.
Strom, D.
Strube, J.
Torrence, E.
Castelli, G.
Gagliardi, N.
Margoni, M.
Morandin, M.
Posocco, M.
Rotondo, M.
Simonetto, F.
Stroili, R.
Voci, C.
del Amo Sanchez, P.
Ben-Haim, E.
Bonneaud, G. R.
Briand, H.
Chauveau, J.
Hamon, O.
Leruste, Ph.
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Sitt, S.
Gladney, L.
Biasini, M.
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Batignani, G.
Bettarini, S.
Calderini, G.
Carpinelli, M.
Cervelli, A.
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Field, R. C.
Sevilla, M. Franco
Fulsom, B. G.
Gabareen, A. M.
Graham, M. T.
Grenier, P.
Hast, C.
Innes, W. R.
Kaminski, J.
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Chen, X. R.
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Park, W.
Purohit, M. V.
White, R. M.
Wilson, J. R.
Bellis, M.
Burchat, P. R.
Edwards, A. J.
Miyashita, T. S.
Ahmed, S.
Alam, M. S.
Ernst, J. A.
Pan, B.
Saeed, M. A.
Zain, S. B.
Soffer, A.
Spanier, S. M.
Wogsland, B. J.
Eckmann, R.
Ritchie, J. L.
Ruland, A. M.
Schilling, C. J.
Schwitters, R. F.
Wray, B. C.
Drummond, B. W.
Izen, J. M.
Lou, X. C.
Bianchi, F.
Gamba, D.
Pelliccioni, M.
Bomben, M.
Bosisio, L.
Cartaro, C.
Della Ricca, G.
Lanceri, L.
Vitale, L.
Azzolini, V.
Lopez-March, N.
Martinez-Vidal, F.
Milanes, D. A.
Oyanguren, A.
Albert, J.
Banerjee, Sw.
Bhuyan, B.
Choi, H. H. F.
Hamano, K.
King, G. J.
Kowalewski, R.
Lewczuk, M. J.
Nugent, I. M.
Roney, J. M.
Sobie, R. J.
Gershon, T. J.
Harrison, P. F.
Ilic, J.
Latham, T. E.
Mohanty, G. B.
Puccio, E. M. T.
Band, H. R.
Chen, X.
Dasu, S.
Flood, K. T.
Pan, Y.
Prepost, R.
Vuosalo, C. O.
Wu, S. L.
CA BaBaR Collaboration
TI Measurement of branching fractions of B decays to K-1(1270)pi and
K-1(1400)pi and determination of the CKM angle alpha from B-0 ->
a(1)(1260)(+/-)pi(-/+)
SO PHYSICAL REVIEW D
LA English
DT Article
ID DIFFRACTIVE PRODUCTION; CP-VIOLATION; FORMALISM; SEARCH; MATRIX; STATES;
MODEL
AB We report measurements of the branching fractions of neutral and charged B meson decays to final states containing a K-1(1270) or K-1(1400) meson and a charged pion. The data, collected with the BABAR detector at the SLAC National Accelerator Laboratory, correspond to 454 x 10(6) B (B) over bar pairs produced in e(+)e(-) annihilation. We measure the branching fractions B(B-0 -> K-1(1270)(+)pi(-) + K-1(1400)(+)pi(-)) = 3.1(-0.7)(+0.8) x 10(-5) and B(B+ -> K-1(1270)(0)pi(+) + K1(1400)(0)pi(+)) = 2.9(-1.7)(+2.9) x 10(-5) (< 8.2 x 10(-5) at 90% confidence level), where the errors are statistical and systematic combined. The B-0 decay mode is observed with a significance of 7.5 sigma, while a significance of 3.2 sigma is obtained for the B+ decay mode. Based on these results, we estimate the weak phase alpha = (79 +/- 7 +/- 11)degrees from the time-dependent CP asymmetries in B-0 -> a(1)(1260)(+/-)pi(-/+) decays.
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RI dong, liaoyuan/A-5093-2015; Rizzo, Giuliana/A-8516-2015; Martinez Vidal,
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Gerhard/0000-0002-2897-5323; Bellis, Matthew/0000-0002-6353-6043;
Pacetti, Simone/0000-0002-6385-3508; Rizzo,
Giuliana/0000-0003-1788-2866; Carpinelli, Massimo/0000-0002-8205-930X;
Sciacca, Crisostomo/0000-0002-8412-4072; Adye, Tim/0000-0003-0627-5059;
Lafferty, George/0000-0003-0658-4919; Faccini,
Riccardo/0000-0003-2613-5141; Martinelli, Maurizio/0000-0003-4792-9178;
Wilson, Robert/0000-0002-8184-4103; Martinez Vidal,
F*/0000-0001-6841-6035; Kolomensky, Yury/0000-0001-8496-9975; Lo Vetere,
Maurizio/0000-0002-6520-4480; Lusiani, Alberto/0000-0002-6876-3288;
Morandin, Mauro/0000-0003-4708-4240; Lusiani,
Alberto/0000-0002-6876-3288; Stracka, Simone/0000-0003-0013-4714; Della
Ricca, Giuseppe/0000-0003-2831-6982; Di Lodovico,
Francesca/0000-0003-3952-2175; Pappagallo, Marco/0000-0001-7601-5602;
Calcaterra, Alessandro/0000-0003-2670-4826; Frey,
Raymond/0000-0003-0341-2636; Negrini, Matteo/0000-0003-0101-6963;
Patrignani, Claudia/0000-0002-5882-1747; Monge, Maria
Roberta/0000-0003-1633-3195; Oyanguren, Arantza/0000-0002-8240-7300;
Luppi, Eleonora/0000-0002-1072-5633; White, Ryan/0000-0003-3589-5900;
Calabrese, Roberto/0000-0002-1354-5400; Neri,
Nicola/0000-0002-6106-3756; Forti, Francesco/0000-0001-6535-7965;
Rotondo, Marcello/0000-0001-5704-6163; de Sangro,
Riccardo/0000-0002-3808-5455; Saeed, Mohammad Alam/0000-0002-3529-9255
FU U.S. Department of Energy; National Science Foundation; Natural Sciences
and Engineering Research Council (Canada); Commissariat a l'Energie
Atomique and Institut National de Physique Nucleaire et de Physique des
Particules (France); Bundes-minsterium fur Bildung und Forschung and
Deutsche Forschungsgemeinschaft (Germany); Istituto Nazionale di Fisica
Nucleare (Italy); Foundation for Fundamental Research on Matter (The
Netherlands); Research Council of Norway; Ministry of Education and
Science of the Russian Federation; Ministerio de Educacion y Ciencia
(Spain); Science and Technology Facilities Council (United Kingdom);
Marie-Curie IEF program (European Union); A.P. Sloan Foundation
FX We are indebted to Ian Aitchison for a number of helpful remarks and
suggestions. We are grateful for the extraordinary contributions of our
PEP-II colleagues in achieving the excellent luminosity and machine
conditions that have made this work possible. The success of this
project also relies critically on the expertise and dedication of the
computing organizations that support BABAR. The collaborating
institutions wish to thank SLAC for its support and the kind hospitality
extended to them. This work is supported by the U.S. Department of
Energy and National Science Foundation, the Natural Sciences and
Engineering Research Council (Canada), the Commissariat a l'Energie
Atomique and Institut National de Physique Nucleaire et de Physique des
Particules (France), the Bundes-minsterium fur Bildung und Forschung and
Deutsche Forschungsgemeinschaft (Germany), the Istituto Nazionale di
Fisica Nucleare (Italy), the Foundation for Fundamental Research on
Matter (The Netherlands), the Research Council of Norway, the Ministry
of Education and Science of the Russian Federation, Ministerio de
Educacion y Ciencia (Spain), and the Science and Technology Facilities
Council (United Kingdom). Individuals have received support from the
Marie-Curie IEF program (European Union) and the A.P. Sloan Foundation.
NR 42
TC 9
Z9 9
U1 0
U2 5
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 052009
DI 10.1103/PhysRevD.81.052009
PG 16
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200017
ER
PT J
AU Aubert, B
Karyotakis, Y
Lees, JP
Poireau, V
Prencipe, E
Prudent, X
Tisserand, V
Tico, JG
Grauges, E
Martinelli, M
Palano, A
Pappagallo, M
Eigen, G
Stugu, B
Sun, L
Battaglia, M
Brown, DN
Hooberman, B
Kerth, LT
Kolomensky, YG
Lynch, G
Osipenkov, IL
Tackmann, K
Tanabe, T
Hawkes, CM
Soni, N
Watson, AT
Koch, H
Schroeder, T
Asgeirsson, DJ
Hearty, C
Mattison, TS
McKenna, JA
Barrett, M
Khan, A
Randle-Conde, A
Blinov, VE
Bukin, AD
Buzykaev, AR
Druzhinin, VP
Golubev, VB
Onuchin, AP
Serednyakov, SI
Skovpen, YI
Solodov, EP
Todyshev, KY
Bondioli, M
Curry, S
Eschrich, I
Kirkby, D
Lankford, AJ
Lund, P
Mandelkern, M
Martin, EC
Stoker, DP
Atmacan, H
Gary, JW
Liu, F
Long, O
Vitug, GM
Yasin, Z
Sharma, V
Campagnari, C
Hong, TM
Kovalskyi, D
Mazur, MA
Richman, JD
Beck, TW
Eisner, AM
Heusch, CA
Kroseberg, J
Lockman, WS
Martinez, AJ
Schalk, T
Schumm, BA
Seiden, A
Wang, L
Winstrom, LO
Cheng, CH
Doll, DA
Echenard, B
Fang, F
Hitlin, DG
Narsky, I
Ongmongkolkul, P
Piatenko, T
Porter, FC
Andreassen, R
Mancinelli, G
Meadows, BT
Mishra, K
Sokoloff, MD
Bloom, PC
Ford, WT
Gaz, A
Hirschauer, JF
Nagel, M
Nauenberg, U
Smith, JG
Wagner, SR
Ayad, R
Toki, WH
Feltresi, E
Hauke, A
Jasper, H
Karbach, TM
Merkel, J
Petzold, A
Spaan, B
Wacker, K
Kobel, MJ
Nogowski, R
Schubert, KR
Schwierz, R
Bernard, D
Latour, E
Verderi, M
Clark, PJ
Playfer, S
Watson, JE
Andreotti, M
Bettoni, D
Bozzi, C
Calabrese, R
Cecchi, A
Cibinetto, G
Fioravanti, E
Franchini, P
Luppi, E
Munerato, M
Negrini, M
Petrella, A
Piemontese, L
Santoro, V
Baldini-Ferroli, R
Calcaterra, A
de Sangro, R
Finocchiaro, G
Pacetti, S
Patteri, P
Peruzzi, IM
Piccolo, M
Rama, M
Zallo, A
Contri, R
Guido, E
Lo Vetere, M
Monge, MR
Passaggio, S
Patrignani, C
Robutti, E
Tosi, S
Morii, M
Adametz, A
Marks, J
Schenk, S
Uwer, U
Bernlochner, FU
Lacker, HM
Lueck, T
Volk, A
Dauncey, PD
Tibbetts, M
Behera, PK
Charles, MJ
Mallik, U
Cochran, J
Crawley, HB
Dong, L
Eyges, V
Meyer, WT
Prell, S
Rosenberg, EI
Rubin, AE
Gao, YY
Gritsan, AV
Guo, ZJ
Arnaud, N
D'Orazio, A
Davier, M
Derkach, D
da Costa, JF
Grosdidier, G
Le Diberder, F
Lepeltier, V
Lutz, AM
Malaescu, B
Roudeau, P
Schune, MH
Serrano, J
Sordini, V
Stocchi, A
Wormser, G
Lange, DJ
Wright, DM
Bingham, I
Burke, JP
Chavez, CA
Fry, JR
Gabathuler, E
Gamet, R
Hutchcroft, DE
Payne, DJ
Touramanis, C
Bevan, AJ
Clarke, CK
Di Lodovico, F
Sacco, R
Sigamani, M
Cowan, G
Paramesvaran, S
Wren, AC
Brown, DN
Davis, CL
Denig, AG
Fritsch, M
Gradl, W
Hafner, A
Alwyn, KE
Bailey, D
Barlow, RJ
Jackson, G
Lafferty, GD
West, TJ
Yi, JI
Anderson, J
Chen, C
Jawahery, A
Roberts, DA
Simi, G
Tuggle, JM
Dallapiccola, C
Salvati, E
Cowan, R
Dujmic, D
Fisher, PH
Henderson, SW
Sciolla, G
Spitznagel, M
Yamamoto, RK
Zhao, M
Patel, PM
Robertson, SH
Schram, M
Biassoni, P
Lazzaro, A
Lombardo, V
Palombo, F
Stracka, S
Cremaldi, L
Godang, R
Kroeger, R
Sonnek, P
Summers, DJ
Zhao, HW
Nguyen, X
Simard, M
Taras, P
Nicholson, H
De Nardo, G
Lista, L
Monorchio, D
Onorato, G
Sciacca, C
Raven, G
Snoek, HL
Jessop, CP
Knoepfel, KJ
LoSecco, JM
Wang, WF
Corwin, LA
Honscheid, K
Kagan, H
Kass, R
Morris, JP
Rahimi, AM
Sekula, SJ
Blount, NL
Brau, J
Frey, R
Igonkina, O
Kolb, JA
Lu, M
Rahmat, R
Sinev, NB
Strom, D
Strube, J
Torrence, E
Castelli, G
Gagliardi, N
Margoni, M
Morandin, M
Posocco, M
Rotondo, M
Simonetto, F
Stroili, R
Voci, C
Sanchez, PD
Ben-Haim, E
Bonneaud, GR
Briand, H
Chauveau, J
Hamon, O
Leruste, P
Marchiori, G
Ocariz, J
Perez, A
Prendki, J
Sitt, S
Gladney, L
Biasini, M
Manoni, E
Angelini, C
Batignani, G
Bettarini, S
Calderini, G
Carpinelli, M
Cervelli, A
Forti, F
Giorgi, MA
Lusiani, A
Morganti, M
Neri, N
Paoloni, E
Rizzo, G
Walsh, JJ
Pegna, DL
Lu, C
Olsen, J
Smith, AJS
Telnov, AV
Anulli, F
Baracchini, E
Cavoto, G
Faccini, R
Ferrarotto, F
Ferroni, F
Gaspero, M
Jackson, PD
Gioi, LL
Mazzoni, MA
Morganti, S
Piredda, G
Renga, F
Voena, C
Ebert, M
Hartmann, T
Schroder, H
Waldi, R
Adye, T
Franek, B
Olaiya, EO
Wilson, FF
Emery, S
Esteve, L
de Monchenault, GH
Kozanecki, W
Vasseur, G
Yeche, C
Zito, M
Allen, MT
Aston, D
Bard, DJ
Bartoldus, R
Benitez, JF
Cenci, R
Coleman, JP
Convery, MR
Dingfelder, JC
Dorfan, J
Dubois-Felsmann, GP
Dunwoodie, W
Field, RC
Sevilla, MF
Fulsom, BG
Gabareen, AM
Graham, MT
Grenier, P
Hast, C
Innes, WR
Kaminski, J
Kelsey, MH
Kim, H
Kim, P
Kocian, ML
Leith, DWGS
Li, S
Lindquist, B
Luitz, S
Luth, V
Lynch, HL
MacFarlane, DB
Marsiske, H
Messner, R
Muller, DR
Neal, H
Nelson, S
O'Grady, CP
Ofte, I
Perl, M
Ratcliff, BN
Roodman, A
Salnikov, AA
Schindler, RH
Schwiening, J
Snyder, A
Su, D
Sullivan, MK
Suzuki, K
Swain, SK
Thompson, JM
Va'vra, J
Wagner, AP
Weaver, M
West, CA
Wisniewski, WJ
Wittgen, M
Wright, DH
Wulsin, HW
Yarritu, AK
Young, CC
Ziegler, V
Chen, XR
Liu, H
Park, W
Purohit, MV
White, RM
Wilson, JR
Bellis, M
Burchat, PR
Edwards, AJ
Miyashita, TS
Ahmed, S
Alam, MS
Ernst, JA
Pan, B
Saeed, MA
Zain, SB
Soffer, A
Spanier, SM
Wogsland, BJ
Eckmann, R
Ritchie, JL
Ruland, AM
Schilling, CJ
Schwitters, RF
Wray, BC
Drummond, BW
Izen, JM
Lou, XC
Bianchi, F
Gamba, D
Pelliccioni, M
Bomben, M
Bosisio, L
Cartaro, C
Della Ricca, G
Lanceri, L
Vitale, L
Azzolini, V
Lopez-March, N
Martinez-Vidal, F
Milanes, DA
Oyanguren, A
Albert, J
Banerjee, S
Bhuyan, B
Choi, HHF
Hamano, K
King, GJ
Kowalewski, R
Lewczuk, MJ
Nugent, IM
Roney, JM
Sobie, RJ
Gershon, TJ
Harrison, PF
Ilic, J
Latham, TE
Mohanty, GB
Puccio, EMT
Band, HR
Chen, X
Dasu, S
Flood, KT
Pan, Y
Prepost, R
Vuosalo, CO
Wu, SL
AF Aubert, B.
Karyotakis, Y.
Lees, J. P.
Poireau, V.
Prencipe, E.
Prudent, X.
Tisserand, V.
Garra Tico, J.
Grauges, E.
Martinelli, M.
Palano, A.
Pappagallo, M.
Eigen, G.
Stugu, B.
Sun, L.
Battaglia, M.
Brown, D. N.
Hooberman, B.
Kerth, L. T.
Kolomensky, Yu. G.
Lynch, G.
Osipenkov, I. L.
Tackmann, K.
Tanabe, T.
Hawkes, C. M.
Soni, N.
Watson, A. T.
Koch, H.
Schroeder, T.
Asgeirsson, D. J.
Hearty, C.
Mattison, T. S.
McKenna, J. A.
Barrett, M.
Khan, A.
Randle-Conde, A.
Blinov, V. E.
Bukin, A. D.
Buzykaev, A. R.
Druzhinin, V. P.
Golubev, V. B.
Onuchin, A. P.
Serednyakov, S. I.
Skovpen, Yu. I.
Solodov, E. P.
Todyshev, K. Yu.
Bondioli, M.
Curry, S.
Eschrich, I.
Kirkby, D.
Lankford, A. J.
Lund, P.
Mandelkern, M.
Martin, E. C.
Stoker, D. P.
Atmacan, H.
Gary, J. W.
Liu, F.
Long, O.
Vitug, G. M.
Yasin, Z.
Sharma, V.
Campagnari, C.
Hong, T. M.
Kovalskyi, D.
Mazur, M. A.
Richman, J. D.
Beck, T. W.
Eisner, A. M.
Heusch, C. A.
Kroseberg, J.
Lockman, W. S.
Martinez, A. J.
Schalk, T.
Schumm, B. A.
Seiden, A.
Wang, L.
Winstrom, L. O.
Cheng, C. H.
Doll, D. A.
Echenard, B.
Fang, F.
Hitlin, D. G.
Narsky, I.
Ongmongkolkul, P.
Piatenko, T.
Porter, F. C.
Andreassen, R.
Mancinelli, G.
Meadows, B. T.
Mishra, K.
Sokoloff, M. D.
Bloom, P. C.
Ford, W. T.
Gaz, A.
Hirschauer, J. F.
Nagel, M.
Nauenberg, U.
Smith, J. G.
Wagner, S. R.
Ayad, R.
Toki, W. H.
Feltresi, E.
Hauke, A.
Jasper, H.
Karbach, T. M.
Merkel, J.
Petzold, A.
Spaan, B.
Wacker, K.
Kobel, M. J.
Nogowski, R.
Schubert, K. R.
Schwierz, R.
Bernard, D.
Latour, E.
Verderi, M.
Clark, P. J.
Playfer, S.
Watson, J. E.
Andreotti, M.
Bettoni, D.
Bozzi, C.
Calabrese, R.
Cecchi, A.
Cibinetto, G.
Fioravanti, E.
Franchini, P.
Luppi, E.
Munerato, M.
Negrini, M.
Petrella, A.
Piemontese, L.
Santoro, V.
Baldini-Ferroli, R.
Calcaterra, A.
de Sangro, R.
Finocchiaro, G.
Pacetti, S.
Patteri, P.
Peruzzi, I. M.
Piccolo, M.
Rama, M.
Zallo, A.
Contri, R.
Guido, E.
Lo Vetere, M.
Monge, M. R.
Passaggio, S.
Patrignani, C.
Robutti, E.
Tosi, S.
Morii, M.
Adametz, A.
Marks, J.
Schenk, S.
Uwer, U.
Bernlochner, F. U.
Lacker, H. M.
Lueck, T.
Volk, A.
Dauncey, P. D.
Tibbetts, M.
Behera, P. K.
Charles, M. J.
Mallik, U.
Cochran, J.
Crawley, H. B.
Dong, L.
Eyges, V.
Meyer, W. T.
Prell, S.
Rosenberg, E. I.
Rubin, A. E.
Gao, Y. Y.
Gritsan, A. V.
Guo, Z. J.
Arnaud, N.
D'Orazio, A.
Davier, M.
Derkach, D.
da Costa, J. Firmino
Grosdidier, G.
Le Diberder, F.
Lepeltier, V.
Lutz, A. M.
Malaescu, B.
Roudeau, P.
Schune, M. H.
Serrano, J.
Sordini, V.
Stocchi, A.
Wormser, G.
Lange, D. J.
Wright, D. M.
Bingham, I.
Burke, J. P.
Chavez, C. A.
Fry, J. R.
Gabathuler, E.
Gamet, R.
Hutchcroft, D. E.
Payne, D. J.
Touramanis, C.
Bevan, A. J.
Clarke, C. K.
Di Lodovico, F.
Sacco, R.
Sigamani, M.
Cowan, G.
Paramesvaran, S.
Wren, A. C.
Brown, D. N.
Davis, C. L.
Denig, A. G.
Fritsch, M.
Gradl, W.
Hafner, A.
Alwyn, K. E.
Bailey, D.
Barlow, R. J.
Jackson, G.
Lafferty, G. D.
West, T. J.
Yi, J. I.
Anderson, J.
Chen, C.
Jawahery, A.
Roberts, D. A.
Simi, G.
Tuggle, J. M.
Dallapiccola, C.
Salvati, E.
Cowan, R.
Dujmic, D.
Fisher, P. H.
Henderson, S. W.
Sciolla, G.
Spitznagel, M.
Yamamoto, R. K.
Zhao, M.
Patel, P. M.
Robertson, S. H.
Schram, M.
Biassoni, P.
Lazzaro, A.
Lombardo, V.
Palombo, F.
Stracka, S.
Cremaldi, L.
Godang, R.
Kroeger, R.
Sonnek, P.
Summers, D. J.
Zhao, H. W.
Nguyen, X.
Simard, M.
Taras, P.
Nicholson, H.
De Nardo, G.
Lista, L.
Monorchio, D.
Onorato, G.
Sciacca, C.
Raven, G.
Snoek, H. L.
Jessop, C. P.
Knoepfel, K. J.
LoSecco, J. M.
Wang, W. F.
Corwin, L. A.
Honscheid, K.
Kagan, H.
Kass, R.
Morris, J. P.
Rahimi, A. M.
Sekula, S. J.
Blount, N. L.
Brau, J.
Frey, R.
Igonkina, O.
Kolb, J. A.
Lu, M.
Rahmat, R.
Sinev, N. B.
Strom, D.
Strube, J.
Torrence, E.
Castelli, G.
Gagliardi, N.
Margoni, M.
Morandin, M.
Posocco, M.
Rotondo, M.
Simonetto, F.
Stroili, R.
Voci, C.
Sanchez, P. del Amo
Ben-Haim, E.
Bonneaud, G. R.
Briand, H.
Chauveau, J.
Hamon, O.
Leruste, Ph.
Marchiori, G.
Ocariz, J.
Perez, A.
Prendki, J.
Sitt, S.
Gladney, L.
Biasini, M.
Manoni, E.
Angelini, C.
Batignani, G.
Bettarini, S.
Calderini, G.
Carpinelli, M.
Cervelli, A.
Forti, F.
Giorgi, M. A.
Lusiani, A.
Morganti, M.
Neri, N.
Paoloni, E.
Rizzo, G.
Walsh, J. J.
Pegna, D. Lopes
Lu, C.
Olsen, J.
Smith, A. J. S.
Telnov, A. V.
Anulli, F.
Baracchini, E.
Cavoto, G.
Faccini, R.
Ferrarotto, F.
Ferroni, F.
Gaspero, M.
Jackson, P. D.
Gioi, L. Li
Mazzoni, M. A.
Morganti, S.
Piredda, G.
Renga, F.
Voena, C.
Ebert, M.
Hartmann, T.
Schroeder, H.
Waldi, R.
Adye, T.
Franek, B.
Olaiya, E. O.
Wilson, F. F.
Emery, S.
Esteve, L.
de Monchenault, G. Hamel
Kozanecki, W.
Vasseur, G.
Yeche, Ch.
Zito, M.
Allen, M. T.
Aston, D.
Bard, D. J.
Bartoldus, R.
Benitez, J. F.
Cenci, R.
Coleman, J. P.
Convery, M. R.
Dingfelder, J. C.
Dorfan, J.
Dubois-Felsmann, G. P.
Dunwoodie, W.
Field, R. C.
Sevilla, M. Franco
Fulsom, B. G.
Gabareen, A. M.
Graham, M. T.
Grenier, P.
Hast, C.
Innes, W. R.
Kaminski, J.
Kelsey, M. H.
Kim, H.
Kim, P.
Kocian, M. L.
Leith, D. W. G. S.
Li, S.
Lindquist, B.
Luitz, S.
Luth, V.
Lynch, H. L.
MacFarlane, D. B.
Marsiske, H.
Messner, R.
Muller, D. R.
Neal, H.
Nelson, S.
O'Grady, C. P.
Ofte, I.
Perl, M.
Ratcliff, B. N.
Roodman, A.
Salnikov, A. A.
Schindler, R. H.
Schwiening, J.
Snyder, A.
Su, D.
Sullivan, M. K.
Suzuki, K.
Swain, S. K.
Thompson, J. M.
Va'vra, J.
Wagner, A. P.
Weaver, M.
West, C. A.
Wisniewski, W. J.
Wittgen, M.
Wright, D. H.
Wulsin, H. W.
Yarritu, A. K.
Young, C. C.
Ziegler, V.
Chen, X. R.
Liu, H.
Park, W.
Purohit, M. V.
White, R. M.
Wilson, J. R.
Bellis, M.
Burchat, P. R.
Edwards, A. J.
Miyashita, T. S.
Ahmed, S.
Alam, M. S.
Ernst, J. A.
Pan, B.
Saeed, M. A.
Zain, S. B.
Soffer, A.
Spanier, S. M.
Wogsland, B. J.
Eckmann, R.
Ritchie, J. L.
Ruland, A. M.
Schilling, C. J.
Schwitters, R. F.
Wray, B. C.
Drummond, B. W.
Izen, J. M.
Lou, X. C.
Bianchi, F.
Gamba, D.
Pelliccioni, M.
Bomben, M.
Bosisio, L.
Cartaro, C.
Della Ricca, G.
Lanceri, L.
Vitale, L.
Azzolini, V.
Lopez-March, N.
Martinez-Vidal, F.
Milanes, D. A.
Oyanguren, A.
Albert, J.
Banerjee, Sw.
Bhuyan, B.
Choi, H. H. F.
Hamano, K.
King, G. J.
Kowalewski, R.
Lewczuk, M. J.
Nugent, I. M.
Roney, J. M.
Sobie, R. J.
Gershon, T. J.
Harrison, P. F.
Ilic, J.
Latham, T. E.
Mohanty, G. B.
Puccio, E. M. T.
Band, H. R.
Chen, X.
Dasu, S.
Flood, K. T.
Pan, Y.
Prepost, R.
Vuosalo, C. O.
Wu, S. L.
CA BaBar Collaboration
TI Search for B+ -> l(+)nu(l) recoiling against B- -> D(0)l(-)(nu)over-barX
SO PHYSICAL REVIEW D
LA English
DT Article
AB We present a search for the decay B+ -> l(+)nu(l) (l = tau, mu, or e) in (458.9 +/- 5.1) x 10(6) B (B) over bar pairs recorded with the BABAR detector at the PEP-II B-factory. We search for these B decays in a sample of B+B- events where one B- meson is reconstructed as B- -> D(0)l(-)(nu) over barX. Using the method of Feldman and Cousins, we obtain B(B+ -> tau(+)nu(tau)) = (1.7 +/- 0.8 +/- 0.2) x 10(-4), which excludes zero at 2.3 sigma. We interpret the central value in the context of the standard model and find the B meson decay constant to be f(B)(2) = (62 +/- 31) x 10(3) MeV2. We find no evidence for B+ -> e(+)nu(e) and B+ -> mu(+)nu(mu) and set upper limits at the 90% C. L. B(B+ -> e(+)nu(e)) < 0.8 x 10(-5) and B(B+ -> mu(+)nu(mu)) < 1.1 x 10(-5).
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[Garra Tico, J.; Grauges, E.] Univ Barcelona, Fac Fis, Dept ECM, E-08028 Barcelona, Spain.
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[Pegna, D. Lopes; Lu, C.; Olsen, J.; Smith, A. J. S.; Telnov, A. V.] Princeton Univ, Princeton, NJ 08544 USA.
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[Allen, M. T.; Aston, D.; Bard, D. J.; Bartoldus, R.; Benitez, J. F.; Cenci, R.; Coleman, J. P.; Convery, M. R.; Dingfelder, J. C.; Dorfan, J.; Dubois-Felsmann, G. P.; Dunwoodie, W.; Field, R. C.; Sevilla, M. Franco; Fulsom, B. G.; Gabareen, A. M.; Graham, M. T.; Grenier, P.; Hast, C.; Innes, W. R.; Kaminski, J.; Kelsey, M. H.; Kim, H.; Kim, P.; Kocian, M. L.; Leith, D. W. G. S.; Li, S.; Lindquist, B.; Luitz, S.; Luth, V.; Lynch, H. L.; MacFarlane, D. B.; Marsiske, H.; Messner, R.; Muller, D. R.; Neal, H.; Nelson, S.; O'Grady, C. P.; Ofte, I.; Perl, M.; Ratcliff, B. N.; Roodman, A.; Salnikov, A. A.; Schindler, R. H.; Schwiening, J.; Snyder, A.; Su, D.; Sullivan, M. K.; Suzuki, K.; Swain, S. K.; Thompson, J. M.; Va'vra, J.; Wagner, A. P.; Weaver, M.; West, C. A.; Wisniewski, W. J.; Wittgen, M.; Wright, D. H.; Wulsin, H. W.; Yarritu, A. K.; Young, C. C.; Ziegler, V.] SLAC Natl Accelerator Lab, Stanford, CA 94309 USA.
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[Bianchi, F.; Gamba, D.; Pelliccioni, M.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Bianchi, F.; Gamba, D.; Pelliccioni, M.] Univ Turin, Dipartimento Fis Sperimentale, I-10125 Turin, Italy.
[Bomben, M.; Bosisio, L.; Cartaro, C.; Della Ricca, G.; Lanceri, L.; Vitale, L.] Ist Nazl Fis Nucl, Sez Trieste, I-34127 Trieste, Italy.
[Bomben, M.; Bosisio, L.; Cartaro, C.; Della Ricca, G.; Lanceri, L.; Vitale, L.] Univ Trieste, Dipartimento Fis, I-34127 Trieste, Italy.
[Azzolini, V.; Lopez-March, N.; Martinez-Vidal, F.; Milanes, D. A.; Oyanguren, A.] Univ Valencia, CSIC, IFIC, E-46071 Valencia, Spain.
[Albert, J.; Banerjee, Sw.; Bhuyan, B.; Choi, H. H. F.; Hamano, K.; King, G. J.; Kowalewski, R.; Lewczuk, M. J.; Nugent, I. M.] Univ Victoria, Victoria, BC V8W 3P6, Canada.
RP Aubert, B (reprint author), Univ Savoie, Lab Annecy Le Vieux Phys Particules LAPP, CNRS, IN2P3, F-74941 Annecy Le Vieux, France.
RI Martinez Vidal, F*/L-7563-2014; Kolomensky, Yury/I-3510-2015; Lo Vetere,
Maurizio/J-5049-2012; Lusiani, Alberto/N-2976-2015; Morandin,
Mauro/A-3308-2016; Lusiani, Alberto/A-3329-2016; Stracka,
Simone/M-3931-2015; Della Ricca, Giuseppe/B-6826-2013; Di Lodovico,
Francesca/L-9109-2016; Pappagallo, Marco/R-3305-2016; Calcaterra,
Alessandro/P-5260-2015; Frey, Raymond/E-2830-2016; de Sangro,
Riccardo/J-2901-2012; Saeed, Mohammad Alam/J-7455-2012; Negrini,
Matteo/C-8906-2014; Patrignani, Claudia/C-5223-2009; Monge, Maria
Roberta/G-9127-2012; Oyanguren, Arantza/K-6454-2014; Luppi,
Eleonora/A-4902-2015; White, Ryan/E-2979-2015; Calabrese,
Roberto/G-4405-2015; Neri, Nicola/G-3991-2012; Forti,
Francesco/H-3035-2011; Rotondo, Marcello/I-6043-2012
OI Raven, Gerhard/0000-0002-2897-5323; Martinez Vidal,
F*/0000-0001-6841-6035; Kolomensky, Yury/0000-0001-8496-9975; Lo Vetere,
Maurizio/0000-0002-6520-4480; Lusiani, Alberto/0000-0002-6876-3288;
Morandin, Mauro/0000-0003-4708-4240; Lusiani,
Alberto/0000-0002-6876-3288; Stracka, Simone/0000-0003-0013-4714; Della
Ricca, Giuseppe/0000-0003-2831-6982; Di Lodovico,
Francesca/0000-0003-3952-2175; Pappagallo, Marco/0000-0001-7601-5602;
Calcaterra, Alessandro/0000-0003-2670-4826; Frey,
Raymond/0000-0003-0341-2636; de Sangro, Riccardo/0000-0002-3808-5455;
Saeed, Mohammad Alam/0000-0002-3529-9255; Negrini,
Matteo/0000-0003-0101-6963; Patrignani, Claudia/0000-0002-5882-1747;
Monge, Maria Roberta/0000-0003-1633-3195; Oyanguren,
Arantza/0000-0002-8240-7300; Luppi, Eleonora/0000-0002-1072-5633; White,
Ryan/0000-0003-3589-5900; Calabrese, Roberto/0000-0002-1354-5400; Neri,
Nicola/0000-0002-6106-3756; Forti, Francesco/0000-0001-6535-7965;
Rotondo, Marcello/0000-0001-5704-6163
FU DOE and NSF (USA); NSERC (Canada); CEA and CNRS-IN2P3 (France); BMBF and
DFG (Germany); INFN (Italy); FOM (The Netherlands); NFR (Norway); MES
(Russia); MEC (Spain); STFC (United Kingdom); Marie Curie EIF (European
Union); A. P. Sloan Foundation
FX This work is supported by DOE and NSF (USA), NSERC (Canada), CEA and
CNRS-IN2P3 (France), BMBF and DFG (Germany), INFN (Italy), FOM (The
Netherlands), NFR (Norway), MES (Russia), MEC (Spain), and STFC (United
Kingdom). Individuals have received support from the Marie Curie EIF
(European Union) and the A. P. Sloan Foundation.
NR 15
TC 69
Z9 69
U1 0
U2 5
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 051101
DI 10.1103/PhysRevD.81.051101
PG 9
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200001
ER
PT J
AU Beane, SR
Detmold, W
Lin, HW
Luu, TC
Orginos, K
Savage, MJ
Torok, A
Walker-Loud, A
AF Beane, Silas R.
Detmold, William
Lin, Huey-Wen
Luu, Thomas C.
Orginos, Kostas
Savage, Martin J.
Torok, Aaron
Walker-Loud, Andre
TI High statistics analysis using anisotropic clover lattices: III.
Baryon-baryon interactions
SO PHYSICAL REVIEW D
LA English
DT Article
ID NUCLEAR-FORCES; QCD; SCATTERING; STATES; DEPENDENCE
AB Low-energy baryon-baryon interactions are calculated in a high-statistics lattice QCD study on a single ensemble of anisotropic-clover gauge-field configurations at a pion mass of m(pi) similar to 390 MeV, a spatial volume of L(3) similar to (2.5 fm)(3), and a spatial lattice spacing of b similar to 0.123 fm. Luscher's method is used to extract nucleon-nucleon, hyperon-nucleon, and hyperon-hyperon scattering phase shifts at one momentum from the one-and two-baryon ground-state energies in the lattice volume. The isospin-3= 2 N Sigma interactions are found to be highly spin dependent, and the interaction in the (3)S(1) channel is found to be strong. In contrast, the N Lambda interactions are found to be spin independent, within the uncertainties of the calculation, consistent with the absence of one-pion exchange. The only channel for which a negative energy shift is found is Lambda Lambda, indicating that the Lambda Lambda interaction is attractive, as anticipated from modeldependent discussions regarding the H dibaryon. The nucleon-nucleon (NN) scattering lengths are found to be small, clearly indicating the absence of any fine-tuning in the NN sector at this pion mass. This is consistent with our previous lattice QCD calculation of NN interactions. The behavior of the signal-to-noise ratio in the baryon-baryon correlation functions, and in the ratio of correlation functions that yields the ground-state energy splitting is explored. In particular, focus is placed on the window of time slices for which the signal-to-noise ratio does not degrade exponentially, as this provides the opportunity to extract quantitative information about multibaryon systems.
C1 [Beane, Silas R.] Univ New Hampshire, Dept Phys, Durham, NH 03824 USA.
[Detmold, William; Orginos, Kostas; Walker-Loud, Andre] Coll William & Mary, Dept Phys, Williamsburg, VA 23187 USA.
[Detmold, William; Orginos, Kostas] Jefferson Lab, Newport News, VA 23606 USA.
[Lin, Huey-Wen; Savage, Martin J.] Univ Washington, Dept Phys, Seattle, WA 98195 USA.
[Luu, Thomas C.] Lawrence Livermore Natl Lab, Div N, Livermore, CA 94551 USA.
[Torok, Aaron] Indiana Univ, Dept Phys, Bloomington, IN 47405 USA.
RP Beane, SR (reprint author), Univ New Hampshire, Dept Phys, Durham, NH 03824 USA.
OI Detmold, William/0000-0002-0400-8363
FU U.S. Department of Energy [DE-FG03-97ER4014, DE-AC05-06OR23177,
DE-FG02-04ER41302, DE-FG-0207ER41527, DE-SC0001784, DE-FC02-06ER41443];
NSF [CCF-0728915]; Jeffress Memorial Trust [J-813]; National Science
Foundation [PHY-0645570]; University of California, Lawrence Livermore
National Laboratory [W-7405-Eng-48]
FX The work of M. J. S. and H.- W. L. was supported part by the U.S.
Department of Energy under Grant No. DE-FG03-97ER4014. The work of K. O.
and W. D. was supported in part by the U.S. Department of Energy
Contract No. DE-AC05-06OR23177 (JSA) and DOE Grant No.
DE-FG02-04ER41302. K. O. was also supported by NSF Grant No.
CCF-0728915. K. O. and A. W. L. were supported in part by the Jeffress
Memorial Trust, Grant No. J-813 and DOE OJI Grant No. DE-FG-0207ER41527.
W. D. was also supported by DOE OJI Grant No. DE-SC0001784. The work of
S. R. B. was supported in part by the National Science Foundation CAREER
Grant No. PHY-0645570. The work of A. T. is currently supported by NSF
Grant No. PHY-0555234 and DOE Grant No. DE-FC02-06ER41443. Part of this
work was performed under the auspices of the U.S. DOE by the University
of California, Lawrence Livermore National Laboratory under Contract No.
W-7405-Eng-48.
NR 39
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 054505
DI 10.1103/PhysRevD.81.054505
PG 22
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200073
ER
PT J
AU Cheng, M
Ejiri, S
Hegde, P
Karsch, F
Kaczmarek, O
Laermann, E
Mawhinney, RD
Miao, C
Mukherjee, S
Petreczky, P
Schmidt, C
Soeldner, W
AF Cheng, M.
Ejiri, S.
Hegde, P.
Karsch, F.
Kaczmarek, O.
Laermann, E.
Mawhinney, R. D.
Miao, C.
Mukherjee, S.
Petreczky, P.
Schmidt, C.
Soeldner, W.
TI Equation of state for physical quark masses
SO PHYSICAL REVIEW D
LA English
DT Article
ID RENORMALIZED POLYAKOV LOOP; HIGH-TEMPERATURE; GAUGE-THEORY; MONTE-CARLO;
FREE-ENERGY; QCD; LATTICE; THERMODYNAMICS; DECONFINEMENT; TRANSITION
AB We calculate the QCD equation of state for temperatures corresponding to the transition region with physical mass values for two degenerate light quark flavors and a strange quark using an improved staggered fermion action (p4-action) on lattices with temporal extent N-tau = 8. We compare our results with previous calculations performed at twice larger values of the light quark masses as well as with results obtained from a resonance gas model calculation. We also discuss the deconfining and chiral aspects of the QCD transition in terms of renormalized Polyakov loop, strangeness fluctuations, and subtracted chiral condensate. We show that compared to the calculations performed at twice larger value of the light quark mass the transition region shifts by about 5 MeV toward smaller temperatures.
C1 [Cheng, M.] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
[Ejiri, S.; Hegde, P.; Karsch, F.; Miao, C.; Mukherjee, S.; Petreczky, P.] Brookhaven Natl Lab, Dept Phys, Upton, NY 11973 USA.
[Hegde, P.] SUNY Stony Brook, Dept Phys & Astron, Stony Brook, NY 11790 USA.
[Karsch, F.; Kaczmarek, O.; Laermann, E.; Schmidt, C.] Univ Bielefeld, Fak Phys, D-33615 Bielefeld, Germany.
[Mawhinney, R. D.] Columbia Univ, Dept Phys, New York, NY 10027 USA.
[Petreczky, P.] Brookhaven Natl Lab, RIKEN BNL Res Ctr, Upton, NY 11973 USA.
[Soeldner, W.] GSI Helmholtzzentrum Schwerionenforsch, ExtreMe Matter Inst EMMI, D-64291 Darmstadt, Germany.
RP Cheng, M (reprint author), Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
RI Kaczmarek, Olaf/E-9932-2011;
OI Mukherjee, Swagato/0000-0002-3824-1008; Schmidt,
Christian/0000-0002-9071-4757
FU U.S. Department of Energy [DE-AC02-98CH10886, DE-FG0292ER40699];
Bundesministerium fur Bildung und Forschung [06BI401]; Gesellschaft fur
Schwerionenforschung; Helmholtz Alliance [HA216/EMMI]; Deutsche
Forschungsgemeinschaft [GRK 881]
FX This work has been supported in part by Contracts No.
DE-AC02-98CH10886and No. DE-FG0292ER40699 with the U.S. Department of
Energy, the Bundesministerium fur Bildung und Forschung under Grant No.
06BI401, the Gesellschaft fur Schwerionenforschung under grant BILAER,
the Helmholtz Alliance HA216/EMMI, and the Deutsche
Forschungsgemeinschaft under Grant No. GRK 881. Numerical simulations
have been performed on the QCDOC computer of the RIKEN- BNL research
center, the DOE funded QCDOC at BNL, the apeNEXT at Bielefeld
University, and the BlueGene/L at the New York Center for Computational
Sciences (NYCCS).
NR 27
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2470-0010
EI 2470-0029
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 054504
DI 10.1103/PhysRevD.81.054504
PG 8
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200072
ER
PT J
AU Cheng, M
Christ, NH
Li, M
Mawhinney, RD
Renfrew, D
Hegde, P
Karsch, F
Lin, MF
Vranas, P
AF Cheng, Michael
Christ, Norman H.
Li, Min
Mawhinney, Robert D.
Renfrew, Dwight
Hegde, Prasad
Karsch, Frithjof
Lin, Meifeng
Vranas, Pavlos
TI Finite temperature QCD using 2+1 flavors of domain wall fermions at Nt=8
SO PHYSICAL REVIEW D
LA English
DT Article
ID SCHWINGER MODEL; CHIRAL FERMIONS; LATTICE; TRANSITION; SUSCEPTIBILITY;
SYMMETRY
AB We study the region of the QCD phase transition using 2 + 1 flavors of domain wall fermions and a 16(3) x 8 lattice volume with a fifth dimension of L(s) = 32. The disconnected light quark chiral susceptibility, quark number susceptibility, and the Polyakov loop suggest a chiral and deconfining crossover transition lying between 155 and 185 MeV for our choice of quark mass and lattice spacing. In this region the lattice scale deduced from the Sommer parameter r(0) is a(-1) approximate to 1.3 GeV, the pion mass is approximate to 300 MeV, and the kaon mass is approximately physical. The peak in the chiral susceptibility implies a pseudocritical temperature T(c) = 171(10)(17) MeV where the first error is associated with determining the peak location and the second with our unphysical light quark mass and nonzero lattice spacing. The effects of residual chiral symmetry breaking on the chiral condensate and disconnected chiral susceptibility are studied using several values of the valence L(s).
C1 [Cheng, Michael; Christ, Norman H.; Li, Min; Mawhinney, Robert D.; Renfrew, Dwight] Columbia Univ, Dept Phys, New York, NY 10027 USA.
[Hegde, Prasad] SUNY Stony Brook, Dept Phys & Astron, Stony Brook, NY 11794 USA.
[Karsch, Frithjof] Brookhaven Natl Lab, Dept Phys, Upton, NY 11973 USA.
[Karsch, Frithjof] Univ Bielefeld, Fak Phys, D-33615 Bielefeld, Germany.
[Lin, Meifeng] MIT, Ctr Theoret Phys, Cambridge, MA 02139 USA.
[Cheng, Michael; Vranas, Pavlos] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
RP Cheng, M (reprint author), Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
FU U.S. Department of Energy [DE-AC02-98CH10886, DE-FG02-92ER40699]; State
of New York
FX We would like to thank Chulwoo Jung, Christian Schmidt, and our other
collaborators in the RBC-Bielefeld and HotQCD collaborations for helpful
discussions. This work has been carried out on the QCDOC computer at
Columbia University and on the computers of the New York Center for
Computational Sciences at Stony Brook University/Brookhaven National
Laboratory which is supported by the U.S. Department of Energy under
Contract No. DE-AC02-98CH10886 and by the State of New York. The work
was supported in part by the U. S. Department of Energy under Grant No.
DE-FG02-92ER40699 and Contract No. DE-AC02-98CH10886.
NR 47
TC 38
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 054510
DI 10.1103/PhysRevD.81.054510
PG 14
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200078
ER
PT J
AU Dawson, JF
Mihaila, B
Cooper, F
AF Dawson, John F.
Mihaila, Bogdan
Cooper, Fred
TI Dynamics of particle production by strong electric fields in non-Abelian
plasmas
SO PHYSICAL REVIEW D
LA English
DT Article
ID HEAVY-ION COLLISIONS; TRANSPORT-THEORY; PAIR PRODUCTION
AB We develop methods for computing the dynamics of fermion pair production by strong color electric fields including backreaction using the semiclassical Boltzmann-Vlasov (B-V) equation. We implement the Schwinger pair production by inserting a source term in the B-V equation which includes Pauli-Blocking effects. We present numerical results for a model with SU(2) symmetries in (1+1) Cartesian dimensions.
C1 [Dawson, John F.] Univ New Hampshire, Dept Phys, Durham, NH 03824 USA.
[Mihaila, Bogdan] Los Alamos Natl Lab, Div Mat Sci & Technol, Los Alamos, NM 87545 USA.
[Cooper, Fred] Natl Sci Fdn, Arlington, VA 22230 USA.
[Cooper, Fred] Santa Fe Inst, Santa Fe, NM 87501 USA.
[Cooper, Fred] Los Alamos Natl Lab, Ctr Nonlinear Studies, Los Alamos, NM 87545 USA.
RP Dawson, JF (reprint author), Univ New Hampshire, Dept Phys, Durham, NH 03824 USA.
EM john.dawson@unh.edu; bmihaila@lanl.gov; cooper@santafe.edu
RI Mihaila, Bogdan/D-8795-2013
OI Mihaila, Bogdan/0000-0002-1489-8814
NR 19
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 054026
DI 10.1103/PhysRevD.81.054026
PG 10
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200057
ER
PT J
AU Detmold, W
Tiburzi, BC
Walker-Loud, A
AF Detmold, W.
Tiburzi, B. C.
Walker-Loud, A.
TI Extracting nucleon magnetic moments and electric polarizabilities from
lattice QCD in background electric fields
SO PHYSICAL REVIEW D
LA English
DT Article
ID TWISTED BOUNDARY-CONDITIONS; CHIRAL PERTURBATION-THEORY; ELECTROMAGNETIC
POLARIZABILITIES; FORM-FACTORS; NEUTRON; MASSES; PROTON
AB Nucleon properties are investigated in background electric fields. As the magnetic moments of baryons affect their relativistic propagation in constant electric fields, electric polarizabilities cannot be determined without knowledge of magnetic moments. This is analogous to the experimental situation, for which determination of polarizabilities from the Compton amplitude requires subtraction of Born terms. With the background field method, we devise combinations of nucleon correlation functions in constant electric fields that isolate magnetic moments and electric polarizabilities. Using an ensemble of anisotropic gauge configurations with dynamical clover fermions, we demonstrate how both observables can be determined from lattice QCD simulations in background electric fields. We obtain results for the neutron and proton, however, our study is currently limited to electrically neutral sea quarks. The value we extract for the nucleon isovector magnetic moment is comparable to those obtained from measuring lattice three-point functions at similar pion masses.
C1 [Detmold, W.; Walker-Loud, A.] Coll William & Mary, Dept Phys, Williamsburg, VA 23187 USA.
[Detmold, W.] Thomas Jefferson Natl Accelerator Facil, Newport News, VA 23606 USA.
[Tiburzi, B. C.] Univ Maryland, Dept Phys, Maryland Ctr Fundamental Phys, College Pk, MD 20742 USA.
RP Detmold, W (reprint author), Coll William & Mary, Dept Phys, Williamsburg, VA 23187 USA.
EM wdetmold@wm.edu; bctiburz@umd.edu; walkloud@wm.edu
OI Tiburzi, Brian/0000-0001-8696-2902; Detmold, William/0000-0002-0400-8363
FU Jefferson Science Associates, LLC; U.S. Department of Energy
[DE-AC05-06OR23177, DE-SC000-1784, DEFG0293ER- 40762,
DE-FG02-07ER-41527]
FX These calculations were performed using code based on the Chroma
software suite [45] on the computing clusters at Jefferson Laboratory.
Time on the clusters was made possible by the SciDAC Initiative. This
work is supported in part by Jefferson Science Associates, LLC under U.
S. Department of Energy Contract No. DE-AC05-06OR23177 (W. D.). The U.
S. government retains a nonexclusive, paid-up irrevocable, worldwide
license to publish or reproduce this manuscript for U. S. government
purposes. Additional support provided by the U.S. Department of Energy,
under Grant Nos. DE-SC000-1784 (W.D.), DEFG0293ER- 40762 (B.C.T.), and
DE-FG02-07ER-41527 (A.W.-L.).
NR 45
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 054502
DI 10.1103/PhysRevD.81.054502
PG 17
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200070
ER
PT J
AU Goh, HS
Krenke, CA
AF Goh, Hock-Seng
Krenke, Christopher A.
TI Lepton number violating signals of the top quark partners in the
left-right twin Higgs model
SO PHYSICAL REVIEW D
LA English
DT Article
ID LEFT-RIGHT SYMMETRY; DOUBLE-BETA DECAY; COMPOSITE HIGGS; NEUTRINO MASS;
BREAKING; SEARCH; PARITY; BOSON; SU(2); LHC
AB We study the collider signatures of the left-right twin Higgs model in the case that the right-handed neutrino mass is less than the mass of the right-handed gauge boson. In this scenario, new leptonic decay chains open up, allowing the particles which cancel the one-loop quadratic divergences of the Higgs, the right-handed gauge bosons and top-partners, to be discovered. Half of these events contain same-sign leptons without missing energy, which have no genuine standard model background and for which the backgrounds are purely instrumental. These signals may be used to complement other collider searches and, in certain regions of parameter space, may be the only way to observe the particles responsible for natural electroweak symmetry breaking in the left-right twin Higgs model.
C1 [Goh, Hock-Seng] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley Ctr Theoret Phys, Berkeley, CA 94720 USA.
[Goh, Hock-Seng] Univ Calif Berkeley, Lawrence Berkeley Lab, Theoret Phys Grp, Berkeley, CA 94720 USA.
[Krenke, Christopher A.] Univ Maryland, Dept Phys, College Pk, MD 20742 USA.
[Krenke, Christopher A.] Univ Arizona, Dept Phys, Tucson, AZ 85721 USA.
RP Goh, HS (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley Ctr Theoret Phys, Berkeley, CA 94720 USA.
FU NSF [PHY-0801323, PHY-04-57315]; DOE [DE-AC02-05CH11231]
FX We thank Zackaria Chacko for valuable discussions and comments on the
draft. C. K is supported by the NSF under Grant No. PHY-0801323. H. S. G
is supported by the NSF under Grant No. PHY-04-57315 and by the DOE
under Grant No. DE-AC02-05CH11231.
NR 58
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U2 1
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 055008
DI 10.1103/PhysRevD.81.055008
PG 10
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200086
ER
PT J
AU Kang, ZB
Qiu, JW
AF Kang, Zhong-Bo
Qiu, Jian-Wei
TI Single transverse spin asymmetry of dilepton production near Z(0) pole
SO PHYSICAL REVIEW D
LA English
DT Article
ID DEEP-INELASTIC SCATTERING; FINAL-STATE INTERACTIONS; DRELL-YAN
PROCESSES; PARTON DISTRIBUTIONS; BOSON PRODUCTION; HARD-SCATTERING;
MOMENTUM DISTRIBUTIONS; GAUGE; AZIMUTHAL; LEPTOPRODUCTION
AB Using the latest quark Sivers functions extracted from the global analysis of available data on single transverse spin asymmetry (SSA), we calculate the SSA of Drell-Yan inclusive production of lepton pairs of invariant mass Q at both 4 < Q < 9 GeV and Q similar to M-Z in p(up arrow)p collisions at Relativistic Heavy Ion Collider energies. We find that the features of the asymmetry A(N) for Q similar to M-Z are significantly different from that when 4 < Q < 9 GeV. The A(N) near Z(0) pole is positive and sizable in the central rapidity region, while the A(N) at low Q is negative and only sizable in the forward rapidity region. We show that the size of A(N) is sufficiently large for a wide range of Q around the Z(0) pole, and even with the lepton pair's invariant mass integrated from Q = 70 GeV to 110 GeV, the A(N) is still close to 10% for the central and near forward rapidity region. We argue that the SSAs of Drell-Yan inclusive dilepton production at low Q, and that near the Z(0) pole, provide complementary information for testing the time-reversal modified universality (the sign change) of the Sivers functions.
C1 [Kang, Zhong-Bo] Brookhaven Natl Lab, RIKEN, Res Ctr, Upton, NY 11973 USA.
[Qiu, Jian-Wei] Iowa State Univ, Dept Phys & Astron, Ames, IA 50011 USA.
RP Kang, ZB (reprint author), Brookhaven Natl Lab, RIKEN, Res Ctr, Upton, NY 11973 USA.
EM zkang@bnl.gov; jwq@iastate.edu
RI Kang, Zhongbo/P-3645-2014
FU DFG [SFB 676]; MNiSW [N202 249235]
FX L. M. acknowledges the support of the DFG Grant No. SFB 676. This work
is partially supported by the MNiSW Grant No. N202 249235.
NR 69
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PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 054020
DI 10.1103/PhysRevD.81.054020
PG 8
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200051
ER
PT J
AU Kang, ZB
Yuan, F
AF Kang, Zhong-Bo
Yuan, Feng
TI Dihadron azimuthal correlation from the Collins effect in unpolarized
hadron collisions
SO PHYSICAL REVIEW D
LA English
DT Article
ID SPIN PRODUCTION ASYMMETRIES; ODD PARTON DISTRIBUTIONS; SINGLE-SPIN;
HARD-SCATTERING; DRELL-YAN; JET PRODUCTION; LEPTOPRODUCTION;
FRAGMENTATION
AB We study the dihadron azimuthal correlation produced nearly back-to-back in unpolarized hadron collisions, arising from the product of two Collins fragmentation functions. Using the latest Collins fragmentation functions extracted from the global analysis of available experimental data, we make predictions for the azimuthal correlation of two-pion production in pp collisions at Relativistic Heavy Ion Collider energies. We find that the correlation is sizable in the midrapidity region for moderate jet transverse momentum.
C1 [Kang, Zhong-Bo; Yuan, Feng] Brookhaven Natl Lab, RIKEN BNL Res Ctr, Upton, NY 11973 USA.
[Yuan, Feng] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Nucl Sci, Berkeley, CA 94720 USA.
RP Kang, ZB (reprint author), Brookhaven Natl Lab, RIKEN BNL Res Ctr, Upton, NY 11973 USA.
EM zkang@bnl.gov; fyuan@lbl.gov
RI Yuan, Feng/N-4175-2013; Kang, Zhongbo/P-3645-2014
FU U.S. Department of Energy [DE-FG02-05CH11231]
FX We thank M. Grosse Perdekamp, J. Qiu, and R. Seidl for helpful
discussions. This work was supported in part by the U.S. Department of
Energy under Grant No. DE-FG02-05CH11231. We are grateful to RIKEN,
Brookhaven National Laboratory, and the U.S. Department of Energy (
Contract No. DE- AC02-98CH10886) for providing the facilities essential
for the completion of this work.
NR 44
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
EI 1550-2368
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 054007
DI 10.1103/PhysRevD.81.054007
PG 6
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200038
ER
PT J
AU Khalil, S
Lee, HS
Ma, E
AF Khalil, Shaaban
Lee, Hye-Sung
Ma, Ernest
TI Bound on Z ' mass from CDMS II in the dark left-right gauge model II
SO PHYSICAL REVIEW D
LA English
DT Article
AB With the recent possible signal of dark matter from the CDMS II experiment, the Z' mass of a new version of the dark left-right gauge model (DLRM II) is predicted to be at around a TeV. As such, it has an excellent discovery prognosis at the operating Large Hadron Collider.
C1 [Khalil, Shaaban] British Univ Egypt, Ctr Theoret Phys, El Sherouk City, Egypt.
[Khalil, Shaaban] Ain Shams Univ, Fac Sci, Dept Math, Cairo 11566, Egypt.
[Lee, Hye-Sung] Brookhaven Natl Lab, Dept Phys, Upton, NY 11973 USA.
[Ma, Ernest] Univ Calif Riverside, Dept Phys & Astron, Riverside, CA 92521 USA.
RP Khalil, S (reprint author), British Univ Egypt, Ctr Theoret Phys, Postal 11837,POB 43, El Sherouk City, Egypt.
RI Lee, Hye-Sung/B-2208-2009
OI Lee, Hye-Sung/0000-0002-7333-3741
FU Science and Technology Development Fund (STDF) [ID 437]; ICTP [ID 30];
U.S. Department of Energy [DE-AC02-98CH10886, DE-FG0394ER40837]
FX The work of S. K. was partially supported by the Science and Technology
Development Fund (STDF) Project No. ID 437 and the ICTP Project No. ID
30. This work was also supported by the U.S. Department of Energy Grants
No. DE-AC02-98CH10886 (H. L.) and No. DE-FG0394ER40837 (E. M.).
NR 12
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 051702
DI 10.1103/PhysRevD.81.051702
PG 5
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200006
ER
PT J
AU Larkoski, AJ
Peskin, ME
AF Larkoski, Andrew J.
Peskin, Michael E.
TI Spin-dependent antenna splitting functions
SO PHYSICAL REVIEW D
LA English
DT Article
ID JET CROSS-SECTIONS; TO-LEADING ORDER; QCD CASCADES; AMPLITUDES;
FACTORIZATION; SIMULATION; DECAY
AB We consider parton showers based on radiation from QCD dipoles or "antennas''. These showers are built from 2 -> 3 parton splitting processes. The question then arises of what functions replace the Altarelli-Parisi splitting functions in this approach. We give a detailed answer to this question, applicable to antenna showers in which partons carry definite helicity, and to both initial- and final-state emissions.
C1 [Larkoski, Andrew J.; Peskin, Michael E.] Stanford Univ, SLAC, Menlo Pk, CA 94025 USA.
RP Larkoski, AJ (reprint author), Stanford Univ, SLAC, Menlo Pk, CA 94025 USA.
OI Peskin, Michael/0000-0001-6403-6828
FU U.S. Department of Energy [DE-AC02-76SF00515]
FX We thank Darren Forde, Tanju Gleisberg, Peter Skands, and JanWinter for
instructive discussions and Claude Duhr and Fabio Maltoni for a useful
correspondence. This work was aided by our participation in the
Northwest Terascale Workshop on Parton Showers and Event Structure at
the LHC at the University of Oregon. We thank the participants and,
especially, the organizer, Davison Soper. The work was supported by the
U.S. Department of Energy under contract DE-AC02-76SF00515.
NR 29
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PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 054010
DI 10.1103/PhysRevD.81.054010
PG 15
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200041
ER
PT J
AU Lees, JP
Poireau, V
Prencipe, E
Tisserand, V
Tico, JG
Grauges, E
Martinelli, M
Palano, A
Pappagallo, M
Eigen, G
Stugu, B
Sun, L
Battaglia, M
Brown, DN
Hooberman, B
Kerth, LT
Kolomensky, YG
Lynch, G
Osipenkov, IL
Tanabe, T
Hawkes, CM
Soni, N
Watson, AT
Koch, H
Schroeder, T
Asgeirsson, DJ
Hearty, C
Mattison, TS
McKenna, JA
Barrett, M
Khan, A
Randle-Conde, A
Blinov, VE
Buzykaev, AR
Druzhinin, VP
Golubev, VB
Onuchin, AP
Serednyakov, SI
Skovpen, YI
Solodov, EP
Todyshev, KY
Yushkov, AN
Bondioli, M
Curry, S
Kirkby, D
Lankford, AJ
Lund, P
Mandelkern, M
Martin, EC
Stoker, DP
Atmacan, H
Gary, JW
Liu, F
Long, O
Vitug, GM
Yasin, Z
Sharma, V
Campagnari, C
Hong, TM
Kovalskyi, D
Richman, JD
Eisner, AM
Heusch, CA
Kroseberg, J
Lockman, WS
Martinez, AJ
Schalk, T
Schumm, BA
Seiden, A
Winstrom, LO
Cheng, CH
Doll, DA
Echenard, B
Hitlin, DG
Ongmongkolkul, P
Porter, FC
Rakitin, AY
Andreassen, R
Dubrovin, MS
Mancinelli, G
Meadows, BT
Sokoloff, MD
Bloom, PC
Ford, WT
Gaz, A
Hirschauer, JF
Nagel, M
Nauenberg, U
Smith, JG
Wagner, SR
Ayad, R
Toki, WH
Feltresi, E
Hauke, A
Jasper, H
Karbach, TM
Merkel, J
Petzold, A
Spaan, B
Wacker, K
Kobel, MJ
Schubert, KR
Schwierz, R
Bernard, D
Verderi, M
Clark, PJ
Playfer, S
Watson, JE
Andreotti, M
Bettoni, D
Bozzi, C
Calabrese, R
Cecchi, A
Cibinetto, G
Fioravanti, E
Franchini, P
Luppi, E
Munerato, M
Negrini, M
Petrella, A
Piemontese, L
Santoro, V
Baldini-Ferroli, R
Calcaterra, A
de Sangro, R
Finocchiaro, G
Nicolaci, M
Pacetti, S
Patteri, P
Peruzzi, IM
Piccolo, M
Rama, M
Zallo, A
Contri, R
Guido, E
Lo Vetere, M
Monge, MR
Passaggio, S
Patrignani, C
Robutti, E
Tosi, S
Bhuyan, B
Morii, M
Adametz, A
Marks, J
Schenk, S
Uwer, U
Bernlochner, FU
Lacker, HM
Lueck, T
Volk, A
Dauncey, PD
Tibbetts, M
Behera, PK
Mallik, U
Chen, C
Cochran, J
Crawley, HB
Dong, L
Meyer, WT
Prell, S
Rosenberg, EI
Rubin, AE
Gao, YY
Gritsan, AV
Guo, ZJ
Arnaud, N
Davier, M
Derkach, D
da Costa, JF
Grosdidier, G
Le Diberder, F
Lutz, AM
Malaescu, B
Roudeau, P
Schune, MH
Serrano, J
Sordini, V
Stocchi, A
Wang, L
Wormser, G
Lange, DJ
Wright, DM
Bingham, I
Burke, JP
Chavez, CA
Fry, JR
Gabathuler, E
Gamet, R
Hutchcroft, DE
Payne, DJ
Touramanis, C
Bevan, AJ
Di Lodovico, F
Sacco, R
Sigamani, M
Cowan, G
Paramesvaran, S
Wren, AC
Brown, DN
Davis, CL
Denig, AG
Fritsch, M
Gradl, W
Hafner, A
Alwyn, KE
Bailey, D
Barlow, RJ
Jackson, G
Lafferty, GD
West, TJ
Anderson, J
Jawahery, A
Roberts, DA
Simi, G
Tuggle, JM
Dallapiccola, C
Salvati, E
Cowan, R
Dujmic, D
Fisher, PH
Sciolla, G
Yamamoto, RK
Zhao, M
Patel, PM
Robertson, SH
Schram, M
Biassoni, P
Lazzaro, A
Lombardo, V
Palombo, F
Stracka, S
Cremaldi, L
Godang, R
Kroeger, R
Sonnek, P
Summers, DJ
Zhao, HW
Nguyen, X
Simard, M
Taras, P
De Nardo, G
Monorchio, D
Onorato, G
Sciacca, C
Raven, G
Snoek, HL
Jessop, CP
Knoepfel, KJ
LoSecco, JM
Wang, WF
Corwin, LA
Honscheid, K
Kass, R
Morris, JP
Rahimi, AM
Sekula, SJ
Blount, NL
Brau, J
Frey, R
Igonkina, O
Kolb, JA
Lu, M
Rahmat, R
Sinev, NB
Strom, D
Strube, J
Torrence, E
Castelli, G
Gagliardi, N
Margoni, M
Morandin, M
Posocco, M
Rotondo, M
Simonetto, F
Stroili, R
Sanchez, PD
Ben-Haim, E
Bonneaud, GR
Briand, H
Chauveau, J
Hamon, O
Leruste, P
Marchiori, G
Ocariz, J
Perez, A
Prendki, J
Sitt, S
Biasini, M
Manoni, E
Angelini, C
Batignani, G
Bettarini, S
Calderini, G
Carpinelli, M
Cervelli, A
Forti, F
Giorgi, MA
Lusiani, A
Neri, N
Paoloni, E
Rizzo, G
Walsh, JJ
Pegna, DL
Lu, C
Olsen, J
Smith, AJS
Telnov, AV
Anulli, F
Baracchini, E
Cavoto, G
Faccini, R
Ferrarotto, F
Ferroni, F
Gaspero, M
Jackson, PD
Gioi, LL
Mazzoni, MA
Piredda, G
Renga, F
Ebert, M
Hartmann, T
Leddig, T
Schroder, H
Waldi, R
Adye, T
Franek, B
Olaiya, EO
Wilson, FF
Emery, S
de Monchenault, GH
Vasseur, G
Yeche, C
Zito, M
Allen, MT
Aston, D
Bard, DJ
Bartoldus, R
Benitez, JF
Cartaro, C
Cenci, R
Coleman, JP
Convery, MR
Dingfelder, JC
Dorfan, J
Dubois-Felsmann, GP
Dunwoodie, W
Field, RC
Sevilla, MF
Fulsom, BG
Gabareen, AM
Graham, MT
Grenier, P
Hast, C
Innes, WR
Kaminski, J
Kelsey, MH
Kim, H
Kim, P
Kocian, ML
Leith, DWGS
Li, S
Lindquist, B
Luitz, S
Luth, V
Lynch, HL
MacFarlane, DB
Marsiske, H
Messner, R
Muller, DR
Neal, H
Nelson, S
O'Grady, CP
Ofte, I
Perl, M
Ratcliff, BN
Roodman, A
Salnikov, AA
Schindler, RH
Schwiening, J
Snyder, A
Su, D
Sullivan, MK
Suzuki, K
Swain, SK
Thompson, JM
Va'vra, J
Wagner, AP
Weaver, M
West, CA
Wisniewski, WJ
Wittgen, M
Wright, DH
Wulsin, HW
Yarritu, AK
Young, CC
Ziegler, V
Chen, XR
Liu, H
Park, W
Purohit, MV
White, RM
Wilson, JR
Bellis, M
Burchat, PR
Edwards, AJ
Miyashita, TS
Ahmed, S
Alam, MS
Ernst, JA
Pan, B
Saeed, MA
Zain, SB
Guttman, N
Soffer, A
Spanier, SM
Wogsland, BJ
Eckmann, R
Ritchie, JL
Ruland, AM
Schilling, CJ
Schwitters, RF
Wray, BC
Izen, JM
Lou, XC
Bianchi, F
Gamba, D
Pelliccioni, M
Bomben, M
Della Ricca, G
Lanceri, L
Vitale, L
Azzolini, V
Lopez-March, N
Martinez-Vidal, F
Milanes, DA
Oyanguren, A
Albert, J
Banerjee, S
Choi, HHF
Hamano, K
King, GJ
Kowalewski, R
Lewczuk, MJ
Nugent, IM
Roney, JM
Sobie, RJ
Gershon, TJ
Harrison, PF
Ilic, J
Latham, TE
Mohanty, GB
Puccio, EMT
Band, HR
Chen, X
Dasu, S
Flood, KT
Pan, Y
Prepost, R
Vuosalo, CO
Wu, SL
AF Lees, J. P.
Poireau, V.
Prencipe, E.
Tisserand, V.
Garra Tico, J.
Grauges, E.
Martinelli, M.
Palano, A.
Pappagallo, M.
Eigen, G.
Stugu, B.
Sun, L.
Battaglia, M.
Brown, D. N.
Hooberman, B.
Kerth, L. T.
Kolomensky, Yu. G.
Lynch, G.
Osipenkov, I. L.
Tanabe, T.
Hawkes, C. M.
Soni, N.
Watson, A. T.
Koch, H.
Schroeder, T.
Asgeirsson, D. J.
Hearty, C.
Mattison, T. S.
McKenna, J. A.
Barrett, M.
Khan, A.
Randle-Conde, A.
Blinov, V. E.
Buzykaev, A. R.
Druzhinin, V. P.
Golubev, V. B.
Onuchin, A. P.
Serednyakov, S. I.
Skovpen, Yu. I.
Solodov, E. P.
Todyshev, K. Yu.
Yushkov, A. N.
Bondioli, M.
Curry, S.
Kirkby, D.
Lankford, A. J.
Lund, P.
Mandelkern, M.
Martin, E. C.
Stoker, D. P.
Atmacan, H.
Gary, J. W.
Liu, F.
Long, O.
Vitug, G. M.
Yasin, Z.
Sharma, V.
Campagnari, C.
Hong, T. M.
Kovalskyi, D.
Richman, J. D.
Eisner, A. M.
Heusch, C. A.
Kroseberg, J.
Lockman, W. S.
Martinez, A. J.
Schalk, T.
Schumm, B. A.
Seiden, A.
Winstrom, L. O.
Cheng, C. H.
Doll, D. A.
Echenard, B.
Hitlin, D. G.
Ongmongkolkul, P.
Porter, F. C.
Rakitin, A. Y.
Andreassen, R.
Dubrovin, M. S.
Mancinelli, G.
Meadows, B. T.
Sokoloff, M. D.
Bloom, P. C.
Ford, W. T.
Gaz, A.
Hirschauer, J. F.
Nagel, M.
Nauenberg, U.
Smith, J. G.
Wagner, S. R.
Ayad, R.
Toki, W. H.
Feltresi, E.
Hauke, A.
Jasper, H.
Karbach, T. M.
Merkel, J.
Petzold, A.
Spaan, B.
Wacker, K.
Kobel, M. J.
Schubert, K. R.
Schwierz, R.
Bernard, D.
Verderi, M.
Clark, P. J.
Playfer, S.
Watson, J. E.
Andreotti, M.
Bettoni, D.
Bozzi, C.
Calabrese, R.
Cecchi, A.
Cibinetto, G.
Fioravanti, E.
Franchini, P.
Luppi, E.
Munerato, M.
Negrini, M.
Petrella, A.
Piemontese, L.
Santoro, V.
Baldini-Ferroli, R.
Calcaterra, A.
de Sangro, R.
Finocchiaro, G.
Nicolaci, M.
Pacetti, S.
Patteri, P.
Peruzzi, I. M.
Piccolo, M.
Rama, M.
Zallo, A.
Contri, R.
Guido, E.
Lo Vetere, M.
Monge, M. R.
Passaggio, S.
Patrignani, C.
Robutti, E.
Tosi, S.
Bhuyan, B.
Morii, M.
Adametz, A.
Marks, J.
Schenk, S.
Uwer, U.
Bernlochner, F. U.
Lacker, H. M.
Lueck, T.
Volk, A.
Dauncey, P. D.
Tibbetts, M.
Behera, P. K.
Mallik, U.
Chen, C.
Cochran, J.
Crawley, H. B.
Dong, L.
Meyer, W. T.
Prell, S.
Rosenberg, E. I.
Rubin, A. E.
Gao, Y. Y.
Gritsan, A. V.
Guo, Z. J.
Arnaud, N.
Davier, M.
Derkach, D.
da Costa, J. Firmino
Grosdidier, G.
Le Diberder, F.
Lutz, A. M.
Malaescu, B.
Roudeau, P.
Schune, M. H.
Serrano, J.
Sordini, V.
Stocchi, A.
Wang, L.
Wormser, G.
Lange, D. J.
Wright, D. M.
Bingham, I.
Burke, J. P.
Chavez, C. A.
Fry, J. R.
Gabathuler, E.
Gamet, R.
Hutchcroft, D. E.
Payne, D. J.
Touramanis, C.
Bevan, A. J.
Di Lodovico, F.
Sacco, R.
Sigamani, M.
Cowan, G.
Paramesvaran, S.
Wren, A. C.
Brown, D. N.
Davis, C. L.
Denig, A. G.
Fritsch, M.
Gradl, W.
Hafner, A.
Alwyn, K. E.
Bailey, D.
Barlow, R. J.
Jackson, G.
Lafferty, G. D.
West, T. J.
Anderson, J.
Jawahery, A.
Roberts, D. A.
Simi, G.
Tuggle, J. M.
Dallapiccola, C.
Salvati, E.
Cowan, R.
Dujmic, D.
Fisher, P. H.
Sciolla, G.
Yamamoto, R. K.
Zhao, M.
Patel, P. M.
Robertson, S. H.
Schram, M.
Biassoni, P.
Lazzaro, A.
Lombardo, V.
Palombo, F.
Stracka, S.
Cremaldi, L.
Godang, R.
Kroeger, R.
Sonnek, P.
Summers, D. J.
Zhao, H. W.
Nguyen, X.
Simard, M.
Taras, P.
De Nardo, G.
Monorchio, D.
Onorato, G.
Sciacca, C.
Raven, G.
Snoek, H. L.
Jessop, C. P.
Knoepfel, K. J.
LoSecco, J. M.
Wang, W. F.
Corwin, L. A.
Honscheid, K.
Kass, R.
Morris, J. P.
Rahimi, A. M.
Sekula, S. J.
Blount, N. L.
Brau, J.
Frey, R.
Igonkina, O.
Kolb, J. A.
Lu, M.
Rahmat, R.
Sinev, N. B.
Strom, D.
Strube, J.
Torrence, E.
Castelli, G.
Gagliardi, N.
Margoni, M.
Morandin, M.
Posocco, M.
Rotondo, M.
Simonetto, F.
Stroili, R.
del Amo Sanchez, P.
Ben-Haim, E.
Bonneaud, G. R.
Briand, H.
Chauveau, J.
Hamon, O.
Leruste, Ph.
Marchiori, G.
Ocariz, J.
Perez, A.
Prendki, J.
Sitt, S.
Biasini, M.
Manoni, E.
Angelini, C.
Batignani, G.
Bettarini, S.
Calderini, G.
Carpinelli, M.
Cervelli, A.
Forti, F.
Giorgi, M. A.
Lusiani, A.
Neri, N.
Paoloni, E.
Rizzo, G.
Walsh, J. J.
Pegna, D. Lopes
Lu, C.
Olsen, J.
Smith, A. J. S.
Telnov, A. V.
Anulli, F.
Baracchini, E.
Cavoto, G.
Faccini, R.
Ferrarotto, F.
Ferroni, F.
Gaspero, M.
Jackson, P. D.
Gioi, L. Li
Mazzoni, M. A.
Piredda, G.
Renga, F.
Ebert, M.
Hartmann, T.
Leddig, T.
Schroeder, H.
Waldi, R.
Adye, T.
Franek, B.
Olaiya, E. O.
Wilson, F. F.
Emery, S.
de Monchenault, G. Hamel
Vasseur, G.
Yeche, Ch.
Zito, M.
Allen, M. T.
Aston, D.
Bard, D. J.
Bartoldus, R.
Benitez, J. F.
Cartaro, C.
Cenci, R.
Coleman, J. P.
Convery, M. R.
Dingfelder, J. C.
Dorfan, J.
Dubois-Felsmann, G. P.
Dunwoodie, W.
Field, R. C.
Sevilla, M. Franco
Fulsom, B. G.
Gabareen, A. M.
Graham, M. T.
Grenier, P.
Hast, C.
Innes, W. R.
Kaminski, J.
Kelsey, M. H.
Kim, H.
Kim, P.
Kocian, M. L.
Leith, D. W. G. S.
Li, S.
Lindquist, B.
Luitz, S.
Luth, V.
Lynch, H. L.
MacFarlane, D. B.
Marsiske, H.
Messner, R.
Muller, D. R.
Neal, H.
Nelson, S.
O'Grady, C. P.
Ofte, I.
Perl, M.
Ratcliff, B. N.
Roodman, A.
Salnikov, A. A.
Schindler, R. H.
Schwiening, J.
Snyder, A.
Su, D.
Sullivan, M. K.
Suzuki, K.
Swain, S. K.
Thompson, J. M.
Va'vra, J.
Wagner, A. P.
Weaver, M.
West, C. A.
Wisniewski, W. J.
Wittgen, M.
Wright, D. H.
Wulsin, H. W.
Yarritu, A. K.
Young, C. C.
Ziegler, V.
Chen, X. R.
Liu, H.
Park, W.
Purohit, M. V.
White, R. M.
Wilson, J. R.
Bellis, M.
Burchat, P. R.
Edwards, A. J.
Miyashita, T. S.
Ahmed, S.
Alam, M. S.
Ernst, J. A.
Pan, B.
Saeed, M. A.
Zain, S. B.
Guttman, N.
Soffer, A.
Spanier, S. M.
Wogsland, B. J.
Eckmann, R.
Ritchie, J. L.
Ruland, A. M.
Schilling, C. J.
Schwitters, R. F.
Wray, B. C.
Izen, J. M.
Lou, X. C.
Bianchi, F.
Gamba, D.
Pelliccioni, M.
Bomben, M.
Della Ricca, G.
Lanceri, L.
Vitale, L.
Azzolini, V.
Lopez-March, N.
Martinez-Vidal, F.
Milanes, D. A.
Oyanguren, A.
Albert, J.
Banerjee, Sw.
Choi, H. H. F.
Hamano, K.
King, G. J.
Kowalewski, R.
Lewczuk, M. J.
Nugent, I. M.
Roney, J. M.
Sobie, R. J.
Gershon, T. J.
Harrison, P. F.
Ilic, J.
Latham, T. E.
Mohanty, G. B.
Puccio, E. M. T.
Band, H. R.
Chen, X.
Dasu, S.
Flood, K. T.
Pan, Y.
Prepost, R.
Vuosalo, C. O.
Wu, S. L.
TI Measurement of the gamma gamma* -> eta c transition form factor
SO PHYSICAL REVIEW D
LA English
DT Article
ID RADIATIVE-CORRECTIONS; PHYSICS
AB We study the reaction e(+)e(-) -> e(+)e(-) eta(c), eta(c) -> KSK +/-pi(-/+) and obtain eta(c) mass and width values 2982.2 +/- 0.4 +/- 1.6 MeV/c(2) and 31.7 +/- 1.2 +/- 0.8 MeV, respectively. We find Gamma(eta(c) -> gamma gamma)B(eta(c) -> KK pi) = 0.374 +/- 0.009 +/- 0.031 keV, and measure the gamma gamma* -> eta(c) transition form factor in the momentum transfer range from 2 to 50 GeV2. The analysis is based on 469 fb(-1) of integrated luminosity collected at PEP-II with the BABAR detector at e(+)e(-) center-of-mass energies near 10.6 GeV.
C1 [Lees, J. P.; Poireau, V.; Prencipe, E.; Tisserand, V.] Univ Savoie, CNRS, IN2P3, LAPP, F-74941 Annecy Le Vieux, France.
[Garra Tico, J.; Grauges, E.] Univ Barcelona, Fac Fis, Dept ECM, E-08028 Barcelona, Spain.
[Martinelli, M.; Palano, A.; Pappagallo, M.] Ist Nazl Fis Nucl, Sez Bari, I-70126 Bari, Italy.
[Martinelli, M.; Palano, A.; Pappagallo, M.] Univ Bari, Dipartimento Fis, I-70126 Bari, Italy.
[Eigen, G.; Stugu, B.; Sun, L.] Univ Bergen, Inst Phys, N-5007 Bergen, Norway.
[Battaglia, M.; Brown, D. N.; Hooberman, B.; Kerth, L. T.; Kolomensky, Yu. G.; Lynch, G.; Osipenkov, I. L.; Tanabe, T.] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
[Battaglia, M.; Brown, D. N.; Hooberman, B.; Kerth, L. T.; Kolomensky, Yu. G.; Lynch, G.; Osipenkov, I. L.; Tanabe, T.] Univ Calif Berkeley, Berkeley, CA 94720 USA.
[Hawkes, C. M.; Soni, N.; Watson, A. T.] Univ Birmingham, Birmingham B15 2TT, W Midlands, England.
[Koch, H.; Schroeder, T.] Ruhr Univ Bochum, Inst Expt Phys 1, D-44780 Bochum, Germany.
[Asgeirsson, D. J.; Hearty, C.; Mattison, T. S.; McKenna, J. A.] Univ British Columbia, Vancouver, BC V6T 1Z1, Canada.
[Barrett, M.; Khan, A.; Randle-Conde, A.] Brunel Univ, Uxbridge UB8 3PH, Middx, England.
[Blinov, V. E.; Buzykaev, A. R.; Druzhinin, V. P.; Golubev, V. B.; Onuchin, A. P.; Serednyakov, S. I.; Skovpen, Yu. I.; Solodov, E. P.; Todyshev, K. Yu.; Yushkov, A. N.] Budker Inst Nucl Phys, Novosibirsk 630090, Russia.
[Bondioli, M.; Curry, S.; Kirkby, D.; Lankford, A. J.; Lund, P.; Mandelkern, M.; Martin, E. C.; Stoker, D. P.] Univ Calif Irvine, Irvine, CA 92697 USA.
[Atmacan, H.; Gary, J. W.; Liu, F.; Long, O.; Vitug, G. M.; Yasin, Z.] Univ Calif Riverside, Riverside, CA 92521 USA.
[Sharma, V.] Univ Calif San Diego, La Jolla, CA 92093 USA.
[Campagnari, C.; Hong, T. M.; Kovalskyi, D.; Richman, J. D.] Univ Calif Santa Barbara, Santa Barbara, CA 93106 USA.
[Eisner, A. M.; Heusch, C. A.; Kroseberg, J.; Martinez, A. J.; Schalk, T.; Schumm, B. A.; Seiden, A.; Winstrom, L. O.] Univ Calif Santa Cruz, Inst Particle Phys, Santa Cruz, CA 95064 USA.
[Cheng, C. H.; Doll, D. A.; Echenard, B.; Hitlin, D. G.; Ongmongkolkul, P.; Porter, F. C.; Rakitin, A. Y.] CALTECH, Pasadena, CA 91125 USA.
[Andreassen, R.; Dubrovin, M. S.; Mancinelli, G.; Meadows, B. T.; Sokoloff, M. D.] Univ Cincinnati, Cincinnati, OH 45221 USA.
[Lockman, W. S.; Bloom, P. C.; Ford, W. T.; Gaz, A.; Hirschauer, J. F.; Nagel, M.; Nauenberg, U.; Smith, J. G.; Wagner, S. R.] Univ Colorado, Boulder, CO 80309 USA.
[Ayad, R.; Toki, W. H.] Colorado State Univ, Ft Collins, CO 80523 USA.
[Feltresi, E.; Hauke, A.; Jasper, H.; Karbach, T. M.; Merkel, J.; Petzold, A.; Spaan, B.; Wacker, K.] Tech Univ Dortmund, Fak Phys, D-44221 Dortmund, Germany.
[Kobel, M. J.; Schubert, K. R.; Schwierz, R.] Tech Univ Dresden, Inst Kern & Teilchenphys, D-01062 Dresden, Germany.
[Bernard, D.; Verderi, M.] Ecole Polytech, CNRS, IN2P3, Lab Leprince Ringuet, F-91128 Palaiseau, France.
[Clark, P. J.; Playfer, S.; Watson, J. E.] Univ Edinburgh, Edinburgh EH9 3JZ, Midlothian, Scotland.
[Andreotti, M.; Bettoni, D.; Bozzi, C.; Calabrese, R.; Cecchi, A.; Cibinetto, G.; Fioravanti, E.; Franchini, P.; Luppi, E.; Munerato, M.; Negrini, M.; Petrella, A.; Piemontese, L.; Santoro, V.] Ist Nazl Fis Nucl, Sez Ferrara, I-44100 Ferrara, Italy.
[Andreotti, M.; Calabrese, R.; Cecchi, A.; Cibinetto, G.; Fioravanti, E.; Franchini, P.; Luppi, E.; Munerato, M.; Negrini, M.; Petrella, A.; Santoro, V.] Univ Ferrara, Dipartimento Fis, I-44100 Ferrara, Italy.
[Baldini-Ferroli, R.; Calcaterra, A.; de Sangro, R.; Finocchiaro, G.; Nicolaci, M.; Pacetti, S.; Patteri, P.; Peruzzi, I. M.; Piccolo, M.; Rama, M.; Zallo, A.] Ist Nazl Fis Nucl, Lab Nazl Frascati, I-00044 Frascati, Italy.
[Contri, R.; Guido, E.; Lo Vetere, M.; Monge, M. R.; Passaggio, S.; Patrignani, C.; Robutti, E.; Tosi, S.] Ist Nazl Fis Nucl, Sez Genova, I-16146 Genoa, Italy.
[Contri, R.; Guido, E.; Lo Vetere, M.; Monge, M. R.; Patrignani, C.; Tosi, S.] Univ Genoa, Dipartimento Fis, I-16146 Genoa, Italy.
[Bhuyan, B.] Indian Inst Technol Guwahati, Gauhati 781039, Assam, India.
[Morii, M.] Harvard Univ, Cambridge, MA 02138 USA.
[Adametz, A.; Marks, J.; Schenk, S.; Uwer, U.] Heidelberg Univ, Inst Phys, D-69120 Heidelberg, Germany.
[Bernlochner, F. U.; Lacker, H. M.; Lueck, T.; Volk, A.] Humboldt Univ, Inst Phys, D-12489 Berlin, Germany.
[Dauncey, P. D.; Tibbetts, M.] Univ London Imperial Coll Sci Technol & Med, London SW7 2AZ, England.
[Behera, P. K.; Mallik, U.] Univ Iowa, Iowa City, IA 52242 USA.
[Chen, C.; Cochran, J.; Crawley, H. B.; Dong, L.; Meyer, W. T.; Prell, S.; Rosenberg, E. I.; Rubin, A. E.] Iowa State Univ, Ames, IA 50011 USA.
[Gao, Y. Y.; Gritsan, A. V.; Guo, Z. J.] Johns Hopkins Univ, Baltimore, MD 21218 USA.
[Arnaud, N.; Davier, M.; Derkach, D.; da Costa, J. Firmino; Grosdidier, G.; Le Diberder, F.; Lutz, A. M.; Malaescu, B.; Roudeau, P.; Schune, M. H.; Serrano, J.; Sordini, V.; Stocchi, A.; Wang, L.; Wormser, G.] IN2P3 CNRS, Lab Accelerateur Lineaire, F-91898 Orsay, France.
[Arnaud, N.; Davier, M.; Derkach, D.; da Costa, J. Firmino; Grosdidier, G.; Le Diberder, F.; Lutz, A. M.; Malaescu, B.; Roudeau, P.; Schune, M. H.; Serrano, J.; Sordini, V.; Stocchi, A.; Wang, L.; Wormser, G.] Univ Paris 11, Ctr Sci Orsay, F-91898 Orsay, France.
[Lange, D. J.; Wright, D. M.] Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
[Bingham, I.; Burke, J. P.; Chavez, C. A.; Fry, J. R.; Gabathuler, E.; Gamet, R.; Hutchcroft, D. E.; Payne, D. J.; Touramanis, C.] Univ Liverpool, Liverpool L69 7ZE, Merseyside, England.
[Bevan, A. J.; Di Lodovico, F.; Sacco, R.; Sigamani, M.] Univ London, London E1 4NS, England.
[Cowan, G.; Paramesvaran, S.; Wren, A. C.] Univ London, Royal Holloway & Bedford New Coll, Egham TW20 0EX, Surrey, England.
[Brown, D. N.] Univ Louisville, Louisville, KY 40292 USA.
[Davis, C. L.; Denig, A. G.; Fritsch, M.; Gradl, W.] Johannes Gutenberg Univ Mainz, Inst Kernphys, D-55099 Mainz, Germany.
[Hafner, A.; Alwyn, K. E.; Bailey, D.; Barlow, R. J.; Jackson, G.; Lafferty, G. D.; West, T. J.] Univ Manchester, Manchester M13 9PL, Lancs, England.
[Anderson, J.; Jawahery, A.; Roberts, D. A.; Simi, G.; Tuggle, J. M.] Univ Maryland, College Pk, MD 20742 USA.
[Dallapiccola, C.; Salvati, E.] Univ Massachusetts, Amherst, MA 01003 USA.
[Cowan, R.; Dujmic, D.; Fisher, P. H.; Sciolla, G.; Yamamoto, R. K.; Zhao, M.] MIT, Nucl Sci Lab, Cambridge, MA 02139 USA.
[Patel, P. M.; Robertson, S. H.; Schram, M.] McGill Univ, Montreal, PQ H3A 2T8, Canada.
[Biassoni, P.; Lazzaro, A.; Lombardo, V.; Palombo, F.; Stracka, S.] Ist Nazl Fis Nucl, Sez Milano, I-20133 Milan, Italy.
[Biassoni, P.; Lazzaro, A.; Palombo, F.; Stracka, S.] Univ Milan, Dipartimento Fis, I-20133 Milan, Italy.
[Cremaldi, L.; Godang, R.; Kroeger, R.; Sonnek, P.; Summers, D. J.; Zhao, H. W.] Univ Mississippi, University, MS 38677 USA.
[Nguyen, X.; Simard, M.; Taras, P.] Univ Montreal, Montreal, PQ H3C 3J7, Canada.
[De Nardo, G.; Monorchio, D.; Onorato, G.; Sciacca, C.] Ist Nazl Fis Nucl, Sez Napoli, I-80126 Naples, Italy.
[De Nardo, G.; Monorchio, D.; Onorato, G.; Sciacca, C.] Univ Naples Federico II, Dipartimento Sci Fis, I-80126 Naples, Italy.
[Raven, G.; Snoek, H. L.] Natl Inst Nucl Phys & High Energy Phys, NIKHEF, NL-1009 DB Amsterdam, Netherlands.
[Jessop, C. P.; Knoepfel, K. J.; LoSecco, J. M.; Wang, W. F.] Univ Notre Dame, Notre Dame, IN 46556 USA.
[Corwin, L. A.; Honscheid, K.; Kass, R.; Morris, J. P.; Rahimi, A. M.; Sekula, S. J.] Ohio State Univ, Columbus, OH 43210 USA.
[Blount, N. L.; Brau, J.; Frey, R.; Igonkina, O.; Kolb, J. A.; Lu, M.; Rahmat, R.; Sinev, N. B.; Strom, D.; Strube, J.; Torrence, E.] Univ Oregon, Eugene, OR 97403 USA.
[Castelli, G.; Gagliardi, N.; Margoni, M.; Morandin, M.; Posocco, M.; Rotondo, M.; Simonetto, F.; Stroili, R.] Ist Nazl Fis Nucl, Sez Padova, I-35131 Padua, Italy.
[Castelli, G.; Gagliardi, N.; Margoni, M.; Simonetto, F.; Stroili, R.] Univ Padua, Dipartimento Fis, I-35131 Padua, Italy.
[del Amo Sanchez, P.; Ben-Haim, E.; Bonneaud, G. R.; Briand, H.; Chauveau, J.; Hamon, O.; Leruste, Ph.; Marchiori, G.; Ocariz, J.; Perez, A.; Prendki, J.; Sitt, S.; Calderini, G.] Univ Paris 07, Univ Paris 06, IN2P3, Lab Phys Nucl & Hautes Energies,CNRS, F-75252 Paris, France.
[Biasini, M.; Manoni, E.] Ist Nazl Fis Nucl, Sez Perugia, I-06100 Perugia, Italy.
[Peruzzi, I. M.; Biasini, M.; Manoni, E.] Univ Perugia, Dipartimento Fis, I-06100 Perugia, Italy.
[Angelini, C.; Batignani, G.; Bettarini, S.; Calderini, G.; Carpinelli, M.; Cervelli, A.; Forti, F.; Giorgi, M. A.; Lusiani, A.; Neri, N.; Paoloni, E.; Rizzo, G.; Walsh, J. J.] Ist Nazl Fis Nucl, Sez Pisa, I-56127 Pisa, Italy.
[Angelini, C.; Batignani, G.; Bettarini, S.; Calderini, G.; Carpinelli, M.; Cervelli, A.; Forti, F.; Giorgi, M. A.; Neri, N.; Paoloni, E.; Rizzo, G.] Univ Pisa, Dipartimento Fis, I-56127 Pisa, Italy.
[Lusiani, A.] Scuola Normale Super Pisa, I-56127 Pisa, Italy.
[Pegna, D. Lopes; Lu, C.; Olsen, J.; Smith, A. J. S.; Telnov, A. V.] Princeton Univ, Princeton, NJ 08544 USA.
[Anulli, F.; Baracchini, E.; Cavoto, G.; Faccini, R.; Ferrarotto, F.; Ferroni, F.; Gaspero, M.; Jackson, P. D.; Gioi, L. Li; Mazzoni, M. A.; Piredda, G.; Renga, F.] Ist Nazl Fis Nucl, Sez Roma, I-00185 Rome, Italy.
[Sordini, V.; Baracchini, E.; Faccini, R.; Ferroni, F.; Gaspero, M.; Renga, F.] Univ Roma La Sapienza, Dipartimento Fis, I-00185 Rome, Italy.
[Ebert, M.; Hartmann, T.; Leddig, T.; Schroeder, H.; Waldi, R.] Univ Rostock, D-18051 Rostock, Germany.
[Adye, T.; Franek, B.; Olaiya, E. O.; Wilson, F. F.] Rutherford Appleton Lab, Didcot OX11 0QX, Oxon, England.
[Emery, S.; de Monchenault, G. Hamel; Vasseur, G.; Yeche, Ch.; Zito, M.] Ctr Etud Saclay, SPP, Irfu, CEA, F-91191 Gif Sur Yvette, France.
[Allen, M. T.; Aston, D.; Bard, D. J.; Bartoldus, R.; Benitez, J. F.; Cartaro, C.; Cenci, R.; Coleman, J. P.; Convery, M. R.; Dingfelder, J. C.; Dorfan, J.; Dubois-Felsmann, G. P.; Dunwoodie, W.; Field, R. C.; Sevilla, M. Franco; Fulsom, B. G.; Gabareen, A. M.; Graham, M. T.; Grenier, P.; Hast, C.; Innes, W. R.; Kaminski, J.; Kelsey, M. H.; Kim, H.; Kim, P.; Kocian, M. L.; Leith, D. W. G. S.; Li, S.; Lindquist, B.; Luitz, S.; Luth, V.; Lynch, H. L.; MacFarlane, D. B.; Marsiske, H.; Messner, R.; Muller, D. R.; Neal, H.; Nelson, S.; O'Grady, C. P.; Ofte, I.; Perl, M.; Ratcliff, B. N.; Roodman, A.; Salnikov, A. A.; Schindler, R. H.; Schwiening, J.; Snyder, A.; Su, D.; Sullivan, M. K.; Suzuki, K.; Swain, S. K.; Thompson, J. M.; Va'vra, J.; Wagner, A. P.; Weaver, M.; West, C. A.; Wisniewski, W. J.; Wittgen, M.; Wright, D. H.; Wulsin, H. W.; Yarritu, A. K.; Young, C. C.; Ziegler, V.] SLAC Natl Accelerator Lab, Stanford, CA 94309 USA.
[Chen, X. R.; Liu, H.; Park, W.; Purohit, M. V.; White, R. M.; Wilson, J. R.] Univ S Carolina, Columbia, SC 29208 USA.
[Bellis, M.; Burchat, P. R.; Edwards, A. J.; Miyashita, T. S.] Stanford Univ, Stanford, CA 94305 USA.
[Ahmed, S.; Alam, M. S.; Ernst, J. A.; Pan, B.; Saeed, M. A.; Zain, S. B.] SUNY Albany, Albany, NY 12222 USA.
[Guttman, N.; Soffer, A.] Tel Aviv Univ, Sch Phys & Astron, IL-69978 Tel Aviv, Israel.
[Spanier, S. M.; Wogsland, B. J.] Univ Tennessee, Knoxville, TN 37996 USA.
[Eckmann, R.; Ritchie, J. L.; Ruland, A. M.; Schilling, C. J.; Schwitters, R. F.; Wray, B. C.] Univ Texas Austin, Austin, TX 78712 USA.
[Izen, J. M.; Lou, X. C.] Univ Texas Dallas, Richardson, TX 75083 USA.
[Bianchi, F.; Gamba, D.; Pelliccioni, M.] Ist Nazl Fis Nucl, Sez Torino, I-10125 Turin, Italy.
[Bianchi, F.; Gamba, D.; Pelliccioni, M.] Univ Turin, Dipartimento Fis Sperimentale, I-10125 Turin, Italy.
[Bomben, M.; Della Ricca, G.; Lanceri, L.; Vitale, L.] Ist Nazl Fis Nucl, Sez Trieste, I-34127 Trieste, Italy.
[Bomben, M.; Della Ricca, G.; Lanceri, L.; Vitale, L.] Univ Trieste, Dipartimento Fis, I-34127 Trieste, Italy.
[Azzolini, V.; Lopez-March, N.; Martinez-Vidal, F.; Milanes, D. A.; Oyanguren, A.] Univ Valencia, CSIC, IFIC, E-46071 Valencia, Spain.
[Albert, J.; Banerjee, Sw.; Choi, H. H. F.; Hamano, K.; King, G. J.; Kowalewski, R.; Lewczuk, M. J.; Nugent, I. M.; Roney, J. M.; Sobie, R. J.] Univ Victoria, Victoria, BC V8W 3P6, Canada.
[Gershon, T. J.; Harrison, P. F.; Ilic, J.; Latham, T. E.; Mohanty, G. B.; Puccio, E. M. T.] Univ Warwick, Dept Phys, Coventry CV4 7AL, W Midlands, England.
[Band, H. R.; Chen, X.; Dasu, S.; Flood, K. T.; Pan, Y.; Prepost, R.; Vuosalo, C. O.; Wu, S. L.] Univ Wisconsin, Madison, WI 53706 USA.
[Carpinelli, M.] Univ Sassari, I-07100 Sassari, Italy.
RP Lees, JP (reprint author), Univ Savoie, CNRS, IN2P3, LAPP, F-74941 Annecy Le Vieux, France.
RI Calabrese, Roberto/G-4405-2015; Martinez Vidal, F*/L-7563-2014;
Kolomensky, Yury/I-3510-2015; Lo Vetere, Maurizio/J-5049-2012; Lusiani,
Alberto/N-2976-2015; Morandin, Mauro/A-3308-2016; Lusiani,
Alberto/A-3329-2016; Stracka, Simone/M-3931-2015; Di Lodovico,
Francesca/L-9109-2016; Pappagallo, Marco/R-3305-2016; Calcaterra,
Alessandro/P-5260-2015; Frey, Raymond/E-2830-2016; de Sangro,
Riccardo/J-2901-2012; Saeed, Mohammad Alam/J-7455-2012; Della Ricca,
Giuseppe/B-6826-2013; Negrini, Matteo/C-8906-2014; Patrignani,
Claudia/C-5223-2009; Monge, Maria Roberta/G-9127-2012; Oyanguren,
Arantza/K-6454-2014; Luppi, Eleonora/A-4902-2015; White,
Ryan/E-2979-2015; Neri, Nicola/G-3991-2012; Forti,
Francesco/H-3035-2011; Rotondo, Marcello/I-6043-2012;
OI Calabrese, Roberto/0000-0002-1354-5400; Martinez Vidal,
F*/0000-0001-6841-6035; Kolomensky, Yury/0000-0001-8496-9975; Lo Vetere,
Maurizio/0000-0002-6520-4480; Lusiani, Alberto/0000-0002-6876-3288;
Morandin, Mauro/0000-0003-4708-4240; Lusiani,
Alberto/0000-0002-6876-3288; Stracka, Simone/0000-0003-0013-4714; Di
Lodovico, Francesca/0000-0003-3952-2175; Pappagallo,
Marco/0000-0001-7601-5602; Calcaterra, Alessandro/0000-0003-2670-4826;
Frey, Raymond/0000-0003-0341-2636; Hamel de Monchenault,
Gautier/0000-0002-3872-3592; de Sangro, Riccardo/0000-0002-3808-5455;
Saeed, Mohammad Alam/0000-0002-3529-9255; Della Ricca,
Giuseppe/0000-0003-2831-6982; Negrini, Matteo/0000-0003-0101-6963;
Patrignani, Claudia/0000-0002-5882-1747; Monge, Maria
Roberta/0000-0003-1633-3195; Oyanguren, Arantza/0000-0002-8240-7300;
Luppi, Eleonora/0000-0002-1072-5633; White, Ryan/0000-0003-3589-5900;
Neri, Nicola/0000-0002-6106-3756; Forti, Francesco/0000-0001-6535-7965;
Rotondo, Marcello/0000-0001-5704-6163; Lanceri,
Livio/0000-0001-8220-3095; Carpinelli, Massimo/0000-0002-8205-930X;
Sciacca, Crisostomo/0000-0002-8412-4072; Ebert,
Marcus/0000-0002-3014-1512; Adye, Tim/0000-0003-0627-5059; Corwin,
Luke/0000-0001-7143-3821; Lafferty, George/0000-0003-0658-4919;
Martinelli, Maurizio/0000-0003-4792-9178; Strube,
Jan/0000-0001-7470-9301; Chen, Chunhui /0000-0003-1589-9955; Bellis,
Matthew/0000-0002-6353-6043
FU US Department of Energy and National Science Foundation; Natural
Sciences and Engineering Research Council (Canada); Commissariat a
l'Energie Atomique and Institut National de Physique Nucleaire et de
Physique des Particules (France); Bundesministerium fur Bildung und
Forschung and Deutsche Forschungsgemeinschaft (Germany); Istituto
Nazionale di Fisica Nucleare (Italy); Foundation for Fundamental
Research on Matter (The Netherlands); Research Council of Norway;
Ministry of Science and Technology of the Russian Federation; Ministerio
de Educacion y Ciencia (Spain); Science and Technology Facilities
Council (United Kingdom); Marie-Curie IEF program (European Union); A.P.
Sloan Foundation
FX We thank V. L. Chernyak for useful discussions. We are grateful for the
extraordinary contributions of our PEP-II colleagues in achieving the
excellent luminosity and machine conditions that have made this work
possible. The success of this project also relies critically on the
expertise and dedication of the computing organizations that support
BABAR. The collaborating institutions wish to thank SLAC for its support
and the kind hospitality extended to them. This work is supported by the
US Department of Energy and National Science Foundation, the Natural
Sciences and Engineering Research Council (Canada), the Commissariat a
l'Energie Atomique and Institut National de Physique Nucleaire et de
Physique des Particules (France), the Bundesministerium fur Bildung und
Forschung and Deutsche Forschungsgemeinschaft (Germany), the Istituto
Nazionale di Fisica Nucleare (Italy), the Foundation for Fundamental
Research on Matter (The Netherlands), the Research Council of Norway,
the Ministry of Science and Technology of the Russian Federation,
Ministerio de Educacion y Ciencia (Spain), and the Science and
Technology Facilities Council (United Kingdom). Individuals have
received support from the Marie-Curie IEF program (European Union) and
the A.P. Sloan Foundation.
NR 14
TC 27
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U1 1
U2 8
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2470-0010
EI 2470-0029
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 052010
DI 10.1103/PhysRevD.81.052010
PG 18
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200018
ER
PT J
AU Younkin, JE
Martin, SP
AF Younkin, James E.
Martin, Stephen P.
TI QCD corrections to stoponium production at hadron colliders
SO PHYSICAL REVIEW D
LA English
DT Article
ID SUPERSYMMETRIC ELECTROWEAK BARYOGENESIS; BOUND-STATE PRODUCTION;
P(P)OVER-BAR COLLISIONS; HEAVY-QUARKONIUM; PHASE-TRANSITION; HIGGS;
J/PSI; TEV; ANNIHILATION; SQUARKONIUM
AB If the lighter top squark has no kinematically allowed two-body decays that conserve flavor, then it will live long enough to form hadronic bound states. The observation of the diphoton decays of stoponium could then provide a uniquely precise measurement of the top squark mass. In this paper, we calculate the cross section for the production of stoponium in a hadron collider at next-to-leading order (NLO) in QCD. We present numerical results for the cross section for production of stoponium at the LHC and study the dependence on beam energy, stoponium mass, and the renormalization and factorization scale. The cross-section is substantially increased by the NLO corrections, counteracting a corresponding decrease found earlier in the NLO diphoton branching ratio.
C1 [Younkin, James E.; Martin, Stephen P.] No Illinois Univ, Dept Phys, De Kalb, IL 60115 USA.
[Martin, Stephen P.] Fermilab Natl Accelerator Lab, Batavia, IL 60510 USA.
RP Younkin, JE (reprint author), No Illinois Univ, Dept Phys, De Kalb, IL 60115 USA.
FU National Science Foundation [PHY-0757325]
FX We are grateful to Tim Tait for helpful conversation. This work was
supported in part by the National Science Foundation Grant No.
PHY-0757325.
NR 58
TC 20
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U1 0
U2 1
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 055006
DI 10.1103/PhysRevD.81.055006
PG 14
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200084
ER
PT J
AU Zhou, J
Yuan, F
Liang, ZT
AF Zhou, Jian
Yuan, Feng
Liang, Zuo-Tang
TI Transverse momentum dependent quark distributions and polarized
Drell-Yan processes
SO PHYSICAL REVIEW D
LA English
DT Article
ID DEEP-INELASTIC SCATTERING; SINGLE-SPIN ASYMMETRIES; LEPTON-PAIR
PRODUCTION; HADRON-HADRON COLLISIONS; FINAL-STATE INTERACTIONS; ODD
PARTON DISTRIBUTIONS; CHIRAL-ODD; AZIMUTHAL ASYMMETRY; POWER
CORRECTIONS; ANGULAR-DISTRIBUTION
AB We study the spin-dependent quark distributions at large transverse momentum in the collinear factorization approach. The naive-time-reversal-even and k(perpendicular to)-odd quark distributions are calculated in terms of a class of twist-three quark-gluon correlation functions. We further calculate the angular distribution of the Drell-Yan lepton pair production in the polarized nucleon-nucleon collisions. In the intermediate transverse momentum region, we find that the two approaches, the collinear factorization and the transverse momentum dependent factorization, are consistent in the description of the lepton pair angular distributions.
C1 [Zhou, Jian; Liang, Zuo-Tang] Shandong Univ, Sch Phys, Jinan 250100, Shandong, Peoples R China.
[Zhou, Jian; Yuan, Feng] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Nucl Sci, Berkeley, CA 94720 USA.
[Yuan, Feng] Brookhaven Natl Lab, RIKEN BNL Res Ctr, Upton, NY 11973 USA.
RP Zhou, J (reprint author), Shandong Univ, Sch Phys, Jinan 250100, Shandong, Peoples R China.
RI Yuan, Feng/N-4175-2013
FU U.S. Department of Energy [DE-AC02-05CH11231]; National Natural Science
Foundation of China [10525523]; China Scholarship Council
FX This work was supported in part by the U.S. Department of Energy under
Contract No. DE-AC02-05CH11231 and the National Natural Science
Foundation of China under the approval No. 10525523. We are grateful to
RIKEN, Brookhaven National Laboratory, and the U.S. Department of Energy
(Contract No. DE-AC02-98CH10886) for providing the facilities essential
for the completion of this work. J. Z. is partially supported by the
China Scholarship Council.
NR 99
TC 30
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U1 0
U2 0
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1550-7998
J9 PHYS REV D
JI Phys. Rev. D
PD MAR 1
PY 2010
VL 81
IS 5
AR 054008
DI 10.1103/PhysRevD.81.054008
PG 15
WC Astronomy & Astrophysics; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 577BE
UT WOS:000276194200039
ER
PT J
AU Murillo, MS
AF Murillo, Michael S.
TI X-ray Thomson scattering in warm dense matter at low frequencies
SO PHYSICAL REVIEW E
LA English
DT Article
ID EQUATION-OF-STATE; COUPLED YUKAWA SYSTEMS; ION STRUCTURE FACTORS;
LIQUID-METALS; LINEAR-RESPONSE; DUSTY PLASMAS; APPROXIMATION;
RESISTIVITY; DYNAMICS; MODELS
AB The low-frequency portion of the x-ray Thomson scattering spectrum is determined by electrons that follow the slow ion motion. This ion motion is characterized by the ion-ion dynamic structure factor, which contains a wealth of information about the ions, including structure and collective modes. The frequency-integrated (diffraction) contribution is considered first. An effective dressed-particle description of warm dense matter is derived from the quantum Ornstein-Zernike equations, and this is used to identify a Yukawa model for warm dense matter. The efficacy of this approach is validated by comparing a predicted structure with data from the extreme case of a liquid metal; good agreement is found. A Thomas-Fermi model is then introduced to allow the separation of bound and free states at finite temperatures, and issues with the definition of the ionization state in warm dense matter are discussed. For applications, analytic structure factors are given on either side of the Kirkwood line. Finally, several models are constructed for describing the slow dynamics of warm dense matter. Two classes of models are introduced that both satisfy the basic sum rules. One class of models is the "plasmon-pole"-like class, which yields the dispersion of ion-acoustic waves. Damping is then included via generalized hydrodynamics models that incorporate viscous contributions.
C1 Los Alamos Natl Lab, Div Phys, Los Alamos, NM 87545 USA.
RP Murillo, MS (reprint author), Los Alamos Natl Lab, Div Phys, POB 1663, Los Alamos, NM 87545 USA.
EM murillo@lanl.gov
NR 51
TC 16
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U1 0
U2 17
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1539-3755
J9 PHYS REV E
JI Phys. Rev. E
PD MAR
PY 2010
VL 81
IS 3
AR 036403
DI 10.1103/PhysRevE.81.036403
PN 2
PG 15
WC Physics, Fluids & Plasmas; Physics, Mathematical
SC Physics
GA 577CU
UT WOS:000276199400078
PM 20365878
ER
PT J
AU Palastro, JP
Ross, JS
Pollock, B
Divol, L
Froula, DH
Glenzer, SH
AF Palastro, J. P.
Ross, J. S.
Pollock, B.
Divol, L.
Froula, D. H.
Glenzer, S. H.
TI Fully relativistic form factor for Thomson scattering
SO PHYSICAL REVIEW E
LA English
DT Article
ID TEMPERATURE; PLASMA
AB We derive a fully relativistic form factor for Thomson scattering in unmagnetized plasmas valid to all orders in the normalized electron velocity, beta=nu/c. The form factor is compared to a previously derived expression where the lowest order electron velocity, beta, corrections are included [J. Sheffield, Plasma Scattering of Electromagnetic Radiation (Academic Press, New York, 1975)]. The beta expansion approach is sufficient for electrostatic waves with small phase velocities such as ion-acoustic waves, but for electron-plasma waves the phase velocities can be near luminal. At high phase velocities, the electron motion acquires relativistic corrections including effective electron mass, relative motion of the electrons and electromagnetic wave, and polarization rotation. These relativistic corrections alter the scattered emission of thermal plasma waves, which manifest as changes in both the peak power and width of the observed Thomson-scattered spectra.
C1 [Palastro, J. P.; Ross, J. S.; Pollock, B.; Divol, L.; Froula, D. H.; Glenzer, S. H.] Lawrence Livermore Natl Lab, Livermore, CA 94551 USA.
RP Palastro, JP (reprint author), Lawrence Livermore Natl Lab, Livermore, CA 94551 USA.
NR 21
TC 6
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U1 1
U2 4
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1539-3755
J9 PHYS REV E
JI Phys. Rev. E
PD MAR
PY 2010
VL 81
IS 3
AR 036411
DI 10.1103/PhysRevE.81.036411
PN 2
PG 13
WC Physics, Fluids & Plasmas; Physics, Mathematical
SC Physics
GA 577CU
UT WOS:000276199400086
PM 20365886
ER
PT J
AU Purvis, MA
Grava, J
Filevich, J
Ryan, DP
Moon, SJ
Dunn, J
Shlyaptsev, VN
Rocca, JJ
AF Purvis, Michael A.
Grava, Jonathan
Filevich, Jorge
Ryan, Duncan P.
Moon, Stephen J.
Dunn, James
Shlyaptsev, Vyacheslav N.
Rocca, Jorge J.
TI Collimation of dense plasma jets created by low-energy laser pulses and
studied with soft x-ray laser interferometry
SO PHYSICAL REVIEW E
LA English
DT Article
ID HYDRA SIMULATIONS; INTENSE LASERS; NOVA LASER; ASTROPHYSICS; NM
AB The physical mechanisms driving the collimation of dense plasma jets created by low-energy (similar to 0.6 J) laser pulse irradiation of triangular grooves were studied for different target materials using soft-x-ray interferometry and hydrodynamic code simulations. The degree of collimation of jets created by irradiating C, Al, Cu, and Mo targets at intensities of I=1 x 10(12) W cm(-2) with 120 ps laser pulses was observed to increase significantly with the atomic number. Radiation cooling is found to be the cause of the increased collimation, while the main effect of the increase in mass is to slow the jet evolution.
C1 [Purvis, Michael A.; Grava, Jonathan; Filevich, Jorge; Shlyaptsev, Vyacheslav N.; Rocca, Jorge J.] Colorado State Univ, NSF ERC Extreme Ultraviolet Sci & Technol, Ft Collins, CO 80523 USA.
[Purvis, Michael A.; Grava, Jonathan; Filevich, Jorge; Shlyaptsev, Vyacheslav N.; Rocca, Jorge J.] Colorado State Univ, Dept Elect & Comp Engn, Ft Collins, CO 80523 USA.
[Ryan, Duncan P.; Rocca, Jorge J.] Colorado State Univ, Dept Phys, Ft Collins, CO 80523 USA.
[Moon, Stephen J.; Dunn, James] Lawrence Livermore Natl Lab, Livermore, CA 94551 USA.
RP Purvis, MA (reprint author), Colorado State Univ, NSF ERC Extreme Ultraviolet Sci & Technol, Ft Collins, CO 80523 USA.
OI Ryan, Duncan/0000-0001-7702-8499
FU National Nuclear Security Administration under the Stewardship Science
Academic Alliances program through U.S. Department of Energy Research
[DE-FG52-06NA26152]; NSF ERC Center for Extreme Ultraviolet Science and
Technology [EEC-0310717]; U.S. Department of Energy by the Lawrence
Livermore National Laboratory [DE-AC52-07NA27344]; ILSA
FX The authors would like to thank M. Marinak and M. Patel for multiple
consultations on the use of the code HYDRA. This research was sponsored
by the National Nuclear Security Administration under the Stewardship
Science Academic Alliances program through U.S. Department of Energy
Research Grant No. DE-FG52-06NA26152, using facilities from the NSF ERC
Center for Extreme Ultraviolet Science and Technology Award No.
EEC-0310717. Part of this work was performed under the auspices of the
U.S. Department of Energy by the Lawrence Livermore National Laboratory
under Contract No. DE-AC52-07NA27344. The work of M. A. P. was partially
supported by ILSA.
NR 29
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U1 1
U2 12
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 2470-0045
EI 2470-0053
J9 PHYS REV E
JI Phys. Rev. E
PD MAR
PY 2010
VL 81
IS 3
AR 036408
DI 10.1103/PhysRevE.81.036408
PN 2
PG 7
WC Physics, Fluids & Plasmas; Physics, Mathematical
SC Physics
GA 577CU
UT WOS:000276199400083
PM 20365883
ER
PT J
AU Thomas, CA
AF Thomas, Cliff A.
TI Abel solution to a bremmstrahlung inverse problem
SO PHYSICAL REVIEW E
LA English
DT Article
ID LASER-HEATED PLASMAS; ENERGY DEPOSITION
AB Bremsstrahlung is correlated with high-energy electrons in laser-heated plasma [K. Brueckner, Phys. Rev. Lett. 36, 677 (1976)]. Since the result is important to the National Ignition Campaign NIC) we reconsider the derivation, and the energy dependence of the Gaunt factor(s). We find an expression for bremsstrahlung we can Abel invert, and we demonstrate the accuracy of the transform with a simple numeric exercise.
C1 Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
RP Thomas, CA (reprint author), Lawrence Livermore Natl Lab, Livermore, CA 94550 USA.
FU U.S. Department of Energy [DE-AC52-07NA27344]
FX This work performed under the auspices of the U.S. Department of Energy
by Lawrence Livermore National Laboratory under Contact No.
DE-AC52-07NA27344.
NR 6
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U1 2
U2 6
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1539-3755
J9 PHYS REV E
JI Phys. Rev. E
PD MAR
PY 2010
VL 81
IS 3
AR 036413
DI 10.1103/PhysRevE.81.036413
PN 2
PG 3
WC Physics, Fluids & Plasmas; Physics, Mathematical
SC Physics
GA 577CU
UT WOS:000276199400088
PM 20365888
ER
PT J
AU Zhmoginov, AI
Dodin, IY
Fisch, NJ
AF Zhmoginov, A. I.
Dodin, I. Y.
Fisch, N. J.
TI Negative effective mass of wave-driven classical particles in dielectric
media
SO PHYSICAL REVIEW E
LA English
DT Article
ID INSTABILITY; PLASMA; MECHANICS; LAYER
AB For a classical particle undergoing nonlinear interaction with a wave in dielectric medium, a perturbation theory is developed, showing that the particle motion can be described in terms of an effective parallel mass which can become negative. A relativistic particle interacting with a circularly polarized wave and a static magnetic field is studied as an example. For the three stationary orbits corresponding to the same velocity parallel to the magnetic field, the conditions are found under which all these equilibria are centerlike, or neutrally stable. It is shown that a negative parallel mass is realized in the vicinity of the intermediate-energy equilibrium and can lead to a plasma collective instability.
C1 [Zhmoginov, A. I.; Dodin, I. Y.; Fisch, N. J.] Princeton Univ, Dept Astrophys Sci, Princeton Plasma Phys Lab, Princeton, NJ 08543 USA.
RP Zhmoginov, AI (reprint author), Princeton Univ, Dept Astrophys Sci, Princeton Plasma Phys Lab, Princeton, NJ 08543 USA.
EM azhmogin@princeton.edu; idodin@princeton.edu; fisch@princeton.edu
FU NNSA under the SSAA Program through DOE Research [DE-FG52-08NA28553];
DOE [DEAC02-76CH03073]
FX The authors thank G. M. Fraiman for stimulating and encouraging
discussions. This work was supported by the NNSA under the SSAA Program
through DOE Research Grant No. DE-FG52-08NA28553 and by DOE through
Contract No. DEAC02-76CH03073.
NR 29
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U1 2
U2 6
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1539-3755
J9 PHYS REV E
JI Phys. Rev. E
PD MAR
PY 2010
VL 81
IS 3
AR 036404
DI 10.1103/PhysRevE.81.036404
PN 2
PG 9
WC Physics, Fluids & Plasmas; Physics, Mathematical
SC Physics
GA 577CU
UT WOS:000276199400079
PM 20365879
ER
PT J
AU Zoia, A
Neel, MC
Cortis, A
AF Zoia, Andrea
Neel, Marie-Christine
Cortis, Andrea
TI Continuous-time random-walk model of transport in variably saturated
heterogeneous porous media
SO PHYSICAL REVIEW E
LA English
DT Article
ID ANOMALOUS DIFFUSION; UNSATURATED SOILS; PARTICLE TRACKING; SOLUTE
TRANSPORT; WATER TRANSPORT; EQUATION; INFILTRATION; DISPERSION
AB We propose a unified physical framework for transport in variably saturated porous media. This approach allows fluid flow and solute migration to be treated as ensemble averages of fluid and solute particles, respectively. We consider the cases of homogeneous and heterogeneous porous materials. Within a fractal mobile-immobile continuous time random-walk framework, the heterogeneity will be characterized by algebraically decaying particle retention times. We derive the corresponding (nonlinear) continuum-limit partial differential equations and we compare their solutions to Monte Carlo simulation results. The proposed methodology is fairly general and can be used to track fluid and solutes particles trajectories for a variety of initial and boundary conditions.
C1 [Zoia, Andrea] CEA Saclay, DEN SFME LSET DM2S, F-91191 Gif Sur Yvette, France.
[Neel, Marie-Christine] Univ Avignon & Pays Vaucluse, UMR EMMAH 1114, F-84018 Avignon, France.
[Cortis, Andrea] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Earth Sci, Berkeley, CA 94720 USA.
RP Zoia, A (reprint author), CEA Saclay, DEN SFME LSET DM2S, Bat 454, F-91191 Gif Sur Yvette, France.
EM andrea.zoia@cea.fr
FU Swiss National Cooperative for the Disposal of Radioactive Waste (Nagra)
[7220]; Wettingen, Switzerland; U.S. Department of Energy Contract
[DE-AC02-05CH11231]
FX A. C. was supported by a grant (Order No. 7220) from the Swiss National
Cooperative for the Disposal of Radioactive Waste (Nagra), Wettingen,
Switzerland: the support was provided to Berkeley Laboratory through the
U.S. Department of Energy Contract No. DE-AC02-05CH11231. M. C. N.
thanks the Groupement MoMaS, Modelisation Mathematique et Simulations
numeriques liees aux problemes de gestion des dechets nucleaires
(PACEN/CNRS, ANDRA, BRGM, CEA, EDF, and IRSN). We thank S. Finsterle and
Ph. Montarnal for interesting scientific discussions.
NR 57
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U1 0
U2 13
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1539-3755
EI 1550-2376
J9 PHYS REV E
JI Phys. Rev. E
PD MAR
PY 2010
VL 81
IS 3
AR 031104
DI 10.1103/PhysRevE.81.031104
PN 1
PG 12
WC Physics, Fluids & Plasmas; Physics, Mathematical
SC Physics
GA 577CT
UT WOS:000276199300014
PM 20365694
ER
PT J
AU Bieler, TR
Wright, NT
Pourboghrat, F
Compton, C
Hartwig, KT
Baars, D
Zamiri, A
Chandrasekaran, S
Darbandi, P
Jiang, H
Skoug, E
Balachandran, S
Ice, GE
Liu, W
AF Bieler, T. R.
Wright, N. T.
Pourboghrat, F.
Compton, C.
Hartwig, K. T.
Baars, D.
Zamiri, A.
Chandrasekaran, S.
Darbandi, P.
Jiang, H.
Skoug, E.
Balachandran, S.
Ice, G. E.
Liu, W.
TI Physical and mechanical metallurgy of high purity Nb for accelerator
cavities
SO PHYSICAL REVIEW SPECIAL TOPICS-ACCELERATORS AND BEAMS
LA English
DT Article
ID SUPERCONDUCTING RF CAVITIES; EVOLUTIONARY YIELD FUNCTION; HIGH-RRR
NIOBIUM; RECRYSTALLIZATION TEXTURE; SCREW DISLOCATIONS; CRYSTAL
PLASTICITY; ELECTRICAL STEELS; DEFORMATION; TEMPERATURE; MOLYBDENUM
AB In the past decade, high Q values have been achieved in high purity Nb superconducting radio frequency (SRF) cavities. Fundamental understanding of the physical metallurgy of Nb that enables these achievements is beginning to reveal what challenges remain to establish reproducible and cost-effective production of high performance SRF cavities. Recent studies of dislocation substructure development and effects of recrystallization arising from welding and heat treatments and their correlations with cavity performance are considered. With better fundamental understanding of the effects of dislocation substructure evolution and recrystallization on electron and phonon conduction, as well as the interior and surface states, it will be possible to design optimal processing paths for cost-effective performance using approaches such as hydroforming, which minimizes or eliminates welds in a cavity.
C1 [Bieler, T. R.; Compton, C.] Michigan State Univ, Natl Superconducting Cyclotron Lab, E Lansing, MI 48824 USA.
[Hartwig, K. T.; Balachandran, S.] Texas A&M Univ, College Stn, TX 77843 USA.
[Ice, G. E.] Oak Ridge Natl Lab, Div Mat Sci & Technol, Oak Ridge, TN 37831 USA.
[Liu, W.] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
RP Bieler, TR (reprint author), Michigan State Univ, Natl Superconducting Cyclotron Lab, E Lansing, MI 48824 USA.
FU DOE [DE-FG02-06ER41433, W-31-109-Eng-38]; Fermi National Laboratory
FX This work was supported by DOE (ILC), under Contract No.
DE-FG02-06ER41433, and Fermi National Laboratory. Use of the Advanced
Photon Source was supported by the U. S. Department of Energy, Office of
Science, Office of Basic Energy Sciences, under Contract No.
W-31-109-Eng-38. G. E. I. was supported by the Division of Materials
Sciences and Engineering, U. S. DOE.
NR 45
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PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-4402
J9 PHYS REV SPEC TOP-AC
JI Phys. Rev. Spec. Top.-Accel. Beams
PD MAR
PY 2010
VL 13
IS 3
AR 031002
DI 10.1103/PhysRevSTAB.13.031002
PG 13
WC Physics, Nuclear; Physics, Particles & Fields
SC Physics
GA 576ZR
UT WOS:000276189500006
ER
PT J
AU LeChien, KR
Stygar, WA
Savage, ME
Wakeland, PE
Anaya, V
Artery, DS
Baremore, MJ
Bliss, DE
Chavez, R
Coombs, GD
Corley, JP
Jones, PA
Kipp, AK
Lewis, BA
Lott, JA
Lynch, JJ
McKee, GR
Ploor, SD
Prestwich, KR
Roznowski, SA
Spencer, DC
White, SD
Woodworth, JR
AF LeChien, K. R.
Stygar, W. A.
Savage, M. E.
Wakeland, P. E.
Anaya, V.
Artery, D. S.
Baremore, M. J.
Bliss, D. E.
Chavez, R.
Coombs, G. D.
Corley, J. P.
Jones, P. A.
Kipp, A. K.
Lewis, B. A.
Lott, J. A.
Lynch, J. J.
McKee, G. R.
Ploor, S. D.
Prestwich, K. R.
Roznowski, S. A.
Spencer, D. C.
White, S. D.
Woodworth, J. R.
TI 6.1-MV, 0.79-MA laser-triggered gas switch for multimodule,
multiterawatt pulsed-power accelerators
SO PHYSICAL REVIEW SPECIAL TOPICS-ACCELERATORS AND BEAMS
LA English
DT Article
AB A 6.1-MV, 0.79-MA laser-triggered gas switch (LTGS) is used to synchronize the 36 modules of the Z machine at Sandia National Laboratories. Each module includes one switch, which serves as the last command-fired switch of the module, and hence is used to determine the time at which each module electrically closes relative to the other modules. The switch is similar to 81-cm in length, similar to 45-cm in diameter, and is immersed in mineral oil. The outer switch envelope consists of six corrugated monomer-cast acrylic insulators and five contoured stainless-steel rings. The trigger electrodes are fabricated from copper-infused tungsten. The switch is pressurized with several atmospheres of sulfur hexafluoride (SF(6)), which is turbulently purged within 2 seconds after every shot. Each switch is powered from a 6-MV, 0.78-MJ Marx generator which pulse charges a 24-nF intermediate-store water capacitor in 1.4-mu s. Closure of the switch allows power to flow into pulse-forming transmission lines. The power pulse is subsequently compressed by water switches, which results in a total accelerator output power in excess of 70-TW. A previous version of the LTGS performed exceptionally at a 5.4-MV, 0.7-MA level on an engineering test module used for switch development. It exhibited a 1-sigma jitter of similar to 5 ns, a prefire and flashover rate less than 0.1%, and a lifetime in excess of 150 shots. When installed on the Z accelerator, however, the switch exhibited a prefire probability of similar to 3%, a flashover probability of similar to 7%, and a 15-ns jitter. The difference in performance is attributed to several factors such as higher total charge transfer, exposure to more debris, and more stressful dynamic mechanical loading upon machine discharge. Under these conditions, the replacement lifetime was less than ten shots. Since refurbishment of Z in October 2007, there have been three LTGS design iterations to improve the performance at 6.1-MV. The most recent design exhibits a prefire rate of less than 0.1%, a flashover rate of similar to 0.2%, a single switch jitter of similar to 6-ns, and a lifetime of greater than 75 shots. Modifications to achieve the performance improvement are detailed in this article.
C1 [LeChien, K. R.; Stygar, W. A.; Savage, M. E.; Bliss, D. E.; McKee, G. R.; Woodworth, J. R.] Sandia Natl Labs, Albuquerque, NM 87185 USA.
[Wakeland, P. E.; Anaya, V.; Artery, D. S.; Baremore, M. J.; Chavez, R.; Coombs, G. D.; Corley, J. P.; Jones, P. A.; Kipp, A. K.; Lewis, B. A.; Lott, J. A.; Lynch, J. J.; Ploor, S. D.; Roznowski, S. A.; Spencer, D. C.; White, S. D.] Ktech Corp Inc, Albuquerque, NM 87123 USA.
[Prestwich, K. R.] KR Prestwich Consulting, Albuquerque, NM 87112 USA.
RP LeChien, KR (reprint author), Sandia Natl Labs, POB 5800, Albuquerque, NM 87185 USA.
NR 27
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U1 0
U2 11
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-4402
J9 PHYS REV SPEC TOP-AC
JI Phys. Rev. Spec. Top.-Accel. Beams
PD MAR
PY 2010
VL 13
IS 3
AR 030401
DI 10.1103/PhysRevSTAB.13.030401
PG 11
WC Physics, Nuclear; Physics, Particles & Fields
SC Physics
GA 576ZR
UT WOS:000276189500001
ER
PT J
AU Tian, K
Kishek, RA
Haber, I
Reiser, M
O'Shea, PG
AF Tian, K.
Kishek, R. A.
Haber, I.
Reiser, M.
O'Shea, P. G.
TI Experimental study of large-amplitude perturbations in space-charge
dominated beams
SO PHYSICAL REVIEW SPECIAL TOPICS-ACCELERATORS AND BEAMS
LA English
DT Article
ID FIELD ENERGY ANALYZER; ELECTRON-BEAMS; WAVES
AB Detailed experimental measurements are presented concerning the propagation of space-charge waves of varying amplitudes in an intense, charged-particle beam. A short perturbation to the density profile is applied at the electron gun, and both current and mean energy profiles are measured at two locations downstream. The measurements are compared to predictions of a linear 1D cold-fluid model, and self-consistent particle-in-cell simulations. For sufficiently small perturbation amplitudes, the experiment, simulation, and 1D theory agree. For larger amplitudes, the simulation begins to diverge from theoretical predictions due to nonlinear effects. Experimental observations for large-amplitude perturbations differ markedly from either theory or simulation. With the aid of simulations with mismatched and misaligned beams, this departure of experiments from predictions is demonstrated to be caused by the loss of beam current due to scraping aided by the larger radius of the perturbation.
C1 [Tian, K.; Kishek, R. A.; Haber, I.; Reiser, M.; O'Shea, P. G.] Univ Maryland, Inst Res Elect & Appl Phys, College Pk, MD 20742 USA.
RP Tian, K (reprint author), Thomas Jefferson Natl Accelerator Facil, Newport News, VA 23606 USA.
EM kaitian@umd.edu
RI Tian, Kai/B-8023-2012
FU U. S. Department of Energy High Energy Physics and Fusion Energy
Science; Department of Defense Office of Naval Research and Joint
Technology Office
FX We thank Y. Zou, Y. Cui, M. Walter, S. Bernal, B. L. Beaudoin, D.
Sutter, D. Cohen, D. Stratakis, D. Feldman, R. Fiorito, and C. Wu for
helpful discussions. We also thank A. Friedman, D. P. Grote, and J.-L.
Vay for providing the WARP code. This work is supported by the U. S.
Department of Energy High Energy Physics and Fusion Energy Science, and
by the Department of Defense Office of Naval Research and Joint
Technology Office.
NR 35
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U1 0
U2 0
PU AMER PHYSICAL SOC
PI COLLEGE PK
PA ONE PHYSICS ELLIPSE, COLLEGE PK, MD 20740-3844 USA
SN 1098-4402
J9 PHYS REV SPEC TOP-AC
JI Phys. Rev. Spec. Top.-Accel. Beams
PD MAR
PY 2010
VL 13
IS 3
AR 034201
DI 10.1103/PhysRevSTAB.13.034201
PG 13
WC Physics, Nuclear; Physics, Particles & Fields
SC Physics
GA 576ZR
UT WOS:000276189500009
ER
PT J
AU Laget, JM
AF Laget, J. M.
TI Unitarity constraints on charged pion photoproduction at large
p(perpendicular to)
SO PHYSICS LETTERS B
LA English
DT Article
ID LARGE MOMENTUM-TRANSFER; COMPTON-SCATTERING; ELECTROPRODUCTION;
HYDROGEN; MESONS; CLAS
AB Around theta(pi) = 90 degrees, the coupling to the rho N-0 channel leads to a good accounting of the charged pion exclusive photoproduction cross section in the energy range 3 < E-gamma < 10 GeV. where experimental data exist. Starting from a Regge pole approach that successfully describes vector meson production, the singular part of the corresponding box diagrams (where the intermediate vector meson-baryon pair propagates on-shell) is evaluated without any further assumptions (unitarity). Such a treatment provides an explanation of the s(-7) scaling of the cross section. Elastic rescattering of the charged pion improves the basic Regge pole model at forward and backward angles. (c) 2010 Elsevier B.V. All rights reserved.
C1 Thomas Jefferson Natl Accelerator Facil, Newport News, VA 23606 USA.
RP Laget, JM (reprint author), Thomas Jefferson Natl Accelerator Facil, Newport News, VA 23606 USA.
EM laget@jlab.org
FU Jefferson Science Associates operate Thomas Jefferson National Facility
for the United States Department of Energy [DE-AC05-06OR23177]
FX I acknowledge the warm hospitality at JLab where this work was
completed. Jefferson Science Associates operate Thomas Jefferson
National Facility for the United States Department of Energy under
contract DE-AC05-06OR23177.
NR 23
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U1 0
U2 0
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0370-2693
J9 PHYS LETT B
JI Phys. Lett. B
PD MAR 1
PY 2010
VL 685
IS 2-3
BP 146
EP 150
DI 10.1016/j.physletb.2010.01.052
PG 5
WC Astronomy & Astrophysics; Physics, Nuclear; Physics, Particles & Fields
SC Astronomy & Astrophysics; Physics
GA 563QP
UT WOS:000275148800008
ER
PT J
AU Boehly, TR
Olson, RE
Celliers, PM
Munro, DH
Seka, W
Landen, OL
Collins, GW
Suter, LJ
Sangster, TC
Meyerhofer, DD
AF Boehly, T. R.
Olson, R. E.
Celliers, P. M.
Munro, D. H.
Seka, W.
Landen, O. L.
Collins, G. W.
Suter, L. J.
Sangster, T. C.
Meyerhofer, D. D.
TI The effect of condensates and inner coatings on the performance of
vacuum hohlraum targets
SO PHYSICS OF PLASMAS
LA English
DT Article
ID NATIONAL IGNITION FACILITY; LASER-HEATED HOHLRAUMS; RADIATION DRIVE;
OMEGA-LASER; PLASMAS; DESIGN; LIGHT; NIF
AB Experiments on the OMEGA laser system [Boehly et al., Opt. Commun. 133, 495 (1997)] using laser-driven vacuum hohlraum targets show distinct differences between cryogenic (<20 K) and warm targets. The cryogenic targets have 15% lower peak radiation temperatures, and the temporal profile of those temperatures is quite different than in warm targets. The cryogenic targets reflect significantly more (3%-7%) of the laser drive than the warm targets (<1%). The temporal and spectral features of the reflected light from the cryogenic targets show a significantly longer duration and more spectral features than the warm hohlraums. Warm hohlraum targets coated with 2 mu m of CH replicate the behavior of cryogenic targets. This indicates that the cryogenic hohlraums are affected by the condensation of background gases on the cold hohlraum surface. The most important effect of low-Z material in the hohlraums is that they significantly reduce the x-ray conversion efficiency, resulting in lower hohlraum radiation temperature. The coatings (both CH and condensates) produce long-scale-length, low-Z plasmas that moderately reduce the absorption of laser light in the hohlraums. This causes higher reflectivity and produces hot electrons that generate hard x rays (h nu> 20 keV), both of which are detrimental to the performance of hohlraum-driven inertial confinement fusion targets. (C) 2010 American Institute of Physics. [doi:10.1063/1.3334998]
C1 [Boehly, T. R.; Seka, W.; Sangster, T. C.] Univ Rochester, Laser Energet Lab, Rochester, NY 14623 USA.
[Olson, R. E.] Sandia Natl Labs, Albuquerque, NM USA.
[Celliers, P. M.; Munro, D. H.; Landen, O. L.; Collins, G. W.; Suter, L. J.] Lawrence Livermore Natl Lab, Livermore, CA USA.
[Meyerhofer, D. D.] Univ Rochester, Dept Phys & Astron, Rochester, NY 14623 USA.
[Meyerhofer, D. D.] Univ Rochester, Dept Mech Engn, Rochester, NY 14623 USA.
RP Boehly, TR (reprint author), Univ Rochester, Laser Energet Lab, 250 E River Rd, Rochester, NY 14623 USA.
RI Collins, Gilbert/G-1009-2011
FU U.S. Department of Energy Office of Inertial Confinement Fusion
[DE-FC52-08NA28302]; University of Rochester; New York State Energy
Research and Development Authority
FX This work was supported by the U.S. Department of Energy Office of
Inertial Confinement Fusion under Cooperative Agreement No.
DE-FC52-08NA28302, the University of Rochester, and the New York State
Energy Research and Development Authority. The support of DOE does not
constitute an endorsement by DOE of the views expressed in this article.
NR 37
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PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 1070-664X
J9 PHYS PLASMAS
JI Phys. Plasmas
PD MAR
PY 2010
VL 17
IS 3
AR 032701
DI 10.1063/1.3334998
PG 11
WC Physics, Fluids & Plasmas
SC Physics
GA 577GI
UT WOS:000276210100041
ER
PT J
AU Gurcan, OD
Diamond, PH
McDevitt, CJ
Hahm, TS
AF Gurcan, O. D.
Diamond, P. H.
McDevitt, C. J.
Hahm, T. S.
TI A simple model of intrinsic rotation in high confinement regime tokamak
plasmas
SO PHYSICS OF PLASMAS
LA English
DT Article
ID NONLINEAR GYROKINETIC EQUATIONS; ANOMALOUS MOMENTUM TRANSPORT; TOROIDAL
ROTATION; TURBULENCE; INPUT; FLOW
AB A simple unified model of intrinsic rotation and momentum transport in high confinement regime (H-mode) tokamak plasmas is presented. Motivated by the common dynamics of the onset of intrinsic rotation and the L-H transition, this simple model combines E x B shear-driven residual stress in the pedestal with a turbulent equipartition pinch to yield rotation profiles. The residual stress is the primary mechanism for buildup of intrinsic rotation in the H-mode pedestal, while the pinch drives on-axis peaking of rotation profiles. Analytical estimates for pedestal flow velocities are given in terms of the pedestal width, the pedestal height, and various model parameters. The predicted scaling of the toroidal flow speed with pedestal width is found to be consistent with the International Tokamak Physics Activity database global scaling of the flow speed on-axis with the total plasma stored energy. (C) 2010 American Institute of Physics.[doi:10.1063/1.3339909]
C1 [Gurcan, O. D.] Ecole Polytech, Lab Phys Plasmas, CNRS, F-91128 Palaiseau, France.
[Diamond, P. H.; McDevitt, C. J.] Univ Calif San Diego, Ctr Astrophys & Space Sci, La Jolla, CA 92093 USA.
[Hahm, T. S.] Princeton Univ, Princeton Plasma Phys Lab, Princeton, NJ 08543 USA.
RP Gurcan, OD (reprint author), Ecole Polytech, Lab Phys Plasmas, CNRS, F-91128 Palaiseau, France.
EM ozgur.gurcan@lpp.polytechnique.fr
RI Gurcan, Ozgur/A-1362-2013;
OI Gurcan, Ozgur/0000-0002-2278-1544; McDevitt,
Christopher/0000-0002-3674-2909
FU Department of Energy [DE-FC02-08ER54959 (UCSD)]; U.S. Department of
Energy [DE-AC02-09-CH11466 (PPPL)]; Agence Nationale de la Recherche
[06-3_134975]
FX We thank (in alphabetical order) K. H. Burrell, C. S. Chang, J.
deGrassie, X. Garbet, M. Greenwald, C. Hidalgo, K. Ida, K. Itoh, S.-I.
Itoh, Y. Kamada, S. Kaye, J. Rice, W. Solomon, W. Wang, and M. Yoshida
for many stimulating discussions. This research was supported by
Department of Energy Contract No. DE-FC02-08ER54959 (UCSD) and U.S.
Department of Energy Contract No. DE-AC02-09-CH11466 (PPPL) and the
Agence Nationale de la Recherche, Contract No. 06-3_134975.
NR 39
TC 17
Z9 17
U1 0
U2 8
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 1070-664X
J9 PHYS PLASMAS
JI Phys. Plasmas
PD MAR
PY 2010
VL 17
IS 3
AR 032509
DI 10.1063/1.3339909
PG 8
WC Physics, Fluids & Plasmas
SC Physics
GA 577GI
UT WOS:000276210100039
ER
PT J
AU Lanctot, MJ
Reimerdes, H
Garofalo, AM
Chu, MS
Liu, YQ
Strait, EJ
Jackson, GL
La Haye, RJ
Okabayashi, M
Osborne, TH
Schaffer, MJ
AF Lanctot, M. J.
Reimerdes, H.
Garofalo, A. M.
Chu, M. S.
Liu, Y. Q.
Strait, E. J.
Jackson, G. L.
La Haye, R. J.
Okabayashi, M.
Osborne, T. H.
Schaffer, M. J.
TI Validation of the linear ideal magnetohydrodynamic model of
three-dimensional tokamak equilibria
SO PHYSICS OF PLASMAS
LA English
DT Article
ID RESISTIVE WALL MODES; DIII-D TOKAMAK; PLASMAS; STABILITY; PHYSICS;
TORUS; EDGE
AB The first quantitative comparison of linear ideal magnetohydrodynamic (MHD) theory with external magnetic measurements of the nonaxisymmetric plasma perturbation driven by external long-wavelength magnetic fields in high-temperature tokamak plasmas is presented. The comparison yields good (within 20%) agreement for plasma pressures up to similar to 75% of the ideal stability limit calculated without a conducting wall. For higher plasma pressures, the ideal MHD model tends to overestimate the perturbed field indicating the increasing importance of stabilizing nonideal effects. (C) 2010 American Institute of Physics. [doi: 10.1063/1.3335237]
C1 [Lanctot, M. J.; Reimerdes, H.] Columbia Univ, New York, NY 10027 USA.
[Garofalo, A. M.; Chu, M. S.; Strait, E. J.; Jackson, G. L.; La Haye, R. J.; Osborne, T. H.; Schaffer, M. J.] Gen Atom Co, San Diego, CA 92186 USA.
[Liu, Y. Q.] EURATOM CCFE Fus Assoc, Abingdon OX14 3DB, Oxon, England.
[Okabayashi, M.] Princeton Plasma Phys Lab, Princeton, NJ 08543 USA.
RP Lanctot, MJ (reprint author), Columbia Univ, 2960 Broadway, New York, NY 10027 USA.
EM mjl2126@columbia.edu
RI Lanctot, Matthew J/O-4979-2016
OI Lanctot, Matthew J/0000-0002-7396-3372
FU U.S. Department of Energy [DE-FG02-89ER53297, DE-FC02-04ER54698,
DE-AC05-00OR22725]
FX This work was supported in part by the U.S. Department of Energy under
Grant Nos. DE-FG02-89ER53297, DE-FC02-04ER54698, and DE-AC05-00OR22725.
NR 22
TC 59
Z9 59
U1 0
U2 8
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 1070-664X
J9 PHYS PLASMAS
JI Phys. Plasmas
PD MAR
PY 2010
VL 17
IS 3
AR 030701
DI 10.1063/1.3335237
PG 4
WC Physics, Fluids & Plasmas
SC Physics
GA 577GI
UT WOS:000276210100001
ER
PT J
AU Zhou, Y
AF Zhou, Ye
TI Renormalization group theory for fluid and plasma turbulence
SO PHYSICS REPORTS-REVIEW SECTION OF PHYSICS LETTERS
LA English
DT Review
DE Turbulent flows; Magnetohydrodynamic (MHD) turbulence; Plasma;
Renormalization group theories; Renormalized perturbation theories
ID DIRECT-INTERACTION APPROXIMATION; DIRECT NUMERICAL SIMULATIONS;
ENERGY-DISSIPATION RATE; HIGH REYNOLDS-NUMBERS; LARGE-EDDY SIMULATION;
FULLY-DEVELOPED TURBULENCE; ALFVEN-WAVE TURBULENCE; NAVIER-STOKES
EQUATION; MEAN MAGNETIC-FIELD; FORCED MAGNETOHYDRODYNAMIC TURBULENCE
AB For the last several decades, renormalization group (RG, or RNG) methods have been applied to a wide variety of problems of turbulence in hydrodynamics and plasma physics. A comprehensive review of this work will be presented, covering RG methods in hydrodynamic turbulence and in turbulent systems with coupled fluctuating fields like magneto-hydrodynamic (MHD) turbulence. This review will attempt to specifically consider several questions about RG: (1) Does RG provide an improvement over previous analytical theories like the direct interaction approximation, or is RG a useful simplification of those theories? (2) How are nonlocal, or 'sweeping' effects treated in RG formalisms, or are they ignored entirely? (3) Can RG theories treat both local and nonlocal interactions in turbulence? (C) 2009 Elsevier B.V. All rights reserved.
C1 Lawrence Livermore Natl Lab, Livermore, CA 94551 USA.
RP Zhou, Y (reprint author), Lawrence Livermore Natl Lab, Livermore, CA 94551 USA.
EM yezhou@llnl.gov
FU Lawrence Livermore National Security, LLC [DE-AC52-07NA27344]
FX This work was performed under the auspices of the Lawrence Livermore
National Security, LLC under contract No. DE-AC52-07NA27344.
NR 324
TC 39
Z9 42
U1 3
U2 21
PU ELSEVIER SCIENCE BV
PI AMSTERDAM
PA PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS
SN 0370-1573
EI 1873-6270
J9 PHYS REP
JI Phys. Rep.-Rev. Sec. Phys. Lett.
PD MAR
PY 2010
VL 488
IS 1
BP 1
EP 49
DI 10.1016/j.physrep.2009.04.004
PG 49
WC Physics, Multidisciplinary
SC Physics
GA 565PP
UT WOS:000275306700001
ER
PT J
AU Nieto, MM
Anderson, JD
AF Nieto, Michael Martin
Anderson, John D.
TI Frame dragging on flybys Reply
SO PHYSICS TODAY
LA English
DT Letter
C1 [Nieto, Michael Martin] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
[Anderson, John D.] NASA, Jet Prop Lab, Pasadena, CA USA.
RP Nieto, MM (reprint author), Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
EM mmn@lanl.gov; jdandy@earthlink.net
NR 0
TC 0
Z9 0
U1 1
U2 1
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 0031-9228
J9 PHYS TODAY
JI Phys. Today
PD MAR
PY 2010
VL 63
IS 3
BP 8
EP +
PG 2
WC Physics, Multidisciplinary
SC Physics
GA 568TX
UT WOS:000275546900003
ER
PT J
AU Crease, RP
AF Crease, Robert P.
TI Critical Point Communicating science
SO PHYSICS WORLD
LA English
DT Editorial Material
C1 [Crease, Robert P.] SUNY Stony Brook, Dept Philosophy, Stony Brook, NY 11790 USA.
[Crease, Robert P.] Brookhaven Natl Lab, Upton, NY 11973 USA.
RP Crease, RP (reprint author), SUNY Stony Brook, Dept Philosophy, Stony Brook, NY 11790 USA.
EM rcrease@notes.cc.sunysb.edu
NR 0
TC 0
Z9 0
U1 0
U2 0
PU IOP PUBLISHING LTD
PI BRISTOL
PA DIRAC HOUSE, TEMPLE BACK, BRISTOL BS1 6BE, ENGLAND
SN 0953-8585
J9 PHYS WORLD
JI Phys. World
PD MAR
PY 2010
VL 23
IS 3
BP 19
EP 20
PG 2
WC Physics, Multidisciplinary
SC Physics
GA 568XI
UT WOS:000275559100021
ER
PT J
AU Ralph, J
AF Ralph, John
TI Hydroxycinnamates in lignification
SO PHYTOCHEMISTRY REVIEWS
LA English
DT Article
DE Biosynthesis; Monolignol; Radical coupling; Combinatorial coupling;
Ferulate; p-Coumarate; Sinapate; Cross-linking; Transgenic;
Polymerization; Synthetic lignin (DHP)
ID FERULATE CROSS-LINKS; SYRINGYL LIGNIN BIOSYNTHESIS; CINNAMOYL-COA
REDUCTASE; CEREAL DIETARY FIBER; MAIZE STEM TISSUES; PLANT-CELL WALLS;
ENZYMATIC DEGRADATION; STRUCTURAL-CHARACTERIZATION; PHENOLIC
CONSTITUENTS; ACID INCORPORATION
AB Hydroxycinnamates incorporate into lignins by various mechanisms. The polysaccharide esters of ferulate, in particular, and the range of dehydrodiferulates and higher oligomers in grasses, participate in free-radical (cross-)coupling reactions during lignification to become integrally bound into the lignin polymer, resulting in extensive cross-linking between lignins and polysaccharides. Monolignol-hydroxycinnamate (primarily monolignol-p-coumarate) conjugates are primary building blocks for lignins, again in grasses (but analogously with monolignol acetates and p-hydroxybenzoates in other plants); radical coupling reactions of the monolignol moiety of the conjugate result in lignins with pendant p-coumarate units acylating a variety of lignin structures. Recent evidence suggests that even the hydroxycinnamic acids themselves can be monomers in lignification in wild-type and transgenic plants, undergoing radical cross-coupling reactions to incorporate into the polymer with interesting consequences. The compatibility of ferulate, in particular, with lignification suggests that plants able to utilize monolignol-ferulate conjugates in their primary monomer supply will be particularly well suited for subsequent chemical delignification, potentially improving processes for biomass conversion to biofuels, and for chemical pulping.
C1 [Ralph, John] Enzyme Inst, Dept Biochem, Madison, WI 53706 USA.
[Ralph, John] Univ Wisconsin, Dept Biochem, Madison, WI 53706 USA.
[Ralph, John] Univ Wisconsin, Dept Biol Syst Engn, Madison, WI 53706 USA.
[Ralph, John] Univ Wisconsin, DOE Great Lakes Bioenergy Res Ctr, Madison, WI 53706 USA.
RP Ralph, J (reprint author), Enzyme Inst, Dept Biochem, 1710 Univ Ave, Madison, WI 53706 USA.
EM jralph@wisc.edu
FU DOE Energy Biosciences program [DE-AI02-00ER15067]; USDA-NRI
[2003-3550313820]; Stanford University's Global Climate and Energy
Program (GCEP); US Department of Energy, Office of Science, Office of
Biological and Environmental Research [DE-FC02-07ER64494]
FX We gratefully acknowledge partial funding for through the DOE Energy
Biosciences program (#DE-AI02-00ER15067) and the USDA-NRI (#
2003-3550313820), along with new funding from Stanford University's
Global Climate and Energy Program (GCEP) to pursue approaches toward
lignin modification; some aspects of this research were funded in by the
DOE Great Lakes Bioenergy Research Center (www.greatlakesbioenergy.org),
which is supported by the US Department of Energy, Office of Science,
Office of Biological and Environmental Research, through Cooperative
Agreement DE-FC02-07ER64494 between The Board of Regents of the
University of Wisconsin System and the US Department of Energy. The
author is grateful to many coworkers and collaborators who worked on
many of these aspects, including but not limited to: Mirko Bunzel, John
Grabber, Ron Hatfield, Fachuang Lu, Hoon Kim, Takuya Akiyama, Jane
Marita, Paul Schatz, Junpeng Peng, Richard Helm, Ste phane Quideau,
Catherine Lapierre, Wout Boerjan, Clint Chapple, Gosta Brunow, and Hans
Jung.
NR 110
TC 148
Z9 149
U1 6
U2 71
PU SPRINGER
PI DORDRECHT
PA VAN GODEWIJCKSTRAAT 30, 3311 GZ DORDRECHT, NETHERLANDS
SN 1568-7767
J9 PHYTOCHEM REV
JI Phytochem. Rev.
PD MAR
PY 2010
VL 9
IS 1
SI SI
BP 65
EP 83
DI 10.1007/s11101-009-9141-9
PG 19
WC Plant Sciences
SC Plant Sciences
GA 570FV
UT WOS:000275658600005
ER
PT J
AU Liepman, AH
Wightman, R
Geshi, N
Turner, SR
Scheller, HV
AF Liepman, Aaron H.
Wightman, Raymond
Geshi, Naomi
Turner, Simon R.
Scheller, Henrik Vibe
TI Arabidopsis - a powerful model system for plant cell wall research
SO PLANT JOURNAL
LA English
DT Article
DE cellulose; hemicellulose; pectin; arabinogalactan proteins;
glycosyltransferases; glycan synthases
ID CELLULOSE-SYNTHASE-LIKE; GLYCOSYLPHOSPHATIDYLINOSITOL-ANCHORED PROTEINS;
MEMBRANE-BOUND GALACTOSYLTRANSFERASE; ROOT-HAIR MORPHOGENESIS; REDUCING
END-GROUPS; ARABINOGALACTAN-PROTEINS; GLUCURONOXYLAN BIOSYNTHESIS;
PLASMA-MEMBRANE; SECONDARY WALL; GENE FAMILY
AB P>Plant cell walls are composites of various carbohydrates, proteins and other compounds. Cell walls provide plants with strength and protection, and also represent the most abundant source of renewable biomass. Despite the importance of plant cell walls, comparatively little is known about the identities of genes and functions of proteins involved in their biosynthesis. The model plant Arabidopsis and the availability of its genome sequence have been invaluable for the identification and functional characterization of genes encoding enzymes involved in plant cell-wall biosynthesis. This review covers recent progress in the identification and characterization of genes encoding proteins involved in the biosynthesis of Arabidopsis cell-wall polysaccharides and arabinogalactan proteins. These studies have improved our understanding of both the mechanisms of cell-wall biosynthesis and the functions of various cell-wall polymers, and have highlighted areas where further research is needed.
C1 [Liepman, Aaron H.] Eastern Michigan Univ, Dept Biol, Ypsilanti, MI 48197 USA.
[Wightman, Raymond; Turner, Simon R.] Univ Manchester, Fac Life Sci, Manchester M13 6AY, Lancs, England.
[Geshi, Naomi] Univ Copenhagen, VKR Res Ctr, Dept Plant Biol & Biotechnol, DK-1871 Frederiksberg C, Denmark.
[Scheller, Henrik Vibe] Joint BioEnergy Inst, Feedstocks Div, Emeryville, CA 94608 USA.
[Scheller, Henrik Vibe] Univ Calif Berkeley, Lawrence Berkeley Lab, Phys Biosci Div, Berkeley, CA 94720 USA.
RP Liepman, AH (reprint author), Eastern Michigan Univ, Dept Biol, 316 Mark Jefferson Bldg, Ypsilanti, MI 48197 USA.
EM aliepman@emich.edu
RI Scheller, Henrik/A-8106-2008; Turner, Simon/K-7580-2012;
OI Scheller, Henrik/0000-0002-6702-3560; Turner, Simon/0000-0003-4859-1068;
Wightman, Raymond/0000-0003-1295-4875
FU United States Department of Agriculture Cooperative State Research,
Education and Extension Service [2007-03542]; European Union [211982];
US Department of Energy, Office of Science, Office of Biological and
Environmental Research [DE-AC02-05CH11231]
FX A.H.L. is supported by National Research Initiative grant number
2007-03542 from the United States Department of Agriculture Cooperative
State Research, Education and Extension Service. N.G. and R.W. are
supported by the 7th Framework Program of the European Union, project
number 211982, 'Renewall'. H.V.S. is supported by the US Department of
Energy, Office of Science, Office of Biological and Environmental
Research, through contract DE-AC02-05CH11231 between Lawrence Berkeley
National Laboratory and the US Department of Energy. A.H.L. acknowledges
Dr Cory Emal (Eastern Michigan University, Department of Chemistry) and
Dr David Cavalier (Michigan State University, Plant Research Laboratory)
for helpful discussions.
NR 162
TC 86
Z9 90
U1 8
U2 66
PU WILEY-BLACKWELL
PI HOBOKEN
PA 111 RIVER ST, HOBOKEN 07030-5774, NJ USA
SN 0960-7412
J9 PLANT J
JI Plant J.
PD MAR
PY 2010
VL 61
IS 6
BP 1107
EP 1121
DI 10.1111/j.1365-313X.2010.04161.x
PG 15
WC Plant Sciences
SC Plant Sciences
GA 566SV
UT WOS:000275394300017
PM 20409281
ER
PT J
AU Jung, KH
Seo, YS
Walia, H
Cao, PJ
Fukao, T
Canlas, PE
Amonpant, F
Bailey-Serres, J
Ronald, PC
AF Jung, Ki-Hong
Seo, Young-Su
Walia, Harkamal
Cao, Peijian
Fukao, Takeshi
Canlas, Patrick E.
Amonpant, Fawn
Bailey-Serres, Julia
Ronald, Pamela C.
TI The Submergence Tolerance Regulator Sub1A Mediates Stress-Responsive
Expression of AP2/ERF Transcription Factors
SO PLANT PHYSIOLOGY
LA English
DT Article
ID GENOME-WIDE ANALYSIS; DNA-BINDING DOMAIN; FACTOR-LIKE GENE; NEGATIVE
REGULATOR; RICE SEEDLINGS; PHYLOGENOMIC DATABASE; SEED DEVELOPMENT;
TRANSGENIC RICE; ABSCISIC-ACID; ALLOW RICE
AB We previously characterized the rice (Oryza sativa) Submergence1 (Sub1) locus encoding three ethylene-responsive factor (ERF) transcriptional regulators. Genotypes carrying the Sub1A-1 allele are tolerant of prolonged submergence. To elucidate the mechanism of Sub1A-1-mediated tolerance, we performed transcriptome analyses comparing the temporal submergence response of Sub1A-1-containing tolerant M202(Sub1) with the intolerant isoline M202 lacking this gene. We identified 898 genes displaying Sub1A-1-dependent regulation. Integration of the expression data with publicly available metabolic pathway data identified submergence tolerance-associated pathways governing anaerobic respiration, hormone responses, and antioxidant systems. Of particular interest were a set of APETALA2 (AP2)/ERF family transcriptional regulators that are associated with the Sub1A-1-mediated response upon submergence. Visualization of expression patterns of the AP2/ERF superfamily members in a phylogenetic context resolved 12 submergence-regulated AP2/ERFs into three putative functional groups: (1) anaerobic respiration and cytokinin-mediated delay in senescence via ethylene accumulation during submergence (three ERFs); (2) negative regulation of ethylene-dependent gene expression (five ERFs); and (3) negative regulation of gibberellin-mediated shoot elongation (four ERFs). These results confirm that the presence of Sub1A-1 impacts multiple pathways of response to submergence.
C1 [Jung, Ki-Hong; Seo, Young-Su; Walia, Harkamal; Cao, Peijian; Canlas, Patrick E.; Amonpant, Fawn; Ronald, Pamela C.] Univ Calif Davis, Dept Plant Pathol, Davis, CA 95616 USA.
[Jung, Ki-Hong; Cao, Peijian; Ronald, Pamela C.] Joint Bioenergy Inst, Emeryville, CA 94710 USA.
[Jung, Ki-Hong] Kyung Hee Univ, Dept Plant Mol Syst Biotechnol, Yongin 446701, South Korea.
[Jung, Ki-Hong] Kyung Hee Univ, Crop Biotech Inst, Yongin 446701, South Korea.
[Fukao, Takeshi; Bailey-Serres, Julia] Univ Calif Riverside, Dept Bot & Plant Sci, Ctr Plant Cell Biol, Riverside, CA 92521 USA.
RP Ronald, PC (reprint author), Univ Calif Davis, Dept Plant Pathol, Davis, CA 95616 USA.
EM pcronald@ucdavis.edu
RI Fukao, Takeshi/H-6548-2016;
OI Fukao, Takeshi/0000-0002-9930-1318; Bailey-Serres,
Julia/0000-0002-8568-7125
FU Department of Energy [AC02-05CH11231]; National Science Foundation Plant
Genome Research [DBI0313887]; U.S. Department of Agriculture National
Research [2008-35100-04528]
FX This work was supported by the Department of Energy ( grant no.
DE-AC02-05CH11231 to the Joint Bioenergy Institute), by the National
Science Foundation Plant Genome Research Program ( grant no. DBI0313887
to P. C. R.), and by the U.S. Department of Agriculture National
Research Initiative Competitive Grant Program ( grant no.
2008-35100-04528 to J.B.-S. and P. C. R.).
NR 69
TC 85
Z9 93
U1 2
U2 34
PU AMER SOC PLANT BIOLOGISTS
PI ROCKVILLE
PA 15501 MONONA DRIVE, ROCKVILLE, MD 20855 USA
SN 0032-0889
J9 PLANT PHYSIOL
JI Plant Physiol.
PD MAR
PY 2010
VL 152
IS 3
BP 1674
EP 1692
DI 10.1104/pp.109.152157
PG 19
WC Plant Sciences
SC Plant Sciences
GA 578XG
UT WOS:000276329500044
PM 20107022
ER
PT J
AU Jung, HS
Niyogi, KK
AF Jung, Hou-Sung
Niyogi, Krishna K.
TI Mutations in Arabidopsis YCF20-like genes affect thermal dissipation of
excess absorbed light energy
SO PLANTA
LA English
DT Article
DE Arabidopsis thaliana; Chlorophyll fluorescence; Nonphotochemical
quenching; NPQ6; NPQ7; Photosynthesis; YCF20
ID ALGA CYANIDIOSCHYZON-MEROLAE; COMPLETE NUCLEOTIDE-SEQUENCE; CHLOROPHYLL
FLUORESCENCE; PLASTID GENOME; CHLOROPLAST GENOME; XANTHOPHYLL CYCLE;
CLEAVAGE SITES; IN-VIVO; PHOTOSYNTHESIS; PLANTS
AB Plants dissipate excess absorbed light energy as heat to protect themselves from photo-oxidative stress. The Arabidopsis thaliana npq6 mutant affected in thermal dissipation was identified by its partial defect in the induction of nonphotochemical quenching of chlorophyll fluorescence (NPQ) by excess light. Positional cloning revealed that npq6 contains a frameshift mutation caused by a single base-pair deletion in the At5g43050 gene, which encodes a member of the hypothetical chloroplast open reading frame 20 (YCF20) family of proteins with unknown function(s). The YCF20 protein family is mostly conserved in oxygenic photosynthetic organisms including cyanobacteria, eukaryotic algae, and plants. Amino acid sequence comparison identified two other genes in Arabidopsis that encode similar proteins to NPQ6: At1g65420 and At3g56830. These three Arabidopsis proteins have functional chloroplast-targeting transit peptides. Using reverse genetics, a mutant with a T-DNA insertion within the At1g65420 gene was identified and shown to exhibit a low NPQ phenotype similar to that of npq6; therefore, At1g65420 was named NPQ7. In contrast, a knockdown mutant in the At3g56830 gene with lower transcript levels showed wild-type levels of NPQ. The npq6 npq7 double mutant had an additive NPQ defect, indicating that the YCF20 family members in Arabidopsis have overlapping functions affecting thermal dissipation.
C1 [Jung, Hou-Sung; Niyogi, Krishna K.] Univ Calif Berkeley, Dept Plant & Microbial Biol, Berkeley, CA 94720 USA.
[Niyogi, Krishna K.] Univ Calif Berkeley, Lawrence Berkeley Lab, Phys Biosci Div, Berkeley, CA 94720 USA.
RP Niyogi, KK (reprint author), Univ Calif Berkeley, Dept Plant & Microbial Biol, Berkeley, CA 94720 USA.
EM niyogi@berkeley.edu
FU Chemical Sciences, Geosciences and Biosciences Division, Office of Basic
Energy Sciences, Office of Science, U.S. Department of Energy [449A449B]
FX We thank Alba Phippard for technical support. This research was
supported by the Chemical Sciences, Geosciences and Biosciences
Division, Office of Basic Energy Sciences, Office of Science, U.S.
Department of Energy, FWP number 449A449B.
NR 55
TC 6
Z9 6
U1 0
U2 3
PU SPRINGER
PI NEW YORK
PA 233 SPRING ST, NEW YORK, NY 10013 USA
SN 0032-0935
J9 PLANTA
JI Planta
PD MAR
PY 2010
VL 231
IS 4
BP 923
EP 937
DI 10.1007/s00425-010-1098-9
PG 15
WC Plant Sciences
SC Plant Sciences
GA 554XF
UT WOS:000274468800012
PM 20087601
ER
PT J
AU Bradley, RK
Li, XY
Trapnell, C
Davidson, S
Pachter, L
Chu, HC
Tonkin, LA
Biggin, MD
Eisen, MB
AF Bradley, Robert K.
Li, Xiao-Yong
Trapnell, Cole
Davidson, Stuart
Pachter, Lior
Chu, Hou Cheng
Tonkin, Leath A.
Biggin, Mark D.
Eisen, Michael B.
TI Binding Site Turnover Produces Pervasive Quantitative Changes in
Transcription Factor Binding between Closely Related Drosophila Species
SO PLOS BIOLOGY
LA English
DT Article
ID REGULATORY REGIONS; GENOME; DNA; EVOLUTION; SEQUENCES; CONSERVATION;
MELANOGASTER; DIVERGENCE; BLASTODERM; PHYLOGENY
AB Changes in gene expression play an important role in evolution, yet the molecular mechanisms underlying regulatory evolution are poorly understood. Here we compare genome-wide binding of the six transcription factors that initiate segmentation along the anterior-posterior axis in embryos of two closely related species: Drosophila melanogaster and Drosophila yakuba. Where we observe binding by a factor in one species, we almost always observe binding by that factor to the orthologous sequence in the other species. Levels of binding, however, vary considerably. The magnitude and direction of the interspecies differences in binding levels of all six factors are strongly correlated, suggesting a role for chromatin or other factor-independent forces in mediating the divergence of transcription factor binding. Nonetheless, factor-specific quantitative variation in binding is common, and we show that it is driven to a large extent by the gain and loss of cognate recognition sequences for the given factor. We find only a weak correlation between binding variation and regulatory function. These data provide the first genome-wide picture of how modest levels of sequence divergence between highly morphologically similar species affect a system of coordinately acting transcription factors during animal development, and highlight the dominant role of quantitative variation in transcription factor binding over short evolutionary distances.
C1 [Bradley, Robert K.; Pachter, Lior] Univ Calif Berkeley, Dept Math, Berkeley, CA 94720 USA.
[Bradley, Robert K.; Pachter, Lior; Eisen, Michael B.] Univ Calif Berkeley, Dept Mol & Cell Biol, Berkeley, CA 94720 USA.
[Li, Xiao-Yong; Eisen, Michael B.] Univ Calif Berkeley, Howard Hughes Med Inst, Berkeley, CA 94720 USA.
[Li, Xiao-Yong; Davidson, Stuart; Chu, Hou Cheng; Biggin, Mark D.; Eisen, Michael B.] Ernest Orlando Lawrence Berkeley Natl Lab, Genom Div, Berkeley, CA USA.
[Trapnell, Cole] Univ Maryland, Ctr Bioinformat & Computat Biol, College Pk, MD 20742 USA.
[Tonkin, Leath A.; Eisen, Michael B.] Univ Calif Berkeley, Calif Inst Quantitat Biosci, Berkeley, CA 94720 USA.
[Tonkin, Leath A.] Univ Calif Berkeley, Vincent J Coates Genome Sequencing Lab, Berkeley, CA 94720 USA.
RP Bradley, RK (reprint author), Univ Calif Berkeley, Dept Math, Berkeley, CA 94720 USA.
EM mbeisen@lbl.gov
OI Eisen, Michael/0000-0002-7528-738X; Bradley, Robert/0000-0002-8046-1063
FU Howard Hughes Medical Institute; National Institutes of Health (NIH)
[GM704403, HG002779]; Department of Energy [DE-AC02-05CH11231]
FX Funding: Experimental work described here was supported by a Howard
Hughes Medical Institute Investigator award to MBE and by National
Institutes of Health (NIH) grant GM704403 to MBE and MDB. Computational
analyses were supported in by NIH grant HG002779 to MBE. Work at
Lawrence Berkeley National Laboratory was conducted under Department of
Energy contract DE-AC02-05CH11231. The funders had no role in study
design, data collection and analysis, decision to publish, or
preparation of the manuscript.
NR 38
TC 112
Z9 112
U1 2
U2 13
PU PUBLIC LIBRARY SCIENCE
PI SAN FRANCISCO
PA 1160 BATTERY STREET, STE 100, SAN FRANCISCO, CA 94111 USA
SN 1545-7885
J9 PLOS BIOL
JI PLoS. Biol.
PD MAR
PY 2010
VL 8
IS 3
AR e1000343
DI 10.1371/journal.pbio.1000343
PG 16
WC Biochemistry & Molecular Biology; Biology
SC Biochemistry & Molecular Biology; Life Sciences & Biomedicine - Other
Topics
GA 602GB
UT WOS:000278125400018
PM 20351773
ER
PT J
AU Andrews, SS
Addy, NJ
Brent, R
Arkin, AP
AF Andrews, Steven S.
Addy, Nathan J.
Brent, Roger
Arkin, Adam P.
TI Detailed Simulations of Cell Biology with Smoldyn 2.1
SO PLOS COMPUTATIONAL BIOLOGY
LA English
DT Article
ID REACTION-DIFFUSION PROCESSES; EXACT STOCHASTIC SIMULATION;
SACCHAROMYCES-CEREVISIAE; ESCHERICHIA-COLI; BACTERIAL CHEMOTAXIS;
CHEMICAL-REACTIONS; MATING PARTNERS; PROTEIN; CYTOPLASM; SYSTEMS
AB Most cellular processes depend on intracellular locations and random collisions of individual protein molecules. To model these processes, we developed algorithms to simulate the diffusion, membrane interactions, and reactions of individual molecules, and implemented these in the Smoldyn program. Compared to the popular MCell and ChemCell simulators, we found that Smoldyn was in many cases more accurate, more computationally efficient, and easier to use. Using Smoldyn, we modeled pheromone response system signaling among yeast cells of opposite mating type. This model showed that secreted Bar1 protease might help a cell identify the fittest mating partner by sharpening the pheromone concentration gradient. This model involved about 200,000 protein molecules, about 7000 cubic microns of volume, and about 75 minutes of simulated time; it took about 10 hours to run. Over the next several years, as faster computers become available, Smoldyn will allow researchers to model and explore systems the size of entire bacterial and smaller eukaryotic cells.
C1 [Andrews, Steven S.; Arkin, Adam P.] Univ Calif Berkeley, Lawrence Berkeley Lab, Phys Biosci Div, Berkeley, CA 94720 USA.
[Andrews, Steven S.] Tata Inst Fundamental Res, Natl Ctr Biol Sci, Bangalore, Karnataka, India.
[Andrews, Steven S.; Addy, Nathan J.; Brent, Roger] Inst Mol Sci, Berkeley, CA USA.
[Arkin, Adam P.] Univ Calif Berkeley, Howard Hughes Med Inst, Berkeley, CA 94720 USA.
[Arkin, Adam P.] Univ Calif Berkeley, Dept Bioengn, Berkeley, CA 94720 USA.
RP Andrews, SS (reprint author), Fred Hutchinson Canc Res Ctr, Div Basic Sci, 1124 Columbia St, Seattle, WA 98104 USA.
EM sandrews@fhcrc.org
RI Arkin, Adam/A-6751-2008
OI Arkin, Adam/0000-0002-4999-2931
FU NSF; U.S. Department of Energy, Office of Science, Office of Biological
and Environmental Research Genomics [DE-AC02-05CH11231]; GTL;
Computational Research Laboratories (Pune, India); NHGRI; MITRE Corp.
FX This work was funded by an NSF post-doctoral fellowship in Biological
Informatics awarded to SSA; contract DE-AC02-05CH11231 from the U.S.
Department of Energy, Office of Science, Office of Biological and
Environmental Research Genomics Program: GTL awarded to Lawrence
Berkeley National Laboratory; a grant from the Computational Research
Laboratories (Pune, India) awarded to Upinder Bhalla; and grants from
the NHGRI and MITRE Corp., awarded to RB. The funders had no role in the
study design, data collection and analysis, decision to publish, or
preparation of the manuscript.
NR 74
TC 125
Z9 125
U1 0
U2 14
PU PUBLIC LIBRARY SCIENCE
PI SAN FRANCISCO
PA 1160 BATTERY STREET, STE 100, SAN FRANCISCO, CA 94111 USA
SN 1553-7358
J9 PLOS COMPUT BIOL
JI PLoS Comput. Biol.
PD MAR
PY 2010
VL 6
IS 3
AR e1000705
DI 10.1371/journal.pcbi.1000705
PG 10
WC Biochemical Research Methods; Mathematical & Computational Biology
SC Biochemistry & Molecular Biology; Mathematical & Computational Biology
GA 602FZ
UT WOS:000278125200013
PM 20300644
ER
PT J
AU Rasmussen, L
Erickson, CJ
Meixler, LD
Ascione, G
Gentile, CA
Tilson, C
Abelev, E
AF Rasmussen, Lenore
Erickson, Carl J.
Meixler, Lewis D.
Ascione, George
Gentile, Charles A.
Tilson, Carl
Abelev, Esta
TI Considerations for contractile electroactive polymeric materials and
actuators
SO POLYMER INTERNATIONAL
LA English
DT Article
DE electroactive; EAP; artificial muscle; plasma treatment; actuator
ID FIELD
AB Ras Labs produces electroactive polymer (EAP)-based materials and actuators that bend, swell, ripple and now contract (new development) with low electric input. This is an important attribute because of the ability of contraction to produce life-like motion. The mechanism of contraction is not well understood. Radionuclide-labeled experiments were conducted to follow the movement of electrolytes and water in these EAPs when activated. Extreme temperature experiments were performed on the contractile EAPs with very favorable results. One of the biggest challenges in developing these actuators, however, is the electrode-EAP interface because of the pronounced movement of the EAP. Plasma treatments of metallic electrodes were investigated in order to improve the attachment of the embedded electrodes to the EAP material. Surface analysis, adhesive testing and mechanical testing were performed to test metal surfaces and metal-polymer interfaces. Nitrogen plasma treatment of titanium produced a strong metal-polymer interface; however, oxygen plasma treatment of both stainless steel and titanium produced even stronger metal-polymer interfaces. Plasma treatment of the electrodes allows for the embedded electrodes and the EAP material of the actuator to work and move as a unit, with no detachment, by significantly improving the metal-polymer interface. (C) 2010 Society of Chemical Industry
C1 [Rasmussen, Lenore; Erickson, Carl J.] Ras Labs LLC, Intelligent Mat Prosthet & Automat, Hillsborough, NJ 08844 USA.
[Meixler, Lewis D.; Ascione, George; Gentile, Charles A.; Tilson, Carl] Princeton Plasma Phys Lab, Princeton, NJ 08545 USA.
[Abelev, Esta] Princeton Univ, Dept Chem, Frick Lab, Princeton, NJ 08544 USA.
RP Rasmussen, L (reprint author), Ras Labs LLC, Intelligent Mat Prosthet & Automat, 120 Stryker Lane, Hillsborough, NJ 08844 USA.
EM raslabs@comcast.net
FU Department of Energy, US DOE [DE-AC02-CH0911466]
FX This work was supported in part by the Department of Energy, US DOE
contract no. DE-AC02-CH0911466. We also thank Don Harper and Kimun Park
at TRI/Princeton for performing the modified T-peel tests, Prof. Stephen
L Bernasek for the use of XPS equipment and his expertise, Prof. Robert
J Cava and Anthony Williams of the Department of Chemistry's Solid State
Chemistry Laboratory at Princeton University for their help with the
extremely low-temperature experiments and Dr Jane Woodruff and Prof. Nan
Yao at the Princeton University Imaging and Analysis Center (IAC) for
performing the scanning electron microscopy.
NR 37
TC 4
Z9 4
U1 1
U2 8
PU JOHN WILEY & SONS LTD
PI CHICHESTER
PA THE ATRIUM, SOUTHERN GATE, CHICHESTER PO19 8SQ, W SUSSEX, ENGLAND
SN 0959-8103
J9 POLYM INT
JI Polym. Int.
PD MAR
PY 2010
VL 59
IS 3
SI SI
BP 290
EP 299
DI 10.1002/pi.2763
PG 10
WC Polymer Science
SC Polymer Science
GA 573SO
UT WOS:000275935400003
ER
PT J
AU Ciferno, JP
Munson, RK
Murphy, JT
LaShier, BS
AF Ciferno, J. P.
Munson, R. K.
Murphy, J. T.
LaShier, B. S.
TI Determining Carbon Capture and Sequestration's Water Demands
SO POWER
LA English
DT Article
AB The U.S. Department of Energy's National Energy Technology Laboratory is pursuing a new integrated energy-water R&D program that addresses water management issues relative to coal-fired power generation that takes into account the major impacts of CCS on water use. The goal of this research is to promote more efficient use of water in power plant operations and increase the availability of heretofore unusable waters for power plant use. Those practices can mitigate the impacts of CCS on power plant water use and allow for continued development of energy resources.
C1 [Ciferno, J. P.] US DOE, Off Coal & Power R&D, Natl Energy Technol Lab, Washington, DC 20585 USA.
RP Ciferno, JP (reprint author), US DOE, Off Coal & Power R&D, Natl Energy Technol Lab, Washington, DC 20585 USA.
EM jared.ciferno@netl.doe.gov; ronald.munson@lt.netl.doe.gov;
james.murphy@lt.netl.doe.gov; brian.lashier@ba.netl.doe.gov
NR 0
TC 0
Z9 0
U1 1
U2 2
PU TRADEFAIR GROUP
PI HOUSTON
PA 11000 RICHMOND, STE 500, HOUSTON, TX 77042 USA
SN 0032-5929
J9 POWER
JI Power
PD MAR
PY 2010
VL 154
IS 3
BP 71
EP 76
PG 6
WC Energy & Fuels
SC Energy & Fuels
GA 567YO
UT WOS:000275485400010
ER
PT J
AU Harris, SP
Gross, RE
AF Harris, Stephen P.
Gross, Robert E.
TI Validation of Spring Operated Pressure Relief Valve Time-to-Failure
SO PROCESS SAFETY PROGRESS
LA English
DT Article
DE relief valve; time-to-failure; relief maintenance; inspections
AB The Savannah River Site operates a relief valve repair shop certified by the National Board of Pressure Vessel Inspectors. Local maintenance forces perk form inspection, testing, and repair of similar to 1,200 spring-operated relief valves each year as the valves are cycled in from the field.
The Site now has over 7, 000 certified test records in the Computerized Maintenance Management System; a summary of that data is presented in this article. In previous articles, several statistical techniques were used to investigate failure on demand and failure rates including a quantal response method for predicting the probability of failure. The nonconservative failure mode is commonly termed "stuck shut",. industry defined as the valve opening at greater than or equal to 1.5 times the cold set pressure. Actual time-to-failure is typically not known, only that failure occurred some time since the last proof test.
The resulting Monte Carlo simulation in this article shows that previous conclusions on the statistical life-time predictions and failure studies were not as conservative as initially thought. Our simulations use an aging model for lift pressure increase as a function of set pressure, valve manufacturer, and time. This article attempts to answer two questions: (a) what is the predicted failure rate over the chosen maintenance/inspection interval, and (b) do we understand aging and variability sufficiently to estimate risk when basing proof test intervals on proof test results? (C) 2009 American Institute of Chemical Engineers Process Saf Prog 29: 55-59, 2010
C1 [Gross, Robert E.] Savannah River Nucl Solut, Nucl Mat Disposit, Dept Energy Savannah River Site, Aiken, SC 29808 USA.
[Harris, Stephen P.] Savannah River Natl Lab, Stat Consulting, Dept Energy Savannah River Site, Aiken, SC 29808 USA.
RP Gross, RE (reprint author), Savannah River Nucl Solut, Nucl Mat Disposit, Dept Energy Savannah River Site, Aiken, SC 29808 USA.
EM robert.gross@srs.gov
NR 8
TC 0
Z9 0
U1 0
U2 5
PU JOHN WILEY & SONS INC
PI HOBOKEN
PA 111 RIVER ST, HOBOKEN, NJ 07030 USA
SN 1066-8527
J9 PROCESS SAF PROG
JI Process Saf. Prog.
PD MAR
PY 2010
VL 29
IS 1
BP 55
EP 59
DI 10.1002/prs.10344
PG 5
WC Engineering, Chemical
SC Engineering
GA 557ZO
UT WOS:000274709800010
ER
PT J
AU Green, MA
Emery, K
Hishikawa, Y
Warta, W
AF Green, Martin A.
Emery, Keith
Hishikawa, Yoshihiro
Warta, Wilhelm
TI Solar cell efficiency tables (version 35)
SO PROGRESS IN PHOTOVOLTAICS
LA English
DT Article
DE solar cell efficiency; photovoltaic efficiency; energy conversion
efficiency
ID MULTICRYSTALLINE
AB Consolidated tables showing ail extensive listing of the highest independently confirmed efficiencies for solar cells and modules are presented. Guidelines for inclusion of results into these tables are outlined and new entries since July 2009 are reviewed. Copyright (C) 2010 John Wiley & Sons, Ltd.
C1 [Green, Martin A.] Univ New S Wales, ARC Photovolta Ctr Excellence, Sydney, NSW 2052, Australia.
[Emery, Keith] Natl Renewable Energy Lab, Golden, CO 80401 USA.
[Hishikawa, Yoshihiro] Natl Inst Adv Ind Sci & Technol, Res Ctr Photovolta RCPV, Tsukuba, Ibaraki 3058568, Japan.
[Warta, Wilhelm] Fraunhofer Inst Solar Energy Syst, Dept Solar Cells Mat & Technol, D-79110 Freiburg, Germany.
RP Green, MA (reprint author), Univ New S Wales, ARC Photovolta Ctr Excellence, Sydney, NSW 2052, Australia.
EM m.green@unsw.edu.au
NR 49
TC 172
Z9 175
U1 3
U2 40
PU JOHN WILEY & SONS LTD
PI CHICHESTER
PA THE ATRIUM, SOUTHERN GATE, CHICHESTER PO19 8SQ, W SUSSEX, ENGLAND
SN 1062-7995
J9 PROG PHOTOVOLTAICS
JI Prog. Photovoltaics
PD MAR
PY 2010
VL 18
IS 2
BP 144
EP 150
DI 10.1002/pip.974
PG 7
WC Energy & Fuels; Materials Science, Multidisciplinary; Physics, Applied
SC Energy & Fuels; Materials Science; Physics
GA 570RA
UT WOS:000275694500009
ER
PT J
AU DeBartolo, J
Hocky, G
Wilde, M
Xu, JB
Freed, KF
Sosnick, TR
AF DeBartolo, Joe
Hocky, Glen
Wilde, Michael
Xu, Jinbo
Freed, Karl F.
Sosnick, Tobin R.
TI Protein structure prediction enhanced with evolutionary diversity: SPEED
SO PROTEIN SCIENCE
LA English
DT Article
DE protein folding; multiple sequence alignment; ItFix; folding pathway;
statistical potential; Monte Carlo simulated annealing
ID MODEL QUALITY ASSESSMENT; SECONDARY STRUCTURE; PSI-ANALYSIS; SEQUENCES;
FAMILIES; DATABASE; CONFORMATION; RECOGNITION; NETWORKS; GENOMICS
AB For naturally occurring proteins, similar sequence implies similar structure. Consequently, multiple sequence alignments (MSAs) often are used in template-based modeling of protein structure and have been incorporated into fragment-based assembly methods. Our previous homology-free structure prediction study introduced an algorithm that mimics the folding pathway by coupling the formation of secondary and tertiary structure. Moves in the Monte Carlo procedure involve only a change in a single pair of phi,psi backbone dihedral angles that are obtained from a Protein Data Bank-based distribution appropriate for each amino acid, conditional on the type and conformation of the flanking residues. We improve this method by using MSAs to enrich the sampling distribution, but in a manner that does not require structural knowledge of any protein sequence (i.e., not homologous fragment insertion). In combination with other tools, including clustering and refinement, the accuracies of the predicted secondary and tertiary structures are substantially improved and a global and position-resolved measure of confidence is introduced for the accuracy of the predictions. Performance of the method in the Critical Assessment of Structure Prediction (CASP8) is discussed.
C1 [DeBartolo, Joe; Sosnick, Tobin R.] Univ Chicago, Dept Biochem & Mol Biol, Chicago, IL 60637 USA.
[Hocky, Glen; Freed, Karl F.] Univ Chicago, Dept Chem, Chicago, IL 60637 USA.
[Wilde, Michael; Freed, Karl F.; Sosnick, Tobin R.] Univ Chicago, Computat Inst, Chicago, IL 60637 USA.
[Wilde, Michael] Argonne Natl Lab, Argonne, IL 60439 USA.
[Xu, Jinbo] Toyota Technol Inst, Chicago, IL 60637 USA.
[DeBartolo, Joe; Hocky, Glen; Freed, Karl F.] Univ Chicago, James Franck Inst, Chicago, IL 60637 USA.
[Sosnick, Tobin R.] Univ Chicago, Inst Biophys Dynam, Chicago, IL 60637 USA.
RP Sosnick, TR (reprint author), Univ Chicago, Dept Biochem & Mol Biol, 920 E 57th St,GCIS W101C, Chicago, IL 60637 USA.
EM freed@uchicago.edu; trsosnic@uchicago.edu
RI Hocky, Glen/E-9412-2012
OI Hocky, Glen/0000-0002-5637-0698
FU National Institutes of Health; National Science Foundation [OCI-721939,
OCI-0944332]; National Center for Supercomputing Applications; LSU
Center for Computing Technology; Texas Advanced Computing Center; US
Department of Energy [DE-AC02-06CH11357]
FX Grant sponsor: National Institutes of Health research and training
grants; Grant sponsor: National Science Foundation, Grant number:
OCI-721939 and OCI-0944332; Grant sponsors: TeraGrid resources provided
by the National Center for Supercomputing Applications, The LSU Center
for Computing Technology, The Texas Advanced Computing Center. The
Argonne Leadership Computing Facility, The US Department of Energy:
Grant number: DE-AC02-06CH11357..
NR 41
TC 13
Z9 13
U1 0
U2 4
PU JOHN WILEY & SONS INC
PI HOBOKEN
PA 111 RIVER ST, HOBOKEN, NJ 07030 USA
SN 0961-8368
J9 PROTEIN SCI
JI Protein Sci.
PD MAR
PY 2010
VL 19
IS 3
BP 520
EP 534
DI 10.1002/pro.330
PG 15
WC Biochemistry & Molecular Biology
SC Biochemistry & Molecular Biology
GA 565FF
UT WOS:000275273900015
PM 20066664
ER
PT J
AU Ogawa, H
Qiu, Y
Philo, JS
Arakawa, T
Ogata, CM
Misono, KS
AF Ogawa, Haruo
Qiu, Yue
Philo, John S.
Arakawa, Tsutomu
Ogata, Craig M.
Misono, Kunio S.
TI Reversibly bound chloride in the atrial natriuretic peptide receptor
hormone-binding domain: Possible allosteric regulation and a conserved
structural motif for the chloride-binding site
SO PROTEIN SCIENCE
LA English
DT Article
DE atrial natriuretic peptide; receptor; natriuresis; chloride; allosteric
regulation; structural motif; X-ray crystallography; analytical
ultracentrifugation; circular dichroism; thermal unfolding
ID PARTICULATE GUANYLATE-CYCLASE; TRANSMEMBRANE SIGNAL-TRANSDUCTION;
METABOTROPIC GLUTAMATE-RECEPTOR; CONGESTIVE-HEART-FAILURE;
ANF-TRANSGENIC MICE; LIGAND-BINDING; EXTRACELLULAR DOMAIN; VASORELAXANT
ACTIVITY; ROTATION MECHANISM; SODIUM-EXCRETION
AB The binding of atrial natriuretic peptide (ANP) to its receptor requires chloride, and it is chloride concentration dependent. The extracellular domain (ECD) of the ANP receptor (ANPR) contains a chloride near the ANP-binding site, suggesting a possible regulatory role. The bound chloride, however, is completely buried in the polypeptide fold, and its functional role has remained unclear. Here, we have confirmed that chloride is necessary for ANP binding to the recombinant ECD or the full-length ANPR expressed in CHO cells. ECD without chloride (ECD(-)) did not bind ANP. Its binding activity was fully restored by bromide or chloride addition. A new Xray structure of the bromide-bound ECD is essentially identical to that of the chloride-bound ECD. Furthermore, bromide atoms are localized at the same positions as chloride atoms both in the apo and in the ANP-bound structures, indicating exchangeable and reversible halide binding. Far-UV CID and thermal unfolding data show that ECD(-) largely retains the native structure. Sedimentation equilibrium in the absence of chloride shows that ECD(-) forms a strongly associated dimer, possibly preventing the structural rearrangement of the two monomers that is necessary for ANP binding. The primary and tertiary structures of the chloride-binding site in ANPR are highly conserved among receptor-guanylate cyclases and metabotropic glutamate receptors. The chloride-dependent ANP binding, reversible chloride binding, and the highly conserved chloride-binding site motif suggest a regulatory role for the receptor bound chloride. Chloride-dependent regulation of ANPR may operate in the kidney, modulating ANP-induced natriuresis.
C1 [Ogawa, Haruo; Qiu, Yue; Misono, Kunio S.] Univ Nevada, Dept Biochem, Sch Med, Reno, NV 89557 USA.
[Philo, John S.; Arakawa, Tsutomu] Alliance Prot Labs, Thousand Oaks, CA USA.
[Ogata, Craig M.] Argonne Natl Lab, Adv Photon Source, Argonne, IL 60439 USA.
RP Misono, KS (reprint author), Univ Nevada, Dept Biochem, Sch Med, Reno, NV 89557 USA.
EM kmisono@unr.edu
RI Philo, John/A-8804-2009
OI Philo, John/0000-0003-3418-0356
FU National Heart, Lung and Blood institute [HL54329]; American Heart
Association [09GRNT2250064]
FX Grant sponsor: National Heart, Lung and Blood institute: Grant number:
HL54329; Grant sponsor: American Heart Association; Grant number:
09GRNT2250064.
NR 86
TC 15
Z9 15
U1 0
U2 1
PU JOHN WILEY & SONS INC
PI HOBOKEN
PA 111 RIVER ST, HOBOKEN, NJ 07030 USA
SN 0961-8368
J9 PROTEIN SCI
JI Protein Sci.
PD MAR
PY 2010
VL 19
IS 3
BP 544
EP 557
DI 10.1002/pro.332
PG 14
WC Biochemistry & Molecular Biology
SC Biochemistry & Molecular Biology
GA 565FF
UT WOS:000275273900017
PM 20066666
ER
PT J
AU Bernstein, GM
Bebek, C
Rhodes, J
Stoughton, C
Vanderveld, RA
Yeh, PS
AF Bernstein, Gary M.
Bebek, Chris
Rhodes, Jason
Stoughton, Chris
Vanderveld, R. Ali
Yeh, Penshu
TI Noise and Bias In Square-Root Compression Schemes
SO PUBLICATIONS OF THE ASTRONOMICAL SOCIETY OF THE PACIFIC
LA English
DT Article
ID DARK ENERGY; INFORMATION
AB We investigate data compression schemes for proposed all-sky diffraction-limited visible/NIR sky surveys aimed at the dark-energy problem. We show that lossy square-root compression to 1 bit pixel(-1) of noise, followed by standard lossless compression algorithms, reduces the images to 2.5-4 bits pixel(-1), depending primarily upon the level of cosmic-ray contamination of the images. Compression to this level adds noise equivalent to <= 10% penalty in observing time. We derive an analytic correction to flux biases inherent to the square-root compression scheme. Numerical tests on simple galaxy models confirm that galaxy fluxes and shapes are measured with systematic biases. less than or similar to 10(-4) induced by the compression scheme, well below the requirements of supernova and weak gravitational lensing dark-energy experiments. In a related investigation, Vanderveld and coworkers bound the shape biases using realistic simulated images of the high-Galactic-latitude sky. The square-root preprocessing step has advantages over simple (linear) decimation when there are many bright objects or cosmic rays in the field, or when the background level will vary.
C1 [Bernstein, Gary M.] Univ Penn, Dept Astron & Astrophys, Philadelphia, PA 19104 USA.
[Bebek, Chris] Lawrence Berkeley Natl Lab, Berkeley, CA 94720 USA.
[Rhodes, Jason; Vanderveld, R. Ali] CALTECH, Jet Prop Lab, Pasadena, CA 91109 USA.
[Rhodes, Jason; Vanderveld, R. Ali] CALTECH, Pasadena, CA 91125 USA.
[Stoughton, Chris] Fermilab Natl Accelerator Lab, Batavia, IL 60150 USA.
[Yeh, Penshu] Goddard Space Flight Ctr, Greenbelt, MD 20771 USA.
RP Bernstein, GM (reprint author), Univ Penn, Dept Astron & Astrophys, Philadelphia, PA 19104 USA.
EM garyb@physics.upenn.edu
FU JPL's Research and Technology Development Funds; NSF [AST-0607667]; US
Department of Energy (DOE) [DE-FG02-95ER40893]; Director, Office of
Science, Office of High Energy Physics, of the DOE [DE-AC02-05CH11231];
Fermi Research Alliance, LLC [DE-AC02-07CH11359]
FX The work of J. R. and R. A. V. was carried out at the Jet Propulsion
Laboratory, California Institute of Technology, under a contract with
NASA, and was funded by JPL's Research and Technology Development Funds.
G. B. is supported by grant AST-0607667 from the NSF and the US
Department of Energy (DOE) grant DE-FG02-95ER40893. C. B. is supported
by the Director, Office of Science, Office of High Energy Physics, of
the DOE under grant DE-AC02-05CH11231. Fermilab is operated by Fermi
Research Alliance, LLC under DOE grant DE-AC02-07CH11359.
NR 19
TC 3
Z9 3
U1 0
U2 0
PU UNIV CHICAGO PRESS
PI CHICAGO
PA 1427 E 60TH ST, CHICAGO, IL 60637-2954 USA
SN 0004-6280
J9 PUBL ASTRON SOC PAC
JI Publ. Astron. Soc. Pac.
PD MAR
PY 2010
VL 122
IS 889
BP 336
EP 346
PG 11
WC Astronomy & Astrophysics
SC Astronomy & Astrophysics
GA 563KF
UT WOS:000275129700007
ER
PT J
AU Anderson, PM
Lozhkin, AV
Solomatkina, TB
Brown, TA
AF Anderson, Patricia M.
Lozhkin, Anatoly V.
Solomatkina, Tatiana B.
Brown, Thomas A.
TI Paleoclimatic implications of glacial and postglacial refugia for Pinus
pumila in western Beringia
SO QUATERNARY RESEARCH
LA English
DT Article
DE Refugium; Seasonality; Pollen; Northeastern Siberia; Beringia; Late
Quaternary
ID HOLOCENE CLIMATIC CHANGES; PAST 21,000 YEARS; NORTHEASTERN SIBERIA;
POLLEN DATA; SIMULATIONS; VEGETATION; RECORD; TREES; EAST;
PALEOENVIRONMENTS
AB Palynological results from Julietta Lake Currently provide the most direct evidence to support the existence of a glacial refugium for Pinus pumila in mountains of southwestern Beringia. Both percentages and accumulation rates indicate the evergreen shrub survived until at least similar to 19,000 (14)C yr BP in the Upper Kolyma region. Percentage data suggest numbers dwindled into the late glaciation, whereas pollen accumulation rates point towards a more rapid demise shortly after similar to 19,000 (14)C yr BP. Pinus pumila did not re-establish in any great numbers until similar to 81 00 (14)C yr BP, despite the local presence similar to 9800 (14)C yr BP of Larix dahurica, which shares similar Summer temperature requirements. The postglacial thermal maximum (in Beringia similar to 11,000-9000 (14)C yr BP) provided Pinus pumila shrubs with equally harsh albeit different conditions for survival than those present during the LGM. Regional records indicate that in this time of maximum Warmth Pinus pumila likely sheltered in a second, lower-elevation refugium. Paleoclimatic models and modern ecology suggest that shifts in the nature of seasonal transitions and not only seasonal extremes have played important roles in the history of Pinus pumila over the last similar to 21,000 (14)C yr BP. (C) 2009 University of Washington. Published by Elsevier Inc. All rights reserved.
C1 [Anderson, Patricia M.] Univ Washington, Quaternary Res Ctr, Seattle, WA 98195 USA.
[Anderson, Patricia M.] Univ Washington, Dept Earth & Space Sci, Seattle, WA 98195 USA.
[Lozhkin, Anatoly V.; Solomatkina, Tatiana B.] Russian Acad Sci, NE Interdisciplinary Sci Res Inst, Far E Branch, Magadan 685000, Russia.
[Brown, Thomas A.] Lawrence Livermore Natl Lab, Ctr Accelerator Mass Spectrometry, Livermore, CA 94550 USA.
RP Anderson, PM (reprint author), Univ Washington, Quaternary Res Ctr, Box 351310, Seattle, WA 98195 USA.
EM pata@u.washington.edu
FU National Science Foundation [ATM-00-117406]; Far East Branch, Russian
Academy of Sciences [09-I-OH3-11]; Russian Foundation for Fundamental
Research [06-05-64129, 07-05-00610]; University of California, Lawrence
Livermore National Laboratory [W-7405-Eng-48]
FX We thank the Omsukchan Canada-Russia Mining Company for allowing us
access to Julietta Lake. We also thank Dr. J.S. Carrion and an unnamed
reviewer for helpful comments for improving the manuscript. Support for
this work came from National Science Foundation (ATM-00-117406), the Far
East Branch, Russian Academy of Sciences (09-I-OH3-11) and the Russian
Foundation for Fundamental Research (06-05-64129; 07-05-00610). This
work was performed under the auspices of the U.S. Department of Energy
by the University of California, Lawrence Livermore National Laboratory
under contract No. W-7405-Eng-48.
NR 60
TC 14
Z9 15
U1 0
U2 6
PU ACADEMIC PRESS INC ELSEVIER SCIENCE
PI SAN DIEGO
PA 525 B ST, STE 1900, SAN DIEGO, CA 92101-4495 USA
SN 0033-5894
J9 QUATERNARY RES
JI Quat. Res.
PD MAR
PY 2010
VL 73
IS 2
BP 269
EP 276
DI 10.1016/j.yqres.2009.09.008
PG 8
WC Geography, Physical; Geosciences, Multidisciplinary
SC Physical Geography; Geology
GA 564VS
UT WOS:000275246700012
ER
PT J
AU Wisniewski, D
Wojtowicz, AJ
Boatner, LA
AF Wisniewski, D.
Wojtowicz, A. J.
Boatner, L. A.
TI Properties of Ce-activated alkali-lutetium double phosphate
scintillators
SO RADIATION MEASUREMENTS
LA English
DT Article; Proceedings Paper
CT 7th European Conference on Luminescent Detectors and Transformers of
Ionizing Radiation
CY JUL 12-17, 2009
CL Cracow, POLAND
SP Polish Acad Sci, Inst Nucl Phys
DE Scintillator; Scintillation; Ce activator
AB The scintillation properties of Ce-activated alkali-lutetium double phosphate single crystals that vary with the alkali ion type and activation level are summarized and compared. The materials investigated here have been identified as fast and efficient scintillators for the detection of X-ray and 7 radiation, and in case of Li(3)Lu(PO(4))(2):Ce, for thermal neutron detection as well. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Wisniewski, D.; Wojtowicz, A. J.] Nicholas Copernicus Univ, Inst Phys, PL-87100 Torun, Poland.
[Boatner, L. A.] Oak Ridge Natl Lab, Ctr Radiat Detect Mat & Syst, Oak Ridge, TN 37831 USA.
RP Wisniewski, D (reprint author), Nicholas Copernicus Univ, Inst Phys, Grudziadzka 5, PL-87100 Torun, Poland.
EM darekw@fizyka.umk.pl
RI Wojtowicz, Andrzej/D-7418-2014; Boatner, Lynn/I-6428-2013
OI Wojtowicz, Andrzej/0000-0001-5788-5987; Boatner,
Lynn/0000-0002-0235-7594
NR 8
TC 2
Z9 2
U1 0
U2 4
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 1350-4487
J9 RADIAT MEAS
JI Radiat. Meas.
PD MAR-JUL
PY 2010
VL 45
IS 3-6
SI SI
BP 400
EP 402
DI 10.1016/j.radmeas.2009.10.019
PG 3
WC Nuclear Science & Technology
SC Nuclear Science & Technology
GA 616BQ
UT WOS:000279183200044
ER
PT J
AU Jacobsohn, LG
Tornga, SC
Bennett, BL
Muenchausen, RE
Ugurlu, O
Tseng, TK
Choi, J
Holloway, PH
AF Jacobsohn, L. G.
Tornga, S. C.
Bennett, B. L.
Muenchausen, R. E.
Ugurlu, O.
Tseng, T. -K.
Choi, J.
Holloway, P. H.
TI Annealing effects on the photoluminescence yield of Gd2O3:Eu
nanoparticles produced by solution combustion synthesis
SO RADIATION MEASUREMENTS
LA English
DT Article; Proceedings Paper
CT 7th European Conference on Luminescent Detectors and Transformers of
Ionizing Radiation
CY JUL 12-17, 2009
CL Cracow, POLAND
SP Polish Acad Sci, Inst Nucl Phys
DE Gd2O3:Eu; Nanoparticle; Combustion; Annealing; Crystallinity;
Photoluminescence; Quenching; Lifetime
ID ENERGY-TRANSFER; LUMINESCENCE; NANOPHOSPHOR; NANOCRYSTALS; SITES
AB Post-synthesis annealing is commonly required to achieve intense luminescence from nanoparticles synthesized by means of the solution combustion synthesis (SCS) method. We carried out investigation to gain insight on the underpinning mechanisms related to this enhancement. Gd2O3:Eu nanoparticles were prepared by SCS and characterized in their structure, crystallinity, crystallite size, photoluminescence (PL) and PL lifetime. After synthesis, samples were calcined at 500 degrees C for 4 h to eliminate organic residues, and annealed in air at 1000 degrees C for up to 180 min. The fast increase of PL intensity in the first similar to 15 min of annealing is understood by the decrease of the probability of non-radiative recombination through the elimination of quenching defects. This is in agreement with increasing crystallinity, as determined by the absolute intensity of the (222) and (440) diffraction peaks as a function of annealing time. The systematic measurements of crystallinity, crystallite size, PL intensity and lifetime as a function of annealing time carried out in this work supports the assignment of a major role to crystallization and the elimination of structural disorder on PL yield of SCS-prepared materials. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Jacobsohn, L. G.] Clemson Univ, Sch Mat Sci & Engn, Ctr Opt Mat Sci & Engn Technol, Anderson, SC 29625 USA.
[Jacobsohn, L. G.; Tornga, S. C.; Bennett, B. L.; Muenchausen, R. E.] Los Alamos Natl Lab, Div Mat Sci & Technol, Los Alamos, NM 87545 USA.
[Ugurlu, O.] Univ Minnesota, Inst Technol, Characterizat Facil, Minneapolis, MN 55455 USA.
[Tseng, T. -K.; Choi, J.; Holloway, P. H.] Univ Florida, Dept Mat Sci & Engn, Gainesville, FL 32611 USA.
RP Jacobsohn, LG (reprint author), Clemson Univ, Sch Mat Sci & Engn, Ctr Opt Mat Sci & Engn Technol, 91 Technol Dr,AMRL Bldg, Anderson, SC 29625 USA.
EM luiz@clemson.edu
OI Jacobsohn, Luiz/0000-0001-8991-3903
NR 15
TC 10
Z9 10
U1 1
U2 5
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 1350-4487
J9 RADIAT MEAS
JI Radiat. Meas.
PD MAR-JUL
PY 2010
VL 45
IS 3-6
SI SI
BP 611
EP 614
DI 10.1016/j.radmeas.2009.11.019
PG 4
WC Nuclear Science & Technology
SC Nuclear Science & Technology
GA 616BQ
UT WOS:000279183200104
ER
PT J
AU Hazelton, JR
Yukihara, EG
Jacobsohn, LG
Blair, MW
Muenchausen, R
AF Hazelton, J. R.
Yukihara, E. G.
Jacobsohn, L. G.
Blair, M. W.
Muenchausen, R.
TI Feasibility of using oxyorthosilicates as optically stimulated
luminescence detectors
SO RADIATION MEASUREMENTS
LA English
DT Article; Proceedings Paper
CT 7th European Conference on Luminescent Detectors and Transformers of
Ionizing Radiation
CY JUL 12-17, 2009
CL Cracow, POLAND
SP Polish Acad Sci, Inst Nucl Phys
DE Oxyorthosilicates; YSO; GSO; LSO; Optically stimulated luminescence; OSL
AB The goal of this study is to determine if cerium-doped oxyorthosilicate scintillators can be used as Optically Stimulated Luminescence (OSL) detectors, possibly offering alternative OSL materials as well as allowing the design of instruments combining passive (OSL) and active (scintillation) detection. The OSL of three common scintillators, Y(2)SiO(5):Ce (YSO), Gd(2)SiO(5):Ce (GSO), and Lu(2)SiO(5):Ce (LSO), were tested. The property which makes these compounds good scintillators, efficient recombination of electron-hole pairs created by ionizing radiation, should make them poor candidates for OSL materials, since OSL requires the creation of electron-hole pairs trapped separately in defects in the crystal lattice. However, defects in the crystal structure can provide a pathway for the OSL phenomenon to take place. Based on the stimulation and emission OSL spectra of the oxyorthosilicates, a CW-OSL reader was built and used to test the samples' OSL capabilities. The results showed that YSO showed promising OSL, characterized by a strong initial OSL intensity and fast OSL decay, while GSO and LSO were impractical for OSL applications due to low response and high background signal, respectively. Further characterization of YSO included the determination of the OSL dose response and the characteristics of OSL decay curves. The results are compared to carbon-doped aluminum oxide (Al(2)O(3):C), a common OSL dosimetric material. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Hazelton, J. R.; Yukihara, E. G.] Oklahoma State Univ, Dept Phys, Stillwater, OK 74078 USA.
[Jacobsohn, L. G.] Clemson Univ, Ctr Opt Mat Sci & Engn Technol, Anderson, SC 29625 USA.
[Jacobsohn, L. G.] Clemson Univ, Sch Mat Sci & Engn, Anderson, SC 29625 USA.
[Jacobsohn, L. G.; Blair, M. W.; Muenchausen, R.] Los Alamos Natl Lab, Los Alamos, NM 87545 USA.
RP Yukihara, EG (reprint author), Oklahoma State Univ, Dept Phys, 145 Phys Sci, Stillwater, OK 74078 USA.
EM eduardo.yukihara@okstate.edu
RI Yukihara, Eduardo/F-1345-2014;
OI Yukihara, Eduardo/0000-0002-4615-6698; Jacobsohn,
Luiz/0000-0001-8991-3903
NR 5
TC 3
Z9 4
U1 1
U2 4
PU PERGAMON-ELSEVIER SCIENCE LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, ENGLAND
SN 1350-4487
J9 RADIAT MEAS
JI Radiat. Meas.
PD MAR-JUL
PY 2010
VL 45
IS 3-6
SI SI
BP 681
EP 683
DI 10.1016/j.radmeas.2009.09.005
PG 3
WC Nuclear Science & Technology
SC Nuclear Science & Technology
GA 616BQ
UT WOS:000279183200123
ER
PT J
AU Olsher, RH
McLean, TD
Justus, AL
Devine, RT
Gadd, MS
AF Olsher, R. H.
McLean, T. D.
Justus, A. L.
Devine, R. T.
Gadd, M. S.
TI Personal dose equivalent conversion coefficients for neutron fluence
over the energy range of 20-250 MeV
SO RADIATION PROTECTION DOSIMETRY
LA English
DT Article
ID QUALITY FACTORS; RADIATION; AMBIENT
AB Monte Carlo simulations were performed to extend existing neutron personal dose equivalent fluence-to-dose conversion coefficients to an energy of 250 MeV. Presently, conversion coefficients, H(p,slab)(10,alpha)/Phi, are given by ICRP-74 and ICRU-57 for a range of angles of radiation incidence (alpha = 0, 15, 30, 45, 60 and 75 degrees) in the energy range from thermal to 20 MeV. Standard practice has been to base operational dose quantity calculations < 20 MeV on the kerma approximation, which assumes that charged particle secondaries are locally deposited, or at least that charged particle equilibrium exists within the tally cell volume. However, with increasing neutron energy the kerma approximation may no longer be valid for some energetic secondaries such as protons. The Los Alamos Monte Carlo radiation transport code MCNPX was used for all absorbed dose calculations. Transport models and collision-based energy deposition tallies were used for neutron energies > 20 MeV. Both light and heavy ions (HIs) (carbon, nitrogen and oxygen recoil nuclei) were transported down to a lower energy limit (1 keV for light ions and 5 MeV for HIs). Track energy below the limit was assumed to be locally deposited. For neutron tracks < 20 MeV, kerma factors were used to obtain absorbed dose. Results are presented for a discrete set of angles of incidence on an ICRU tissue slab phantom.
C1 [Olsher, R. H.; McLean, T. D.; Justus, A. L.; Devine, R. T.; Gadd, M. S.] Los Alamos Natl Lab, Hlth Phys Measurements Grp RP 2, Los Alamos, NM 87545 USA.
RP McLean, TD (reprint author), Los Alamos Natl Lab, Hlth Phys Measurements Grp RP 2, MS J573, Los Alamos, NM 87545 USA.
EM tmclean@lanl.gov
FU Los Alamos National Laboratory
FX This work was conducted under a US Government contract by Los Alamos
National Laboratory, which is operated by Los Alamos National Security,
LLC (LANS) for the US Department of Energy, National Nuclear Security
Administration. MCNPX, LAHET and LAHET Code System (LCS) are trademarks
of Los Alamos National Security, LLC.
NR 24
TC 6
Z9 6
U1 0
U2 2
PU OXFORD UNIV PRESS
PI OXFORD
PA GREAT CLARENDON ST, OXFORD OX2 6DP, ENGLAND
SN 0144-8420
J9 RADIAT PROT DOSIM
JI Radiat. Prot. Dosim.
PD MAR
PY 2010
VL 138
IS 3
BP 199
EP 204
DI 10.1093/rpd/ncp250
PG 6
WC Environmental Sciences; Public, Environmental & Occupational Health;
Nuclear Science & Technology; Radiology, Nuclear Medicine & Medical
Imaging
SC Environmental Sciences & Ecology; Public, Environmental & Occupational
Health; Nuclear Science & Technology; Radiology, Nuclear Medicine &
Medical Imaging
GA 565EE
UT WOS:000275271200001
PM 19887515
ER
PT J
AU Manabe, K
Endo, A
Eckerman, KF
AF Manabe, K.
Endo, A.
Eckerman, K. F.
TI Impact of the new nuclear decay data of ICRP publication 107 on
inhalation dose coefficients for workers
SO RADIATION PROTECTION DOSIMETRY
LA English
DT Article
AB The impact a revision of nuclear decay data had on dose coefficients was studied using data newly published in ICRP Publication 107 (ICRP 107) and existing data from ICRP Publication 38 (ICRP 38). Committed effective dose coefficients for occupational inhalation of radionuclides were calculated using two sets of decay data with the dose and risk calculation software DCAL for 90 elements, 774 nuclides and 1572 cases. The dose coefficients based on ICRP 107 increased by over 10 % compared with those based on ICRP 38 in 98 cases, and decreased by over 10 % in 54 cases. It was found that the differences in dose coefficients mainly originated from changes in the radiation energy emitted per nuclear transformation. In addition, revisions of the half-lives, radiation types and decay modes also resulted in changes in the dose coefficients.
C1 [Manabe, K.; Endo, A.] Japan Atom Energy Agcy, Tokai, Ibaraki 3191195, Japan.
[Eckerman, K. F.] Oak Ridge Natl Lab, Oak Ridge, TN 37831 USA.
RP Manabe, K (reprint author), Japan Atom Energy Agcy, 2-4 Shirakata Shirane, Tokai, Ibaraki 3191195, Japan.
EM manabe.kentaro@jaea.go.jp
NR 19
TC 0
Z9 1
U1 0
U2 2
PU OXFORD UNIV PRESS
PI OXFORD
PA GREAT CLARENDON ST, OXFORD OX2 6DP, ENGLAND
SN 0144-8420
J9 RADIAT PROT DOSIM
JI Radiat. Prot. Dosim.
PD MAR
PY 2010
VL 138
IS 3
BP 245
EP 250
DI 10.1093/rpd/ncp259
PG 6
WC Environmental Sciences; Public, Environmental & Occupational Health;
Nuclear Science & Technology; Radiology, Nuclear Medicine & Medical
Imaging
SC Environmental Sciences & Ecology; Public, Environmental & Occupational
Health; Nuclear Science & Technology; Radiology, Nuclear Medicine &
Medical Imaging
GA 565EE
UT WOS:000275271200006
PM 19914964
ER
PT J
AU Catalyurek, U
Rutt, B
Metzroth, K
Hakobyan, A
Aldemir, T
Denning, R
Dunagan, S
Kunsman, D
AF Catalyurek, Umit
Rutt, Benjamin
Metzroth, Kyle
Hakobyan, Aram
Aldemir, Tunc
Denning, Richard
Dunagan, Sean
Kunsman, David
TI Development of a code-agnostic computational infrastructure for the
dynamic generation of accident progression event trees
SO RELIABILITY ENGINEERING & SYSTEM SAFETY
LA English
DT Article
DE Accident progression event trees; Dynamic event trees; Melcor;
Probabilistic risk assessment
ID HYDROGEN COMBUSTION; STATION BLACKOUT; ALGORITHMS; MELCOR; LOADS
AB Analysis of dynamic accident progression trees (ADAPT) is a mechanized procedure for the generation of accident progression event trees. Use of ADAPT substantially reduces the manual and computational effort for Level 2 probabilistic risk assessment (PRA) of nuclear power plants; reduces the likelihood of input errors: determines the order of events dynamically; and treats accidents in a phenomenology consistent manner. ADAPT is based on the concept of dynamic event trees which use explicit modeling of the deterministic dynamic processes that take place within the plant (through system simulation codes such as MELCOR, RELAP) for the modeling of stochastic system evolution. The computational infrastructure of ADAPT is presented, along with a prototype implementation of ADAPT using MELCOR for the PRA modeling of a station blackout in a pressurized water reactor. The computational infrastructure allows for flexibility in linking with different simulation codes, parallel processing of the scenarios under consideration, on-line scenario management (initiation as well as termination) and user-friendly graphical capabilities. (C) 2009 Elsevier Ltd. All rights reserved.
C1 [Metzroth, Kyle; Hakobyan, Aram; Aldemir, Tunc; Denning, Richard] Ohio State Univ, Nucl Engn Program, Columbus, OH 43210 USA.
[Catalyurek, Umit; Rutt, Benjamin] Ohio State Univ, Dept Biomed Informat, Columbus, OH 43210 USA.
[Dunagan, Sean; Kunsman, David] Sandia Natl Labs, Livermore, CA 94550 USA.
RP Aldemir, T (reprint author), Ohio State Univ, Nucl Engn Program, Columbus, OH 43210 USA.
EM aldemir.1@osu.edu
RI Catalyurek, Umit/A-2454-2008
OI Catalyurek, Umit/0000-0002-5625-3758
FU Sandia National Laboratories (SNL)
FX The research presented in this paper was partially supported by a
contract from the Sandia National Laboratories (SNL). The information
and conclusions presented here in are those of the authors and do not
necessary represent the views or positions of the SNL. Neither the US
Government nor any agency thereof, nor any employee, makes any warranty,
expressed or implied, or assume any legal liability or responsibility
for any third party's use of this information.
NR 61
TC 19
Z9 20
U1 1
U2 8
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 0951-8320
J9 RELIAB ENG SYST SAFE
JI Reliab. Eng. Syst. Saf.
PD MAR
PY 2010
VL 95
IS 3
BP 278
EP 294
DI 10.1016/j.ress.2009.10.008
PG 17
WC Engineering, Industrial; Operations Research & Management Science
SC Engineering; Operations Research & Management Science
GA 556KX
UT WOS:000274590900014
ER
PT J
AU Tong, C
AF Tong, Charles
TI Self-validated variance-based methods for sensitivity analysis of model
outputs
SO RELIABILITY ENGINEERING & SYSTEM SAFETY
LA English
DT Article
DE Uncertainty quantification; Sensitivity analysis; Variance decomposition
AB Global sensitivity analysis (GSA) has the advantage over local sensitivity analysis in that GSA does not require strong model assumptions such as linearity or monotonicity. As a result, GSA methods such as those based on variance decomposition are well-suited to multi-physics models, which are often plagued by large nonlinearities. However, as with many other sampling-based methods, inadequate sample size can badly pollute the result accuracies. A natural remedy is to adaptively increase the sample size until sufficient accuracy is obtained. This paper proposes an iterative methodology comprising mechanisms for guiding sample size selection and self-assessing result accuracy. The elegant features in the proposed methodology are the adaptive refinement strategies for stratified designs. We first apply this iterative methodology to the design of a self-validated first-order sensitivity analysis algorithm. We also extend this methodology to propose a self-validated second-order sensitivity analysis algorithm based on refining replicated orthogonal array designs. Several numerical experiments are given to demonstrate the effectiveness of these methods. (C) 2009 Elsevier Ltd. All rights reserved.
C1 Lawrence Livermore Natl Lab, Ctr Appl Sci Comp, Livermore, CA 94551 USA.
RP Tong, C (reprint author), Lawrence Livermore Natl Lab, Ctr Appl Sci Comp, Livermore, CA 94551 USA.
EM chtong@llnl.gov
FU U.S. Department of Energy Lawrence Livermore National Laboratory
[DE-AC52-07NA27344]
FX This work was performed under the auspices of the U.S. Department of
Energy Lawrence Livermore National Laboratory under Contract no.
DE-AC52-07NA27344.
NR 14
TC 13
Z9 15
U1 1
U2 4
PU ELSEVIER SCI LTD
PI OXFORD
PA THE BOULEVARD, LANGFORD LANE, KIDLINGTON, OXFORD OX5 1GB, OXON, ENGLAND
SN 0951-8320
J9 RELIAB ENG SYST SAFE
JI Reliab. Eng. Syst. Saf.
PD MAR
PY 2010
VL 95
IS 3
BP 301
EP 309
DI 10.1016/j.ress.2009.10.003
PG 9
WC Engineering, Industrial; Operations Research & Management Science
SC Engineering; Operations Research & Management Science
GA 556KX
UT WOS:000274590900016
ER
PT J
AU Werner, K
Firsing, SL
AF Werner, Karen
Firsing, Stephen L., III
TI Actions Speak Louder Than Words
SO RESEARCH QUARTERLY FOR EXERCISE AND SPORT
LA English
DT Meeting Abstract
C1 [Werner, Karen] Oak Ridge Inst Sci & Educ, Oak Ridge, TN 37830 USA.
[Firsing, Stephen L., III] Univ Alabama, Tuscaloosa, AL 35487 USA.
EM kawerner18@gmail.com
NR 0
TC 0
Z9 0
U1 0
U2 1
PU AMER ALLIANCE HEALTH PHYS EDUC REC & DANCE
PI RESTON
PA 1900 ASSOCIATION DRIVE, RESTON, VA 22091 USA
SN 0270-1367
J9 RES Q EXERCISE SPORT
JI Res. Q. Exerc. Sport
PD MAR
PY 2010
VL 81
IS 1
SU S
BP 5
EP 5
PG 1
WC Hospitality, Leisure, Sport & Tourism; Psychology, Applied; Psychology;
Sport Sciences
SC Social Sciences - Other Topics; Psychology; Sport Sciences
GA 567HK
UT WOS:000275436700016
ER
PT J
AU Celliers, PM
Erskine, DJ
Sorce, CM
Braun, DG
Landen, OL
Collins, GW
AF Celliers, P. M.
Erskine, D. J.
Sorce, C. M.
Braun, D. G.
Landen, O. L.
Collins, G. W.
TI A high-resolution two-dimensional imaging velocimeter
SO REVIEW OF SCIENTIFIC INSTRUMENTS
LA English
DT Article
DE interferometers; plasma inertial confinement; shock waves; velocimeters
ID VISAR; INTERFEROMETER; IGNITION; AIR
AB Velocity interferometers are typically used to measure velocities of surfaces at a single point or along an imaged line as a function of time. We describe an optical arrangement that enables high-resolution measurements of the two-dimensional velocity field across a shock front or shocked interface. The technique is employed to measure microscopic fluctuations in shock fronts that have passed through materials being considered as ablators for indirect-drive inertial confinement fusion. With picosecond time resolution the instrument captures velocity modes with wavelengths as short as 2.5 mu m at a resolution of similar to 10 m/s rms on velocity fields averaging many km/s over an 800 mu m field of view.
C1 [Celliers, P. M.; Erskine, D. J.; Sorce, C. M.; Braun, D. G.; Landen, O. L.; Collins, G. W.] Lawrence Livermore Natl Lab, Livermore, CA 94551 USA.
RP Celliers, PM (reprint author), Lawrence Livermore Natl Lab, POB 808, Livermore, CA 94551 USA.
EM celliers1@llnl.gov
RI Collins, Gilbert/G-1009-2011
NR 21
TC 17
Z9 20
U1 2
U2 21
PU AMER INST PHYSICS
PI MELVILLE
PA 1305 WALT WHITMAN RD, STE 300, MELVILLE, NY 11747-4501 USA
SN 0034-6748
EI 1089-7623
J9 REV SCI INSTRUM
JI Rev. Sci. Instrum.
PD MAR
PY 2010
VL 81
IS 3
AR 035101
DI 10.1063/1.3310076
PG 5
WC Instruments & Instrumentation; Physics, Applied
SC Instruments & Instrumentation; Physics
GA 577GJ
UT WOS:000276210200055
PM 20370207
ER
PT J
AU Godeke, A
Dietderich, DR
Joseph, JM
Lizarazo, J
Prestemon, SO
Miller, G
Weijers, HW
AF Godeke, A.
Dietderich, D. R.
Joseph, J. M.
Lizarazo, J.
Prestemon, S. O.
Miller, G.
Weijers, H. W.
TI A superconducting transformer system for high current cable testing
SO REVIEW OF SCIENTIFIC INSTRUMENTS
LA English
DT Article
DE DC transformers; power cable testing; superconducting cables
AB This article describes the development of a direct-current (dc) superconducting transformer system for the high current test of superconducting cables. The transformer consists of a core-free 10 464 turn primary solenoid which is enclosed by a 6.5 turn secondary. The transformer is designed to deliver a 50 kA dc secondary current at a dc primary current of about 50 A. The secondary current is measured inductively using two toroidal-wound Rogowski coils. The Rogowski coil signal is digitally integrated, resulting in a voltage signal that is proportional to the secondary current. This voltage signal is used to control the secondary current using a feedback loop which automatically compensates for resistive losses in the splices to the superconducting cable samples that are connected to the secondary. The system has been commissioned up to 28 kA secondary current. The reproducibility in the secondary current measurement is better than 0.05% for the relevant current range up to 25 kA. The drift in the secondary current, which results from drift in the digital integrator, is estimated to be below 0.5 A/min. The system's performance is further demonstrated through a voltage-current measurement on a superconducting cable sample at 11 T background magnetic field. The superconducting transformer system enables fast, high resolution, economic, and safe tests of the critical current of superconducting cable samples.
C1 [Godeke, A.; Dietderich, D. R.; Joseph, J. M.; Lizarazo, J.; Prestemon, S. O.] Univ Calif Berkeley, Lawrence Berkeley Lab, Berkeley, CA 94720 USA.
[Miller, G.; Weijers, H. W.] Natl High Magnet Field Lab, Tallahassee, FL 32310 USA.
RP Godeke, A (reprint author), Univ Calif Berkeley, Lawrence Berkeley Lab, 1 Cyclotron Rd, Berkeley, CA 94720 USA.
EM agodeke@lbl.gov
NR 9
TC 6
Z9 6
U1 0
U2 10
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 0034-6748
J9 REV SCI INSTRUM
JI Rev. Sci. Instrum.
PD MAR
PY 2010
VL 81
IS 3
AR 035107
DI 10.1063/1.3340888
PG 9
WC Instruments & Instrumentation; Physics, Applied
SC Instruments & Instrumentation; Physics
GA 577GJ
UT WOS:000276210200061
PM 20370213
ER
PT J
AU Iverson, BD
Blendell, JE
Garimella, SV
AF Iverson, Brian D.
Blendell, John E.
Garimella, Suresh V.
TI Note: Thermal analog to atomic force microscopy force-displacement
measurements for nanoscale interfacial contact resistance
SO REVIEW OF SCIENTIFIC INSTRUMENTS
LA English
DT Article
DE atomic force microscopy; contact resistance; elemental semiconductors;
heat transfer; interface structure; nanostructured materials; polymer
films; silicon; thermal diffusion
ID HEATERS
AB Thermal diffusion measurements on polymethylmethacrylate-coated Si substrates using heated atomic force microscopy tips were performed to determine the contact resistance between an organic thin film and Si. The measurement methodology presented demonstrates how the thermal contrast signal obtained during a force-displacement ramp is used to quantify the resistance to heat transfer through an internal interface. The results also delineate the interrogation thickness beyond which thermal diffusion in the organic thin film is not affected appreciably by the underlying substrate.
C1 [Iverson, Brian D.; Blendell, John E.; Garimella, Suresh V.] Purdue Univ, Birck Nanotechnol Ctr, W Lafayette, IN 47907 USA.
[Iverson, Brian D.] Sandia Natl Labs, Albuquerque, NM 87185 USA.
[Iverson, Brian D.; Garimella, Suresh V.] Purdue Univ, Sch Mech Engn, W Lafayette, IN 47907 USA.
[Blendell, John E.] Purdue Univ, Sch Mat Engn, W Lafayette, IN 47907 USA.
RP Blendell, JE (reprint author), Purdue Univ, Birck Nanotechnol Ctr, W Lafayette, IN 47907 USA.
EM blendell@purdue.edu
RI Garimella, Suresh/A-1286-2013
OI Garimella, Suresh/0000-0003-1421-2912
NR 14
TC 3
Z9 3
U1 0
U2 4
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 0034-6748
J9 REV SCI INSTRUM
JI Rev. Sci. Instrum.
PD MAR
PY 2010
VL 81
IS 3
AR 036111
DI 10.1063/1.3361157
PG 3
WC Instruments & Instrumentation; Physics, Applied
SC Instruments & Instrumentation; Physics
GA 577GJ
UT WOS:000276210200082
PM 20370234
ER
PT J
AU Ko, J
Scott, S
Shiraiwa, S
Greenwald, M
Parker, R
Wallace, G
AF Ko, Jinseok
Scott, Steve
Shiraiwa, Syun'ichi
Greenwald, Martin
Parker, Ronald
Wallace, Gregory
TI Intrashot motional Stark effect calibration technique for lower hybrid
current drive experiments
SO REVIEW OF SCIENTIFIC INSTRUMENTS
LA English
DT Article
DE birefringence; calibration; plasma diagnostics; plasma hybrid waves;
plasma toroidal confinement; plasma transport processes; Stark effect;
Tokamak devices
ID ALCATOR C-MOD; TOKAMAKS; PROFILE
AB The spurious drift in pitch angle of order several degrees measured by the motional Stark effect (MSE) diagnostic in the Alcator C-Mod tokamak over the course of an experimental run day has precluded direct utilization of independent absolute calibrations. Recently, the underlying cause of the drift has been identified as thermal stress-induced birefringence in a set of in-vessel lenses. The shot-to-shot drift can be avoided by using MSE to measure only the change in pitch angle between a reference phase and a phase of physical interest within a single plasma discharge. This intrashot calibration technique has been applied to the lower hybrid current drive (LHCD) experiments and the measured current profiles qualitatively demonstrate several predictions of LHCD theory such as an inverse dependence of current drive efficiency on the parallel refractive index and the presence of off-axis current drive.
C1 [Ko, Jinseok; Shiraiwa, Syun'ichi; Greenwald, Martin; Parker, Ronald; Wallace, Gregory] MIT, Plasma Sci & Fus Ctr, Cambridge, MA 02139 USA.
[Scott, Steve] Princeton Plasma Phys Lab, Princeton, NJ 08543 USA.
RP Ko, J (reprint author), Univ Wisconsin, Madison, WI 53706 USA.
OI Greenwald, Martin/0000-0002-4438-729X
FU U.S. Department of Energy [DE-FC02-99ER54512, DE-AC02-09CH11466]
FX This work was supported by the U.S. Department of Energy under Contract
Nos. DE-FC02-99ER54512 and DE-AC02-09CH11466.
NR 18
TC 9
Z9 9
U1 0
U2 4
PU AMER INST PHYSICS
PI MELVILLE
PA 1305 WALT WHITMAN RD, STE 300, MELVILLE, NY 11747-4501 USA
SN 0034-6748
EI 1089-7623
J9 REV SCI INSTRUM
JI Rev. Sci. Instrum.
PD MAR
PY 2010
VL 81
IS 3
AR 033505
DI 10.1063/1.3327821
PG 6
WC Instruments & Instrumentation; Physics, Applied
SC Instruments & Instrumentation; Physics
GA 577GJ
UT WOS:000276210200023
PM 20370176
ER
PT J
AU Li, JV
Johnston, SW
Yan, YF
Levi, DH
AF Li, Jian V.
Johnston, Steven W.
Yan, Yanfa
Levi, Dean H.
TI Measuring temperature-dependent activation energy in thermally activated
processes: A 2D Arrhenius plot method
SO REVIEW OF SCIENTIFIC INSTRUMENTS
LA English
DT Article
DE copper compounds; deep levels; energy measurement; gallium compounds;
indium compounds; solar cells; ternary semiconductors
ID GLASS-TRANSITION; SPECTROSCOPY; SEMICONDUCTORS; ENTROPY; GAAS
AB Thermally activated processes are characterized by two key quantities, activation energy (E(a)) and pre-exponential factor (nu(0)), which may be temperature dependent. The accurate measurement of E(a), nu(0), and their temperature dependence is critical for understanding the thermal activation mechanisms of non-Arrhenius processes. However, the classic 1D Arrhenius plot-based methods cannot unambiguously measure E(a), nu(0), and their temperature dependence due to the mathematical impossibility of resolving two unknown 1D arrays from one 1D experimental data array. Here, we propose a 2D Arrhenius plot method to solve this fundamental problem. Our approach measures E(a) at any temperature from matching the first and second moments of the data calculated with respect to temperature and rate in the 2D temperature-rate plane, and therefore is able to unambiguously solve E(a), nu(0), and their temperature dependence. The case study of deep level emission in a Cu(In,Ga)Se(2) solar cell using the 2D Arrhenius plot method reveals clear temperature dependent behavior of E(a) and nu(0), which has not been observable by its 1D predecessors.
C1 [Li, Jian V.; Johnston, Steven W.; Yan, Yanfa; Levi, Dean H.] Natl Renewable Energy Lab, Golden, CO 80401 USA.
RP Li, JV (reprint author), Natl Renewable Energy Lab, Golden, CO 80401 USA.
EM jian.li@nrel.gov
RI Li, Jian/B-1627-2016
NR 16
TC 11
Z9 12
U1 2
U2 11
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 0034-6748
J9 REV SCI INSTRUM
JI Rev. Sci. Instrum.
PD MAR
PY 2010
VL 81
IS 3
AR 033910
DI 10.1063/1.3361130
PG 5
WC Instruments & Instrumentation; Physics, Applied
SC Instruments & Instrumentation; Physics
GA 577GJ
UT WOS:000276210200043
PM 20370195
ER
PT J
AU Plateau, GR
Matlis, NH
Geddes, CGR
Gonsalves, AJ
Shiraishi, S
Lin, C
van Mourik, RA
Leemans, WP
AF Plateau, G. R.
Matlis, N. H.
Geddes, C. G. R.
Gonsalves, A. J.
Shiraishi, S.
Lin, C.
van Mourik, R. A.
Leemans, W. P.
TI Wavefront-sensor-based electron density measurements for laser-plasma
accelerators
SO REVIEW OF SCIENTIFIC INSTRUMENTS
LA English
DT Article
DE electron density; plasma density; wakefield accelerators; wavefront
sensors
ID FRINGE-PATTERN ANALYSIS; FEMTOSECOND X-RAYS; HARTMANN; INTERFEROMETER;
RADIATION; PHASE; BEAMS
AB Characterization of the electron density in laser produced plasmas is presented using direct wavefront analysis of a probe laser beam. The performance of a laser-driven plasma-wakefield accelerator depends on the plasma wavelength and hence on the electron density. Density measurements using a conventional folded-wave interferometer and using a commercial wavefront sensor are compared for different regimes of the laser-plasma accelerator. It is shown that direct wavefront measurements agree with interferometric measurements and, because of the robustness of the compact commercial device, offer greater phase sensitivity and straightforward analysis, improving shot-to-shot plasma density diagnostics.
C1 [Plateau, G. R.; Matlis, N. H.; Geddes, C. G. R.; Gonsalves, A. J.; Shiraishi, S.; Lin, C.; van Mourik, R. A.; Leemans, W. P.] LBNL, LOASIS Program, Berkeley, CA 94720 USA.
[Plateau, G. R.] Ecole Polytech, F-91128 Palaiseau, France.
RP Plateau, GR (reprint author), LBNL, LOASIS Program, 1 Cyclotron Rd, Berkeley, CA 94720 USA.
EM grplateau@lbl.gov; wpleemans@lbl.gov
FU Office of Science, High Energy Physics, U.S. Dept. of Energy
[DE-AC02-05CH11231]; DARPA
FX The authors acknowledge Kei Nakamura, Csaba Toth, Carl B. Schroeder,
Estelle Cormier-Michel, and Eric Esarey for their contributions. This
work was supported by the Director, Office of Science, High Energy
Physics, U.S. Dept. of Energy, under Contract No. DE-AC02-05CH11231 and
DARPA.
NR 28
TC 10
Z9 10
U1 1
U2 10
PU AMER INST PHYSICS
PI MELVILLE
PA CIRCULATION & FULFILLMENT DIV, 2 HUNTINGTON QUADRANGLE, STE 1 N O 1,
MELVILLE, NY 11747-4501 USA
SN 0034-6748
J9 REV SCI INSTRUM
JI Rev. Sci. Instrum.
PD MAR
PY 2010
VL 81
IS 3
AR 033108
DI 10.1063/1.3360889
PG 5
WC Instruments & Instrumentation; Physics, Applied
SC Instruments & Instrumentation; Physics
GA 577GJ
UT WOS:000276210200009
PM 20370162
ER
EF