Electron performance measurements with the ATLAS detector using the 2010 LHC proton-proton collision data

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作者
G. Aad
B. Abbott
J. Abdallah
A. A. Abdelalim
A. Abdesselam
O. Abdinov
B. Abi
M. Abolins
H. Abramowicz
H. Abreu
E. Acerbi
B. S. Acharya
D. L. Adams
T. N. Addy
J. Adelman
M. Aderholz
S. Adomeit
P. Adragna
T. Adye
S. Aefsky
J. A. Aguilar-Saavedra
M. Aharrouche
S. P. Ahlen
F. Ahles
A. Ahmad
M. Ahsan
G. Aielli
T. Akdogan
T. P. A. Åkesson
G. Akimoto
A. V. Akimov
A. Akiyama
M. S. Alam
M. A. Alam
J. Albert
S. Albrand
M. Aleksa
I. N. Aleksandrov
F. Alessandria
C. Alexa
G. Alexander
G. Alexandre
T. Alexopoulos
M. Alhroob
M. Aliev
G. Alimonti
J. Alison
M. Aliyev
P. P. Allport
S. E. Allwood-Spiers
机构
[1] CERN,Department of Physics
[2] University at Albany,Department of Physics
[3] University of Alberta,Department of Physics
[4] Ankara University,Department of Physics
[5] Dumlupinar University,Division of Physics
[6] Gazi University,LAPP
[7] TOBB University of Economics and Technology,High Energy Physics Division
[8] Turkish Atomic Energy Authority,Department of Physics
[9] CNRS/IN2P3 and Université de Savoie,Department of Physics
[10] Argonne National Laboratory,Physics Department
[11] University of Arizona,Physics Department
[12] The University of Texas at Arlington,Institute of Physics
[13] University of Athens,Institute of Physics
[14] National Technical University of Athens,Department for Physics and Technology
[15] Azerbaijan Academy of Sciences,Physics Division
[16] Institut de Física d’Altes Energies and Departament de Física de la Universitat Autònoma de Barcelona and ICREA,Department of Physics
[17] University of Belgrade,Albert Einstein Center for Fundamental Physics and Laboratory for High Energy Physics
[18] Vinca Institute of Nuclear Sciences,School of Physics and Astronomy
[19] University of Bergen,Department of Physics
[20] Lawrence Berkeley National Laboratory and University of California,Division of Physics
[21] Humboldt University,Department of Physics Engineering
[22] University of Bern,Department of Physics
[23] University of Birmingham,Dipartimento di Fisica
[24] Bogazici University,Physikalisches Institut
[25] Dogus University,Department of Physics
[26] Gaziantep University,Department of Physics
[27] Istanbul Technical University,Instituto de Fisica
[28] INFN Sezione di Bologna,Physics Department
[29] Università di Bologna,Departamento de Física
[30] University of Bonn,Cavendish Laboratory
[31] Boston University,Department of Physics
[32] Brandeis University,Enrico Fermi Institute
[33] Universidade Federal do Rio De Janeiro COPPE/EE/IF,Departamento de Fisica
[34] Federal University of Juiz de Fora (UFJF),Departamento de Física
[35] Federal University of Sao Joao del Rei (UFSJ),Institute of High Energy Physics
[36] Universidade de Sao Paulo,Department of Modern Physics
[37] Brookhaven National Laboratory,Department of Physics
[38] National Institute of Physics and Nuclear Engineering,High Energy Physics Group
[39] University Politehnica Bucharest,Laboratoire de Physique Corpusculaire
[40] West University in Timisoara,Nevis Laboratory
[41] Universidad de Buenos Aires,Niels Bohr Institute
[42] University of Cambridge,Dipartimento di Fisica
[43] Carleton University,Faculty of Physics and Applied Computer Science
[44] CERN,The Henryk Niewodniczanski Institute of Nuclear Physics
[45] University of Chicago,Physics Department
[46] Pontificia Universidad Católica de Chile,Physics Department
[47] Universidad Técnica Federico Santa María,Institut für Experimentelle Physik IV
[48] Chinese Academy of Sciences,Institut für Kern
[49] University of Science and Technology of China, und Teilchenphysik
[50] Nanjing University,Department of Physics
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摘要
Detailed measurements of the electron performance of the ATLAS detector at the LHC are reported, using decays of the Z, W and J/ψ particles. Data collected in 2010 at \documentclass[12pt]{minimal} \usepackage{amsmath} \usepackage{wasysym} \usepackage{amsfonts} \usepackage{amssymb} \usepackage{amsbsy} \usepackage{mathrsfs} \usepackage{upgreek} \setlength{\oddsidemargin}{-69pt} \begin{document}$\sqrt{s}=7\mbox{~TeV}$\end{document} are used, corresponding to an integrated luminosity of almost 40 pb−1. The inter-alignment of the inner detector and the electromagnetic calorimeter, the determination of the electron energy scale and resolution, and the performance in terms of response uniformity and linearity are discussed. The electron identification, reconstruction and trigger efficiencies, as well as the charge misidentification probability, are also presented.
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