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  4. Electron and photon reconstruction and identification with the CMS experiment at the CERN LHC
 
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Electron and photon reconstruction and identification with the CMS experiment at the CERN LHC

Journal
Journal of Instrumentation
Journal Volume
16
Journal Issue
5
Date Issued
2021
Author(s)
Sirunyan, A.M. et al.
PAO-TI CHANG  
KAI-FENG CHEN  
WEI-SHU HOU  
RONG-SHYANG LU  
Stathes Paganis  
DOI
10.1088/1748-0221/16/05/P05014
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85107343515&doi=10.1088%2f1748-0221%2f16%2f05%2fP05014&partnerID=40&md5=baeb2802afe415b3544f3b5e9c2ebc4d
https://scholars.lib.ntu.edu.tw/handle/123456789/573676
Abstract
The performance is presented of the reconstruction and identification algorithms for electrons and photons with the CMS experiment at the LHC. The reported results are based on proton-proton collision data collected at a center-of-mass energy of 13 TeV and recorded in 2016-2018, corresponding to an integrated luminosity of 136 fb-1. Results obtained from lead-lead collision data collected at √sNN=5.02 TeV are also presented. Innovative techniques are used to reconstruct the electron and photon signals in the detector and to optimize the energy resolution. Events with electrons and photons in the final state are used to measure the energy resolution and energy scale uncertainty in the recorded events. The measured energy resolution for electrons produced in Z boson decays in proton-proton collision data ranges from 2 to 5%, depending on electron pseudorapidity and energy loss through bremsstrahlung in the detector material. The energy scale in the same range of energies is measured with an uncertainty smaller than 0.1 (0.3)% in the barrel (endcap) region in proton-proton collisions and better than 1 (3)% in the barrel (endcap) region in heavy ion collisions. The timing resolution for electrons from Z boson decays with the full 2016-2018 proton-proton collision data set is measured to be 200 ps. ? 2021 CERN for the benefit of the CMS collaboration..
Subjects
Bosons; Colliding beam accelerators; Energy dissipation; Heavy ions; Photons; Tellurium compounds; Detector materials; Energy resolutions; Heavy ion collision; Identification algorithms; Innovative techniques; Integrated luminosity; Proton proton collisions; Timing resolutions; Electrons
Type
journal article

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