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Optimization and particle identification study of SPACAL calorimeter modules for LHCb ECAL Upgrade II

During electromagnetic calorimeter (ECAL) Upgrade II, the currently used Shashlik technology will need to be replaced to satisfy the future high luminosity requirements of the LHC. One of the promising candidates is the Spaghetti Calorimeter (SPACAL) technology. To assess its capabilities, the parti...

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Autor principal: Zatkova, Katarina
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:http://cds.cern.ch/record/2836386
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author Zatkova, Katarina
author_facet Zatkova, Katarina
author_sort Zatkova, Katarina
collection CERN
description During electromagnetic calorimeter (ECAL) Upgrade II, the currently used Shashlik technology will need to be replaced to satisfy the future high luminosity requirements of the LHC. One of the promising candidates is the Spaghetti Calorimeter (SPACAL) technology. To assess its capabilities, the particle identification efficiencies of e −, µ +, π + and K+ were investigated for a wide range of particle energies, using energy parameters containing information about the transversal spread and the starting point of the electromagnetic showers in the detector. The results from the Boosted Decision Tree (BDT) method showed greatest separation between electrons and charged pions and demonstrated the benefit of longitudinal segmentation. Furthermore, the timing resolutions for the four types of particles in the potential SPACAL module configurations were obtained.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
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spelling cern-28363862022-10-11T19:27:17Zhttp://cds.cern.ch/record/2836386engZatkova, KatarinaOptimization and particle identification study of SPACAL calorimeter modules for LHCb ECAL Upgrade IIParticle Physics - ExperimentDuring electromagnetic calorimeter (ECAL) Upgrade II, the currently used Shashlik technology will need to be replaced to satisfy the future high luminosity requirements of the LHC. One of the promising candidates is the Spaghetti Calorimeter (SPACAL) technology. To assess its capabilities, the particle identification efficiencies of e −, µ +, π + and K+ were investigated for a wide range of particle energies, using energy parameters containing information about the transversal spread and the starting point of the electromagnetic showers in the detector. The results from the Boosted Decision Tree (BDT) method showed greatest separation between electrons and charged pions and demonstrated the benefit of longitudinal segmentation. Furthermore, the timing resolutions for the four types of particles in the potential SPACAL module configurations were obtained.CERN-STUDENTS-Note-2022-199oai:cds.cern.ch:28363862022-10-11
spellingShingle Particle Physics - Experiment
Zatkova, Katarina
Optimization and particle identification study of SPACAL calorimeter modules for LHCb ECAL Upgrade II
title Optimization and particle identification study of SPACAL calorimeter modules for LHCb ECAL Upgrade II
title_full Optimization and particle identification study of SPACAL calorimeter modules for LHCb ECAL Upgrade II
title_fullStr Optimization and particle identification study of SPACAL calorimeter modules for LHCb ECAL Upgrade II
title_full_unstemmed Optimization and particle identification study of SPACAL calorimeter modules for LHCb ECAL Upgrade II
title_short Optimization and particle identification study of SPACAL calorimeter modules for LHCb ECAL Upgrade II
title_sort optimization and particle identification study of spacal calorimeter modules for lhcb ecal upgrade ii
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2836386
work_keys_str_mv AT zatkovakatarina optimizationandparticleidentificationstudyofspacalcalorimetermodulesforlhcbecalupgradeii