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Optimisation of bremsstrahlung recovery in B+ → K+e+e− decays for the LHCb Upgrade II

This document is a preliminary assessment of the electromagnetic calorimeter (ECAL) timing resolution for LHCb upgrade II in preparation for the high luminosity LHC (HL-LHC). LHCb specializes in beauty physics to probe sources of matter-antimatter asymmetry in the universe. A process of interest for...

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Autor principal: Moskal, Angela
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:http://cds.cern.ch/record/2835575
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author Moskal, Angela
author_facet Moskal, Angela
author_sort Moskal, Angela
collection CERN
description This document is a preliminary assessment of the electromagnetic calorimeter (ECAL) timing resolution for LHCb upgrade II in preparation for the high luminosity LHC (HL-LHC). LHCb specializes in beauty physics to probe sources of matter-antimatter asymmetry in the universe. A process of interest for this sector is B+ → K+e+e− and it is for the low energy bremsstrahlung emitted during this decay that tuning of ECAL timing resolution is performed. This decay is rare, and while the HL-LHC is intended to illuminate such rare processes, it is also a challenge to mitigate the pile up and radiation damage that comes with such high luminosities. Currently in development for upgrade II is a robust ECAL with increased granularity and new spaghetti calorimeter (SpaCal) technology. All data analyzed in this study comes from a Geant4 Simulation of the upgrade II ECAL. We observe a drastic improvement in timing resolution, O(10) ps, for the new SpaCal technology as compared to the older Shashlik technology. We also show how timing precision improves for the more energetic photon showers and how the precision depends on where in the ECAL the signal is being registered. This study serves as a useful starting point for future bremsstrahlung recovery optimisation studies.
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spelling cern-28355752022-10-05T21:41:36Zhttp://cds.cern.ch/record/2835575engMoskal, AngelaOptimisation of bremsstrahlung recovery in B+ → K+e+e− decays for the LHCb Upgrade IIPhysics in GeneralThis document is a preliminary assessment of the electromagnetic calorimeter (ECAL) timing resolution for LHCb upgrade II in preparation for the high luminosity LHC (HL-LHC). LHCb specializes in beauty physics to probe sources of matter-antimatter asymmetry in the universe. A process of interest for this sector is B+ → K+e+e− and it is for the low energy bremsstrahlung emitted during this decay that tuning of ECAL timing resolution is performed. This decay is rare, and while the HL-LHC is intended to illuminate such rare processes, it is also a challenge to mitigate the pile up and radiation damage that comes with such high luminosities. Currently in development for upgrade II is a robust ECAL with increased granularity and new spaghetti calorimeter (SpaCal) technology. All data analyzed in this study comes from a Geant4 Simulation of the upgrade II ECAL. We observe a drastic improvement in timing resolution, O(10) ps, for the new SpaCal technology as compared to the older Shashlik technology. We also show how timing precision improves for the more energetic photon showers and how the precision depends on where in the ECAL the signal is being registered. This study serves as a useful starting point for future bremsstrahlung recovery optimisation studies.CERN-STUDENTS-Note-2022-185oai:cds.cern.ch:28355752022-05-10
spellingShingle Physics in General
Moskal, Angela
Optimisation of bremsstrahlung recovery in B+ → K+e+e− decays for the LHCb Upgrade II
title Optimisation of bremsstrahlung recovery in B+ → K+e+e− decays for the LHCb Upgrade II
title_full Optimisation of bremsstrahlung recovery in B+ → K+e+e− decays for the LHCb Upgrade II
title_fullStr Optimisation of bremsstrahlung recovery in B+ → K+e+e− decays for the LHCb Upgrade II
title_full_unstemmed Optimisation of bremsstrahlung recovery in B+ → K+e+e− decays for the LHCb Upgrade II
title_short Optimisation of bremsstrahlung recovery in B+ → K+e+e− decays for the LHCb Upgrade II
title_sort optimisation of bremsstrahlung recovery in b+ → k+e+e− decays for the lhcb upgrade ii
topic Physics in General
url http://cds.cern.ch/record/2835575
work_keys_str_mv AT moskalangela optimisationofbremsstrahlungrecoveryinbkeedecaysforthelhcbupgradeii