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Research and Development for the ATLAS Forward Calorimetry at the Phase-II LHC

During the LHC Run-1 data taking period the ATLAS calorimeter system demonstrated an excellent performance of the electron and photon reconstruction as well as the hadronic jets and missing transverse energy measurements. These precision measurements played a major role in the discovery of the Higgs...

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Autor principal: Cheplakov, Alexander
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:http://cds.cern.ch/record/2117089
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author Cheplakov, Alexander
author_facet Cheplakov, Alexander
author_sort Cheplakov, Alexander
collection CERN
description During the LHC Run-1 data taking period the ATLAS calorimeter system demonstrated an excellent performance of the electron and photon reconstruction as well as the hadronic jets and missing transverse energy measurements. These precision measurements played a major role in the discovery of the Higgs boson. Further study of the Higgs properties and SUSY searches should be performed at Phase-II LHC which will run at 5-7 times higher luminosity aiming to provide statistics of 3000fb-1 by 2037. A total irradiation doses will be more than doubled compared to the original design, taking into account a safety factor of 2 representing our confidence in radiation background simulations. Moreover, the increased instantaneous luminosity will result in a much higher detector occupancy. The ATLAS Forward Calorimeters (FCal) will be affected by these factors. A rich R&D program is ongoing to evaluate the consequences of the LHC modernization and to investigate different scenarios proposed for the Phase-II detector upgrade.
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institution Organización Europea para la Investigación Nuclear
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publishDate 2015
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spelling cern-21170892021-09-14T11:42:45Zhttp://cds.cern.ch/record/2117089engCheplakov, AlexanderResearch and Development for the ATLAS Forward Calorimetry at the Phase-II LHCParticle Physics - ExperimentDuring the LHC Run-1 data taking period the ATLAS calorimeter system demonstrated an excellent performance of the electron and photon reconstruction as well as the hadronic jets and missing transverse energy measurements. These precision measurements played a major role in the discovery of the Higgs boson. Further study of the Higgs properties and SUSY searches should be performed at Phase-II LHC which will run at 5-7 times higher luminosity aiming to provide statistics of 3000fb-1 by 2037. A total irradiation doses will be more than doubled compared to the original design, taking into account a safety factor of 2 representing our confidence in radiation background simulations. Moreover, the increased instantaneous luminosity will result in a much higher detector occupancy. The ATLAS Forward Calorimeters (FCal) will be affected by these factors. A rich R&D program is ongoing to evaluate the consequences of the LHC modernization and to investigate different scenarios proposed for the Phase-II detector upgrade.ATL-LARG-PROC-2015-011oai:cds.cern.ch:21170892015-12-21
spellingShingle Particle Physics - Experiment
Cheplakov, Alexander
Research and Development for the ATLAS Forward Calorimetry at the Phase-II LHC
title Research and Development for the ATLAS Forward Calorimetry at the Phase-II LHC
title_full Research and Development for the ATLAS Forward Calorimetry at the Phase-II LHC
title_fullStr Research and Development for the ATLAS Forward Calorimetry at the Phase-II LHC
title_full_unstemmed Research and Development for the ATLAS Forward Calorimetry at the Phase-II LHC
title_short Research and Development for the ATLAS Forward Calorimetry at the Phase-II LHC
title_sort research and development for the atlas forward calorimetry at the phase-ii lhc
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2117089
work_keys_str_mv AT cheplakovalexander researchanddevelopmentfortheatlasforwardcalorimetryatthephaseiilhc