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Modeling Radiation Damage to Pixel Sensors in the ATLAS Detector

Silicon pixel detectors are at the core of the current and planned upgrade of the ATLAS detector at the Large Hadron Collider (LHC). As the closest detector component to the interaction point, these detectors will be subjected to a significant amount of radiation over their lifetime: prior to the Hi...

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Autor principal: Zahreddine, Jad
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:http://cds.cern.ch/record/2696328
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author Zahreddine, Jad
author_facet Zahreddine, Jad
author_sort Zahreddine, Jad
collection CERN
description Silicon pixel detectors are at the core of the current and planned upgrade of the ATLAS detector at the Large Hadron Collider (LHC). As the closest detector component to the interaction point, these detectors will be subjected to a significant amount of radiation over their lifetime: prior to the High- Luminosity LHC (HL-LHC), the innermost layers will receive a fluence in excess of 10^{15} n_{eq}/cm2 and the HL-HLC detector upgrades must cope with an order of magnitude higher fluence integrated over their lifetimes. Simulating radiation damage is critical in order to make accurate predictions for current future detector performance that will enable searches for new particles and forces as well as precision measurements of Standard Model particles such as the Higgs boson. We present a digitization model that includes radiation damage effects to the ATLAS pixel sensors for the first time and considers both planar and 3D sensor designs. In addition to describing the setup, we compare predictions for basic pixel cluster properties with real data collected at LHC proton-proton collisions.
id cern-2696328
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
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spelling cern-26963282019-10-25T19:23:43Zhttp://cds.cern.ch/record/2696328engZahreddine, JadModeling Radiation Damage to Pixel Sensors in the ATLAS DetectorParticle Physics - ExperimentSilicon pixel detectors are at the core of the current and planned upgrade of the ATLAS detector at the Large Hadron Collider (LHC). As the closest detector component to the interaction point, these detectors will be subjected to a significant amount of radiation over their lifetime: prior to the High- Luminosity LHC (HL-LHC), the innermost layers will receive a fluence in excess of 10^{15} n_{eq}/cm2 and the HL-HLC detector upgrades must cope with an order of magnitude higher fluence integrated over their lifetimes. Simulating radiation damage is critical in order to make accurate predictions for current future detector performance that will enable searches for new particles and forces as well as precision measurements of Standard Model particles such as the Higgs boson. We present a digitization model that includes radiation damage effects to the ATLAS pixel sensors for the first time and considers both planar and 3D sensor designs. In addition to describing the setup, we compare predictions for basic pixel cluster properties with real data collected at LHC proton-proton collisions.ATL-INDET-SLIDE-2019-806oai:cds.cern.ch:26963282019-10-25
spellingShingle Particle Physics - Experiment
Zahreddine, Jad
Modeling Radiation Damage to Pixel Sensors in the ATLAS Detector
title Modeling Radiation Damage to Pixel Sensors in the ATLAS Detector
title_full Modeling Radiation Damage to Pixel Sensors in the ATLAS Detector
title_fullStr Modeling Radiation Damage to Pixel Sensors in the ATLAS Detector
title_full_unstemmed Modeling Radiation Damage to Pixel Sensors in the ATLAS Detector
title_short Modeling Radiation Damage to Pixel Sensors in the ATLAS Detector
title_sort modeling radiation damage to pixel sensors in the atlas detector
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2696328
work_keys_str_mv AT zahreddinejad modelingradiationdamagetopixelsensorsintheatlasdetector