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Fast Calorimeter Punch-Through Simulation for the ATLAS Experiment

This work discusses the parametrization, implementation and validation of a tuneable fast simulation of hadronic leakage in the ATLAS detector. It is dedicated to simulate calorimeter punch-through and decay in flight processes inside the ATLAS calorimeter. Both effects can cause systematic errors i...

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Detalles Bibliográficos
Autor principal: Ritsch, Elmar
Lenguaje:eng
Publicado: U. 2011
Materias:
Acceso en línea:http://cds.cern.ch/record/1388275
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author Ritsch, Elmar
author_facet Ritsch, Elmar
author_sort Ritsch, Elmar
collection CERN
description This work discusses the parametrization, implementation and validation of a tuneable fast simulation of hadronic leakage in the ATLAS detector. It is dedicated to simulate calorimeter punch-through and decay in flight processes inside the ATLAS calorimeter. Both effects can cause systematic errors in muon reconstruction and identification. Therefore a correct description of these effects is crucial for many physics studies involving muons. The parameterized punch-through simulation is integrated into the fast ATLAS detector simulations Fatras and AtlfastII, respectively. The Fatras based simulation of single pions shows a good agreement with results obtained by the full Geant4 detector simulation – especially in the context of a fast simulation. It is shown that for high energy multi jet events, simulated with the AtlfastII implementation, the muon reconstruction rates show a good agreement with the Geant4 simulated reference.
id cern-1388275
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
publisher U.
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spelling cern-13882752019-09-30T06:29:59Zhttp://cds.cern.ch/record/1388275engRitsch, ElmarFast Calorimeter Punch-Through Simulation for the ATLAS ExperimentDetectors and Experimental TechniquesThis work discusses the parametrization, implementation and validation of a tuneable fast simulation of hadronic leakage in the ATLAS detector. It is dedicated to simulate calorimeter punch-through and decay in flight processes inside the ATLAS calorimeter. Both effects can cause systematic errors in muon reconstruction and identification. Therefore a correct description of these effects is crucial for many physics studies involving muons. The parameterized punch-through simulation is integrated into the fast ATLAS detector simulations Fatras and AtlfastII, respectively. The Fatras based simulation of single pions shows a good agreement with results obtained by the full Geant4 detector simulation – especially in the context of a fast simulation. It is shown that for high energy multi jet events, simulated with the AtlfastII implementation, the muon reconstruction rates show a good agreement with the Geant4 simulated reference.U.CERN-THESIS-2011-112oai:cds.cern.ch:13882752011
spellingShingle Detectors and Experimental Techniques
Ritsch, Elmar
Fast Calorimeter Punch-Through Simulation for the ATLAS Experiment
title Fast Calorimeter Punch-Through Simulation for the ATLAS Experiment
title_full Fast Calorimeter Punch-Through Simulation for the ATLAS Experiment
title_fullStr Fast Calorimeter Punch-Through Simulation for the ATLAS Experiment
title_full_unstemmed Fast Calorimeter Punch-Through Simulation for the ATLAS Experiment
title_short Fast Calorimeter Punch-Through Simulation for the ATLAS Experiment
title_sort fast calorimeter punch-through simulation for the atlas experiment
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/1388275
work_keys_str_mv AT ritschelmar fastcalorimeterpunchthroughsimulationfortheatlasexperiment