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Time Analysis of the Partially Equipped CALICE Analog Hadronic Calorimeter Technological Prototype with Tungsten Absorber

This note presents the analysis of timing measurements obtained with a partially in- strumented technological prototype of the CALICE analog hadronic calorimeter (AHCAL) in a tungsten absorber stack. The data was taken during a test beam campaign in August 2015 at the SPS at CERN. A calibration proc...

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Autor principal: CALICE Collaboration
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:http://cds.cern.ch/record/2692839
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author CALICE Collaboration
author_facet CALICE Collaboration
author_sort CALICE Collaboration
collection CERN
description This note presents the analysis of timing measurements obtained with a partially in- strumented technological prototype of the CALICE analog hadronic calorimeter (AHCAL) in a tungsten absorber stack. The data was taken during a test beam campaign in August 2015 at the SPS at CERN. A calibration procedure for time measurements is presented and the complex time structure of hadronic showers is analyzed and compared to several Geant4 physics lists. For pi- ons, late energy depositions are observed as expected due to the capture of low energetic neutrons. Physics lists using the binary cascade to model low energetic hadronic processes underestimate these late energy depositions, while physics lists using the Bertini model or the high precision package overestimate them by about a factor two. The late component of hadronic showers is found to be about eight times larger than for a similar analysis with a steel absorber.
id cern-2692839
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-26928392019-10-09T21:52:58Zhttp://cds.cern.ch/record/2692839engCALICE CollaborationTime Analysis of the Partially Equipped CALICE Analog Hadronic Calorimeter Technological Prototype with Tungsten AbsorberDetectors and Experimental TechniquesThis note presents the analysis of timing measurements obtained with a partially in- strumented technological prototype of the CALICE analog hadronic calorimeter (AHCAL) in a tungsten absorber stack. The data was taken during a test beam campaign in August 2015 at the SPS at CERN. A calibration procedure for time measurements is presented and the complex time structure of hadronic showers is analyzed and compared to several Geant4 physics lists. For pi- ons, late energy depositions are observed as expected due to the capture of low energetic neutrons. Physics lists using the binary cascade to model low energetic hadronic processes underestimate these late energy depositions, while physics lists using the Bertini model or the high precision package overestimate them by about a factor two. The late component of hadronic showers is found to be about eight times larger than for a similar analysis with a steel absorber.CALICE-CAN-2019-002oai:cds.cern.ch:26928392019
spellingShingle Detectors and Experimental Techniques
CALICE Collaboration
Time Analysis of the Partially Equipped CALICE Analog Hadronic Calorimeter Technological Prototype with Tungsten Absorber
title Time Analysis of the Partially Equipped CALICE Analog Hadronic Calorimeter Technological Prototype with Tungsten Absorber
title_full Time Analysis of the Partially Equipped CALICE Analog Hadronic Calorimeter Technological Prototype with Tungsten Absorber
title_fullStr Time Analysis of the Partially Equipped CALICE Analog Hadronic Calorimeter Technological Prototype with Tungsten Absorber
title_full_unstemmed Time Analysis of the Partially Equipped CALICE Analog Hadronic Calorimeter Technological Prototype with Tungsten Absorber
title_short Time Analysis of the Partially Equipped CALICE Analog Hadronic Calorimeter Technological Prototype with Tungsten Absorber
title_sort time analysis of the partially equipped calice analog hadronic calorimeter technological prototype with tungsten absorber
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/2692839
work_keys_str_mv AT calicecollaboration timeanalysisofthepartiallyequippedcaliceanaloghadroniccalorimetertechnologicalprototypewithtungstenabsorber