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Performance of alternative scintillator tile geometry for AHCAL

The CALICE Analogue Hadron CALorimeter (AHCAL) at the International Linear Collider (ILC) is a high-granularity hadron calorimeter based on scintillator tiles readout by MPPCs. Toward the construction of ILC, the optimization of the AHCAL granularity is revisited, and we are studying mixed granulari...

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Autor principal: Tsuji, Naoki
Lenguaje:eng
Publicado: 2019
Materias:
Acceso en línea:http://cds.cern.ch/record/2661808
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author Tsuji, Naoki
author_facet Tsuji, Naoki
author_sort Tsuji, Naoki
collection CERN
description The CALICE Analogue Hadron CALorimeter (AHCAL) at the International Linear Collider (ILC) is a high-granularity hadron calorimeter based on scintillator tiles readout by MPPCs. Toward the construction of ILC, the optimization of the AHCAL granularity is revisited, and we are studying mixed granularity with larger scintillator tile. We first measured the performance of $60\times60~\mathrm{mm^2}$ tile, which is larger than the standard $30\times30~\mathrm{mm^2}$ tile. The light yield of $60\times60~\mathrm{mm^2}$ tile was measured to be about a half of that of $30\times30~\mathrm{mm^2}$ tile, while the uniformity of the tile response turned out to be very good. Then, a detection layer composed of 144 tiles of $60\times60~\mathrm{mm^2}$ was constructed. The detection layer was added to the large technological prototype of AHCAL composed of 38 detection layers with $30\times30~\mathrm{mm^2}$ tiles. The detection layer was successfully tested in test beam experiments at CERN SPS.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
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spelling cern-26618082023-03-14T16:52:22Zhttp://cds.cern.ch/record/2661808engTsuji, NaokiPerformance of alternative scintillator tile geometry for AHCALphysics.ins-detDetectors and Experimental TechniquesThe CALICE Analogue Hadron CALorimeter (AHCAL) at the International Linear Collider (ILC) is a high-granularity hadron calorimeter based on scintillator tiles readout by MPPCs. Toward the construction of ILC, the optimization of the AHCAL granularity is revisited, and we are studying mixed granularity with larger scintillator tile. We first measured the performance of $60\times60~\mathrm{mm^2}$ tile, which is larger than the standard $30\times30~\mathrm{mm^2}$ tile. The light yield of $60\times60~\mathrm{mm^2}$ tile was measured to be about a half of that of $30\times30~\mathrm{mm^2}$ tile, while the uniformity of the tile response turned out to be very good. Then, a detection layer composed of 144 tiles of $60\times60~\mathrm{mm^2}$ was constructed. The detection layer was added to the large technological prototype of AHCAL composed of 38 detection layers with $30\times30~\mathrm{mm^2}$ tiles. The detection layer was successfully tested in test beam experiments at CERN SPS.arXiv:1902.05266oai:cds.cern.ch:26618082019
spellingShingle physics.ins-det
Detectors and Experimental Techniques
Tsuji, Naoki
Performance of alternative scintillator tile geometry for AHCAL
title Performance of alternative scintillator tile geometry for AHCAL
title_full Performance of alternative scintillator tile geometry for AHCAL
title_fullStr Performance of alternative scintillator tile geometry for AHCAL
title_full_unstemmed Performance of alternative scintillator tile geometry for AHCAL
title_short Performance of alternative scintillator tile geometry for AHCAL
title_sort performance of alternative scintillator tile geometry for ahcal
topic physics.ins-det
Detectors and Experimental Techniques
url http://cds.cern.ch/record/2661808
work_keys_str_mv AT tsujinaoki performanceofalternativescintillatortilegeometryforahcal