Dual-readout calorimetry with homogeneous crystals

Fuente: arXiv
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Main Authors: Hirosky, R., Anderson, T., Cummings, G., Dubnowski, M., Guinto-Brody, C., Guo, Y., Ledovskoy, A., Levin, D., Madrid, C., Martin, C., Zhu, J.
Format: Preprint
Published: 2024
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author Hirosky, R.
Anderson, T.
Cummings, G.
Dubnowski, M.
Guinto-Brody, C.
Guo, Y.
Ledovskoy, A.
Levin, D.
Madrid, C.
Martin, C.
Zhu, J.
author_facet Hirosky, R.
Anderson, T.
Cummings, G.
Dubnowski, M.
Guinto-Brody, C.
Guo, Y.
Ledovskoy, A.
Levin, D.
Madrid, C.
Martin, C.
Zhu, J.
contents High resolution calorimetry with state-of-the-art energy resolution performance for both electromagnetic (EM) and hadronic signals can be achieved using the dual-readout (DR) technique, both in a homogeneous scintillating-crystal calorimeter and in a traditional fiber and absorber-based DR hadronic section. We present results from the CalVision consortium studying the collection of Cerenkov and scintillation signals in PbWO$_4$ and BGO crystal samples exposed to 120\,GeV proton beams at the Fermilab Test Beam Facility, including proof-of-principle measurements aimed at demonstrating the identification of a sufficiently large Cerenkov signal in homogeneous scintillating crystals to support dual-readout capability.
format Preprint
id arxiv_https___arxiv_org_abs_2408_11973
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Dual-readout calorimetry with homogeneous crystals
Hirosky, R.
Anderson, T.
Cummings, G.
Dubnowski, M.
Guinto-Brody, C.
Guo, Y.
Ledovskoy, A.
Levin, D.
Madrid, C.
Martin, C.
Zhu, J.
Instrumentation and Detectors
High resolution calorimetry with state-of-the-art energy resolution performance for both electromagnetic (EM) and hadronic signals can be achieved using the dual-readout (DR) technique, both in a homogeneous scintillating-crystal calorimeter and in a traditional fiber and absorber-based DR hadronic section. We present results from the CalVision consortium studying the collection of Cerenkov and scintillation signals in PbWO$_4$ and BGO crystal samples exposed to 120\,GeV proton beams at the Fermilab Test Beam Facility, including proof-of-principle measurements aimed at demonstrating the identification of a sufficiently large Cerenkov signal in homogeneous scintillating crystals to support dual-readout capability.
title Dual-readout calorimetry with homogeneous crystals
topic Instrumentation and Detectors
url https://arxiv.org/abs/2408.11973