High granularity tracker based on a Triple-GEM optically read by a CMOS-based camera

The detection of photons produced during the avalanche development in gas chambers has been the subject of detailed studies in the past. The great progresses achieved in last years in the performance of micro-pattern gas detectors on one side and of photo-sensors on the other provide the possibility...

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Published inarXiv.org
Main Authors Marafini, Michela, Patera, Vincenzo, Pinci, Davide, Sarti, Alessio, Sciubba, A, Spiriti, Eleuterio
Format Paper Journal Article
LanguageEnglish
Published Ithaca Cornell University Library, arXiv.org 14.11.2015
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ISSN2331-8422
DOI10.48550/arxiv.1508.07143

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Abstract The detection of photons produced during the avalanche development in gas chambers has been the subject of detailed studies in the past. The great progresses achieved in last years in the performance of micro-pattern gas detectors on one side and of photo-sensors on the other provide the possibility of making high granularity and very sensitive particle trackers. In this paper, the results obtained with a triple-GEM structure read-out by a CMOS based sensor are described. The use of an He/CF\(_4\) (60/40) gas mixture and a detailed optimization of the electric fields made possible to obtain and very high GEM light yield. About 80 photons per primary electron were detected by the sensor resulting in a very good capability of tracking both muons from cosmic rays and electrons from natural radioactivity.
AbstractList The detection of photons produced during the avalanche development in gas chambers has been the subject of detailed studies in the past. The great progresses achieved in last years in the performance of micro-pattern gas detectors on one side and of photo-sensors on the other provide the possibility of making high granularity and very sensitive particle trackers. In this paper, the results obtained with a triple-GEM structure read-out by a CMOS based sensor are described. The use of an He/CF$_4$ (60/40) gas mixture and a detailed optimization of the electric fields made possible to obtain and very high GEM light yield. About 80 photons per primary electron were detected by the sensor resulting in a very good capability of tracking both muons from cosmic rays and electrons from natural radioactivity.
The detection of photons produced during the avalanche development in gas chambers has been the subject of detailed studies in the past. The great progresses achieved in last years in the performance of micro-pattern gas detectors on one side and of photo-sensors on the other provide the possibility of making high granularity and very sensitive particle trackers. In this paper, the results obtained with a triple-GEM structure read-out by a CMOS based sensor are described. The use of an He/CF\(_4\) (60/40) gas mixture and a detailed optimization of the electric fields made possible to obtain and very high GEM light yield. About 80 photons per primary electron were detected by the sensor resulting in a very good capability of tracking both muons from cosmic rays and electrons from natural radioactivity.
Author Spiriti, Eleuterio
Sarti, Alessio
Marafini, Michela
Patera, Vincenzo
Pinci, Davide
Sciubba, A
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BackLink https://doi.org/10.1088/1748-0221/10/12/P12010$$DView published paper (Access to full text may be restricted)
https://doi.org/10.48550/arXiv.1508.07143$$DView paper in arXiv
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Snippet The detection of photons produced during the avalanche development in gas chambers has been the subject of detailed studies in the past. The great progresses...
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SubjectTerms CMOS
Cosmic rays
Electric fields
Gas detectors
Gas mixtures
Muons
Natural radioactivity
Optimization
Photon avalanches
Photons
Physics - High Energy Physics - Experiment
Physics - Instrumentation and Detectors
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