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Production and characterization of random electrode sectorization in GEM foils

In triple-GEM detectors, the segmentation of GEM foils in electrically independentsectors allows reducing the probability of discharge damage to the detector and improving thedetector rate capability. However, a segmented foil presents thin dead regions in the separationbetween two sectors and the s...

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Autores principales: Pellecchia, Antonello, Bianco, Michele, De Oliveira, Rui, Fallavollita, Francesco, Fiorina, Davide, Rosi, Nicole, Verwilligen, Piet
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/18/07/C07001
http://cds.cern.ch/record/2856529
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author Pellecchia, Antonello
Bianco, Michele
De Oliveira, Rui
Fallavollita, Francesco
Fiorina, Davide
Rosi, Nicole
Verwilligen, Piet
author_facet Pellecchia, Antonello
Bianco, Michele
De Oliveira, Rui
Fallavollita, Francesco
Fiorina, Davide
Rosi, Nicole
Verwilligen, Piet
author_sort Pellecchia, Antonello
collection CERN
description In triple-GEM detectors, the segmentation of GEM foils in electrically independentsectors allows reducing the probability of discharge damage to the detector and improving thedetector rate capability. However, a segmented foil presents thin dead regions in the separationbetween two sectors and the segmentation pattern has to be manually aligned with the GEM holepattern during the foil manufacturing, a procedure potentially sensitive to errors.We describe the production and characterization of triple-GEM detectors obtained with aninnovative GEM foil segmentation technique, the “random hole segmentation”, that allows easiermanufacturing of segmented GEM foils. The electrical stability to high voltage and the gainuniformity of a random-hole segmented triple-GEM prototype are measured. The results of a testbeam on a prototype assembled for the Phase-2 GEM upgrade of the CMS experiment are alsopresented. A high statistics efficiency measurement shows that the random hole segmentation canlimit the efficiency loss of the detector in the areas between two sectors, making it a viablealternative to blank segmentation for the GEM foil manufacturing of large-area detector systems.
id cern-2856529
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28565292023-10-06T02:59:58Zdoi:10.1088/1748-0221/18/07/C07001http://cds.cern.ch/record/2856529engPellecchia, AntonelloBianco, MicheleDe Oliveira, RuiFallavollita, FrancescoFiorina, DavideRosi, NicoleVerwilligen, PietProduction and characterization of random electrode sectorization in GEM foilsphysics.ins-detDetectors and Experimental TechniquesIn triple-GEM detectors, the segmentation of GEM foils in electrically independentsectors allows reducing the probability of discharge damage to the detector and improving thedetector rate capability. However, a segmented foil presents thin dead regions in the separationbetween two sectors and the segmentation pattern has to be manually aligned with the GEM holepattern during the foil manufacturing, a procedure potentially sensitive to errors.We describe the production and characterization of triple-GEM detectors obtained with aninnovative GEM foil segmentation technique, the “random hole segmentation”, that allows easiermanufacturing of segmented GEM foils. The electrical stability to high voltage and the gainuniformity of a random-hole segmented triple-GEM prototype are measured. The results of a testbeam on a prototype assembled for the Phase-2 GEM upgrade of the CMS experiment are alsopresented. A high statistics efficiency measurement shows that the random hole segmentation canlimit the efficiency loss of the detector in the areas between two sectors, making it a viablealternative to blank segmentation for the GEM foil manufacturing of large-area detector systems.In triple-GEM detectors, the segmentation of GEM foils in electrically independent sectors allows reducing the probability of discharge damage to the detector and improving the detector rate capability; however, a segmented foil presents thin dead regions in the separation between two sectors and the segmentation pattern has to be manually aligned with the GEM hole pattern during the foil manufacturing, a procedure potentially sensitive to errors. We describe the production and characterization of triple-GEM detectors produced with an innovative GEM foil segmentation technique, the ``random hole segmentation'', that allows an easier manufacturing of segmented GEM foils. The electrical stability to high voltage and the gain uniformity of a random-hole segmented triple-GEM prototype are measured. The results of a test beam on a prototype assembled for the Phase-2 GEM upgrade of the CMS experiment are also presented; a high-statistics efficiency measurement shows that the random hole segmentation can limit the efficiency loss of the detector in the areas between two sectors, making it a viable alternative to blank segmentation for the GEM foil manufacturing of large-area detector systems.arXiv:2303.06355oai:cds.cern.ch:28565292023-03-11
spellingShingle physics.ins-det
Detectors and Experimental Techniques
Pellecchia, Antonello
Bianco, Michele
De Oliveira, Rui
Fallavollita, Francesco
Fiorina, Davide
Rosi, Nicole
Verwilligen, Piet
Production and characterization of random electrode sectorization in GEM foils
title Production and characterization of random electrode sectorization in GEM foils
title_full Production and characterization of random electrode sectorization in GEM foils
title_fullStr Production and characterization of random electrode sectorization in GEM foils
title_full_unstemmed Production and characterization of random electrode sectorization in GEM foils
title_short Production and characterization of random electrode sectorization in GEM foils
title_sort production and characterization of random electrode sectorization in gem foils
topic physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/18/07/C07001
http://cds.cern.ch/record/2856529
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