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Performance of a resistive plate chamber equipped with a new prototype of amplified front-end electronics

ALICE is the LHC experiment dedicated to the study of heavy-ion collisions. At forward rapidity a muon spectrometer detects muons from low mass mesons, quarkonia, open heavy-flavor hadrons as well as weak bosons. A muon selection based on transverse momentum is made by a trigger system composed of 7...

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Autor principal: Marchisone, Massimiliano
Lenguaje:eng
Publicado: 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/11/06/C06011
http://cds.cern.ch/record/2156465
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author Marchisone, Massimiliano
author_facet Marchisone, Massimiliano
author_sort Marchisone, Massimiliano
collection CERN
description ALICE is the LHC experiment dedicated to the study of heavy-ion collisions. At forward rapidity a muon spectrometer detects muons from low mass mesons, quarkonia, open heavy-flavor hadrons as well as weak bosons. A muon selection based on transverse momentum is made by a trigger system composed of 72 resistive plate chambers (RPCs). For the LHC Run 1 and the ongoing Run 2 the RPCs have been equipped with a non-amplified FEE called ADULT. However, in view of an increase in luminosity expected for Run 3 (2021-2023) the possibility to use an amplified FEE has been explored in order to improve the counting rate limitation and to prevent the aging of the detector, by reducing the charge per hit. A prototype of this new electronics (FEERIC) has been developed and tested first with cosmic rays before equipping one RPC in the ALICE cavern with it. In this talk the most important performance indicators - efficiency, dark current, dark rate, cluster size and total charge - of an RPC equipped with this new FEE will be reviewed and compared to the others read out with ADULT, in pp collisions at 5 and 13 TeV and in Pb-Pb collisions at 5 TeV.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
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spelling cern-21564652022-08-10T12:51:35Zdoi:10.1088/1748-0221/11/06/C06011http://cds.cern.ch/record/2156465engMarchisone, MassimilianoPerformance of a resistive plate chamber equipped with a new prototype of amplified front-end electronicsDetectors and Experimental TechniquesALICE is the LHC experiment dedicated to the study of heavy-ion collisions. At forward rapidity a muon spectrometer detects muons from low mass mesons, quarkonia, open heavy-flavor hadrons as well as weak bosons. A muon selection based on transverse momentum is made by a trigger system composed of 72 resistive plate chambers (RPCs). For the LHC Run 1 and the ongoing Run 2 the RPCs have been equipped with a non-amplified FEE called ADULT. However, in view of an increase in luminosity expected for Run 3 (2021-2023) the possibility to use an amplified FEE has been explored in order to improve the counting rate limitation and to prevent the aging of the detector, by reducing the charge per hit. A prototype of this new electronics (FEERIC) has been developed and tested first with cosmic rays before equipping one RPC in the ALICE cavern with it. In this talk the most important performance indicators - efficiency, dark current, dark rate, cluster size and total charge - of an RPC equipped with this new FEE will be reviewed and compared to the others read out with ADULT, in pp collisions at 5 and 13 TeV and in Pb-Pb collisions at 5 TeV.ALICE is the LHC experiment dedicated to the study of heavy-ion collisions. At forward rapidity a muon spectrometer detects muons from low mass mesons, quarkonia, open heavy-flavor hadrons as well as weak bosons. A muon selection based on transverse momentum is made by a trigger system composed of 72 resistive plate chambers (RPCs). For the LHC Run 1 and the ongoing Run 2 the RPCs have been equipped with a non-amplified FEE called ADULT. However, in view of an increase in luminosity expected for Run 3 (2021–2023) the possibility to use an amplified FEE has been explored in order to improve the counting rate limitation and to prevent the aging of the detector, by reducing the charge per hit. A prototype of this new electronics (FEERIC) has been developed and tested first with cosmic rays before equipping one RPC in the ALICE cavern with it. In this paper the most important performance indicators— efficiency, dark current, dark rate, cluster size and total charge —of an RPC equipped with this new FEE will be reviewed and compared to the others read out with ADULT, in pp collisions at √s=5 and 13 TeV and in Pb-Pb collisions at √s(NN)=5 TeV.ALICE is the LHC experiment dedicated to the study of heavy-ion collisions. At forward rapidity a muon spectrometer detects muons from low mass mesons, quarkonia, open heavy-flavor hadrons as well asarXiv:1605.08537oai:cds.cern.ch:21564652016-05-27
spellingShingle Detectors and Experimental Techniques
Marchisone, Massimiliano
Performance of a resistive plate chamber equipped with a new prototype of amplified front-end electronics
title Performance of a resistive plate chamber equipped with a new prototype of amplified front-end electronics
title_full Performance of a resistive plate chamber equipped with a new prototype of amplified front-end electronics
title_fullStr Performance of a resistive plate chamber equipped with a new prototype of amplified front-end electronics
title_full_unstemmed Performance of a resistive plate chamber equipped with a new prototype of amplified front-end electronics
title_short Performance of a resistive plate chamber equipped with a new prototype of amplified front-end electronics
title_sort performance of a resistive plate chamber equipped with a new prototype of amplified front-end electronics
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/11/06/C06011
http://cds.cern.ch/record/2156465
work_keys_str_mv AT marchisonemassimiliano performanceofaresistiveplatechamberequippedwithanewprototypeofamplifiedfrontendelectronics