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Aging study on Resistive Plate Chambers of the CMS Muon Detector for HL-LHC

Authors
Aly, R.Gelmi, A.Kumari, P.Zaganidis, N.Samalan, A.Tytgat, M.Alves, G. A.Marujo, F.Da Silva De Araujo, F. TorresDa Costa, E. M.De Jesus Damiao, D.Nogima, H.Santoro, A.Fonseca De Souza, S.Aleksandrov, A.Hadjiiska, R.Iaydjiev, P.Rodozov, M.Shopova, M.Sultanov, G.Bonchev, M.Dimitrov, A.Litov, L.Pavlov, B.Petkov, P.Petrov, A.Qian, S. J.Bernal, C.Cabrera, A.Fraga, J.Sarkar, A.Elsayed, S.Assran, Y.El Sawy, M.Mahmoud, M. A.Mohammed, Y.Combaret, C.Gouzevitch, M.Grenier, G.Laktineh, IMirabito, L.Shchablo, K.Bagaturia, ILomidze, D.Lomidze, IBhatnagar, VGupta, R.Singh, J.Amoozegar, VBoghrati, B.Ebraimi, M.Ghasemi, R.Najafabadi, M. MohammadiZareian, E.Abbrescia, M.Elmetenawee, W.De Filippis, N.Iaselli, G.Leszki, S.Loddo, F.Margjeka, IPugliese, G.Ramos, D.Caponero, M.Benussi, L.Bianco, S.Colafranceschi, S.Russo, A.Passamonti, L.Piccolo, D.Pierluigi, D.Saviano, G.Buontempo, S.Di Crescenzo, A.Fienga, F.De Lellis, G.Lista, L.Meola, S.Paolucci, P.Braghieri, A.Salvini, P.Montagna, P.Riccardi, C.Vitulo, P.Francois, B.Kim, T. J.Park, J.Choi, S. Y.Hong, B.Lee, K. S.Goh, J.Lee, H.Eysermans, J.Estrada, C. UribePedraza, ICastilla-Valdez, H.Sanchez-Hernandez, A.Mondragon Herrera, C. A.Perez Navarro, D. A.Ayala Sanchez, G. A.Carrillo, S.Vazquez, E.Radi, A.Ahmad, A.Asghar, IHoorani, H.Muhammad, S.Shah, M. A.Crotty, I
Issue Date
11월-2020
Publisher
IOP PUBLISHING LTD
Keywords
Gaseous detectors; Radiation-hard detectors; Resistive-plate chambers
Citation
JOURNAL OF INSTRUMENTATION, v.15, no.11
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF INSTRUMENTATION
Volume
15
Number
11
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/52082
DOI
10.1088/1748-0221/15/11/C11002
ISSN
1748-0221
Abstract
In the High Luminosity Large Hadron Collider (HL-LHC) program, during the next years, the instantaneous luminosity will increase up to 5 x 10(34) cm(-2) s(-1) which means a factor five higher than the nominal LHC luminosity. In that period, the present CMS Resistive Plate Chambers (RPC) system will be subjected to background rates higher than those for which the detectors have been designed, which could affect the detector properties and induce aging effects. To study whether the present RPC system can sustain the hard background conditions during the HL-LHC running period, a dedicated longevity test is ongoing at the CERN Gamma Irradiation Facility, where a few spare RPCs are exposed to high gamma radiation for a long term period to mimic the HL-LHC operational conditions. During the longevity test, the main detector parameters are continuously monitored as a function of the integrated charge. Preliminary results of the study, after having collected a sufficient amount of the expected integrated charge at HL-LHC, will be presented.
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