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Search for Heavy Stable Charged Particles in the CMS Experiment using the RPC Phase II upgraded detectors

Authors
Ramirez-Sanchez, G.Fagot, A.Gul, M.Roskas, C.Tytgat, M.Zaganidis, N.Fonseca De Souza, S.Santoro, A.Torres Silva De Araujo, F.Aleksandrov, A.Hadjiiska, R.Iaydjiev, P.Rodozov, M.Shopova, M.Sultanov, G.Dimitrov, A.Litov, L.Pavlov, B.Petkov, P.Petrov, A.Qian, S. J.Han, D.Yi, W.Avila, C.Cabrera, A.Carrillo, C.Segura, M.Aly, S.Assran, Y.Mahrous, A.Mohamed, A.Combaret, C.Gouzevitch, M.Grenier, G.Lagarde, F.Laktineh, I. B.Mathez, H.Mirabito, L.Shchablo, K.Bagaturia, ILomidze, D.Lomidze, IPant, L. M.Bhatnagar, VGupta, R.Kumari, R.Lohan, M.Singh, J. B.Amoozegar, VBoghrati, B.Ghasemy, H.Malmir, S.Najafabadi, M. MohammadiAbbrescia, M.Gelmi, A.Iaselli, G.Lezki, S.Pugliese, G.Benussi, L.Bianco, S.Piccolo, D.Primavera, F.Buontempo, S.Crescenzo, A.Galati, G.Fienga, F.Orso, ILista, L.Meola, S.Paolucci, P.Voevodina, E.Braghieri, A.Montagna, P.Ressegotti, M.Riccardi, C.Salvini, P.Vitulo, P.Cho, S. W.Choi, S. Y.Hong, B.Lee, K. S.Lim, J. H.Park, S. K.Goh, J.Kim, T. J.Carrillo Moreno, S.Miguel Colin, O.Vazquez Valencia, F.Carpinteyro Bernardino, S.Eysermans, J.Pedraza, IUribe Estrada, C.Reyes-Almanza, R.Duran-Osuna, M. C.Ramirez-Garcia, M.Sanchez-Hernandez, A.Rabadan-Trejo, R., ICastilla-Valdez, H.Radi, A.Hoorani, H.Muhammad, S.Shah, M. A.Crotty, I
Issue Date
Nov-2019
Publisher
IOP PUBLISHING LTD
Keywords
Gaseous detectors; Resistive-plate chambers
Citation
JOURNAL OF INSTRUMENTATION, v.14, pp.1 - 12
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF INSTRUMENTATION
Volume
14
Start Page
1
End Page
12
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/146907
DOI
10.1088/1748-0221/14/11/C11011
ISSN
1748-0221
Abstract
Several theoretical models inspired by the idea of supersymmetry (SUSY) accommodate the possibility of Heavy Stable Charged Particles (HSCPs). The Phase II upgrade of the CMS-RPC system will allow the trigger and identification of this kind of particles exploiting the Time-of-Flight Technique with the improved time resolution that a new Data Acquisition System (DAQ) system will provide (similar to 2 ns). Moreover, new Resistive Plate Chambers (RPC) detector chambers will be installed to extend the acceptance coverage up to vertical bar eta vertical bar < 2.4 with similar time resolution and better spatial resolution. We present a trigger strategy to detect HSCPs with the RPC detectors. Its performance is studied with Monte Carlo simulations and the expected results with the High Luminosity Large Hadron Collider (HL-LHC) data are shown.
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