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Preliminary aging studies of improved RPC gaps operated with HFO based mixtures

Authors
Kofi, Z. EveTytgat, M.Mota Amarilo, K.Samalan, A.Skovpen, K.Alves, G.A.Alves Coelho, E.Marujo da Silva, F.Barroso Ferreira Filho, M.Da Costa, E. M.De Jesus Damiao, D.Ferreira, B. C.Fonseca De Souza, S.Gomes De Souza, R.Mundim, L.Nogima, H.Pinheiro, J. P.Santoro, A.Thiel, M.Aleksandrov, A.Hadjiiska, R.Iaydjiev, P.Shopova, M.Sultanov, G.Dimitrov, A.Litov, L.Pavlov, B.Petkov, P.Petrov, A.Shumka, E.Cao, P.Diao, W.Gong, W.Hou, Q.Kou, H.Liu, Z. -A.Song, J.Wang, N.Zhao, J.Qian, S. J.Avila, C.Barbosa Trujillo, D. A.Cabrera, A.Florez, C. A.Reyes Vega, J. A.Aly, R.Radi, A.Assran, Y.Crotty, I.Mahmoud, M. A.Balleyguier, L.Chen, X.Combaret, C.Galbit, G.Gouzevitch, M.Grenier, G.Laktineh, I. B.Luciol, A.Mirabito, L.Tromeur, W.Bagaturia, I.Kemularia, O.Lomidze, I.Tsamalaidze, Z.Amoozegar, V.Boghrati, B.Ebrahimi, M.Esfandi, F.Hosseini, Y.Najafabadi, M. MohammadiZareian, E.Abbrescia, M.De Filippis, N.Iaselli, G.Loddo, F.Pugliese, G.Ramos, D.Benussi, L.Bianco, S.Meola, S.Piccolo, D.Buontempo, S.Carnevali, F.Lista, L.Paolucci, P.Fienga, F.Braghieri, A.Montagna, P.Riccardi, C.Salvini, P.Vitulo, P.Asilar, E.Kim, T.J.Ryou, Y.Choi, S.Hong, B.Lee, K. S.Goh, J.Shin, J.Lee, Y.Pedraza, I.Uribe Estrada, C.Castilla-Valdez, H.Lopez-Fernandez, R.Sanchez Hernandez, A.Ramirez Garcia, M.Ramirez Guadarrama, D. L.Shah, M. A.Vazquez, E.Zaganidis, N.Ahmad, A.Asghar, M. I.Hoorani, H. R.Muhammad, S.Eysermans, J.
Issue Date
Aug-2025
Publisher
ELSEVIER
Keywords
Resistive plate chambers; Eco-friendly gas mixtures; Aging
Citation
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT, v.1077, pp 1 - 4
Pages
4
Indexed
SCIE
SCOPUS
Journal Title
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION A-ACCELERATORS SPECTROMETERS DETECTORS AND ASSOCIATED EQUIPMENT
Volume
1077
Start Page
1
End Page
4
URI
https://scholarworks.bwise.kr/hanyang/handle/2021.sw.hanyang/212817
DOI
10.1016/j.nima.2025.170341
ISSN
0168-9002
1872-9576
Abstract
Resistive Plate Chambers (RPCs) at CMS experiment are operated with a gas mixture containing around 95% Tetrafluoroethane (C2H2F4), commonly known as R-134a, which has a global warming potential (GWP) of 1430. In the framework of the CMS Upgrade project for the High Luminosity phase, new improved RPCs (iRPC) have been developed to enhance the legacy performances in the most RPC forward region of the experiment, shown in Fig. 1. To comply with European regulations and explore environmentally friendly gaseous mixture alternatives for long-term RPC operation, CMS RPC within the RPC EcoGas@GIF++ collaboration has launched a longevity study operating the chambers with HFO/CO2-based eco-friendly gas mixture. In this report, preliminary results of the aging study, after one year of irradiation at the Gamma Irradiation Facility at CERN are presented.
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