Akademska digitalna zbirka SLovenije - logo
E-viri
Celotno besedilo
Recenzirano Odprti dostop
  • CMS iRPC FEB development an...
    Gouzevitch, M.; El Sawy, M.; Alves, G.A.; Marujo, F.; Coelho, E.A.; Da Costa, E.M.; Nogima, H.; Santoro, A.; De Jesus Damiao, D.; Thiel, M.; Amarilo, K. Mota; Filho, M. Barroso Ferreira; Aleksandrov, A.; Hadjiiska, R.; Iaydjiev, P.; Rodozov, M.; Shopova, M.; Soultanov, G.; Dimitrov, A.; Litov, L.; Shumka, E.; Qian, S.J.; Gong, W.; Wang, N.; Kou, H.; Liu, Z.-A.; Zhao, J.; Hou, Q.; Diao, W.; Cao, P.; Avila, C.; Barbosa, D.; Florez, A.; Fraga, J.; Reyes, J.; Assran, Y.; Mahmoud, M.A.; Mohammed, Y.; Crotty, I.; Laktineh, I.; Negra, R. Della; Mirabito, L.; Combaret, C.; Tromeur, W.; Galbit, G.; Girerd, C.; Luciol, A.; Chen, X.; Lomidze, I.; Amoozegar, V.; Boghrati, B.; Ebraimi, M.; Najafabadi, M. Mohammadi; Zareian, E.; Abbrescia, M.; Iaselli, G.; Pugliese, G.; Loddo, F.; De Filippis, N.; Aly, R.; Ramos, D.; Elmetenawee, W.; Leszki, S.; Margjeka, I.; Paesani, D.; Benussi, L.; Bianco, S.; Piccolo, D.; Meola, S.; Buontempo, S.; Lista, L.; Paolucci, P.; Braghieri, A.; Salvini, P.; Montagna, P.; Riccardi, C.; Choi, J.; Kim, T.J.; Choi, S.Y.; Hong, B.; Lee, K.S.; Oh, H.Y.; Goh, J.; Estrada, C. Uribe; Pedraza, I.; Castilla-Valdez, H.; Fernandez, R.L.; Ramirez-Garcia, M.; Vazquez, E.; Shah, M.A.; Zaganidis, N.; Radi, A.; Hoorani, H.; Muhammad, S.; Asghar, I.; Khan, W.A.; Eysermans, J.; Da Silva De Araujo, F. Torres; Callier, S.; De La Taille, C.

    Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, 07/2024, Letnik: 1064
    Journal Article

    In view of the High Luminosity upgrade of the CERN LHC, the forward CMS Muon spectrometer will be extended with two new stations of improved Resistive Plate Chambers (iRPC) covering the pseudorapidity range from 1.8 to 2.4. Compared to the present RPC system, the gap thickness is reduced to lower the avalanche charge, and an innovative 2D strip readout geometry is proposed. These improvements will allow iRPC detector to cope with higher background rates. A new Front-End-Board (FEB) is designed to readout iRPC signals with a threshold as low as 30fC and an integrated Time Digital Converter with a resolution of 30ps. In addition, the communication bandwidth is significantly increased by using optical fibers. The history, final design, certification, and calibration of this FEB are presented.