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Impact of the GE1/1 upgrade on CMS muon system performance

  • A. Magnani
  • , D. Abbaneo
  • , M. Abbas
  • , M. Abbrescia
  • , A. A. Abdelalim
  • , M. Abi Akl
  • , O. Aboamer
  • , D. Acosta
  • , A. Ahmad
  • , W. Ahmed
  • , W. Ahmed
  • , A. Aleksandrov
  • , R. Aly
  • , P. Altieri
  • , C. Asawatangtrakuldee
  • , P. Aspell
  • , Y. Assran
  • , I. Awan
  • , S. Bally
  • , Y. Ban
  • S. Banerjee, V. Barashko, P. Barria, G. Bencze, N. Beni, L. Benussi, V. Bhopatkar, S. Bianco, J. Bos, O. Bouhali, A. Braghieri, S. Braibant, S. Buontempo, C. Calabria, M. Caponero, C. Caputo, F. Cassese, A. Castaneda, S. Cauwenbergh, F. R. Cavallo, A. Celik, M. Choi, S. Choi, J. Christiansen, A. Cimmino, S. Colafranceschi, A. Colaleo, A. Conde Garcia, S. Czellar, M. M. Dabrowski, G. De Lentdecker, R. De Oliveira, G. De Robertis, S. Dildick, B. Dorney, W. Elmetenawee, G. Endroczi, F. Errico, A. Fenyvesi, S. Ferry, I. Furic, P. Giacomelli, J. Gilmore, V. Golovtsov, L. Guiducci, F. Guilloux, A. Gutierrez, R. M. Hadjiiska, A. Hassan, J. Hauser, K. Hoepfner, M. Hohlmann, H. Hoorani, P. Iaydjiev, Y. G. Jeng, T. Kamon, P. Karchin, A. Korytov, S. Krutelyov, A. Kumar, H. Kim, J. Lee, T. Lenzi, L. Litov, F. Loddo, A. Madorsky, T. Maerschalk, M. Maggi, P. K. Mal, K. Mandal, A. Marchioro, A. Marinov, R. Masod, N. Majumdar, J. A. Merlin, G. Mitselmakher, A. K. Mohanty, S. Mohamed, A. Mohapatra, J. Molnar, S. Muhammad, S. Mukhopadhyay, M. Naimuddin, S. Nuzzo, E. Oliveri, L. M. Pant, P. Paolucci, I. Park, G. Passeggio, B. Pavlov, B. Philipps, D. Piccolo, H. Postema, A. Puig Baranac, A. Radi, R. Radogna, G. Raffone, A. Ranieri, G. Rashevski, C. Riccardi, M. Rodozov, A. Rodrigues, L. Ropelewski, S. RoyChowdhury, G. Ryu, M. S. Ryu, A. Safonov, S. Salva, G. Saviano, A. Sharma, A. Sharma, R. Sharma, A. H. Sha, M. Shopova, J. Sturdy, G. Sultanov, S. K. Swain, Z. Szillasi, J. Talvitie, A. Tatarinov, T. Tuuva, M. Tytgat, I. Vai, M. Van Stenis, R. Venditti, E. Verhagen, P. Verwilligen, P. Vitulo, S. Volkov, A. Vorobyev, D. Wang, M. Wang, U. Yang, Y. Yang, R. Yonamine, N. Zaganidis, F. Zenoni, A. Zhang
  • University of Pavia
  • CERN
  • University of Bari
  • Helwan University
  • Texas A&M University at Qatar
  • Academy of Scientific Research and Technology
  • University of Florida
  • Quaid-I-Azam University
  • Bulgarian Academy of Sciences
  • Peking University
  • Saha Institute of Nuclear Physics
  • Université libre de Bruxelles
  • Hungarian Academy of Sciences
  • National Institute for Nuclear Physics
  • Florida Institute of Technology
  • University of Bologna
  • Ghent University
  • Texas A&M University
  • University of Seoul
  • Korea University
  • RAS - Saint Petersburg Nuclear Physics Institute
  • CEA Saclay
  • Wayne State University
  • University of California at Los Angeles
  • RWTH Aachen University
  • University of Delhi
  • Sofia University St. Kliment Ohridski
  • National Institute of Science Education and Research
  • Institut Pluridisciplinaire - Hubert Curien (IPHC)
  • Bhabha Atomic Research Centre
  • Lappeenranta-Lahti University of Technology
  • Seoul National University

Research output: Contribution to journalArticlepeer-review

Abstract

During the future LHC upgrade planned in 2018, the forward endcap region of the CMS muon spectrometer will be upgraded with GEM chambers. GEM technology is able to withstand the radiation environment expected in the forward region. The GE1/1 station will be included in the muon L1 trigger, allowing to keep low pT threshold even at high luminosity. Moreover, it will bring detection redundancy in the most critical part of the CMS muon system, along with benefits to muon reconstruction performance.

Original languageEnglish
Article number260
JournalNuovo Cimento della Societa Italiana di Fisica C
Volume39
Issue number1
DOIs
Publication statusPublished - 1 Jan 2016
Externally publishedYes

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