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High rate, fast timing Glass RPC for the high η CMS muon detectors

  • CMS RPC collaboration
  • IGFL, Université de Lyon, Université Lyon 1
  • Tsinghua University
  • Omega (Centre de Microélectronique)-École Polytechnique
  • Ghent University
  • Egyptian Network of High Energy Physics
  • Chulalongkorn University
  • INFN Sezione di Bari
  • Vrjie Universiteit Brussel
  • European Organization for Nuclear Research
  • LNF-INFN
  • Panjab University
  • Quaid-i-Azam University
  • Korea University
  • Kyungpook National University
  • Benemerita Universidad Autonoma de Puebla
  • Universidad Iberoamericana
  • Bhabha Atomic Research Centre
  • INFN Sezione di Napoli
  • INFN Sezione di Pavia
  • Tsinghua University
  • University of Seoul
  • Sungkyunkwan University
  • Institute for Nuclear Research and Nuclear Energy Bulgarian Academy of Sciences
  • Sofia University St. Kliment Ohridski
  • Tbilisi State University
  • Universidad de Los Andes, Colombia
  • University of Wisconsin-Madison
  • Vilnius University

Résultats de recherche: Contribution à un journalArticleRevue par des pairs

8 Citations (Scopus)

Résumé

The HL-LHC phase is designed to increase by an order of magnitude the amount of data to be collected by the LHC experiments. To achieve this goal in a reasonable time scale the instantaneous luminosity would also increase by an order of magnitude up to 6·1034 cm-2s-1. The region of the forward muon spectrometer (|η| > 1.6) is not equipped with RPC stations. The increase of the expected particles flux up to 2 kHz/cm2 (including a safety factor 3) motivates the installation of RPC chambers to guarantee redundancy with the CSC chambers already present. The current CMS RPC technology cannot sustain the expected background level. The new technology that will be chosen should have a high rate capability and provide a good spatial and timing resolution. A new generation of Glass-RPC (GRPC) using low-resistivity glass is proposed to equip at least the two most far away of the four high η muon stations of CMS. First the design of small size prototypes and studies of their performance in high-rate particles flux are presented. Then the proposed designs for large size chambers and their fast-timing electronic readout are examined and preliminary results are provided.

langue originaleAnglais
Numéro d'articleC09006
journalJournal of Instrumentation
Volume11
Numéro de publication9
Les DOIs
étatPublié - 9 sept. 2016
Modification externeOui

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