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Optimization of LYSO crystals and SiPM parameters for the CMS MIP timing detector

  • F. Addesa
  • , T. Anderson
  • , P. Barria
  • , C. Basile
  • , A. Benaglia
  • , R. Bertoni
  • , A. Bethani
  • , R. Bianco
  • , A. Bornheim
  • , G. Boldrini
  • , A. Boletti
  • , A. Bulla
  • , M. Campana
  • , B. Cardwell
  • , P. Carniti
  • , F. Cetorelli
  • , F. De Guio
  • , K. De Leo
  • , F. De Riggi
  • , J. Dervan
  • E. Fernandez, A. Gaile, M. Gallinaro, A. Ghezzi, C. Gotti, R. Goldouzian, V. Guglielmi, A. Heering, Z. Hu, M. Jose, A. Karneyeu, A. Krishna, B. Kronheim, C. Kuo, A. La Torre, A. Li, F. Lombardi, M. T. Lucchini, M. Malberti, Y. Mao, B. Marzocchi, P. Meridiani, Y. Musienko, C. Neu, G. Organtini, T. Orimoto, C. Palmer, M. Paganoni, S. Palluotto, R. Paramatti, G. Pessina, R. T. Perelman, C. Quaranta, N. Redaelli, S. Redaelli, G. Reales Gutiérrez, S. Ronchi, F. Santanastasio, I. Schmidt, J. C. Silva, G. Sorrentino, X. Sun, T. Tabarelli de Fatis, M. Tosi, B. Ujvari, J. Varela, J. Wang, M. Wayne, S. White, L. Zhang, M. Zhang
  • Princeton University
  • University of Virginia
  • Sezione di Roma
  • University of Rome
  • INFN Sezione di Milano-Bicocca
  • University of Maryland, College Park
  • European Organization for Nuclear Research
  • California Institute of Technology
  • University of Milano-Bicocca
  • Lisboa
  • Sezione INFN di Cagliari
  • Universitá di Cagliari
  • Northeastern University
  • INFN Sezione di Trieste
  • University of Trieste
  • Riga Technical University
  • University of Notre Dame
  • Tsinghua University
  • Institute for Nuclear Research of the Russian Academy of Sciences
  • National Taiwan University
  • State Key Laboratory of Nuclear Physics and Technology
  • INFN Sezione di Torino
  • University of Turin
  • Delft University of Technology (TU Delft)
  • University of Iowa
  • Kansas State University
  • INFN
  • University of Padova
  • University of Debrecen

Research output: Contribution to journalArticlepeer-review

11 Citations (Scopus)

Abstract

For the High-Luminosity (HL-LHC) phase, the upgrade of the Compact Muon Solenoid (CMS) experiment at CERN will include a novel MIP Timing Detector (MTD). The central part of MTD, the barrel timing layer (BTL), is designed to provide a measurement of the time of arrival of charged particles with a precision of 30 ps at the beginning of HL-LHC, progressively degrading to 60 ps while operating in an extremely harsh radiation environment for over a decade. In this paper we present a comparative analysis of the time resolution of BTL module prototypes made of LYSO:Ce crystal bars read out by silicon photo-multipliers (SiPMs). The timing performance measured in beam test campaigns is presented for prototypes with different construction and operation parameters, such as different SiPM cell sizes (15, 20, 25 and 30 μm), SiPM manufacturers and crystal bar thicknesses. The evolution of time resolution as a function of the irradiation level has been studied using non-irradiated SiPMs as well as SiPMs exposed up to 2 × 1014 neq/cm2 fluence. The key parameters defining the module time resolution such as SiPM characteristics (gain, photon detection efficiency, radiation induced dark count rate) and crystal properties (light output and dimensions) are discussed. These results have informed the final choice of the MTD barrel sensor configuration and offer a unique starting point for the design of future large-area scintillator-based timing detectors in either low or high radiation environments.

Original languageEnglish
Article numberP12020
JournalJournal of Instrumentation
Volume19
Issue number12
DOIs
Publication statusPublished - 1 Dec 2024
Externally publishedYes

Keywords

  • Photon detectors for UV
  • Radiation-hard detectors
  • Scintillators, scintillation and light emission processes (solid gas liquid scintillators)
  • Timing detectors
  • visible and IR photons (solid-state) (PIN diodes Si-PMTs, G-APDs, CCDs, EBCCDs, EMCCDs, CMOS imagers, etc)

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