English

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

Instrumentation and Detectors 2024-10-14 v1 High Energy Physics - Experiment

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\rm \mu m), 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/cm22\times 10^{14}~n_{eq}/cm^2 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.

Keywords

Cite

@article{arxiv.2410.08738,
  title  = {Optimization of LYSO crystals and SiPM parameters for the CMS MIP timing detector},
  author = {F. Addesa and T. Anderson and P. Barria and C. Basile and A. Benaglia and R. Bertoni and A. Bethani and R. Bianco and A. Bornheim and G. Boldrini and A. Boletti and A. Bulla and M. Campana and B. Cardwell and P. Carniti and F. Cetorelli and F. De Guio and K. De Leo and F. De Riggi and J. Dervan and E. Fernandez and A. Gaile and M. Gallinaro and A. Ghezzi and C. Gotti and R. Goldouzian and V. Guglielmi and A. Heering and Z. Hu and M. Jose and A. Karneyeu and A. Krishna and B. Kronheim and C. Kuo and A. La Torre and A. Li and F. Lombardi and M. T. Lucchini and M. Malberti and Y. Mao and B. Marzocchi and P. Meridiani and Y. Musienko and C. Neu and G. Organtini and T. Orimoto and C. Palmer and M. Paganoni and S. Palluotto and R. Paramatti and G. Pessina and R. T. Perelman and C. Quaranta and N. Redaelli and S. Redaelli and G. Reales Gutiérrez and S. Ronchi and F. Santanastasio and I. Schmidt and J. C. Silva and G. Sorrentino and X. Sun and T. Tabarelli de Fatis and M. Tosi and B. Ujvari and J. Varela and J. Wang and M. Wayne and S. White and L. Zhang and M. Zhang},
  journal= {arXiv preprint arXiv:2410.08738},
  year   = {2024}
}