Development of a Cherenkov-Based Time-of-Flight Detector Using Silicon Photomultipliers
Liliana Congedo, Giuseppe De Robertis, Antonio Di Mauro, Mario Giliberti, Francesco Licciulli, Antonio Liguori, Rocco Liotino, Leonarda Lorusso, Mario Nicola Mazziotta, Eugenio Nappi, Nicola Nicassio, Giuliana Panzarini, Roberta Pillera, Giacomo Volpe

TL;DR
This paper presents the development and testing of a Cherenkov-based Time-of-Flight detector using silicon photomultipliers, achieving sub-40 ps time resolution for particle identification.
Contribution
It introduces an optimized Cherenkov radiator and SiPM coupling method, validated through simulations and beam tests, demonstrating high precision timing capabilities.
Findings
Achieved time resolution better than 33.2 ps
Demonstrated 100% charged particle detection efficiency
Validated performance with CERN beam test data
Abstract
The aim of this work is to develop high precision Time-of-Flight (TOF) devices based on high refractive index solid Cherenkov radiators read out by silicon photomultipliers (SiPMs). Cherenkov light is prompt and therefore ideal for reaching the intrinsic timing limits of TOF systems. By utilizing a thin, high-refractive-index radiator a nearly instantaneous signal is generated by particles exceeding the Cherenkov threshold. In order to achieve the ultimate time resolution, we carried out a rigorous optimization of the radiator material and geometry, alongside the efficiency of the optical coupling to the SiPM sensors. The key factors limiting the time resolution were characterized by comprehensive Monte Carlo simulations, subsequently validated against experimental beam test data. We assembled small-scale prototypes instrumented with various Hamamatsu SiPM arrays sensors with pitches…
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Taxonomy
TopicsRadiation Detection and Scintillator Technologies · Photocathodes and Microchannel Plates · Astrophysics and Cosmic Phenomena
