CERN Accelerating science

Article
Report number arXiv:2109.08454
Title Performance of scintillating tiles with direct silicon-photomultiplier (SiPM) readout for application to large area detectors
Author(s) Balla, A. (Frascati) ; Buonomo, B. (Frascati) ; Cafaro, V. (INFN, Bologna) ; Calcaterra, A. (Frascati) ; Cardelli, F. (Frascati) ; Ceccucci, A. (CERN) ; Ciambrone, P. (Frascati) ; Cicero, V. (INFN, Bologna ; Bologna U., Dept. Astron.) ; Di Giovenale, D. (Frascati) ; Di Giulio, C. (Frascati) ; Felici, G. (Frascati) ; Foggetta, L.G. (Frascati) ; Giordano, V. (INFN, Bologna) ; Lanfranchi, G. (Frascati) ; Lax, I. (INFN, Bologna) ; Montanari, A. (INFN, Bologna) ; Papalino, G. (Frascati) ; Paoloni, A. (Frascati) ; Rovelli, T. (INFN, Bologna ; Bologna U., Dept. Astron.) ; Saputi, A. (Frascati) ; Torromeo, G. (INFN, Bologna) ; Tosi, N. (INFN, Bologna)
Publication 2022-01-27
Imprint 2021-09-17
Number of pages 27
Note 28 pages, 24 figures, 6 tables
In: JINST 17 (2022) P01038
DOI 10.1088/1748-0221/17/01/P01038
Subject category physics.ins-det ; Detectors and Experimental Techniques
Abstract The light yield, the time resolution and the efficiency of different types of scintillating tiles with direct Silicon Photomultiplier readout and instrumented with a customised front-end electronics have been measured at the Beam Test Facility of Laboratori Nazionali di Frascati and several test stands. The results obtained with different configurations are presented. A time resolution of the order of 300 ps, a light yield of more than 230 photo-electrons, and an efficiency better than 99.8 $\%$ are obtained with $\sim 225$ cm$^2$ large area tiles. This technology is suitable for a wide range of applications in high-energy physics, in particular for large area muon and timing detectors.
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