Shashlik calorimeters for the ENUBET tagged neutrino beam

Shashlik calorimeters equipped with a compact readout based on Silicon PhotoMultipliers can be longitudinally segmented by directly coupling the WLS fibers with the photosensors thus embedding the readout in the bulk of the calorimeter. Results on energy resolution and particle identification for su...

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Veröffentlicht in:J.Phys.Conf.Ser 2019-01, Vol.1162 (1), p.12032
Hauptverfasser: Ballerini, G, Berra, A, Boanta, R, Bonesini, M, Brizzolari, C, Brunetti, G, Calviani, M, Carturan, S, Catanesi, M G, Cecchini, S, Cindolo, F, Coffani, A, Collazuol, G, Conti, E, Dal Corso, F, Delogu, C, De Rosa, G, Gola, A, Intonti, R A, Jollet, C, Kudenko, Y, Laveder, M, Longhin, A, Loverre, P F, Ludovici, L, Magaletti, L, Mandrioli, G, Margotti, A, Mascagna, V, Mauri, N, Meregaglia, A, Mezzetto, M, Nessi, M, Paoloni, A, Pari, M, Parozzi, E, Pasqualini, L, Paternoster, G, Patrizii, L, Piemonte, C, Pozzato, M, Prest, M, Pupilli, F, Radicioni, E, Riccio, C, Ruggieri, A C, Sirri, G, Soldani, M, Tenti, M, Terranova, F, Torti, M, Vallazza, E, Vesco, M, Votano, L
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Sprache:eng
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Zusammenfassung:Shashlik calorimeters equipped with a compact readout based on Silicon PhotoMultipliers can be longitudinally segmented by directly coupling the WLS fibers with the photosensors thus embedding the readout in the bulk of the calorimeter. Results on energy resolution and particle identification for such calorimeters are presented. The SiPMs for the readout have also been characterized after being exposed to neutron fluences up to 2×1011 n/cm2 (1 MeV eq.). Alternative options for the active material were also investigated; we studied in particular polysiloxane as a substitute for plastic scintillator.
ISSN:1742-6588
1742-6596
DOI:10.1088/1742-6596/1162/1/012032