Pregled bibliografske jedinice broj: 1123555
Silicon Photomultipliers for the decay tunnel instrumentation of the ENUBET neutrino beam
Silicon Photomultipliers for the decay tunnel instrumentation of the ENUBET neutrino beam // Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, 983 (2020), 164482, 5 doi:10.1016/j.nima.2020.164482 (međunarodna recenzija, članak, znanstveni)
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Naslov
Silicon Photomultipliers for the decay tunnel instrumentation of the ENUBET neutrino beam
Autori
Pozzato, M. ; Acerbi, F. ; Ballerini, G. ; Berra, A. ; Bonesini, M. ; Branca, A. ; Brizzolari, C. ; Brunetti, G. ; Calviani, M. ; Capelli, S. ; Carturan, S. ; Catanesi, M.G. ; Cecchini, S. ; Charitonidis, N. ; Cindolo, F. ; Collazuol, G. ; Conti, E. ; Corso, F. Dal ; Delogu, C. ; De Rosa, G. ; Falcone, A. ; Gola, A. ; Jollet, C. ; Kain, V. ; Kliček, Budimir ; Kudenko, Y. ; Laveder, M. ; Longhin, A. ; Ludovici, L. ; Lutsenko, E. ; Magaletti, L. ; Mandrioli, G. ; Margotti, A. ; Mascagna, V. ; Mauri, N. ; Meazza, L. ; Meregaglia, A. ; Mezzetto, M. ; Nessi, M. ; Paoloni, A. ; Pari, M. ; Parozzi, E.G. ; Pasqualini, L. ; Paternoster, G. ; Patrizii, L. ; Prest, M. ; Pupilli, F. ; Radicioni, E. ; Riccio, C. ; Ruggieri, A.C. ; Scian, C. ; Sirri, G. ; Soldani, M. ; Stipčević, Mario ; Tenti, M. ; Terranova, F. ; Torti, M. ; Vallazza, E. ; Velotti, F. ; Vesco, M. ; Votano, L.
Kolaboracija
ENUBET Collaboration
Izvornik
Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment (0168-9002) 983
(2020);
164482, 5
Vrsta, podvrsta i kategorija rada
Radovi u časopisima, članak, znanstveni
Ključne riječi
neutrino ; photomultipliers ; tagged beam
Sažetak
The goal of the ENUBET project is to demonstrate that a precision of on measurement of the absolute neutrino cross section at GeV scale can be achieved by monitoring the positron production in the decay tunnel coming from the three-body semileptonic decays of kaons. The baseline option for the tunnel instrumentation employs a fine-grained shashlik calorimeter with a 4.3 X0 longitudinal segmentation to separate positrons and pions coming from other decay modes of kaons. The system is complemented by rings of plastic scintillator doublets below the calorimeter acting as a photon veto to suppress the 0 background and to provide timing informations. SiPMs instrumenting the detector will be exposed to sizeble amounts of neutrons arising in hadronic showers. In order to reproduce such a working environment, SiPMs with different cell size (from 12 to 20 um) were irradiated at the INFN-LNL CN Van Der Graaf with neutron fluences up to 2 \times 10^{; ; ; 11}; ; ; n/cm^2 (1 MeV-eq.). The exposed light sensors were characterized in terms of I–V curves at different irradiation levels, and their response tested by exposing a prototype on beam at CERN. In this contribution we will report the results of the described tests on SiPMs, together with the advances in their integration with the ENUBET detectors.
Izvorni jezik
Engleski
Znanstvena područja
Fizika
POVEZANOST RADA
Ustanove:
Institut "Ruđer Bošković", Zagreb
Citiraj ovu publikaciju:
Časopis indeksira:
- Current Contents Connect (CCC)
- Web of Science Core Collection (WoSCC)
- Science Citation Index Expanded (SCI-EXP)
- SCI-EXP, SSCI i/ili A&HCI
- Scopus