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Optimisation of the scintillation light collection and uniformity for the SoLid experiment

Title: Optimisation of the scintillation light collection and uniformity for the SoLid experiment
Authors: Abreu, Y; Amhis, Y; Beaumont, W; Bongrand, M; Boursette, D; Castle, BC; Clark, K; Coupe, B; Cussans, D; De Roeck, A; Durand, D; Fallot, M; Ghys, L; Giot, L; Graves, K; Guillon, B; Henaff, D; Hosseini, B; Ihantola, S; Jenzer, S; Kalcheva, S; Kalousis, LN; Labare, Mathieu; Lehaut, G; Manley, S; Manzanillas, L; Mermans, J; Michiels, Ianthe; Moortgat, Céline; Newbold, D; Park, J; Pestel, V; Petridis, K; Pinera, I; Popescu, L; Ryckbosch, Dirk; Ryder, N; Saunders, D; Schune, M-H; Settimo, M; Simard, L; Vacheret, A; Vandierendonck, Giel; Van Dyck, S; Van Mulders, P; Van Remortel, N; Vercaemer, S; Verstraeten, M; Viaud, B; Weber, A; Yermia, F
Source: JOURNAL OF INSTRUMENTATION ; ISSN: 1748-0221
Publication Year: 2018
Collection: Ghent University Academic Bibliography
Subject Terms: Physics and Astronomy; Detector design and construction technologies and materials; Neutrino; detectors; Scintillators and scintillating fibres and light guides
Description: This paper presents a comprehensive optimisation study to maximise the light collection efficiency of scintillating cube elements used in the SoLid detector. Very short baseline reactor experiments, like SoLid, look for active to sterile neutrino oscillation signatures in the anti-neutrino energy spectrum as a function of the distance to the core and energy. Performing a precise search requires high light yield of the scintillating elements and uniformity of the response in the detector volume. The SoLid experiment uses an innovative hybrid technology with two different scintillators: polyvinyltoluene scintillator cubes and (LiF)-Li-6:ZnS(Ag) screens. A precision test bench based on a Bi-207 calibration source has been developed to study improvements on the energy resolution and uniformity of the prompt scintillation signal of antineutrino interactions. A trigger system selecting the 1 MeV conversion electrons provides a Gaussian energy peak and allows for precise comparisons of the different detector configurations that were considered to improve the SoLid detector light collection. The light collection efficiency is influenced by the choice of wrapping material, the position of the 6LiF:ZnS(Ag) screen, the type of fibre, the number of optical fibres and the type of mirror at the end of the fibre. This study shows that large gains in light collection efficiency are possible compared to the SoLid SM1 prototype. The light yield for the SoLid detector is expected to be at least 52 +/- 2 photo-avalanches per MeV per cube, with a relative non-uniformity of 6 %, demonstrating that the required energy resolution of at least 14 % at 1 MeV can be achieved.
Document Type: article in journal/newspaper
File Description: application/pdf
Language: English
Relation: https://biblio.ugent.be/publication/8620603; https://biblio.ugent.be/publication/8620603/file/8620657
DOI: 10.1088/1748-0221/13/09/P09005
Availability: https://biblio.ugent.be/publication/8620603; https://hdl.handle.net/1854/LU-8620603; https://doi.org/10.1088/1748-0221/13/09/P09005; https://biblio.ugent.be/publication/8620603/file/8620657
Rights: info:eu-repo/semantics/openAccess
Accession Number: edsbas.52948332
Database: BASE