Characterization of a radiation detector based on opaque water-based liquid scintillator

Apilluelo, J. (Universidad de Zaragoza) ; Asquith, L. ; Bannister, E.F. ; Beney, J.L. ; de La Bernardie, X. ; Bezerra, T.J.C. ; Bongrand, M. ; Bourgeois, C. ; Boutalha, H. ; Breton, D. ; Briere, M. ; Cabrera, A. ; Cadiou, A. ; Calvo, E. ; Chaumat, V. ; Chauveau, E. ; Cattermole, B.J. ; Chen, M. ; Chimenti, P. ; Cornet, T. ; Cowen, D.F. ; Delafosse, C. ; Dusini, S. ; Earle, A. ; Frigerio-Martins, C. ; Galán, J. ; Gallas, A. ; García, J.A. ; Gazzini, R. ; Gibson-Foster, A. ; Girard-Carillo, C. ; Griffith, W.C. ; Gómez-Cadenas, J.J. ; Guittière, M. ; Haddad, F. ; Hartnell, J. ; Holin, A. ; Hull, G. ; Irastorza, I.G. (Universidad de Zaragoza) ; Jovanovic, I. ; Koch, L. ; Du, J.F. Le ; Lefebvre, C. ; Lefevre, F. ; Legrand, F. ; Loaiza, P. ; Lock, J.A. ; Luzón, G. (Universidad de Zaragoza) ; Maalmi, J. ; Malhado, J.P. ; Mantovani, F. ; Marquet, C. ; Martínez, M. ; Mathon, B. ; Navas-Nicolás, D. ; Nunokawa, H. ; Ochoa-Ricoux, J.P. ; Palomares, C. ; Petyt, D. ; Pillot, P. ; Porter, J.C.C. ; Pravikoff, M.S. ; Ramarijaona, H. ; Roche, M. ; Rosero, R. ; Rosier, P. ; Roskovec, B. ; Sarsa, M.L. ; Schoppmann, S. ; Serafini, A. ; Shepherd-Themistocleous, C. ; Shorrock, W. ; Simard, L. ; Soleti, S.R. ; Steiger, H.Th.J. ; Stocco, D. ; Strati, V. ; Stutzmann, J.S. ; Suekane, F. ; Tunc, A. ; Tuccori, N. ; Verdugo, A. ; Viaud, B. ; Wakely, S.M. ; Weber, A. ; Wendel, G. ; Wilhelm, A.S. ; Yeh, M. ; Yermia, F.
Characterization of a radiation detector based on opaque water-based liquid scintillator
Resumen: We present the characterization of a novel radiation detector based on an opaque water-based liquid scintillator. Opaque scintillators, also known as LiquidO, are made to be highly scattering, such that the scintillation light is effectively confined, and read out through wavelength-shifting fibers. The 1-liter, 32-channel prototype demonstrates the capability for both spectroscopy and topological reconstruction of point-like events. The design, construction, and evaluation of the detector are described, including modeling of the scintillation liquid optical properties and the detector’s response to gamma rays of several energies. A mean position reconstruction error of 4.4 mm for 1.6 MeV-equivalent events and 7.4 mm for 0.8 MeV-equivalent events is demonstrated using a simple reconstruction approach analogous to center-of-mass.
Idioma: Inglés
DOI: 10.1016/j.nima.2024.170075
Año: 2024
Publicado en: Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment 1071 [14 pp.] (2024), 170075
ISSN: 0168-9002

Tipo y forma: Article (PostPrint)
Área (Departamento): Área Física Atóm.Molec.y Nucl. (Dpto. Física Teórica)

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Articles > Artículos por área > Física Atómica, Molecular y Nuclear



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