Artigo Acesso aberto Revisado por pares

Phonon-mediated crystal detectors with metallic film coating capable of rejecting α and β events induced by surface radioactivity

2021; American Institute of Physics; Volume: 118; Issue: 18 Linguagem: Inglês

10.1063/5.0050124

ISSN

1520-8842

Autores

I. Bandac, A. S. Barabash, L. Bergé, C. Bourgeois, J. M. Calvo-Mozota, P. Carniti, M. Chapellier, M. deCombarieu, I. Dafinei, F. A. Danevich, L. Dumoulin, F. Ferri, A. Giuliani, C. Gotti, Ph. Gras, C. Guérard, Aldo Ianni, H. Khalife, С. И. Коновалов, P. Loaiza, M. Madhukuttan, P. deMarcillac, R. Mariam, S. Marnieros, Claire A. Marrache-Kikuchi, M. Martínez, C. Nones, E. Olivieri, G. Pessina, D.V. Poda, T. Redon, J. A. Scarpaci, V.I. Tretyak, V. I. Umatov, M. M. Zarytskyy, A. Zolotarova,

Tópico(s)

Particle physics theoretical and experimental studies

Resumo

Phonon-mediated particle detectors based on single crystals and operated at millikelvin temperatures are used in rare-event experiments for neutrino physics and dark-matter searches. In general, these devices are not sensitive to the particle impact point, especially if the detection is mediated by thermal phonons. In this Letter, we demonstrate that excellent discrimination between interior and surface β and α events can be achieved by coating a crystal face with a thin metallic film, either continuous or in the form of a grid. The coating affects the phonon energy downconversion cascade that follows the particle interaction, leading to a modified signal shape for close-to-film events. An efficient identification of surface events was demonstrated with detectors based on a rectangular 20×20×10 mm3 Li2MoO4 crystal coated with a Pd normal-metal film (10 nm thick) and with Al–Pd superconductive bi-layers (100 nm-10 nm thick) on a 20 × 20 mm2 face. Discrimination capabilities were tested with 238U sources emitting both α and β particles. Surface events are identified for energy depositions down to millimeter-scale depths from the coated surface. With this technology, a substantial reduction of the background level can be achieved in experiments searching for neutrinoless double-beta decay.

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