Publication: Liquid argon light collection and veto modeling in GERDA Phase II
Liquid argon light collection and veto modeling in GERDA Phase II
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Agostini, M., Alexander, A., Araujo, G. R., Bakalyarov, A. M., Balata, M., Barabanov, I., Baudis, L., Mingazheva, R., Miloradovic, M., Mueller, Y., Bezrukov, L., Biancacci, V., Bossio, E., Bothe, V., Brugnera, R., Caldwell, A., Calgaro, S., Cattadori, C., Chernogorov, A., … et al. (2023). Liquid argon light collection and veto modeling in GERDA Phase II. European Physical Journal C : Particles and Fields, 83, 319. https://doi.org/10.1140/epjc/s10052-023-11354-9
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The ability to detect liquid argon scintillation light from within a densely packed high-purity germanium detector array allowed the Gerda experiment to reach an exceptionally low background rate in the search for neutrinoless double beta decay of $${}^{76}$$Ge. Proper modeling of the light propagation throughout the experimental setup, from any origin in the liquid argon volume to its eventual detection by the novel light read-out system, provides insight into the rejection capability and is a necessary ingredient to obtain robust ba
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Agostini, M., Alexander, A., Araujo, G. R., Bakalyarov, A. M., Balata, M., Barabanov, I., Baudis, L., Mingazheva, R., Miloradovic, M., Mueller, Y., Bezrukov, L., Biancacci, V., Bossio, E., Bothe, V., Brugnera, R., Caldwell, A., Calgaro, S., Cattadori, C., Chernogorov, A., … et al. (2023). Liquid argon light collection and veto modeling in GERDA Phase II. European Physical Journal C : Particles and Fields, 83, 319. https://doi.org/10.1140/epjc/s10052-023-11354-9