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Mitigation Strategies for 42{}^{42}Ar/42{}^{42}K Background Reduction using Encapsulation with Ultra-Pure Plastic for the LEGEND Experiment

Published 15 Sep 2022 in physics.ins-det | (2209.07598v2)

Abstract: Neutrinoless double-beta (0νββ\nu\beta\beta) decay is the most compelling approach to determine the Majorana nature of neutrino and measure effective Majorana neutrino mass. The LEGEND collaboration is aiming to look for 0νββ\nu\beta\beta decay of <sup>76{}<sup>{76}Ge with unprecedented sensitivity. If underground-sourced argon is not available, the cosmogenically-induced isotope <sup>42{}<sup>{42}Ar and its decay progeny <sup>42{}<sup>{42}K in the liquid argon active veto could create a challenging background for the 0νββ\nu\beta\beta signal. We are studying methodologies to mitigate the <sup>42{}<sup>{42}K background. In order to achieve this, encapsulation of germanium detectors with 3D-printed technologies using low background material are currently under investigation. Simulation results of Poly(ethylene 2,6- naphthalate) (PEN) encapsulation of germanium detectors and plans to study other potential materials are presented.

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