Combining 0νββ decay experiment results with ab initio nuclear matrix elements in a Bayesian framework yields stronger global Majorana neutrino mass limits than individual experiments, indicating current searches have not reached the oscillation-allowed regime.
Adamset al.(NEXT Collaboration), JHEP2021 (2021), 10.1007/JHEP08(2021)164
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The NEXT-100 detector operates in a virtually radon-free environment, with radon-induced backgrounds reduced to ~4×10⁻⁵ counts/(keV·kg·yr) after topological selection, one order of magnitude below total radiogenic background expectations.
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Global Ab initio Neutrino Mass Limits from Neutrinoless Double-Beta Decay
Combining 0νββ decay experiment results with ab initio nuclear matrix elements in a Bayesian framework yields stronger global Majorana neutrino mass limits than individual experiments, indicating current searches have not reached the oscillation-allowed regime.
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Radon-induced backgrounds in the NEXT-100 experiment
The NEXT-100 detector operates in a virtually radon-free environment, with radon-induced backgrounds reduced to ~4×10⁻⁵ counts/(keV·kg·yr) after topological selection, one order of magnitude below total radiogenic background expectations.