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arXiv:2511.13606·v3·High Energy Physics — Phenomenology

Probing Dark Sector Particles Coupling to Neutrinos with Double Beta Decay

Noor-Ines Boudjema🇬🇧 · Frank F. Deppisch🇬🇧 · Antonio Herrero-Brocal🇪🇸 · Chayan Majumdar🇬🇧 · Supriya Senapati🇺🇸

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Abstract

Motivated by the observation of non-zero neutrino masses and the potential for discovering physics beyond the Standard Model, numerous experiments are actively searching for neutrinoless double beta decay. In all of these searches, a substantial amount of data on two-neutrino double beta decay has been collected. In this work, we explore the sensitivity of current and future double beta decay experiments to a massive Majoron-like scalar particle coupled to neutrinos and potentially dark sector fermions, and compare their reach to the relevant cosmological constraints. On- and off-shell production of such a scalar leads to characteristic distortions in the emitted electron spectrum. We investigate how these distortions manifest in current and future double beta decay experiments, deriving the sensitivity to such a scenario. We project the reach of future experiments which can probe scalar-neutrino couplings of for sub-MeV scalar particles and remain sensitive to off-shell production above the Q-value of double beta isotopes.

Comments: 50 pages, 12 figures, discussed and constrained additional scenarios, matches published version

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