Two-neutrino $ββ$ decay to excited states at next-to-leading order

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Main Authors: Castillo, Daniel, Frycz, Dorian, Benavente, Beatriz, Menéndez, Javier
Format: Preprint
Published: 2025
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author Castillo, Daniel
Frycz, Dorian
Benavente, Beatriz
Menéndez, Javier
author_facet Castillo, Daniel
Frycz, Dorian
Benavente, Beatriz
Menéndez, Javier
contents We study two-neutrino double-beta decay ($2νββ$) into first-excited $0^+_2$ states of nuclei used in $ββ$ decay experiments, including $^{76}$Ge, $^{82}$Se, $^{130}$Te, and $^{136}$Xe. We calculate the corresponding nuclear matrix elements (NMEs) within the nuclear shell model, using various Hamiltonians that describe well the spectroscopy of the initial and final nuclei. We evaluate the next-to-leading order (NLO) long-range NMEs recently introduced within chiral effective field theory, keeping three terms in the expansion of the energy denominator. In most cases, NLO contributions to the half-life are below 5%, but they can significantly increase due to cancellations in the leading-order Gamow-Teller NME. A detailed analysis in terms of nuclear deformation, including triaxiality, indicates that larger deformation differences between the initial and final states generally lead to smaller NMEs, but the seniority structure of the states also plays a relevant role. The lower range of our predicted half-lives, with uncertainties dominated by the nuclear Hamiltonian used, are slightly longer than the current experimental limit in $^{76}$Ge and consistent with the very recent half-life indication in $^{82}$Se.
format Preprint
id arxiv_https___arxiv_org_abs_2507_21868
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Two-neutrino $ββ$ decay to excited states at next-to-leading order
Castillo, Daniel
Frycz, Dorian
Benavente, Beatriz
Menéndez, Javier
Nuclear Theory
High Energy Physics - Experiment
High Energy Physics - Phenomenology
Nuclear Experiment
We study two-neutrino double-beta decay ($2νββ$) into first-excited $0^+_2$ states of nuclei used in $ββ$ decay experiments, including $^{76}$Ge, $^{82}$Se, $^{130}$Te, and $^{136}$Xe. We calculate the corresponding nuclear matrix elements (NMEs) within the nuclear shell model, using various Hamiltonians that describe well the spectroscopy of the initial and final nuclei. We evaluate the next-to-leading order (NLO) long-range NMEs recently introduced within chiral effective field theory, keeping three terms in the expansion of the energy denominator. In most cases, NLO contributions to the half-life are below 5%, but they can significantly increase due to cancellations in the leading-order Gamow-Teller NME. A detailed analysis in terms of nuclear deformation, including triaxiality, indicates that larger deformation differences between the initial and final states generally lead to smaller NMEs, but the seniority structure of the states also plays a relevant role. The lower range of our predicted half-lives, with uncertainties dominated by the nuclear Hamiltonian used, are slightly longer than the current experimental limit in $^{76}$Ge and consistent with the very recent half-life indication in $^{82}$Se.
title Two-neutrino $ββ$ decay to excited states at next-to-leading order
topic Nuclear Theory
High Energy Physics - Experiment
High Energy Physics - Phenomenology
Nuclear Experiment
url https://arxiv.org/abs/2507.21868