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arXiv:2008.06588·v2·Nuclear Theory

Ab initio neutrinoless double-beta decay matrix elements for 48Ca, 76Ge, and 82Se

A. Belley🇨🇦 · C. G. Payne🇨🇦 · S. R. Stroberg🇺🇸 · T. Miyagi🇨🇦 · J. D. Holt🇨🇦

Abstract

We calculate basis-space converged neutrinoless decay nuclear matrix elements for the lightest candidates: 48Ca, 76Ge and 82Se. Starting from initial two- and three-nucleon forces, we apply the ab initio in-medium similarity renormalization group to construct valence-space Hamiltonians and consistently transformed -decay operators. We find that the tensor component is non-negligible in 76Ge and 82Se, and resulting nuclear matrix elements are overall 25-45% smaller than those obtained from the phenomenological shell model. While a final matrix element with uncertainties still requires substantial developments, this work nevertheless opens a path toward a true first-principles calculation of neutrinoless decay in all nuclei relevant for ongoing large-scale searches.

Comments: 6 pages, 3 figures, final published version

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