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arXiv:2607.11733·v2·Nuclear Theory

Ab initio calculations of two-neutrino and neutrinoless double- decay of Ca and related Gamow-Teller strength distributions

Zhen Li🇩🇪 · Lotta Jokiniemi🇩🇪 · Achim Schwenk🇩🇪

Abstract

We present ab initio calculations of two-neutrino double-beta () decay of Ca and the related Gamow-Teller (GT) strength functions in Sc using the valence-space in-medium similarity renormalization group (VS-IMSRG) with nuclear interactions and electroweak currents based on chiral effective field theory. We find that the usual -shell valence space significantly underestimates the nuclear matrix element (NME) of decay compared to experiment, while an enlarged valence space yields very good agreement with the experimental value without any adjustments. We trace this to an improved description of the involved GT strength distributions, so that the enlarged valence space captures important correlations. The enlarged valence space leads to neutrinoless NMEs of Ca that are twice as large compared to the -shell calculation. Our findings suggest that studies with different valence spaces and related GT strengths are important for assessing ab initio NME calculations of heavier decays.

Comments: 9 pages, 4 figures, minor updates including added references

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