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arXiv:2408.02169·v1·Nuclear Theory

Correlation of neutrinoless double-beta decay nuclear matrix elements with nucleon-nucleon phase shifts

A. Belley🇨🇦 · J. Pitcher🇨🇦 · T. Miyagi🇯🇵 · S. R. Stroberg🇺🇸 · J. D. Holt🇨🇦

Abstract

We present an ab initio study of the correlation between nuclear matrix elements of neutrinoless double-beta () decay and nucleon-nucleon scattering phase shifts in the channel. Starting from thirty-four statistically weighted interactions derived from chiral effective field theory, we apply the valence-space in-medium similarity renormalization group to calculate nuclear matrix elements in four key experimental isotopes. Comparing with the -channel phase shifts given from each interaction, in all cases we observe a strong correlation for scattering energies above 75 MeV. Furthermore, a global sensitivity analysis, enabled by newly developed machine-learning emulators, confirms that the nuclear matrix elements of the decay depend primarily on the low-energy constant, which is associated with the phase shifts in that partial wave. These results provide the first clear correlation between decay nuclear matrix elements and a measured observable and will therefore serve as a crucial component in ongoing and future refinements of ab initio uncertainty estimates.

Comments: 7 pages, 4 figures, Supplemental Material included

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