DOE OSTI · 1800677
Benchmark neutrinoless double- β decay matrix elements in a light nucleus
Abstract
We compute nuclear matrix elements of neutrinoless double-β decay mediated by light Majorana-neutrino exchange in the $\textit{A}$ = 6 system. The goal for this work is to benchmark two many-body approaches, the no-core shell model and the multireference in-medium similarity renormalization group (SRG). We use a SRG-evolved next-to-next-to-next-to-leading chiral order two-body potential for the nuclear interaction, and make the approximation that the isospin is conserved. We compare the results of the two approaches as a function of the cutoff on the many-body basis space. Although differences are seen in the predicted nuclear radii, the ground-state energies and neutrinoless double-β decay matrix elements produced by the two approaches show significant agreement. We discuss the implications for calculations in heavier nuclei.
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Basili, R. A. M., Yao, J. M., Engel, J., Hergert, H., Lockner, M., Maris, P., Vary, J. P.. 2020-07-02. Benchmark neutrinoless double- β decay matrix elements in a light nucleus. https://doi.org/10.1103/physrevc.102.014302
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