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Systematic study of nuclear matrix elements in neutrinoless double-beta decay with a beyond-mean-field covariant density functional theory

J. M .Yao, L. S. Song, K. Hagino, P. Ring, and J. Meng

Keywords

covariant density functional theory, neutrinoless double beta decay, nuclear matrix elements

Abstract

We report a systematic study of nuclear matrix elements (NMEs) in neutrinoless double-beta decays with a state-of-the-art beyond mean-field covariant density functional theory. The dynamic effects of particle-number and angular-momentum conservations as well as quadrupole shape fluctuations are taken into account with projections and generator coordinate method for both initial and final nuclei. The full relativistic transition operator is adopted to calculate the NMEs. The present systematic studies show that in most of the cases there is a much better agreement with the previous non-relativistic calculation based on the Gogny force than in the case of the nucleus 150Nd found in Song et al. [Phys. Rev. C 90, 054309 (2014)]. In particular, we find that the total NMEs can be well approximated by the pure axial-vector coupling term with a considerable reduction of the computational effort.

Information

Published
2015 as article (english)
Phys. Rev. C, 91, 2 - page(s): 024316
Contact
Prof. Dr. Peter Ring
Type
theoretical work
Links
pdf
link.aps.org/doi/10.…
Related to the research area(s):
G
e-Print
1410.6326

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