English

Neutrinoless double beta decay of deformed nuclei within QRPA with realistic interaction

Nuclear Theory 2015-03-17 v1

Abstract

In this paper a microscopic state-of-the-art approach to calculation of the nuclear matrix element M0νM^{0\nu} for neutrinoless double beta decay with an account for nuclear deformation is presented in length and applied for 76^{76}Ge, 150^{150}Nd and 160^{160}Gd. The proton-neutron quasiparticle random phase approximation (QRPA) with a realistic residual interaction [the Brueckner GG matrix derived from the charge-depending Bonn (Bonn-CD) nucleon-nucleon potential] is used as the underlying nuclear structure model. The effects of the short range correlations and the quenching of the axial vector coupling constant gAg_A are analyzed. The results show that neutrinoless double beta decay of 150^{150}Nd, to be measured soon by the SNO+ collaboration, provides one of the best probes of the Majorana neutrino mass. This confirms our preliminary conclusion in Ref. {Fang10}.

Keywords

Cite

@article{arxiv.1101.2149,
  title  = {Neutrinoless double beta decay of deformed nuclei within QRPA with realistic interaction},
  author = {Dong-Liang Fang and Amand Faessler and Vadim Rodin and Fedor Simkovic},
  journal= {arXiv preprint arXiv:1101.2149},
  year   = {2015}
}

Comments

14 pages, 3 figures