English

Precision calculation of isospin-symmetry-breaking corrections to T=1/2 mirror decays using multi-reference charge-dependent density functional theory

Nuclear Theory 2022-06-24 v2

Abstract

We present systematic study of isospin impurities (αISB\alpha_{\rm ISB}) to the wave functions of T=1/2T=1/2, 11A4711\leq A \leq 47 mirror nuclei and the isospin-symmetry-breaking (ISB) corrections (δISBV\delta_{\rm ISB}^{\rm V}) to their ground state vector β\beta-decays using, for the first time, multi-reference charge-dependent density functional theory (MR-DFT) that includes strong-force-rooted class-III interaction adjusted to correct for the Nolen-Schiffer anomaly in nuclear masses. We demonstrate that, unexpectedly, the strong-force-rooted isovector force gives rise to a large systematic increase of αISB\alpha_{\rm ISB} and δISBV\delta_{\rm ISB}^{\rm V} as compared to the results obtained within MR-DFT that uses Coulomb interaction as the only source of ISB. This, in turn, increases a central value of the VudV_{\rm ud} element of the CKM matrix extracted from the T=1/2T=1/2 mirrors bringing it closer to the value obtained form the purely vector superallowed 0+0+0^+ \to 0^+ transitions. In order to compute the value of VudV_{\rm ud}, we performed precision calculation of the Fermi matrix elements in A=19,21,35A=19, 21, 35, and 37 mirror nuclei using DFT-rooted configuration-interaction model that includes all relevant axially-deformed particle-hole configurations built upon Nilsson orbitals originating from the spherical sdsd shell. Our calculations yield Vud=0.9736(16)|V_{\rm ud}|=0.9736(16).

Keywords

Cite

@article{arxiv.1909.09350,
  title  = {Precision calculation of isospin-symmetry-breaking corrections to T=1/2 mirror decays using multi-reference charge-dependent density functional theory},
  author = {M. Konieczka and P. Bączyk and W. Satuła},
  journal= {arXiv preprint arXiv:1909.09350},
  year   = {2022}
}

Comments

8 pages, 6 figures