English

Quantum Monte Carlo calculation of $\delta_{\rm NS}$ in $^{10}$C using an effective field theory approach

Nuclear Theory 2025-09-11 v2

Abstract

We compute radiative corrections to the superallowed β\beta decay of 10C^{10}{\rm C} in an effective field theory approach using nuclear matrix elements obtained from quantum Monte Carlo calculations. These corrections are an important ingredient in the extraction of the Cabibbo-Kobayashi-Masakawa quark mixing matrix element VudV_{ud}, and the role of this work is to illuminate the uncertainties arising from nuclear structure. Our results provide good agreement with both the traditional extraction of VudV_{ud}, as well as with a more recent evaluation performed using the no-core shell model and a dispersion formalism. The dominant uncertainty in this approach is the presence of two unknown low-energy constants that enter into the relevant nuclear matrix elements. Future determinations of these low-energy constants -- either from QCD or modeling them with two nucleon amplitudes -- would improve the precision of the extraction in this formalism.

Keywords

Cite

@article{arxiv.2509.07310,
  title  = {Quantum Monte Carlo calculation of $\delta_{\rm NS}$ in $^{10}$C using an effective field theory approach},
  author = {Garrett B. King and Joseph Carlson and Abraham R. Flores and Stefano Gandolfi and Emanuele Mereghetti and Saori Pastore and Maria Piarulli and Robert B. Wiringa},
  journal= {arXiv preprint arXiv:2509.07310},
  year   = {2025}
}

Comments

31 pages, 4 figures