English

Nuclear ab initio calculations of 6He $\beta$-decay for beyond the Standard Model studies

Nuclear Theory 2022-07-07 v3 Nuclear Experiment

Abstract

Precision measurements of β\beta-decay observables offer the possibility to search for deviations from the Standard Model. A possible discovery of such deviations requires accompanying first-principles calculations. Here we compute the nuclear structure corrections for the β\beta-decay of 6^6He which is of central interest in several experimental efforts. We employ the impulse approximation together with wave functions calculated using the ab initio no-core shell model with potentials based on chiral effective field theory. We use these state-of-the-art calculations to give a novel and comprehensive analysis of theoretical uncertainties. We find that nuclear corrections, which we compute within the sensitivity of future experiments, create significant deviation from the naive Gamow-Teller predictions, making their accurate assessment essential in searches for physics beyond the Standard Model.

Keywords

Cite

@article{arxiv.2107.10212,
  title  = {Nuclear ab initio calculations of 6He $\beta$-decay for beyond the Standard Model studies},
  author = {Ayala Glick-Magid and Christian Forssén and Daniel Gazda and Doron Gazit and Peter Gysbers and Petr Navrátil},
  journal= {arXiv preprint arXiv:2107.10212},
  year   = {2022}
}

Comments

Published version