English

Muon capture in nuclei: an ab initio approach based on quantum Monte Carlo methods

Nuclear Theory 2019-09-18 v1 Nuclear Experiment

Abstract

An ab initio quantum Monte Carlo method is introduced for calculating total rates of muon weak capture in light nuclei with mass number A12A \leq 12. As a first application of the method, we perform a calculation of the rate in 4^4He in a dynamical framework based on realistic two- and three-nucleon interactions and realistic nuclear charge-changing weak currents. The currents include one- and two-body terms induced by π\pi- and ρ\rho-meson exchange, and NN-to-Δ\Delta excitation, and are constrained to reproduce the empirical value of the Gamow-Teller matrix element in tritium. We investigate the sensitivity of theoretical predictions to current parametrizations of the nucleon axial and induced pseudoscalar form factors as well as to two-body contributions in the weak currents. The large uncertainties in the measured values obtained from bubble-chamber experiments (carried out over 50 years ago) prevent us from drawing any definite conclusions.

Keywords

Cite

@article{arxiv.1903.08078,
  title  = {Muon capture in nuclei: an ab initio approach based on quantum Monte Carlo methods},
  author = {A. Lovato and N. Rocco and R. Schiavilla},
  journal= {arXiv preprint arXiv:1903.08078},
  year   = {2019}
}

Comments

6 pages, 1 figure

R2 v1 2026-06-23T08:12:59.432Z