English

Muon capture on the deuteron in chiral effective field theory

Nuclear Theory 2023-06-21 v1 Nuclear Experiment

Abstract

We consider the capture of a muon on a deuteron. An uncertainty analysis of the dominant channels is important for a careful analysis of forthcoming experimental data. We quantify the theoretical uncertainties of chiral effective-field-theory predictions of the muon-deuteron capture rate from the relevant neutron-neutron partial wave channels in the final state. We study the dependence on the cutoff used to regularize the interactions, low-energy constants calibrated using different fitting data and strategies, and truncation of the effective-field-theory expansion of the currents. Combining these approaches gives as an estimate of Γμd1/2=399.1±7.6±4.4\Gamma^{1/2}_{\mu d} = 399.1 \pm 7.6 \pm 4.4 s1^{-1} for capture from the atomic doublet state, and Γμd3/2=12.31±0.47±0.04\Gamma^{3/2}_{\mu d} = 12.31 \pm 0.47 \pm 0.04 s1^{-1} for capture from the quartet state.

Keywords

Cite

@article{arxiv.2212.08138,
  title  = {Muon capture on the deuteron in chiral effective field theory},
  author = {Jose Bonilla and Bijaya Acharya and Lucas Platter},
  journal= {arXiv preprint arXiv:2212.08138},
  year   = {2023}
}

Comments

17 pages, 3 figures