English

Muon capture on deuteron using local chiral potentials

Nuclear Theory 2023-01-24 v1

Abstract

The muon capture reaction μ+dn+n+νμ\mu^- + d \rightarrow n + n + \nu_{\mu} in the doublet hyperfine state is studied using nuclear potentials and consistent currents derived in chiral effective field theory, which are local and expressed in coordinate-space (the so-called Norfolk models). Only the largest contribution due to the 1S0^1S_0 nnnn scattering state is considered. Particular attention is given to the estimate of the theoretical uncertainty, for which four sources have been identified: (i) the model dependence, (ii) the chiral order convergence for the weak nuclear current, (iii) the uncertainty in the single-nucleon axial form factor, and (iv) the numerical technique adopted to solve the bound and scattering A=2A=2 systems. This last source of uncertainty has turned out essentially negligible. The 1S0^1S_0 doublet muon capture rate ΓD(1S0)\Gamma^D(^1S_0) has been found to be ΓD(1S0)=255.8(0.6)(4.4)(2.9)\Gamma^D(^1S_0)=255.8(0.6)(4.4)(2.9) s1^{-1}, where the three errors come from the first three sources of uncertainty. The value for ΓD(1S0)\Gamma^D(^1S_0) obtained within this local chiral framework is compared with previous calculations and found in very good agreement.

Keywords

Cite

@article{arxiv.2209.09762,
  title  = {Muon capture on deuteron using local chiral potentials},
  author = {L. Ceccarelli and A. Gnech and L. E. Marcucci and M. Piarulli and M. Viviani},
  journal= {arXiv preprint arXiv:2209.09762},
  year   = {2023}
}

Comments

33 pages, 3 figures

R2 v1 2026-06-28T01:44:46.054Z