English

Muon capture on deuteron and the neutron-neutron scattering length

Nuclear Theory 2014-11-13 v2

Abstract

We study the capture rate in the doublet hyperfine initial state for the muon capture reaction μ+2Hνμ+n+n\mu^- + \,^2{\rm H} \rightarrow \nu_\mu + n + n (ΓD\Gamma^D) and the total capture rate for the reaction μ+3Heνμ+3H \mu^- + \,^3{\rm He} \rightarrow \nu_\mu + \,^3{\rm H} (Γ0\Gamma_0). We investigate whether ΓD\Gamma^D and Γ0\Gamma_0 could be sensitive to the nnnn SS-wave scattering length (anna_{nn}). To this aim, we consider nuclear potentials and weak currents derived within χ\chiEFT. We employ the N3LO chiral potential with cutoff Λ\Lambda=500 MeV, but the low-energy constant (LEC) determining anna_{nn} is varied so as to obtain anna_{nn}=-18.95 (the present empirical value), -16.0, -22.0, and +18.22 fm. The last value leads to a nnnn bound state with a binding energy of 139 keV. The LECs cDc_D and cEc_E, present in the three-nucleon potential and axial-vector current, are fitted to reproduce the A=3A=3 binding energies and the triton Gamow-Teller matrix element. The capture rate ΓD\Gamma^D is found to be 399(3) s1^{-1} for anna_{nn}=-18.95 and -16.0 fm; and 400(3) s1^{-1} for anna_{nn}=-22.0 fm. For anna_{nn}=+18.22 fm, we obtain 275(3) s1^{-1} (135(3) s1^{-1}), when the final nnnn system is unbound (bound). The rate Γ0\Gamma_0 is found to be 1494(15), 1491(16), 1488(18), and 1475(16) s1^{-1} for anna_{nn}=-18.95, -16.0, -22.0, and +18.22 fm, respectively. The theoretical uncertainties are due to the fitting procedure and radiative corrections. Our results seem to exclude the possibility of constraining a negative anna_{nn} with an uncertainty of less than ±\sim \pm 3 fm through an accurate determination of the muon capture rates, but the uncertainty on the present empirical value will not complicate the interpretation of the (forth-coming) experimental results for ΓD\Gamma^D. Finally, a comparison with the already available experimental data discourages the possibility of a bound nnnn state.

Keywords

Cite

@article{arxiv.1409.4260,
  title  = {Muon capture on deuteron and the neutron-neutron scattering length},
  author = {L. E. Marcucci and R. Machleidt},
  journal= {arXiv preprint arXiv:1409.4260},
  year   = {2014}
}

Comments

5 pages, 2 figures; revisited version accepted for publication on Phys. Rev. C