Muon capture on deuteron and the neutron-neutron scattering length
Abstract
We study the capture rate in the doublet hyperfine initial state for the muon capture reaction () and the total capture rate for the reaction (). We investigate whether and could be sensitive to the -wave scattering length (). To this aim, we consider nuclear potentials and weak currents derived within EFT. We employ the N3LO chiral potential with cutoff =500 MeV, but the low-energy constant (LEC) determining is varied so as to obtain =-18.95 (the present empirical value), -16.0, -22.0, and +18.22 fm. The last value leads to a bound state with a binding energy of 139 keV. The LECs and , present in the three-nucleon potential and axial-vector current, are fitted to reproduce the binding energies and the triton Gamow-Teller matrix element. The capture rate is found to be 399(3) s for =-18.95 and -16.0 fm; and 400(3) s for =-22.0 fm. For =+18.22 fm, we obtain 275(3) s (135(3) s), when the final system is unbound (bound). The rate is found to be 1494(15), 1491(16), 1488(18), and 1475(16) s for =-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 with an uncertainty of less than 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 . Finally, a comparison with the already available experimental data discourages the possibility of a bound 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