English

Theoretical Study of the ^3He(mu^-,nu_mu)^3H Capture

Nuclear Theory 2014-11-18 v2

Abstract

The ^3He(mu^-,nu_mu)^3H weak capture is studied using correlated-hyperspherical-harmonics wave functions, obtained from realistic Hamiltonians consisting of the Argonne v14v_{14} or Argonne v18v_{18} two-nucleon, and Tucson-Melbourne or Urbana-IX three-nucleon interactions. The nuclear weak charge and current operators have vector and axial-vector components that include one- and two-body contributions. The strength of the leading two-body operator in the axial-vector current is adjusted to reproduce the Gamow-Teller matrix element in tritium β\beta-decay. The calculated total capture rate is in excellent agreement with the most recent experimental determination 1496±41496\pm 4 sec1^{-1}, when the PCAC value is adopted for the induced pseudo-scalar coupling constant gPSg_{PS}. The predictions for the capture rate and angular correlation parameters AvA_v, AtA_t, and AΔA_\Delta are found to be only very weakly dependent on the model input Hamiltonian. The variation of these observables with gPSg_{PS} and the theoretical uncertainties deriving from the model-dependent procedure used to constrain the axial current are investigated.

Keywords

Cite

@article{arxiv.nucl-th/0112008,
  title  = {Theoretical Study of the ^3He(mu^-,nu_mu)^3H Capture},
  author = {L. E. Marcucci and R. Schiavilla and S. Rosati and A. Kievsky and M. Viviani},
  journal= {arXiv preprint arXiv:nucl-th/0112008},
  year   = {2014}
}

Comments

16 pages, 1 figure, submitted to PRC