Isovector nuclear spin-orbit interaction from chiral pion-nucleon dynamics
Abstract
Using the two-loop approximation of chiral perturbation theory, we calculate the momentum and density dependent isovector nuclear spin-orbit strength . This quantity is derived from the spin-dependent part of the interaction energy of a nucleon scattering off weakly inhomogeneous isospin-asymmetric nuclear matter. We find that iterated -exchange generates at saturation density, MeV, an isovector nuclear spin-orbit strength at of MeVfm. This value is about 1.4 times the analogous isoscalar nuclear spin-orbit strength MeVfm generated by the same two-pion exchange diagrams. We also calculate several relativistic 1/M-corrections to the isoscalar nuclear spin-orbit strength. In particular, we evaluate the contributions from irreducible two-pion exchange to . The effects of the three-body diagrams constructed from the Weinberg-Tomozawa -contact vertex on the isoscalar nuclear spin-orbit strength are computed. We find that such relativistic 1/M-corrections are less than 20% of the isoscalar nuclear spin-orbit strength generated by iterated one-pion-exchange, in accordance with the expectation from chiral power counting.
Cite
@article{arxiv.nucl-th/0301019,
title = {Isovector nuclear spin-orbit interaction from chiral pion-nucleon dynamics},
author = {N. Kaiser},
journal= {arXiv preprint arXiv:nucl-th/0301019},
year = {2009}
}
Comments
15 pages, 8 figures