English

Isovector nuclear spin-orbit interaction from chiral pion-nucleon dynamics

Nuclear Theory 2009-11-10 v1

Abstract

Using the two-loop approximation of chiral perturbation theory, we calculate the momentum and density dependent isovector nuclear spin-orbit strength Vls(p,kf)V_{ls}(p,k_f). This quantity is derived from the spin-dependent part of the interaction energy Σspin=i2σ(q×p)[Uls(p,kf)Vls(p,kf)τ3δ]\Sigma_{spin} = {i\over 2} \vec \sigma \cdot (\vec q \times\vec p)[U_{ls}(p,k_f)- V_{ls}(p,k_f)\tau_3 \delta] of a nucleon scattering off weakly inhomogeneous isospin-asymmetric nuclear matter. We find that iterated 1π1\pi-exchange generates at saturation density, kf0=272.7k_{f0}=272.7 MeV, an isovector nuclear spin-orbit strength at p=0p=0 of Vls(0,kf0)50V_{ls}(0,k_{f0}) \simeq 50 MeVfm2^2. This value is about 1.4 times the analogous isoscalar nuclear spin-orbit strength Uls(0,kf0)35U_{ls}(0,k_{f0})\simeq 35 MeVfm2^2 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 Uls(p,kf)U_{ls}(p,k_f). The effects of the three-body diagrams constructed from the Weinberg-Tomozawa ππNN\pi\pi NN-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.

Keywords

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

R2 v1 2026-07-22T18:28:39.754Z