English

Skyrme interaction to second order in nuclear matter

Nuclear Theory 2015-09-02 v1

Abstract

Based on the phenomenological Skyrme interaction various density-dependent nuclear matter quantities are calculated up to second order in many-body perturbation theory. The spin-orbit term as well as two tensor terms contribute at second order to the energy per particle. The simultaneous calculation of the isotropic Fermi-liquid parameters provides a rigorous check through the validity of the Landau relations. It is found that published results for these second order contributions are incorrect in most cases. In particular, interference terms between ss-wave and pp-wave components of the interaction can contribute only to (isospin or spin) asymmetry energies. Even with nine adjustable parameters, one does not obtain a good description of the empirical nuclear matter saturation curve in the low density region 0<ρ<2ρ00<\rho<2\rho_0. The reason for this feature is the too strong density-dependence ρ8/3\rho^{8/3} of several second-order contributions. The inclusion of the density-dependent term 16t3ρ1/6{1\over 6}t_3 \rho^{1/6} is therefore indispensable for a realistic description of nuclear matter in the Skyrme framework.

Keywords

Cite

@article{arxiv.1505.07095,
  title  = {Skyrme interaction to second order in nuclear matter},
  author = {N. Kaiser},
  journal= {arXiv preprint arXiv:1505.07095},
  year   = {2015}
}

Comments

19 pages, 6 figures

R2 v1 2026-06-22T09:41:52.317Z