English

The Relativistic Dirac-Brueckner Approach to Asymmetric Nuclear Matter

Nuclear Theory 2009-11-10 v2

Abstract

The properties of asymmetric nuclear matter have been investigated in a relativistic Dirac-Brueckner-Hartree-Fock framework using the Bonn A potential. The components of the self-energies are extracted by projecting on Lorentz invariant amplitudes. Furthermore, the optimal representation scheme for the TT matrix, the subtracted TT matrix representation, is applied and the results are compared to those of other representation schemes. Of course, in the limit of symmetric nuclear matter our results agree with those found in literature. The binding energy EbE_b fulfills the quadratic dependence on the asymmetry parameter and the symmetry energy is 34 MeV at saturation density. Furthermore, a neutron-proton effective mass splitting of mn<mpm_n^* < m_p^* is found. In addition, results are given for the mean-field effective coupling constants.

Keywords

Cite

@article{arxiv.nucl-th/0407070,
  title  = {The Relativistic Dirac-Brueckner Approach to Asymmetric Nuclear Matter},
  author = {E. N. E. van Dalen and C. Fuchs and Amand Faessler},
  journal= {arXiv preprint arXiv:nucl-th/0407070},
  year   = {2009}
}

Comments

28 pages, 7 figures, to appear in Nucl. Phys. A, added additional references