arXiv:0809.3325·v1·Nuclear Theory
Properties of asymmetric nuclear matter in different approaches
P. Gögelein🇩🇪 · E.N.E. van Dalen🇩🇪 · Kh. Gad🇪🇬 · Kh. S. A. Hassaneen🇪🇬 · H. Müther🇩🇪
Abstract
Properties of asymmetric nuclear matter are derived from various many-body approaches. This includes phenomenological ones like the Skyrme Hartree-Fock and relativistic mean field approaches, which are adjusted to fit properties of nuclei, as well as more microscopic attempts like the Brueckner-Hartree-Fock approximation, a self-consistent Greens function method and the so-called approach, which are based on realistic nucleon-nucleon interactions which reproduce the nucleon-nucleon phase shifts. These microscopic approaches are supplemented by a density-dependent contact interaction to achieve the empirical saturation property of symmetric nuclear matter. The predictions of all these approaches are discussed for nuclear matter at high densities in -equilibrium. Special attention is paid to behavior of the isovector component of the effective mass in neutron-rich matter.
Comments: 16 pages, 7 figures