PaperPanorama

arXiv:1610.02236·v1·Nuclear Theory

The properties of nuclear matter with lattice potential in relativistic Brueckner-Hartree-Fock theory

Jinniu Hu🇨🇳 · Hiroshi Toki🇯🇵 · Hong Shen🇨🇳

Abstract

We study the properties of nuclear matter with lattice nucleon-nucleon () potential in the relativistic Brueckner-Hartree-Fock (RBHF) theory. To use this potential in such a microscopic many-body theory, we firstly have to construct a one-boson-exchange potential (OBEP) based on the latest lattice potential. Three mesons, pion, meson, and meson, are considered. Their coupling constants and cut-off momenta are determined by fitting the on-shell behaviors and phase shifts of the lattice force, respectively. Therefore, we obtain two parameter sets of the OBEP potential (named as LOBEP1 and LOBEP2) with these two fitting ways. We calculate the properties of symmetric and pure neutron matter with LOBEP1 and LOBEP2. In non-relativistic Brueckner-Hartree-Fock case, the binding energies of symmetric nuclear matter are around and MeV at saturation densities, while it becomes and MeV in relativistic framework with and channels using our two parameter sets. For the pure neutron matter, the equations of state in non-relativistic and relativistic cases are very similar due to only consideration channel with isospin case.

Comments: 15 pages, 7 figures, 1 table, accepted to Scientific Reports