arXiv:astro-ph/9703049·v1·Astrophysics
Nuclear Matter in Relativistic Mean Field Theory with Isovector Scalar Meson
S. Kubis🇵🇱 · M. Kutschera🇵🇱
Abstract
Relativistic mean field (RMF) theory of nuclear matter with the isovector scalar mean field corresponding to the delta-meson [a_0(980)] is studied. While the delta-meson mean field vanishes in symmetric nuclear matter, it can influence properties of asymmetric nuclear matter in neutron stars. The RMF contribution due to delta-field to the nuclear symmetry energy is negative. To fit the empirical value, E_s=30 MeV, a stronger rho-meson coupling is required than in the absence of the delta-field. The energy per particle of neutron matter is then larger at high densities than the one with no delta-field included. Also, the proton fraction of beta-stable matter increases. Splitting of proton and neutron effective masses due to the delta-field can affect transport properties of neutron star matter.
Comments: 13 pages, plain TeX, 6 figures, Physics Letters B in press