PaperPanorama

arXiv:nucl-th/0407004·v1·Nuclear Theory

Effective meson masses, effective meson-nucleon couplings and neutron star radii

Kunito Tuchitani🇯🇵 · Yasushi Horinouchi🇯🇵 · Taihei Iwamitsu🇯🇵 · Ken-ichi Makino🇯🇵 · Nobuo Noda🇯🇵 · Hiroaki Kouno🇯🇵 · Akira Hasegawa🇯🇵 · Masahiro Nakano🇯🇵

Abstract

Using the generalized mean field theory, we have studied the relation among the effective meson masses, the effective meson-nucleon couplings and the equation of state (EOS) in asymmetric nuclear matter. If the effective omega-meson mass becomes smaller at high density, the EOS becomes stiffer. However, if we require that the omega-meson mean field is proportional to the baryon density, the effective omega-nucleon coupling automatically becomes smaller at the same time as the effective omega-meson mass becomes smaller. Consequently, the EOS becomes softer. A similar relation is found for the effective rho-meson mass and the effective rho-nucleon coupling. We have also studied the relation among the effective meson masses, the effective meson-nucleon couplings and a radius R of a neutron star. The R depends somewhat on the value of the effective omega-meson mass and the effective omega-nucleon coupling.

Comments: 29pages, 24 figures

Citation historyopen in Citation History ↗