Nuclear symmetry energy in a modified quark meson coupling model
Abstract: We study nuclear symmetry energy and the thermodynamic instabilities of asymmetric nuclear matter in a self-consistent manner by using a modified quark-meson coupling model where the confining interaction for quarks inside a nucleon is represented by a phenomenologically averaged potential in an equally mixed scalar-vector harmonic form. The nucleon-nucleon interaction in nuclear matter is then realized by introducing additional quark couplings to $\sigma$, $\omega$, and $\rho$ mesons through mean-field approximations. We find an analytic expression for the symmetry energy ${\cal E}{sym}$ as a function of its slope $L$. Our result establishes a linear correlation between $L$ and ${\cal E}{sym}$. We also analyze the constraint on neutron star radii in $(pn)$ matter with $\beta$ equilibrium.
Paper Prompts
Sign up for free to create and run prompts on this paper using GPT-5.
Top Community Prompts
Collections
Sign up for free to add this paper to one or more collections.