English

Compression modulus and symmetry energy of nuclear matter with KIDS density functional

Nuclear Theory 2020-12-03 v1

Abstract

Equation of state of dense nuclear matter is explored in the KIDS density functional theory. Parameters of the equation of state which are coefficients of the energy density expanded in powers of (ρρ0)/3ρ0(\rho - \rho_0)/3\rho_0 where ρ\rho is the nuclear matter density and ρ0\rho_0 is its density at saturation are constrained by using both nuclear data and the mass-radius relation of the neutron star determined from the modern astronomy. We find that the combination of both data can reduce the uncertainty in the equation of state parameters significantly. We confirm that the newly constrained parameters reproduce the basic properties of spherical magic nuclei with high accuracy. Neutron drip lines, on the other hand, show non-negligible dependence on the uncertainty of the nuclear symmetry energy.

Keywords

Cite

@article{arxiv.2012.00930,
  title  = {Compression modulus and symmetry energy of nuclear matter with KIDS density functional},
  author = {Hana Gil and Chang Ho Hyun},
  journal= {arXiv preprint arXiv:2012.00930},
  year   = {2020}
}

Comments

13 pages, 3 figures and 2 tables