English

Limiting symmetry energy elements from empirical evidence

Nuclear Theory 2017-05-24 v1

Abstract

In the framework of an equation of state (EoS) constructed from a momentum and density-dependent finite-range two-body effective interaction, the quantitative magnitudes of the different symmetry elements of infinite nuclear matter are explored. The parameters of this interaction are determined from well-accepted characteristic constants associated with homogeneous nuclear matter. The symmetry energy coefficient a2a_2, its density slope L0L_0, the symmetry incompressibility KδK_\delta as well as the density dependent incompressibility K(ρ)K(\rho ) evaluated with this EoS are seen to be in good harmony with those obtained from other diverse perspectives. The higher order symmetry energy coefficients a4, a6a_4,~a_6 etc are seen to be not very significant in the domain of densities relevant to finite nuclei, but gradually build up at supra-normal densities. The analysis carried with a Skyrme-inspired energy density functional obtained with the same input values for the empirical bulk data associated with nuclear matter yields nearly the same results.

Keywords

Cite

@article{arxiv.1703.03549,
  title  = {Limiting symmetry energy elements from empirical evidence},
  author = {B. K. Agrawal and S. K. Samaddar and J. N. De and C. Mondal and Subhranil De},
  journal= {arXiv preprint arXiv:1703.03549},
  year   = {2017}
}

Comments

Accepted in "International journal of Modern Physics E"

R2 v1 2026-06-22T18:41:57.399Z