English

Density-dependent symmetry energy at subsaturation densities from nuclear mass differences

Nuclear Theory 2014-03-11 v1 Nuclear Experiment

Abstract

We extract the mass-dependent symmetry energy coefficients asym(A)a_{\text{sym}}({A}) with the nuclear mass differences reducing the uncertainties as far as possible. The estimated asym(A)a_{\text{sym}}({A}) of 208Pb^{208}\text{Pb} is 22.4±0.322.4\pm 0.3 MeV, which is further used to analyze the density-dependent nuclear matter symmetry energy at subsaturation densities. The slope parameter of the symmetry energy at the saturation density ρ0\rho_{0} is L=50.0±15.5L=50.0\pm15.5 MeV. Furthermore, it is found that, at the density of ρ=0.69ρ0=0.11\rho=0.69\rho_{0}=0.11fm3^{-3}, the symmetry energy S(ρ=0.11fm3)=25.98±0.01S(\rho=0.11\text{fm}^{-3})=25.98\pm0.01 MeV and the correspondingly slope parameter is L=49.6±6.2L=49.6\pm6.2 MeV, which are consistent with other independent analysis.

Keywords

Cite

@article{arxiv.1403.2055,
  title  = {Density-dependent symmetry energy at subsaturation densities from nuclear mass differences},
  author = {Xiaohua Fan and Jianmin Dong and Wei Zuo},
  journal= {arXiv preprint arXiv:1403.2055},
  year   = {2014}
}

Comments

4 pages, 1 figure