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arXiv:1809.03837·v1·Nuclear Theory

Correlated structure of nuclear symmetry energy from covariant nucleon self-energy

Zhi Wei Liu🇨🇳 · Qian Zhao🇨🇳 · Bao Yuan Sun🇨🇳

Abstract

Based on the Hugenholtz-Van Hove theorem, the symmetry energy and its density slope parameter are decomposed in terms of the nucleon self-energies within the covariant density functional (CDF) theory. It is found that two structural connections between the different ingredients of and construct the fundamental correlation between and in the relativistic covariant framework, while the additional contribution from the isovector scalar channel of nucleon-nucleon interaction and those from the second-order symmetry self-energies lead to a deviation, especially the latter limits severely its correlation coefficient and confidence level. In addition, the relationship between the Landau mass and the Dirac mass is approximated to a reliable linear correlation, which is demonstrate to be sensitive to the momentum dependence of the nucleon self-energies.

Comments: 10 pages, 5 figures, corresponding to the talk given in NuSYM2018

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