PaperPanorama

Nuclear Theory·nucl-th

Friday·January 5, 2024

9 papers2 primary·7 cross-listed

  1. 01

    Pseudospin Symmetry: Microscopic origin of the ground-state inversion in neutron-rich odd-A Cu isotopes

    Tianshuai Shang · Jian Li · Qiang Zhao

    The role of the pseudospin symmetry in the inversion of the ground-state spin in Cu isotopes is investigated within the covariant density functional theory (CDFT). The density functional PC-PK1 gives a good agreement with the observed ground-state properties of the odd-A Cu. In particular, the inversion of the ground-state spin at is reproduced nicely, which can be explained by the level crossing between the proton pseudospin partners and . It is found that the pseudospin symmetry plays a dominant role in the evolution of the energy splittings between the pseudospin partners. By comparing with the results of the nonrelativistic DFTs, our studies suggest that the pseudospin symmetry is essential to the shell evolution around this region.

    nucl-thPLB(2024)·8 citations
  2. 02

    Shear viscosity of nucleonic matter

    Xian-Gai Deng🇨🇳 · De-Qing Fang🇨🇳 · Yu-Gang Ma🇨🇳

    The research status of the shear viscosity of nucleonic matter is reviewed. Some methods to calculate the shear viscosity of nucleonic matter are introduced, including mean free path, Green-Kubo, shear strain rate, Chapman-Enskog and relaxation time approximation. Based on these methods, results for infinite and finite nucleonic matter are discussed, which are attempts to investigate the universality of the ratio of shear viscosity over entropy density and transport characteristics like the liquid-gas phase transition in nucleonic matter. In addition, shear viscosity is also briefly discussed for the quantum chrodynamical matter produced in relativistic heavy-ion collisions.

    nucl-thnucl-exPPNP(2024)·24 citations

Affiliations

first authorsco-authorsvia INSPIRE