arXiv · nucl-th/0205009
Relativistic Hartree-Bogoliubov model with density-dependent meson-nucleon couplings
Abstract
The relativistic Hartree-Bogoliubov (RHB) model is extended to include density dependent meson-nucleon couplings. The effective Lagrangian is characterized by a phenomenological density dependence for the $σ$, $ω$ and $ρ$ meson-nucleon vertex functions, adjusted to properties of nuclear matter and finite nuclei. Pairing correlations are described by the pairing part of the finite range Gogny interaction. The new density-dependent effective interaction DD-ME1 is tested in the analysis of the equations of state for symmetric and asymmetric nuclear matter, and of ground-state properties of the Sn and Pb isotopic chains. Results of self-consistent RHB calculations are compared with experimental data, and with results previously obtained in the RHB model with non-linear self-interactions, as well as in the density dependent relativistic hadron field (DDRH) model. Parity-violating elastic electron scattering on Pb and Sn nuclei is calculated using a relativistic optical model with inclusion of Coulomb distortion effects, and the resulting asymmetry parameters are related to the neutron ground-state density distributions.
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T. Niksic, D. Vretenar, P. Finelli, P. Ring. 2002-05-02. Relativistic Hartree-Bogoliubov model with density-dependent meson-nucleon couplings. https://doi.org/10.1103/physrevc.66.024306
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