In the present work, we have mapped the exchange Fock contributions from the Dirac–Hartree–Fock (DHF) approach for nuclear matter onto the direct Hartree terms. This results in the relativistic mean field (RMF) model with the density dependent couplings. The density dependence of the effective coupling constants thus reflects the exchange correlations. The exchange part of an energy density of the linear DHF model in dense matter is evaluated in a parameter-free closed form and, after the rearrangement of the terms, expressed as density functional
The formation of clusters at sub-saturation densities constitutes an essential feature for a reliabl...
One of the open problems in nuclear structure is how to predict properties of finite nuclei from the...
AbstractA new relativistic Hartree–Fock approach with density-dependent σ, ω, ρ and π meson–nucleon ...
In the present work, we have mapped the exchange Fock contributions from the Dirac–Hartree–Fock (DHF...
The energy density functional (EDF) method is very widely used in nuclear physics, and among the var...
The energy density functional (EDF) method is very widely used in nuclear physics, and among the var...
The relativistic density functional with minimal density dependent nucleon–meson couplings for nucle...
Abstract Over the past decades, the relativistic density functional theory has been greatly develope...
The inclusion of nucleonic exchange energy has been a long-standing challenge for the relativistic d...
We study a particular class of relativistic nuclear energy density functionals in which only nucleon...
Although ab initio calculations of relativistic Brueckner theory lead to large scalar isovector fiel...
A new relativistic Hartree-Fock approach with density-dependent sigma, omega, rho and pi meson-nucle...
The EOS of nuclear matter is studied in the framework of relativistic density dependent hadron field...
The standard relativistic mean-field density functionals based on non-linear meson exchange terms ar...
4 pages, 3 figures - PTHA new relativistic Hartree-Fock approach with density-dependent $\sigma$, $\...
The formation of clusters at sub-saturation densities constitutes an essential feature for a reliabl...
One of the open problems in nuclear structure is how to predict properties of finite nuclei from the...
AbstractA new relativistic Hartree–Fock approach with density-dependent σ, ω, ρ and π meson–nucleon ...
In the present work, we have mapped the exchange Fock contributions from the Dirac–Hartree–Fock (DHF...
The energy density functional (EDF) method is very widely used in nuclear physics, and among the var...
The energy density functional (EDF) method is very widely used in nuclear physics, and among the var...
The relativistic density functional with minimal density dependent nucleon–meson couplings for nucle...
Abstract Over the past decades, the relativistic density functional theory has been greatly develope...
The inclusion of nucleonic exchange energy has been a long-standing challenge for the relativistic d...
We study a particular class of relativistic nuclear energy density functionals in which only nucleon...
Although ab initio calculations of relativistic Brueckner theory lead to large scalar isovector fiel...
A new relativistic Hartree-Fock approach with density-dependent sigma, omega, rho and pi meson-nucle...
The EOS of nuclear matter is studied in the framework of relativistic density dependent hadron field...
The standard relativistic mean-field density functionals based on non-linear meson exchange terms ar...
4 pages, 3 figures - PTHA new relativistic Hartree-Fock approach with density-dependent $\sigma$, $\...
The formation of clusters at sub-saturation densities constitutes an essential feature for a reliabl...
One of the open problems in nuclear structure is how to predict properties of finite nuclei from the...
AbstractA new relativistic Hartree–Fock approach with density-dependent σ, ω, ρ and π meson–nucleon ...