We extend the relativistic mean field theory model of Sugahara and Toki by adding new couplings suggested by modern effective field theories. An improved set of parameters is developed with the goal to test the ability of the models based on effective field theory to describe the properties of finite nuclei and, at the same time, to be consistent with the trends of Dirac-Brueckner-Hartree-Fock calculations at densities away from the saturation region. We compare our calculations with other relativistic nuclear force parameters for various nuclear phenomena
A widely used and successful approach for nuclear matter and finite nuclei is the relativistic mean ...
The main concern of this work has been the relativistic description of finite nuclei taking advantag...
The main concern of this work has been the relativistic description of finite nuclei taking advantag...
We apply recently developed effective field theory nuclear models in mean field approximation (param...
A relativistic mean field parameter set is constructed aiming to describe the energy density of nucl...
We analyze the results for infinite nuclear and neutron matter using the standard relativistic mean ...
We perform Hartree calculations of symmetric and asymmetric semi-infinite nuclear matter in the fram...
We apply recently developed effective field theory nuclear models in mean field approximation (param...
New parameter sets for the Lagrangian density in the relativistic mean field (RMF) theory, PK1 with ...
The structure of infinite nuclear matter is studied with two of the Zimanyi - Moszkowski (ZM) models...
Power counting is applied to relativistic mean-field energy functionals to estimate contributions to...
We adjust a new improved relativistic mean-field effective interaction with explicit density depende...
The standard relativistic mean-field model is extended by including dynamical effects that arise in ...
The properties of high-density nuclear and neutron matter are studied using a relativistic mean-fiel...
The relativistic Hartree approach describing the bound states of both nucleons and anti-nucleons in ...
A widely used and successful approach for nuclear matter and finite nuclei is the relativistic mean ...
The main concern of this work has been the relativistic description of finite nuclei taking advantag...
The main concern of this work has been the relativistic description of finite nuclei taking advantag...
We apply recently developed effective field theory nuclear models in mean field approximation (param...
A relativistic mean field parameter set is constructed aiming to describe the energy density of nucl...
We analyze the results for infinite nuclear and neutron matter using the standard relativistic mean ...
We perform Hartree calculations of symmetric and asymmetric semi-infinite nuclear matter in the fram...
We apply recently developed effective field theory nuclear models in mean field approximation (param...
New parameter sets for the Lagrangian density in the relativistic mean field (RMF) theory, PK1 with ...
The structure of infinite nuclear matter is studied with two of the Zimanyi - Moszkowski (ZM) models...
Power counting is applied to relativistic mean-field energy functionals to estimate contributions to...
We adjust a new improved relativistic mean-field effective interaction with explicit density depende...
The standard relativistic mean-field model is extended by including dynamical effects that arise in ...
The properties of high-density nuclear and neutron matter are studied using a relativistic mean-fiel...
The relativistic Hartree approach describing the bound states of both nucleons and anti-nucleons in ...
A widely used and successful approach for nuclear matter and finite nuclei is the relativistic mean ...
The main concern of this work has been the relativistic description of finite nuclei taking advantag...
The main concern of this work has been the relativistic description of finite nuclei taking advantag...