We analyze the results for infinite nuclear and neutron matter using the standard relativistic mean field model and its recent effective field theory motivated generalization. For the first time, we show quantitatively that the inclusion in the effective theory of vector meson self-interactions and scalar-vector cross-interactions explains naturally the recent experimental observations of the softness of the nuclear equation of state, without losing the advantages of the standard relativistic model for finite nuclei
We adjust a new improved relativistic mean-field effective interaction with explicit density depende...
It is a well known fact that Dirac phenomenology of nuclear forces predicts the existence of large s...
Power counting is applied to relativistic mean-field energy functionals to estimate contributions to...
We analyze the results for infinite nuclear and neutron matter using the standard relativistic mean ...
The properties of high-density nuclear and neutron matter are studied using a relativistic mean-fiel...
We extend the relativistic mean field theory model of Sugahara and Toki by adding new couplings sugg...
We apply recently developed effective field theory nuclear models in mean field approximation (param...
In order to predict properties of asymmetric nuclear matter, we construct a relativistic mean field ...
A widely used and successful approach for nuclear matter and finite nuclei is the relativistic mean ...
A relativistic mean field parameter set is constructed aiming to describe the energy density of nucl...
We study the relation between the finite-range (meson-exchange) and zero-range (point-coupling) repr...
We study the relation between the finite-range (meson-exchange) and zero-range (point-coupling) repr...
We perform Hartree calculations of symmetric and asymmetric semi-infinite nuclear matter in the fram...
We study a particular class of relativistic nuclear energy density functionals in which only nucleon...
We study a particular class of relativistic nuclear energy density functionals in which only nucleon...
We adjust a new improved relativistic mean-field effective interaction with explicit density depende...
It is a well known fact that Dirac phenomenology of nuclear forces predicts the existence of large s...
Power counting is applied to relativistic mean-field energy functionals to estimate contributions to...
We analyze the results for infinite nuclear and neutron matter using the standard relativistic mean ...
The properties of high-density nuclear and neutron matter are studied using a relativistic mean-fiel...
We extend the relativistic mean field theory model of Sugahara and Toki by adding new couplings sugg...
We apply recently developed effective field theory nuclear models in mean field approximation (param...
In order to predict properties of asymmetric nuclear matter, we construct a relativistic mean field ...
A widely used and successful approach for nuclear matter and finite nuclei is the relativistic mean ...
A relativistic mean field parameter set is constructed aiming to describe the energy density of nucl...
We study the relation between the finite-range (meson-exchange) and zero-range (point-coupling) repr...
We study the relation between the finite-range (meson-exchange) and zero-range (point-coupling) repr...
We perform Hartree calculations of symmetric and asymmetric semi-infinite nuclear matter in the fram...
We study a particular class of relativistic nuclear energy density functionals in which only nucleon...
We study a particular class of relativistic nuclear energy density functionals in which only nucleon...
We adjust a new improved relativistic mean-field effective interaction with explicit density depende...
It is a well known fact that Dirac phenomenology of nuclear forces predicts the existence of large s...
Power counting is applied to relativistic mean-field energy functionals to estimate contributions to...