Nuclear matter properties are calculated in the relativistic mean-held theory by using a number of different parameter sets. The result shows that the volume energy a(1) and the symmetry energy J are around the acceptable values 16 MeV and 30 MeV, respectively the incompressibility K-0 is unacceptably high in the linear model, but assumes reasonable value if nonlinear terms are included, the density symmetry; L is around 100 MeV for most parameter sets, and the symmetry incompressibility K-s has positive sign which is opposite to expectations based on the nonrelativistic model. In almost all parameter sets there exists a critical point (rho (c), delta (c)), where the minimum and the maximum of the equation of state are coincident and the in...
An accurately calibrated relativistic parametrization is introduced to compute the ground state prop...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...
The properties of symmetric nuclear matter are investigated in the nonlinear relativistic mean field...
Nuclear matter properties are calculated in the relativistic mean-field theory by using a number of ...
Nuclear physics can be applied in various ways to the study of neutron stars. This thesis reports on...
The nuclear matter parameters define the nuclear equation of state (EoS), they appear as coefficient...
Properties of nuclear matter and neutron star are described in relativistic mean field theory with d...
The saturation properties of neutron-rich matter are investigated in a relativistic mean-field forma...
The equation of state for nuclear matter at finite temperature and the properties of neutron stars a...
The sigma-omega coupling is introduced phenomenologically in the linear sigma-omega model to study t...
Taking into account the terrestrial experiments and the recent astrophysical observations of neutron...
A widely used and successful approach for nuclear matter and finite nuclei is the relativistic mean ...
The parameters of the sigma-omega-rho model in the relativistic mean-field theory with nonlinear a-m...
We study the equation of state of nuclear matter for supernova and neutron star using the relativist...
The density dependencies of various effective interaction strengths in the relativistic mean field a...
An accurately calibrated relativistic parametrization is introduced to compute the ground state prop...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...
The properties of symmetric nuclear matter are investigated in the nonlinear relativistic mean field...
Nuclear matter properties are calculated in the relativistic mean-field theory by using a number of ...
Nuclear physics can be applied in various ways to the study of neutron stars. This thesis reports on...
The nuclear matter parameters define the nuclear equation of state (EoS), they appear as coefficient...
Properties of nuclear matter and neutron star are described in relativistic mean field theory with d...
The saturation properties of neutron-rich matter are investigated in a relativistic mean-field forma...
The equation of state for nuclear matter at finite temperature and the properties of neutron stars a...
The sigma-omega coupling is introduced phenomenologically in the linear sigma-omega model to study t...
Taking into account the terrestrial experiments and the recent astrophysical observations of neutron...
A widely used and successful approach for nuclear matter and finite nuclei is the relativistic mean ...
The parameters of the sigma-omega-rho model in the relativistic mean-field theory with nonlinear a-m...
We study the equation of state of nuclear matter for supernova and neutron star using the relativist...
The density dependencies of various effective interaction strengths in the relativistic mean field a...
An accurately calibrated relativistic parametrization is introduced to compute the ground state prop...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...
The properties of symmetric nuclear matter are investigated in the nonlinear relativistic mean field...