Symmetrical nuclear matter at finite temperature is studied in the framework of the Brueckner-Hartree-Fock approximation extended to include single-particle correlations. A liquid-vapor phase transition is observed, wtih a critical temperature of about 20 MeV, in close similarity with Skyrme force calculations. The inclusion of single-particle correlations introduces a significant temperature dependence in the single-particle potential as well as in the nucleon effective mass. In this scheme the Hughenholtz-Van Hove theorem is well satisfied throughout the range of density and temperature considered
Thermodynamic properties of asymmetric nuclear matter are studied by the temperature· dependent Hart...
The properties of warm symmetric and asymmetric nuclear matter are investigated in the frame of the...
We perform a systematic calculation of the equation of state of asymmetric nuclear matter at finite ...
Symmetrical nuclear matter at finite temperature is studied in the framework of the Brueckner-Hartre...
Symmetrical nuclear matter is studied in the vicinity of the saturation point in the framework of an...
Within the framework of the relativistic Dirac-Brueckner approach, the equation of state of nuclear ...
The existence of a liquid-gas phase transition for hot nuclear systems at subsaturation densities is...
Bulk and single-particle properties of hot hyperonic matter are studied within the Brueckner-Hartree...
11 pages, 12 figures; v2: minor modifications of the text, references addedThe effect of nucleon-nuc...
In the framework of the finite temperature Brueckner-Hartree-Fock approach including the contributio...
The microscopic and bulk properties of nuclear matter at zero and finite temperatures are studied in...
Low-density nuclear matter at finite temperature is considered representing the strong coupling situ...
Within the framework of the relativistic Dirac-Brueckner approach properties of both dense and hot s...
The consequences of a phase transition associated with symmetry restoration to SU(2) x SU(2) in nucl...
Bulk and single-particle properties of hot hyperonic matter are studied within the Brueckner-Hartree...
Thermodynamic properties of asymmetric nuclear matter are studied by the temperature· dependent Hart...
The properties of warm symmetric and asymmetric nuclear matter are investigated in the frame of the...
We perform a systematic calculation of the equation of state of asymmetric nuclear matter at finite ...
Symmetrical nuclear matter at finite temperature is studied in the framework of the Brueckner-Hartre...
Symmetrical nuclear matter is studied in the vicinity of the saturation point in the framework of an...
Within the framework of the relativistic Dirac-Brueckner approach, the equation of state of nuclear ...
The existence of a liquid-gas phase transition for hot nuclear systems at subsaturation densities is...
Bulk and single-particle properties of hot hyperonic matter are studied within the Brueckner-Hartree...
11 pages, 12 figures; v2: minor modifications of the text, references addedThe effect of nucleon-nuc...
In the framework of the finite temperature Brueckner-Hartree-Fock approach including the contributio...
The microscopic and bulk properties of nuclear matter at zero and finite temperatures are studied in...
Low-density nuclear matter at finite temperature is considered representing the strong coupling situ...
Within the framework of the relativistic Dirac-Brueckner approach properties of both dense and hot s...
The consequences of a phase transition associated with symmetry restoration to SU(2) x SU(2) in nucl...
Bulk and single-particle properties of hot hyperonic matter are studied within the Brueckner-Hartree...
Thermodynamic properties of asymmetric nuclear matter are studied by the temperature· dependent Hart...
The properties of warm symmetric and asymmetric nuclear matter are investigated in the frame of the...
We perform a systematic calculation of the equation of state of asymmetric nuclear matter at finite ...