Bulk and single-particle properties of spin polarized isospin asymmetric nuclear matter are studied within the framework of the Brueckner-Hartree-Fock approximation. The single-particle potentials of neutrons and protons with spin up and down are determined for several values of the neutron and proton spin polarizations and the asymmetry parameter. An analytic parametrization of the total energy per particle as a function of these parameters is constructed, and employed to compute the magnetic susceptibility of nuclear matter. The results show no indication of a ferromagnetic transition at any density for any asymmetry of nuclear matter
Symmetry energy coefficients of asymmetric nuclear matter generalized are investigated as the invers...
Symmetry energy coefficients of asymmetric nuclear matter generalized are investigated as the invers...
6 pages, 4 figuresInternational audienceThe influence of the core polarization on the effective nucl...
Properties of spin-polarized isospin asymmetric nuclear matter are studied within the framework of t...
The Brueckner-Hartree-Fock formalism is applied to study spin polarized neutron matter properties. R...
The relation between energy and density (known as the nuclear equation of state) plays a major role ...
We discuss the one-body potentials for protons and neutrons obtained from Dirac-Brueckner-Hartree-Fo...
In the framework of a Fermi liquid theory it is considered the possibility of appearance of spin pol...
The equations of state of spin-polarized nuclear matter and pure neutron matter are studied in the f...
The properties of spin polarized neutron matter are studied both at zero and finite temperature with...
The Brueckner-Hartree-Fock formalism is applied to study spin polarized neutron matter properties. R...
We consider the spin-isospin response of asymmetric nuclear matter. The associated free and RPA pola...
The Brueckner--Hartree--Fock formalism is applied to study spin polarized neutron matter properties....
Symmetry energy coefficients of asymmetric nuclear matter generalized are investigated as the invers...
Symmetry energy coefficients of asymmetric nuclear matter are investigated as the inverse of nuclear...
Symmetry energy coefficients of asymmetric nuclear matter generalized are investigated as the invers...
Symmetry energy coefficients of asymmetric nuclear matter generalized are investigated as the invers...
6 pages, 4 figuresInternational audienceThe influence of the core polarization on the effective nucl...
Properties of spin-polarized isospin asymmetric nuclear matter are studied within the framework of t...
The Brueckner-Hartree-Fock formalism is applied to study spin polarized neutron matter properties. R...
The relation between energy and density (known as the nuclear equation of state) plays a major role ...
We discuss the one-body potentials for protons and neutrons obtained from Dirac-Brueckner-Hartree-Fo...
In the framework of a Fermi liquid theory it is considered the possibility of appearance of spin pol...
The equations of state of spin-polarized nuclear matter and pure neutron matter are studied in the f...
The properties of spin polarized neutron matter are studied both at zero and finite temperature with...
The Brueckner-Hartree-Fock formalism is applied to study spin polarized neutron matter properties. R...
We consider the spin-isospin response of asymmetric nuclear matter. The associated free and RPA pola...
The Brueckner--Hartree--Fock formalism is applied to study spin polarized neutron matter properties....
Symmetry energy coefficients of asymmetric nuclear matter generalized are investigated as the invers...
Symmetry energy coefficients of asymmetric nuclear matter are investigated as the inverse of nuclear...
Symmetry energy coefficients of asymmetric nuclear matter generalized are investigated as the invers...
Symmetry energy coefficients of asymmetric nuclear matter generalized are investigated as the invers...
6 pages, 4 figuresInternational audienceThe influence of the core polarization on the effective nucl...