The properties of spin polarized neutron matter are studied both at zero and finite temperature using the D1 and the D1P parameterizations of the Gogny interaction. The results show two different behaviors: whereas the D1P force exhibits a ferromagnetic transition at a density of $\rho_c \sim 1.31$ fm$^{-3}$ whose onset increases with temperature, no sign of such a transition is found for D1 at any density and temperature, in agreement with recent microscopic calculations
t: The effective Gogny interactions of the D1 family were established by D. Gogny more than forty ye...
The symmetry energy of the D1 family of Gogny interactions, which describe finite nuclei properties ...
The relation between energy and density (known as the nuclear equation of state) plays a major role ...
The properties of spin polarized neutron matter are studied both at zero and finite temperature usin...
The properties of spin polarized neutron matter are studied both at zero and finite temperature usin...
The properties of spin-polarized neutron matter are studied at both zero and finite temperature usin...
We study some properties of spin-polarized neutron matter in the presence of a strong magnetic field...
We study some properties of spin-polarized neutron matter in the presence of a strong magnetic field...
We study some properties of spin-polarized neutron matter in the presence of a strong magnetic field...
The properties of spin polarized neutron matter are studied both at zero and finite temperature usin...
The properties of spin polarized neutron matter are studied both at zero and finite temperature usin...
The properties of spin-polarized neutron matter are studied at both zero and finite temperature usin...
The possibility of ferromagnetic and antiferromagnetic phase transitions in symmetric nuclear matter...
The equation of state of neutron matter is affected by the presence of a magnetic field due to the i...
AbstractThe properties of spin polarized neutron matter are studied both at zero and finite temperat...
t: The effective Gogny interactions of the D1 family were established by D. Gogny more than forty ye...
The symmetry energy of the D1 family of Gogny interactions, which describe finite nuclei properties ...
The relation between energy and density (known as the nuclear equation of state) plays a major role ...
The properties of spin polarized neutron matter are studied both at zero and finite temperature usin...
The properties of spin polarized neutron matter are studied both at zero and finite temperature usin...
The properties of spin-polarized neutron matter are studied at both zero and finite temperature usin...
We study some properties of spin-polarized neutron matter in the presence of a strong magnetic field...
We study some properties of spin-polarized neutron matter in the presence of a strong magnetic field...
We study some properties of spin-polarized neutron matter in the presence of a strong magnetic field...
The properties of spin polarized neutron matter are studied both at zero and finite temperature usin...
The properties of spin polarized neutron matter are studied both at zero and finite temperature usin...
The properties of spin-polarized neutron matter are studied at both zero and finite temperature usin...
The possibility of ferromagnetic and antiferromagnetic phase transitions in symmetric nuclear matter...
The equation of state of neutron matter is affected by the presence of a magnetic field due to the i...
AbstractThe properties of spin polarized neutron matter are studied both at zero and finite temperat...
t: The effective Gogny interactions of the D1 family were established by D. Gogny more than forty ye...
The symmetry energy of the D1 family of Gogny interactions, which describe finite nuclei properties ...
The relation between energy and density (known as the nuclear equation of state) plays a major role ...