In this work we study the effect of the symmetry energy on several properties of neutron stars. First, we discuss its effect on the density, proton fraction and pressure of the neutron star crust-core transition. We show that whereas the first two quantities present a clear correlation with the slope parameter L of the symmetry energy, no satisfactory correlation is seen between the transition pressure and L . However, a linear combination of the slope and curvature parameters at ρ = 0.1 fm−3 is well correlated with the transition pressure. In the second part we analyze the effect of the symmetry energy on the pasta phase. It is shown that the size of the pasta clusters, number of nucleons and the cluster proton fraction depend on the densi...
Within a microscopic approach the structure of Neutron Stars is usually studied by modelling the hom...
The poorly known crustal equation of state plays a critical role in many observational phenomena ass...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...
18 pages, 17 figures, submitted to EPJA, to the special issue on The Symmetry EnergyIn this work we ...
We investigate the structure attained by neutron star matter with proton to neutron ratios ranging f...
In this paper, we study the role of the symmetry energy on the composition of the outer crust of a n...
In this paper, we study the role of the symmetry energy on the neutron-drip transition in both nonac...
The composition and equation of state of the outer crust of nonaccreting neutron stars is computed b...
International audienceContext. The interior of a neutron star is expected to exhibit different state...
The outer crust of a neutron star, below densities of ρ ∼ 4 × 1011 g cm−3 consists of matter in a st...
We analyze the correlations of the slope and curvature parameters of the symmetry energy with the ne...
The slope of the nuclear symmetry energy at saturation density $L$ is pointed out as a crucial quant...
Background: An accurate determination of the core-crust transition is necessary in the modelling of ...
Abstract. The nuclear symmetry energy is intimately connected with nuclear astrophysics. This contri...
Within a microscopic approach the structure of Neutron Stars is usually studied by modelling the hom...
The poorly known crustal equation of state plays a critical role in many observational phenomena ass...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...
18 pages, 17 figures, submitted to EPJA, to the special issue on The Symmetry EnergyIn this work we ...
We investigate the structure attained by neutron star matter with proton to neutron ratios ranging f...
In this paper, we study the role of the symmetry energy on the composition of the outer crust of a n...
In this paper, we study the role of the symmetry energy on the neutron-drip transition in both nonac...
The composition and equation of state of the outer crust of nonaccreting neutron stars is computed b...
International audienceContext. The interior of a neutron star is expected to exhibit different state...
The outer crust of a neutron star, below densities of ρ ∼ 4 × 1011 g cm−3 consists of matter in a st...
We analyze the correlations of the slope and curvature parameters of the symmetry energy with the ne...
The slope of the nuclear symmetry energy at saturation density $L$ is pointed out as a crucial quant...
Background: An accurate determination of the core-crust transition is necessary in the modelling of ...
Abstract. The nuclear symmetry energy is intimately connected with nuclear astrophysics. This contri...
Within a microscopic approach the structure of Neutron Stars is usually studied by modelling the hom...
The poorly known crustal equation of state plays a critical role in many observational phenomena ass...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...