The role of the symmetry energy on the internal constitution and the global structure of a cold nonaccreted neutron star is studied using a set of unified equations of state. Based on the nuclear energy-density functional theory, these equations of state provide a thermodynamically consistent treatment of all regions of the star and were calculated using the four different Brussels-Montreal functionals BSk22, BSk24, BSk25 and BSk26. Our predictions are compared to various constraints inferred from astrophysical observations including the recent detection of the gravitational wave signal GW170817 from a binary neutron-star merger.SCOPUS: cp.pinfo:eu-repo/semantics/publishe
he nuclear equation of state is a topic of highest current interest in nuclear structure and reactio...
We derive a new equation of state (EoS) for neutron stars (NS) from the outer crust to the core base...
The role of the crust on the tidal deformability of a cold nonaccreted neutron star is studied using...
International audienceThe role of the symmetry energy on the internal constitution and the global st...
International audienceThe theory of the nuclear energy-density functional is used to provide a unifi...
International audienceThe role of the symmetry energy and the neutron-matter stiffness on the tidal ...
The hadronic equation of state for a neutron star is discussed with a particular emphasis on the sym...
We present a set of three unified equations of states (EoSs) based on the nuclear energy-density fun...
In this lecture, we will present some nucleonic equations of state of neutron-star matter calculated...
Neutron star physics is the ultimate testing place for the physics of dense nuclear matter. Before t...
To be published in Physical Review CThe nuclear mean-field potentials obtained in the Hartree-Fock m...
We describe the main features of our most recent Hartree-Fock-Bogoliubov nuclear mass models, based ...
Aims. We report a new microscopic equation of state (EOS) of dense symmetric nuclear matter, pure ne...
he nuclear equation of state is a topic of highest current interest in nuclear structure and reactio...
We derive a new equation of state (EoS) for neutron stars (NS) from the outer crust to the core base...
The role of the crust on the tidal deformability of a cold nonaccreted neutron star is studied using...
International audienceThe role of the symmetry energy on the internal constitution and the global st...
International audienceThe theory of the nuclear energy-density functional is used to provide a unifi...
International audienceThe role of the symmetry energy and the neutron-matter stiffness on the tidal ...
The hadronic equation of state for a neutron star is discussed with a particular emphasis on the sym...
We present a set of three unified equations of states (EoSs) based on the nuclear energy-density fun...
In this lecture, we will present some nucleonic equations of state of neutron-star matter calculated...
Neutron star physics is the ultimate testing place for the physics of dense nuclear matter. Before t...
To be published in Physical Review CThe nuclear mean-field potentials obtained in the Hartree-Fock m...
We describe the main features of our most recent Hartree-Fock-Bogoliubov nuclear mass models, based ...
Aims. We report a new microscopic equation of state (EOS) of dense symmetric nuclear matter, pure ne...
he nuclear equation of state is a topic of highest current interest in nuclear structure and reactio...
We derive a new equation of state (EoS) for neutron stars (NS) from the outer crust to the core base...
The role of the crust on the tidal deformability of a cold nonaccreted neutron star is studied using...