We address the question of the role of low-energy nuclear physics data in constraining neutron star global properties, e.g., masses, radii, angular momentum, and tidal deformability, in the absence of a phase transition in dense matter. To do so, we assess the capacity of 415 relativistic mean field and non-relativistic Skyrme-type interactions to reproduce the ground state binding energies, the charge radii and the giant monopole resonances of a set of spherical nuclei. The interactions are classified according to their ability to describe these characteristics and we show that a tight correlation between the symmetry energy and its slope is obtained providing $N=Z$ and $N\ne Z$ nuclei are described with the same accuracy (mainly driven by...
Nuclear matter properties are calculated in the relativistic mean-held theory by using a number of d...
[eng] The proper understanding of the equation of state (EoS) of highly asymmetric nuclear matter is...
International audienceThe uncertainties in neutron star (NS) radii and crust properties due to our l...
We address the question of the role of low-energy nuclear physics data in constraining neutron star ...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...
We investigate constraints on neutron star structure arising from the assumptions that neutron stars...
The nuclear matter parameters define the nuclear equation of state (EoS), they appear as coefficient...
Abstract. The nuclear symmetry energy is intimately connected with nuclear astrophysics. This contri...
Taking into account the terrestrial experiments and the recent astrophysical observations of neutron...
Neutron star physics is the ultimate testing place for the physics of dense nuclear matter. Before t...
The modeling of many neutron star observables incorporates the microphysics of both the stellar crus...
Motivated by the unknown nature of the 2.50-2.67 M-circle dot compact object in the binary merger ev...
We describe the main features of our most recent Hartree-Fock-Bogoliubov nuclear mass models, based ...
The nuclear symmetry energy plays a role in determining both the nuclear properties of terrestrial m...
208Pb with parity violating electron scattering in a way that is free from most strong interaction u...
Nuclear matter properties are calculated in the relativistic mean-held theory by using a number of d...
[eng] The proper understanding of the equation of state (EoS) of highly asymmetric nuclear matter is...
International audienceThe uncertainties in neutron star (NS) radii and crust properties due to our l...
We address the question of the role of low-energy nuclear physics data in constraining neutron star ...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...
We investigate constraints on neutron star structure arising from the assumptions that neutron stars...
The nuclear matter parameters define the nuclear equation of state (EoS), they appear as coefficient...
Abstract. The nuclear symmetry energy is intimately connected with nuclear astrophysics. This contri...
Taking into account the terrestrial experiments and the recent astrophysical observations of neutron...
Neutron star physics is the ultimate testing place for the physics of dense nuclear matter. Before t...
The modeling of many neutron star observables incorporates the microphysics of both the stellar crus...
Motivated by the unknown nature of the 2.50-2.67 M-circle dot compact object in the binary merger ev...
We describe the main features of our most recent Hartree-Fock-Bogoliubov nuclear mass models, based ...
The nuclear symmetry energy plays a role in determining both the nuclear properties of terrestrial m...
208Pb with parity violating electron scattering in a way that is free from most strong interaction u...
Nuclear matter properties are calculated in the relativistic mean-held theory by using a number of d...
[eng] The proper understanding of the equation of state (EoS) of highly asymmetric nuclear matter is...
International audienceThe uncertainties in neutron star (NS) radii and crust properties due to our l...