A thorough understanding of properties of neutron stars requires both a reliable knowledge of the equation of state (EOS) of super-dense nuclear matter and the strong-field gravity theories simultaneously. To provide information that may help break this EOS-gravity degeneracy, we investigate effects of nuclear symmetry energy on the gravitational binding energy of neutron stars within GR and the scalar-tensor subset of alternative gravity models. We focus on effects of the slope L of nuclear symmetry energy at saturation density and the high-density behavior of nuclear symmetry energy. We find that the variation of either the density slope L or the high-density behavior of nuclear symmetry energy leads to large changes in the binding energy...
The symmetry energy is an invaluable tool for studying dense nuclearmatter. Unfortunately, its defi...
International audienceThe role of the symmetry energy and the neutron-matter stiffness on the tidal ...
We describe the main features of our most recent Hartree-Fock-Bogoliubov nuclear mass models, based ...
A thorough understanding of properties of neutron stars requires both a reliable knowledge of the eq...
Gravitational wave (GW) astronomy opens up an entirely new window on the Universe to probe the equat...
Taking into account the terrestrial experiments and the recent astrophysical observations of neutron...
The nuclear symmetry energy plays a role in determining both the nuclear properties of terrestrial m...
By numerically inverting the Tolman-Oppenheimer-Volkov (TOV) equation using an explicitly isospin-de...
Background: The properties of very neutron rich nuclear systems are largely determined by the densit...
The symmetry energy contribution to the nuclear equation of state impacts various phenomena in nucle...
Information about many aspects of both nuclear physics and a neutron star structure are encoded in t...
Neutron star physics is the ultimate testing place for the physics of dense nuclear matter. Before t...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...
he nuclear equation of state is a topic of highest current interest in nuclear structure and reactio...
In this work, masses and radii of neutron stars are considered to investigate the effect of nuclear ...
The symmetry energy is an invaluable tool for studying dense nuclearmatter. Unfortunately, its defi...
International audienceThe role of the symmetry energy and the neutron-matter stiffness on the tidal ...
We describe the main features of our most recent Hartree-Fock-Bogoliubov nuclear mass models, based ...
A thorough understanding of properties of neutron stars requires both a reliable knowledge of the eq...
Gravitational wave (GW) astronomy opens up an entirely new window on the Universe to probe the equat...
Taking into account the terrestrial experiments and the recent astrophysical observations of neutron...
The nuclear symmetry energy plays a role in determining both the nuclear properties of terrestrial m...
By numerically inverting the Tolman-Oppenheimer-Volkov (TOV) equation using an explicitly isospin-de...
Background: The properties of very neutron rich nuclear systems are largely determined by the densit...
The symmetry energy contribution to the nuclear equation of state impacts various phenomena in nucle...
Information about many aspects of both nuclear physics and a neutron star structure are encoded in t...
Neutron star physics is the ultimate testing place for the physics of dense nuclear matter. Before t...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...
he nuclear equation of state is a topic of highest current interest in nuclear structure and reactio...
In this work, masses and radii of neutron stars are considered to investigate the effect of nuclear ...
The symmetry energy is an invaluable tool for studying dense nuclearmatter. Unfortunately, its defi...
International audienceThe role of the symmetry energy and the neutron-matter stiffness on the tidal ...
We describe the main features of our most recent Hartree-Fock-Bogoliubov nuclear mass models, based ...