We investigate the constraints on the mass and radius of neutron stars by considering the tidal deformability in the merge of neutron star binaries. We employ models based on the Skyrme force and density-functional theory and select models that are consistent with empirical data of finite nuclei, measured properties of nuclear matter around the saturation density, and observation of the maximum mass of neutron stars. From the selected models, we calculate the Love number k(2), dimensionless tidal deformability Lambda, and mass-weighted deformability (Lambda) over tilde in the binary system. We find that all the models considered in this work give (Lambda) over tilde less than 800, which is the constraint obtained from the measurement of GW1...
Finite size effects come into play during the late stages of neutron star binary inspiral, with the ...
We investigate constraints on neutron star structure arising from the assumptions that neutron stars...
Over the last few years, the detection of gravitational waves from binary neutron star systems has r...
Neutron star physics is the ultimate testing place for the physics of dense nuclear matter. Before t...
Neutron star physics is the ultimate testing place for the physics of dense nuclear matter. Before t...
Gravitational waves from the coalescence of two neutron stars were recently detected for the first t...
International audienceThe role of the symmetry energy and the neutron-matter stiffness on the tidal ...
International audienceThe role of the symmetry energy and the neutron-matter stiffness on the tidal ...
International audienceThe role of the symmetry energy and the neutron-matter stiffness on the tidal ...
Motivated by the unknown nature of the 2.50-2.67 M-circle dot compact object in the binary merger ev...
The detection of gravitational waves originating from a neutron-star merger, GW170817, by the LIGO a...
This paper reviews the properties of neutron stars based on the recent multi-messenger observations ...
Despite their long history and astrophysical importance, some of the key properties of neutron stars...
Neutron star (NS) is a unique astronomical compact object where the four fundamental interactions ha...
We present predictions for neutron star tidal deformabilities obtained from a Bayesian analysis of t...
Finite size effects come into play during the late stages of neutron star binary inspiral, with the ...
We investigate constraints on neutron star structure arising from the assumptions that neutron stars...
Over the last few years, the detection of gravitational waves from binary neutron star systems has r...
Neutron star physics is the ultimate testing place for the physics of dense nuclear matter. Before t...
Neutron star physics is the ultimate testing place for the physics of dense nuclear matter. Before t...
Gravitational waves from the coalescence of two neutron stars were recently detected for the first t...
International audienceThe role of the symmetry energy and the neutron-matter stiffness on the tidal ...
International audienceThe role of the symmetry energy and the neutron-matter stiffness on the tidal ...
International audienceThe role of the symmetry energy and the neutron-matter stiffness on the tidal ...
Motivated by the unknown nature of the 2.50-2.67 M-circle dot compact object in the binary merger ev...
The detection of gravitational waves originating from a neutron-star merger, GW170817, by the LIGO a...
This paper reviews the properties of neutron stars based on the recent multi-messenger observations ...
Despite their long history and astrophysical importance, some of the key properties of neutron stars...
Neutron star (NS) is a unique astronomical compact object where the four fundamental interactions ha...
We present predictions for neutron star tidal deformabilities obtained from a Bayesian analysis of t...
Finite size effects come into play during the late stages of neutron star binary inspiral, with the ...
We investigate constraints on neutron star structure arising from the assumptions that neutron stars...
Over the last few years, the detection of gravitational waves from binary neutron star systems has r...