International audienceIn this work, we propose a meta-modelling technique to nuclear matter on the basis of a relativistic density functional with density-dependent couplings. Identical density dependence for the couplings both in the isoscalar and isovector sectors is employed. We vary the coupling parameters of the model to capture the uncertainties of the empirical nuclear matter parameters at saturation. Then, we construct a large ensemble of unified equations of state in a consistent manner both for clusterized and uniform matter in $\beta$-equilibrium at zero temperature. Finally, we calculate neutron star properties to check the consistency with astrophysical observations within a Bayesian framework. Out of the different sets of astr...
We investigate the constraints on the mass and radius of neutron stars by considering the tidal defo...
International audienceEmploying recently proposed metamodeling for the nucleonic matter equation of ...
The equation of state (EOS) for highly compressed dense matter is one of the main concerns of nuclea...
International audienceIn this work, we propose a meta-modelling technique to nuclear matter on the b...
International audienceIn this work, we propose a meta-modelling technique to nuclear matter on the b...
International audienceIn this work, we propose a meta-modelling technique to nuclear matter on the b...
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...
Documentos apresentados no âmbito do reconhecimento de graus e diplomas estrangeirosEquation of stat...
Neutron star matter spans a wide range of densities, from that of nuclei at the surface to exceeding...
International audienceIn this contribution, we briefly present the equation-of-state modelling for a...
International audienceIn this contribution, we briefly present the equation-of-state modelling for a...
This paper reviews the properties of neutron stars based on the recent multi-messenger observations ...
International audienceIn this contribution, we briefly present the equation-of-state modelling for a...
International audienceIn this contribution, we briefly present the equation-of-state modelling for a...
We investigate the constraints on the mass and radius of neutron stars by considering the tidal defo...
International audienceEmploying recently proposed metamodeling for the nucleonic matter equation of ...
The equation of state (EOS) for highly compressed dense matter is one of the main concerns of nuclea...
International audienceIn this work, we propose a meta-modelling technique to nuclear matter on the b...
International audienceIn this work, we propose a meta-modelling technique to nuclear matter on the b...
International audienceIn this work, we propose a meta-modelling technique to nuclear matter on the b...
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...
Documentos apresentados no âmbito do reconhecimento de graus e diplomas estrangeirosEquation of stat...
Neutron star matter spans a wide range of densities, from that of nuclei at the surface to exceeding...
International audienceIn this contribution, we briefly present the equation-of-state modelling for a...
International audienceIn this contribution, we briefly present the equation-of-state modelling for a...
This paper reviews the properties of neutron stars based on the recent multi-messenger observations ...
International audienceIn this contribution, we briefly present the equation-of-state modelling for a...
International audienceIn this contribution, we briefly present the equation-of-state modelling for a...
We investigate the constraints on the mass and radius of neutron stars by considering the tidal defo...
International audienceEmploying recently proposed metamodeling for the nucleonic matter equation of ...
The equation of state (EOS) for highly compressed dense matter is one of the main concerns of nuclea...