The knowledge of the equation of state is a key ingredient for many dynamical phenomena that depend sensitively on the hot and dense nuclear matter, such as the formation of protoneutron stars and hot neutron stars. In order to accurately describe them, we construct equations of state at FInite temperature and entropy per baryon for matter with varying proton fractions. This procedure is based on the momentum dependent interaction model and state-of-the-art microscopic data. In addition, we investigate the role of thermal and rotation effects on microscopic and macroscopic properties of neutron stars, including the mass and radius, the frequency, the Kerr parameter, the central baryon density, etc. The latter is also connected to the hot an...
International audienceA novel equation of state used for analysis of the heavy ion collision experim...
We explore the thermal properties of hot and dense matter using a model that reproduces the empirica...
In order to extract maximal information from neutron-star merger signals, both gravitational and ele...
International audienceIn this work we present a newly constructed equation of state (EoS), applicabl...
International audienceWe review the equation of state (EoS) models covering a large range of tempera...
We study the properties of general relativistic, slowly rotating, protoneutron stars. We explore the...
In this work we present a newly constructed equation of state (EoS), applicable to stellar core coll...
In simulations of binary neutron star mergers, the dense matter equation of state (EOS) is required ...
In this chapter, we investigate the structure and composition of hot neutron star matter and proto-n...
In this work we present a newly constructed equation of state (EoS), applicable to stellar core coll...
International audienceIn this contribution we will review our present understanding of the matter eq...
International audienceFor core-collapse and neutron star merger simulations it is important to have ...
A new density dependent effective baryon-baryon interaction has been recently derived from the quark...
Explosive astrophysical systems - such as supernovae or compact star binary mergers - provide condit...
Theoretical models of the equation of state (EOS) of neutron-star matter (starting with the crust an...
International audienceA novel equation of state used for analysis of the heavy ion collision experim...
We explore the thermal properties of hot and dense matter using a model that reproduces the empirica...
In order to extract maximal information from neutron-star merger signals, both gravitational and ele...
International audienceIn this work we present a newly constructed equation of state (EoS), applicabl...
International audienceWe review the equation of state (EoS) models covering a large range of tempera...
We study the properties of general relativistic, slowly rotating, protoneutron stars. We explore the...
In this work we present a newly constructed equation of state (EoS), applicable to stellar core coll...
In simulations of binary neutron star mergers, the dense matter equation of state (EOS) is required ...
In this chapter, we investigate the structure and composition of hot neutron star matter and proto-n...
In this work we present a newly constructed equation of state (EoS), applicable to stellar core coll...
International audienceIn this contribution we will review our present understanding of the matter eq...
International audienceFor core-collapse and neutron star merger simulations it is important to have ...
A new density dependent effective baryon-baryon interaction has been recently derived from the quark...
Explosive astrophysical systems - such as supernovae or compact star binary mergers - provide condit...
Theoretical models of the equation of state (EOS) of neutron-star matter (starting with the crust an...
International audienceA novel equation of state used for analysis of the heavy ion collision experim...
We explore the thermal properties of hot and dense matter using a model that reproduces the empirica...
In order to extract maximal information from neutron-star merger signals, both gravitational and ele...