Observations of isolated neutron stars place constraints on the equation of state (EOS) of cold, neutron-rich matter, while nuclear physics experiments probe the EOS of hot, symmetric matter. Many dynamical phenomena, such as core-collapse supernovae, the formation and cooling of proto-neutron stars, and neutron star mergers, lie between these two regimes and depend on the EOS at finite temperatures for matter with varying proton fractions. In this paper, we introduce a new framework to accurately calculate the thermal pressure of neutron–proton–electron matter at arbitrary density, temperature, and proton fraction. This framework can be expressed using a set of five physically motivated parameters that span a narrow range of values for rea...
International audienceIn this work we present a newly constructed equation of state (EoS), applicabl...
Uncertainties in our knowledge of the properties of dense matter near and above nuclear saturation d...
Context. An equation of state (EoS) of dense nuclear matter is a prerequisite for studies of the str...
The FSU2H equation-of-state model, originally developed to describe cold neutron star matter with hy...
In this work we present a newly constructed equation of state (EoS), applicable to stellar core coll...
In this work we present a newly constructed equation of state (EoS), applicable to stellar core coll...
The equation of state (EOS) of dense matter is an essential ingredient for numerical simulations of ...
Context. A precise understanding of the equation of state (EOS) of dense and hot matter is key to mo...
Binary neutron star mergers provide a unique probe of the dense-matter equation of state (EoS) acros...
We present the novel finite-temperature FSU2H* equation-of-state model that covers a wide range of t...
International audienceWe review the equation of state (EoS) models covering a large range of tempera...
A direct method is developed to reconstruct the equation of state for high-density nuclear matter fr...
The detection of gravitational waves from a neutron star merger has opened up the possibility of det...
Each of the potential signals from a black hole-neutron star merger should contain an imprint of the...
Aims. We report a new microscopic equation of state (EOS) of dense symmetric nuclear matter, pure ne...
International audienceIn this work we present a newly constructed equation of state (EoS), applicabl...
Uncertainties in our knowledge of the properties of dense matter near and above nuclear saturation d...
Context. An equation of state (EoS) of dense nuclear matter is a prerequisite for studies of the str...
The FSU2H equation-of-state model, originally developed to describe cold neutron star matter with hy...
In this work we present a newly constructed equation of state (EoS), applicable to stellar core coll...
In this work we present a newly constructed equation of state (EoS), applicable to stellar core coll...
The equation of state (EOS) of dense matter is an essential ingredient for numerical simulations of ...
Context. A precise understanding of the equation of state (EOS) of dense and hot matter is key to mo...
Binary neutron star mergers provide a unique probe of the dense-matter equation of state (EoS) acros...
We present the novel finite-temperature FSU2H* equation-of-state model that covers a wide range of t...
International audienceWe review the equation of state (EoS) models covering a large range of tempera...
A direct method is developed to reconstruct the equation of state for high-density nuclear matter fr...
The detection of gravitational waves from a neutron star merger has opened up the possibility of det...
Each of the potential signals from a black hole-neutron star merger should contain an imprint of the...
Aims. We report a new microscopic equation of state (EOS) of dense symmetric nuclear matter, pure ne...
International audienceIn this work we present a newly constructed equation of state (EoS), applicabl...
Uncertainties in our knowledge of the properties of dense matter near and above nuclear saturation d...
Context. An equation of state (EoS) of dense nuclear matter is a prerequisite for studies of the str...