We explore the thermal properties of hot and dense matter using a model that reproduces the empirical properties of isospin symmetric and asymmetric bulk nuclear matter, optical-model fits to nucleon-nucleus scattering data, heavy-ion flow data in the energy range 0.5–2 GeV/A, and the largest well-measured neutron star mass of 2M⊙. This model, which incorporates finite range interactions through a Yukawa-type finite range force, is contrasted with a conventional zero range Skyrme model. Both models predict nearly identical zero-temperature properties at all densities and proton fractions, including the neutron star maximum mass, but differ in their predictions for heavy-ion flow data. We contrast their predictions of thermal properties, inc...
We calculate an equation of state of nuclear matter based on the derivative scalar coupling model pr...
The microscopic composition and properties of matter at super-saturation densities have been the sub...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...
We study if commonly used nucleon-nucleon effective interactions, obtained from fitting the properti...
40 pages, 25 figuresWe develop a phenomenological statistical model for dilute star matter at finite...
The knowledge of the equation of state is a key ingredient for many dynamical phenomena that depend ...
Thermodynamic properties of asymmetric nuclear matter are studied by the temperature· dependent Hart...
We explore the equation of state of dense matter at densities up to nuclear matter density using the...
We study the thermal effects on the nuclear matter (NM) properties such as binding energy, incompres...
The properties of hot, dense stellar matter are investigated with a finite temperature nuclear Thoma...
International audienceBackground: Superfluidity in the crust is a key ingredient for the cooling pro...
We report the first results of the extension of the QMC model for asymmetric dense matter at finite ...
International audienceIn this contribution we will review our present understanding of the matter eq...
International audienceWe review the equation of state (EoS) models covering a large range of tempera...
In this chapter, we investigate the structure and composition of hot neutron star matter and proto-n...
We calculate an equation of state of nuclear matter based on the derivative scalar coupling model pr...
The microscopic composition and properties of matter at super-saturation densities have been the sub...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...
We study if commonly used nucleon-nucleon effective interactions, obtained from fitting the properti...
40 pages, 25 figuresWe develop a phenomenological statistical model for dilute star matter at finite...
The knowledge of the equation of state is a key ingredient for many dynamical phenomena that depend ...
Thermodynamic properties of asymmetric nuclear matter are studied by the temperature· dependent Hart...
We explore the equation of state of dense matter at densities up to nuclear matter density using the...
We study the thermal effects on the nuclear matter (NM) properties such as binding energy, incompres...
The properties of hot, dense stellar matter are investigated with a finite temperature nuclear Thoma...
International audienceBackground: Superfluidity in the crust is a key ingredient for the cooling pro...
We report the first results of the extension of the QMC model for asymmetric dense matter at finite ...
International audienceIn this contribution we will review our present understanding of the matter eq...
International audienceWe review the equation of state (EoS) models covering a large range of tempera...
In this chapter, we investigate the structure and composition of hot neutron star matter and proto-n...
We calculate an equation of state of nuclear matter based on the derivative scalar coupling model pr...
The microscopic composition and properties of matter at super-saturation densities have been the sub...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...