In this chapter, we investigate the structure and composition of hot neutron star matter and proto-neutron stars. Such objects are made of baryonic matter that is several times denser than atomic nuclei and tens of thousands times hotter than the matter in the core of our Sun. The relativistic finite-temperature Green function formalism is used to formulate the expressions that determine the properties of such matter in the framework of the density-dependent mean field approach. Three different sets of nuclear parametrizations are used to solve the many-body equations and to determine the models for the equation of state of ultra-hot and dense stellar matter. The meson-baryon coupling scheme and the role of the \{Delta}(1232) baryon in prot...
Neutron stars are some of the densest manifestations of massive objects in the universe. They are id...
We report a new equation of state (EoS) of cold and hot hyperonic matter constructed in the framewor...
Neutron stars and supernovae provide cosmic laboratories of highly compressed matter at supra nuclea...
We report the first results of the extension of the QMC model for asymmetric dense matter at finite ...
In the first part of this paper, we use a nonlocal extension of the three-flavor Polyakov-Nambu-Jona...
In the first part of this paper, we investigate the possible existence of a structured hadron-quark ...
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 ...
20 pages, 14 figures, contribution to the EPJA topical issue "Exotic matter in neutron stars"Interna...
International audienceWe report a new equation of state (EoS) of cold and hot hyperonic matter const...
A new density dependent effective baryon-baryon interaction has been recently derived from the quark...
We report a new equation of state (EoS) of cold and hot hyperonic matter constructed in the framewor...
International audienceWe review the equation of state (EoS) models covering a large range of tempera...
The underlying theme of this thesis is an investigation of the equation of state of strongly interac...
We discuss the physics of matter that is relevant to the structure of compact stars. This includes n...
Neutron stars are some of the densest manifestations of massive objects in the universe. They are id...
We report a new equation of state (EoS) of cold and hot hyperonic matter constructed in the framewor...
Neutron stars and supernovae provide cosmic laboratories of highly compressed matter at supra nuclea...
We report the first results of the extension of the QMC model for asymmetric dense matter at finite ...
In the first part of this paper, we use a nonlocal extension of the three-flavor Polyakov-Nambu-Jona...
In the first part of this paper, we investigate the possible existence of a structured hadron-quark ...
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 ...
20 pages, 14 figures, contribution to the EPJA topical issue "Exotic matter in neutron stars"Interna...
International audienceWe report a new equation of state (EoS) of cold and hot hyperonic matter const...
A new density dependent effective baryon-baryon interaction has been recently derived from the quark...
We report a new equation of state (EoS) of cold and hot hyperonic matter constructed in the framewor...
International audienceWe review the equation of state (EoS) models covering a large range of tempera...
The underlying theme of this thesis is an investigation of the equation of state of strongly interac...
We discuss the physics of matter that is relevant to the structure of compact stars. This includes n...
Neutron stars are some of the densest manifestations of massive objects in the universe. They are id...
We report a new equation of state (EoS) of cold and hot hyperonic matter constructed in the framewor...
Neutron stars and supernovae provide cosmic laboratories of highly compressed matter at supra nuclea...