We show the possibility of existence of a self-gravitating spherically-symmetric equilibrium configuration for a neutral matter with neutron-like density, small mass M≪M⊙, and small radius R≪R⊙. We incorporate the effects of both the special and general theories of relativity. Such object may be formed in a cosmic cataclysm, perhaps an exotic one. Since the base equations of hydrostatic equilibrium are completed by the equation of state (EoS) for the matter of the object, we offer a novel, interpolating experimental data from high-energy physics, EoS which permits the existence of such compact system of finite radius. This EoS model possesses a critical state characterized by density ρ_c and temperature T_c. For such an object, we derive a ...
A hybrid equation of state for dense matter is presented that satisfies phenomenological constraints...
Understanding how matter behaves at the highest densities and temperatures is a major open problem i...
The Equation of State (EoS) of dense matter represents a central issue in the study of compact astro...
We show the possibility of existence of a self-gravitating spherically-symmetric equilibrium configu...
A new scheme for testing the nuclear matter (NM) equation of state (EoS) at high densities using con...
International audienceThe equation of state (EoS) of hot and dense matter is a fundamental input to ...
We study the structure and evolution of neutron stars (NS) the interiors of which are modeled using ...
Observations of isolated neutron stars place constraints on the equation of state (EOS) of cold, neu...
Context. A precise understanding of the equation of state (EOS) of dense and hot matter is key to mo...
Differences in the equation of state (EOS) of dense matter translate into differences in astrophysic...
The equation of state (EOS) of dense matter is an essential ingredient for numerical simulations of ...
The existence of neutron stars with masses of ∼2M⊙ requires a stiff equation of state at high densit...
The true nature and the internal constitution of the compact stars known as neutron stars (NSs) is o...
AbstractStrange stars (ReSS) calculated from a realistic equation of state (EOS), that incorporate c...
© 2019 American Physical Society. Differences in the equation of state (EOS) of dense matter transla...
A hybrid equation of state for dense matter is presented that satisfies phenomenological constraints...
Understanding how matter behaves at the highest densities and temperatures is a major open problem i...
The Equation of State (EoS) of dense matter represents a central issue in the study of compact astro...
We show the possibility of existence of a self-gravitating spherically-symmetric equilibrium configu...
A new scheme for testing the nuclear matter (NM) equation of state (EoS) at high densities using con...
International audienceThe equation of state (EoS) of hot and dense matter is a fundamental input to ...
We study the structure and evolution of neutron stars (NS) the interiors of which are modeled using ...
Observations of isolated neutron stars place constraints on the equation of state (EOS) of cold, neu...
Context. A precise understanding of the equation of state (EOS) of dense and hot matter is key to mo...
Differences in the equation of state (EOS) of dense matter translate into differences in astrophysic...
The equation of state (EOS) of dense matter is an essential ingredient for numerical simulations of ...
The existence of neutron stars with masses of ∼2M⊙ requires a stiff equation of state at high densit...
The true nature and the internal constitution of the compact stars known as neutron stars (NSs) is o...
AbstractStrange stars (ReSS) calculated from a realistic equation of state (EOS), that incorporate c...
© 2019 American Physical Society. Differences in the equation of state (EOS) of dense matter transla...
A hybrid equation of state for dense matter is presented that satisfies phenomenological constraints...
Understanding how matter behaves at the highest densities and temperatures is a major open problem i...
The Equation of State (EoS) of dense matter represents a central issue in the study of compact astro...