We study the hadron-quark phase transition in the interior of neutron stars. For the hadronic sector, we use a microscopic equation of state involving nucleons and hyperons derived within the Brueckner-Hartree-Fock many-body theory with realistic two-body and three-body forces. For the description of quark matter, we employ the Dyson-Schwinger approach and compare with the MIT bag model. We calculate the structure of neutron star interiors comprising both phases and find that with the Dyson-Schwinger model, the hadron-quark phase transition takes place only when hyperons are excluded, and that a two-solar-mass hybrid star is possible only if the nucleonic equation of state is stiff enough
We investigate the possibility and consequences of phase transitions from an equation of state (EOS)...
A phase of strong interacting matter with deconfined quarks is expected in the core of massive neutr...
In the framework of the non-relativistic Brueckner-Bethe-Goldstone theory, we derive a microscopic e...
We study the hadron-quark phase transition in the interior of neutron stars (NS). For the hadronic s...
We study the hadron-quark phase transition in the interior of protoneutron stars. For the hadronic s...
We study the hadron-quark phase transition in the interior of neutron stars (NS). For the hadronic s...
We study the hadron-quark phase transition in the interior of hot protoneutron stars, combining the ...
We compare the Gibbs and Maxwell constructions for the hadron-quark phase transition in neutron and ...
We study the hadron-quark phase transition in the interior of hot protoneutron stars, combining the ...
We discuss the high-density nuclear equation of state within the Brueckner-Hartree-Fock approach. Pa...
We study the hadron-quark phase transition in the interior of neutron stars (NS's). We calculate the...
We explore the structure of hybrid stars based on a quark matter equation of state (EoS) built with ...
In the framework of the non-relativistic Brueckner-Bethe-Goldstone theory, we derive a microscopic e...
We discuss the properties of the hadron-quark mixed phase in compact stars using a realistic equatio...
We investigate the possibility and consequences of phase transitions from an equation of state (EOS)...
We investigate the possibility and consequences of phase transitions from an equation of state (EOS)...
A phase of strong interacting matter with deconfined quarks is expected in the core of massive neutr...
In the framework of the non-relativistic Brueckner-Bethe-Goldstone theory, we derive a microscopic e...
We study the hadron-quark phase transition in the interior of neutron stars (NS). For the hadronic s...
We study the hadron-quark phase transition in the interior of protoneutron stars. For the hadronic s...
We study the hadron-quark phase transition in the interior of neutron stars (NS). For the hadronic s...
We study the hadron-quark phase transition in the interior of hot protoneutron stars, combining the ...
We compare the Gibbs and Maxwell constructions for the hadron-quark phase transition in neutron and ...
We study the hadron-quark phase transition in the interior of hot protoneutron stars, combining the ...
We discuss the high-density nuclear equation of state within the Brueckner-Hartree-Fock approach. Pa...
We study the hadron-quark phase transition in the interior of neutron stars (NS's). We calculate the...
We explore the structure of hybrid stars based on a quark matter equation of state (EoS) built with ...
In the framework of the non-relativistic Brueckner-Bethe-Goldstone theory, we derive a microscopic e...
We discuss the properties of the hadron-quark mixed phase in compact stars using a realistic equatio...
We investigate the possibility and consequences of phase transitions from an equation of state (EOS)...
We investigate the possibility and consequences of phase transitions from an equation of state (EOS)...
A phase of strong interacting matter with deconfined quarks is expected in the core of massive neutr...
In the framework of the non-relativistic Brueckner-Bethe-Goldstone theory, we derive a microscopic e...