The quark matter equation of state (EOS) derived from the standard Nambu - Jona-Lasinio (NJL) model is soft enough to render neutron stars (NS) unstable at the onset of the deconfined phase, and no pure quark matter can be actually present in its interior. Since this is a peculiarity of the NJL model, we have studied a modified NJL model with a momentum cut-off which depends on the density. This procedure, which improves the agreement between QCD and NJL model at large density, modifies the standard NJL equation of state, and then it is potentially relevant for the stability analysis of neutron stars. We show that also within this approach, the NS instability still persists, and that the vacuum pressure, as a signal of quark confinement, ha...
We reconsider the problem of the hyperon puzzle and its suggested solution by quark deconfinement wi...
We study the thermal evolution of neutron stars containing deconfined quark matter in their core. Su...
Under extreme conditions of temperature and/or density, quarks and gluons are expected to undergo a ...
We study the hadron-quark phase transition in the interior of neutron stars (NS). For the hadronic s...
We explore the relevance of confinement in quark matter models for the possible quark core of neutro...
The nonlocal three-flavor Nambu-Jona-Lasinio model is used to study quark deconfinement in the cores...
Massive neutron stars (NS) are expected to possess a quark core. While the hadronic side of the NS e...
Whether or not the deconfined quark phase exists in neutron star cores is an open question. We use t...
We study the hadron-quark phase transition in the interior of neutron stars (NS's). We calculate the...
The theory governing the strong nuclear force-quantum chromodynamics-predicts that at sufficiently h...
A phase of strong interacting matter with deconfined quarks is expected in the core of massive neutr...
In this paper, we use a three flavor non-local Nambu–Jona-Lasinio (NJL) model, an improved effective...
We compute models for the equation of state (EoS) of the matter in the cores of hybrid stars. Hadron...
Using a nonlocal extension of the SU(3) Nambu-Jona-Lasinio model, which reproduces several of the ke...
We discuss the appearance of quark matter in neutron star cores', focussing on the possibility that ...
We reconsider the problem of the hyperon puzzle and its suggested solution by quark deconfinement wi...
We study the thermal evolution of neutron stars containing deconfined quark matter in their core. Su...
Under extreme conditions of temperature and/or density, quarks and gluons are expected to undergo a ...
We study the hadron-quark phase transition in the interior of neutron stars (NS). For the hadronic s...
We explore the relevance of confinement in quark matter models for the possible quark core of neutro...
The nonlocal three-flavor Nambu-Jona-Lasinio model is used to study quark deconfinement in the cores...
Massive neutron stars (NS) are expected to possess a quark core. While the hadronic side of the NS e...
Whether or not the deconfined quark phase exists in neutron star cores is an open question. We use t...
We study the hadron-quark phase transition in the interior of neutron stars (NS's). We calculate the...
The theory governing the strong nuclear force-quantum chromodynamics-predicts that at sufficiently h...
A phase of strong interacting matter with deconfined quarks is expected in the core of massive neutr...
In this paper, we use a three flavor non-local Nambu–Jona-Lasinio (NJL) model, an improved effective...
We compute models for the equation of state (EoS) of the matter in the cores of hybrid stars. Hadron...
Using a nonlocal extension of the SU(3) Nambu-Jona-Lasinio model, which reproduces several of the ke...
We discuss the appearance of quark matter in neutron star cores', focussing on the possibility that ...
We reconsider the problem of the hyperon puzzle and its suggested solution by quark deconfinement wi...
We study the thermal evolution of neutron stars containing deconfined quark matter in their core. Su...
Under extreme conditions of temperature and/or density, quarks and gluons are expected to undergo a ...