We investigate the hadron-quark phase transition in cold neutron stars in light of (i) the observed limits on the maximum-mass of heavy pulsars, (ii) constraints on the tidal properties inferred from the gravitational waves emitted in binary neutron-star mergers, and (iii) mass and radius constraints derived from the observation of hot spots on neutron star observed with the Neutron Star Interior Composition Explorer instrument. Special attention is directed to the possible presence of ∆(1232) baryons in neutron star matter. Our results indicate that this particle could make up a large fraction of the baryons in neutron stars and thus have a significant effect on the properties of such objects, particularly on their radii. This is partially...
We consider the astrophysical implications of the quark droplets formation in high density neutron m...
We study various neutron star properties using the Color-Dielectric model to describe quark matter. ...
The recent discovery of the two-solar mass neutron stars J1614 − 2230 (1.97 ± 0.04M) [1] and J0348 +...
We investigate the hadron-quark phase transition in cold neutron stars in light of (i) the observed ...
The presence of exotic hadrons, such as hyperons and isobars, in the dense nuclear matter in their ...
A phase of strong interacting matter with deconfined quarks is expected in the core of massive neutr...
International audienceThe presence of exotic hadrons, such as hyperons and Δ isobars, in the dense n...
By applying a relativistic mean-field description of neutron star matter with density dependent coup...
We examine the present status of the theoretical calculations for the internal structure of neutron ...
We investigate the quark deconfinement phase transition in cold (T=0) and hot β-stable hadronic matt...
The fundamental constituent of matter at high temperature and density has intrigued physicists for q...
The recent precise measurement of the mass of pulsar PSR J1614−2230, as well as observational indica...
We study the phase transition from dense baryonic matter to dense quark matter within the large-Nc l...
The recent measurements of the masses of the pulsars PSR J1614-2230 and PSR J0348-0432 provide indep...
The existence of stars with masses up to 2M⊙ and the hints of the existence of stars with radii smal...
We consider the astrophysical implications of the quark droplets formation in high density neutron m...
We study various neutron star properties using the Color-Dielectric model to describe quark matter. ...
The recent discovery of the two-solar mass neutron stars J1614 − 2230 (1.97 ± 0.04M) [1] and J0348 +...
We investigate the hadron-quark phase transition in cold neutron stars in light of (i) the observed ...
The presence of exotic hadrons, such as hyperons and isobars, in the dense nuclear matter in their ...
A phase of strong interacting matter with deconfined quarks is expected in the core of massive neutr...
International audienceThe presence of exotic hadrons, such as hyperons and Δ isobars, in the dense n...
By applying a relativistic mean-field description of neutron star matter with density dependent coup...
We examine the present status of the theoretical calculations for the internal structure of neutron ...
We investigate the quark deconfinement phase transition in cold (T=0) and hot β-stable hadronic matt...
The fundamental constituent of matter at high temperature and density has intrigued physicists for q...
The recent precise measurement of the mass of pulsar PSR J1614−2230, as well as observational indica...
We study the phase transition from dense baryonic matter to dense quark matter within the large-Nc l...
The recent measurements of the masses of the pulsars PSR J1614-2230 and PSR J0348-0432 provide indep...
The existence of stars with masses up to 2M⊙ and the hints of the existence of stars with radii smal...
We consider the astrophysical implications of the quark droplets formation in high density neutron m...
We study various neutron star properties using the Color-Dielectric model to describe quark matter. ...
The recent discovery of the two-solar mass neutron stars J1614 − 2230 (1.97 ± 0.04M) [1] and J0348 +...