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 Δ(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...
In the context of ƒ (R) gravity theories, we show that the apparent mass of a neutron star as seen f...
The detection of gravitational waves originating from a neutron-star merger, GW170817, by the LIGO a...
Context. The recent precise measurement of the mass of pulsar PSR J1614−2230, as well as observation...
We investigate the hadron-quark phase transition in cold neutron stars in light of (i) the observed ...
In the past few years, new observations of neutron stars and neutron-star mergers have provided a we...
Recent observations of neutron star masses close to the maximum predicted by nucleonic equations of ...
The theory governing the strong nuclear force—quantum chromodynamics—predicts that at sufficiently h...
A review of current neutron star masses and radius measurements is given and the resulting constrain...
Observations of neutron stars, whether in binaries or in isolation, provide information about the in...
Recent rapid progress in neutron-star (NS) observations offers great potential to constrain the prop...
The interior of neutron stars contains matter at the highest densities realized in our Universe. Int...
The detection of gravitational waves originating from a neutron-star merger, GW170817, by the LIGO a...
A phase of strong interacting matter with deconfined quarks is expected in the core of massive neutr...
The existence of quark matter inside the heaviest neutron stars has been the topic of numerous recen...
We review the properties of hybrid stars with a quark matter core and a hadronic mantle, focusing on...
In the context of ƒ (R) gravity theories, we show that the apparent mass of a neutron star as seen f...
The detection of gravitational waves originating from a neutron-star merger, GW170817, by the LIGO a...
Context. The recent precise measurement of the mass of pulsar PSR J1614−2230, as well as observation...
We investigate the hadron-quark phase transition in cold neutron stars in light of (i) the observed ...
In the past few years, new observations of neutron stars and neutron-star mergers have provided a we...
Recent observations of neutron star masses close to the maximum predicted by nucleonic equations of ...
The theory governing the strong nuclear force—quantum chromodynamics—predicts that at sufficiently h...
A review of current neutron star masses and radius measurements is given and the resulting constrain...
Observations of neutron stars, whether in binaries or in isolation, provide information about the in...
Recent rapid progress in neutron-star (NS) observations offers great potential to constrain the prop...
The interior of neutron stars contains matter at the highest densities realized in our Universe. Int...
The detection of gravitational waves originating from a neutron-star merger, GW170817, by the LIGO a...
A phase of strong interacting matter with deconfined quarks is expected in the core of massive neutr...
The existence of quark matter inside the heaviest neutron stars has been the topic of numerous recen...
We review the properties of hybrid stars with a quark matter core and a hadronic mantle, focusing on...
In the context of ƒ (R) gravity theories, we show that the apparent mass of a neutron star as seen f...
The detection of gravitational waves originating from a neutron-star merger, GW170817, by the LIGO a...
Context. The recent precise measurement of the mass of pulsar PSR J1614−2230, as well as observation...