We present a comprehensive study of spectroscopic radius measurements of twelve neutron stars obtained during thermonuclear bursts or in quiescence. We incorporate, for the first time, a large number of systematic uncertainties in the measurement of the apparent angular sizes, Eddington fluxes, and distances, in the composition of the interstellar medium, and in the flux calibration of X-ray detectors. We also take into account the results of recent theoretical calculations of rotational effects on neutron star radii, of atmospheric effects on surface spectra, and of relativistic corrections to the Eddington critical flux. We employ Bayesian statistical frameworks to obtain neutron star radii from the spectroscopic measurements as well as t...
Microscopic calculations of neutron matter based on nuclear interactions de-rived from chiral effect...
Bursting X-ray binaries in globular clusters are ideal sources for measuring neutron star masses and...
Neutron stars are born when massive stars run out of their nuclear fuel and undergo gravitational co...
International audienceContext. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 a...
International audienceContext. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 a...
International audienceContext. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 a...
International audienceContext. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 a...
Context. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 and PSR J0348+0432, in ...
We investigate constraints on neutron star structure arising from the assumptions that neutron stars...
Neutron stars are stellar objects of extreme properties. The dense core enables usto study nuclear m...
We obtain a new equation of state for the nucleonic and hyperonic inner core of neutron stars that f...
Neutron stars are stellar objects of extreme properties. The dense core enables usto study nuclear m...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...
Abstract. The nuclear symmetry energy is intimately connected with nuclear astrophysics. This contri...
Neutron stars are born when massive stars run out of their nuclear fuel and undergo gravitational co...
Microscopic calculations of neutron matter based on nuclear interactions de-rived from chiral effect...
Bursting X-ray binaries in globular clusters are ideal sources for measuring neutron star masses and...
Neutron stars are born when massive stars run out of their nuclear fuel and undergo gravitational co...
International audienceContext. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 a...
International audienceContext. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 a...
International audienceContext. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 a...
International audienceContext. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 a...
Context. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 and PSR J0348+0432, in ...
We investigate constraints on neutron star structure arising from the assumptions that neutron stars...
Neutron stars are stellar objects of extreme properties. The dense core enables usto study nuclear m...
We obtain a new equation of state for the nucleonic and hyperonic inner core of neutron stars that f...
Neutron stars are stellar objects of extreme properties. The dense core enables usto study nuclear m...
One of the major uncertainties in the dense matter equation of state has been the nuclear symmetry e...
Abstract. The nuclear symmetry energy is intimately connected with nuclear astrophysics. This contri...
Neutron stars are born when massive stars run out of their nuclear fuel and undergo gravitational co...
Microscopic calculations of neutron matter based on nuclear interactions de-rived from chiral effect...
Bursting X-ray binaries in globular clusters are ideal sources for measuring neutron star masses and...
Neutron stars are born when massive stars run out of their nuclear fuel and undergo gravitational co...