Motivated by the unknown nature of the 2.50-2.67 M-circle dot compact object in the binary merger event GW190814, we study the maximum neutron star mass based on constraints from low-energy nuclear physics, neutron star tidal deformabilities from GW170817, and simultaneous mass-radius measurements of PSR J0030+045 from NICER. Our prior distribution is based on a combination of nuclear modeling valid in the vicinity of normal nuclear densities together with the assumption of a maximally stiff equation of state at high densities, a choice that enables us to probe the connection between observed heavy neutron stars and the transition density at which conventional nuclear physics models must break down. We demonstrate that a modification of the...
Context. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 and PSR J0348+0432, in ...
Includes bibliographical references (p. 41-42).With central energy densities many times the density ...
The detection of gravitational waves originating from a neutron-star merger, GW170817, by the LIGO a...
In recent years our understanding of the dense matter equation of state (EOS) of neutron stars has s...
Neutron stars are born when massive stars run out of their nuclear fuel and undergo gravitational co...
Neutron stars are born when massive stars run out of their nuclear fuel and undergo gravitational co...
The first detection of gravitational waves from a neutron star-neutron star merger, GW170817, has op...
The properties of neutron stars are determined by the nature of the matter that they contain. These ...
In the past few years, new observations of neutron stars (NSs) and NS mergers have provided a wealth...
In the past few years, new observations of neutron stars (NSs) and NS mergers have provided a wealth...
In the past few years, new observations of neutron stars (NSs) and NS mergers have provided a wealth...
International audiencePSR J0740+6620 has a gravitational mass of 2.08 ± 0.07 M ⊙, which is the highe...
We investigate constraints on neutron star structure arising from the assumptions that neutron stars...
We investigate the constraints on the mass and radius of neutron stars by considering the tidal defo...
We present a comprehensive study of spectroscopic radius measurements of twelve neutron stars obtain...
Context. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 and PSR J0348+0432, in ...
Includes bibliographical references (p. 41-42).With central energy densities many times the density ...
The detection of gravitational waves originating from a neutron-star merger, GW170817, by the LIGO a...
In recent years our understanding of the dense matter equation of state (EOS) of neutron stars has s...
Neutron stars are born when massive stars run out of their nuclear fuel and undergo gravitational co...
Neutron stars are born when massive stars run out of their nuclear fuel and undergo gravitational co...
The first detection of gravitational waves from a neutron star-neutron star merger, GW170817, has op...
The properties of neutron stars are determined by the nature of the matter that they contain. These ...
In the past few years, new observations of neutron stars (NSs) and NS mergers have provided a wealth...
In the past few years, new observations of neutron stars (NSs) and NS mergers have provided a wealth...
In the past few years, new observations of neutron stars (NSs) and NS mergers have provided a wealth...
International audiencePSR J0740+6620 has a gravitational mass of 2.08 ± 0.07 M ⊙, which is the highe...
We investigate constraints on neutron star structure arising from the assumptions that neutron stars...
We investigate the constraints on the mass and radius of neutron stars by considering the tidal defo...
We present a comprehensive study of spectroscopic radius measurements of twelve neutron stars obtain...
Context. Observations of heavy (⋍2 M⊙) neutron stars, such as PSR J1614−2230 and PSR J0348+0432, in ...
Includes bibliographical references (p. 41-42).With central energy densities many times the density ...
The detection of gravitational waves originating from a neutron-star merger, GW170817, by the LIGO a...