In the past few years, new observations of neutron stars and neutron-star mergers have provided a wealth of data that allow one to constrain the equation of state of nuclear matter at densities above nuclear saturation density. However, most observations were based on neutron stars with masses of about 1.4 solar masses, probing densities up to $\sim$ 3-4 times the nuclear saturation density. Even higher densities are probed inside massive neutron stars such as PSR J0740+6620. Very recently, new radio observations provided an update to the mass estimate for PSR J0740+6620 and X-ray observations by the NICER and XMM telescopes constrained its radius. Based on these new measurements, we revisit our previous nuclear-physics multi-messenger astr...
The detection of gravitational waves originating from a neutron-star merger, GW170817, by the LIGO a...
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...
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...
In recent years our understanding of the dense matter equation of state (EOS) of neutron stars has s...
The properties of neutron stars are determined by the nature of the matter that they contain. These ...
We show how observations of gravitational waves from binary neutron star (BNS) mergers over the next...
We investigate how current and proposed observations of neutron stars can lead to an understanding o...
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...
A review of current neutron star masses and radius measurements is given and the resulting constrain...
The Neutron Star Interior Composition Explorer (NICER) recently measured the mass and equatorial rad...
The Neutron Star Interior Composition Explorer collaboration recently published a joint estimate of ...
The detection of gravitational waves originating from a neutron-star merger, GW170817, by the LIGO a...
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...
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...
In recent years our understanding of the dense matter equation of state (EOS) of neutron stars has s...
The properties of neutron stars are determined by the nature of the matter that they contain. These ...
We show how observations of gravitational waves from binary neutron star (BNS) mergers over the next...
We investigate how current and proposed observations of neutron stars can lead to an understanding o...
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...
A review of current neutron star masses and radius measurements is given and the resulting constrain...
The Neutron Star Interior Composition Explorer (NICER) recently measured the mass and equatorial rad...
The Neutron Star Interior Composition Explorer collaboration recently published a joint estimate of ...
The detection of gravitational waves originating from a neutron-star merger, GW170817, by the LIGO a...
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...