Interpreting high-energy, astrophysical phenomena, such as supernova explosions or neutron-star collisions, requires a robust understanding of matter at supranuclear densities. However, our knowledge about dense matter explored in the cores of neutron stars remains limited. Fortunately, dense matter is not only probed in astrophysical observations, but also in terrestrial heavy-ion collision experiments. In this work, we use Bayesian inference to combine data from astrophysical multi-messenger observations of neutron stars and from heavy-ion collisions of gold nuclei at relativistic energies with microscopic nuclear theory calculations to improve our understanding of dense matter. We find that the inclusion of heavy-ion collision data indic...
The properties of neutron stars are determined by the nature of the matter that they contain. These ...
Observations of neutron stars, whether in binaries or in isolation, provide information about the in...
Astrophysical observations of neutron stars have been widely used to infer the properties of the nuc...
Interpreting high-energy, astrophysical phenomena, such as supernova explosions or neutron-star coll...
Interpreting high-energy, astrophysical phenomena, such as supernova explosions or neutron-star coll...
The interior of neutron stars contains matter at the highest densities realized in our Universe. Int...
Neutron star observations, including direct mass and radius measurements as well as the analysis of ...
Recent observations of neutron star masses close to the maximum predicted by nucleonic equations of ...
Using 250 neutron star merger simulations with microphysics, we explore for the first time the role ...
The next generation of ground-based gravitational-wave detectors, Einstein Telescope (ET) and Cosmic...
We construct a physics-agnostic approach to the neutron star (NS) equation of state (EoS) based on a...
For the interpretation of high-energy astrophysical phenomena such as supernova explosions or neutro...
In the past few years, new observations of neutron stars and neutron-star mergers have provided a we...
We demonstrate that ab-initio calculations in QCD at high densities offer significant and nontrivial...
We show how observations of gravitational waves from binary neutron star (BNS) mergers over the next...
The properties of neutron stars are determined by the nature of the matter that they contain. These ...
Observations of neutron stars, whether in binaries or in isolation, provide information about the in...
Astrophysical observations of neutron stars have been widely used to infer the properties of the nuc...
Interpreting high-energy, astrophysical phenomena, such as supernova explosions or neutron-star coll...
Interpreting high-energy, astrophysical phenomena, such as supernova explosions or neutron-star coll...
The interior of neutron stars contains matter at the highest densities realized in our Universe. Int...
Neutron star observations, including direct mass and radius measurements as well as the analysis of ...
Recent observations of neutron star masses close to the maximum predicted by nucleonic equations of ...
Using 250 neutron star merger simulations with microphysics, we explore for the first time the role ...
The next generation of ground-based gravitational-wave detectors, Einstein Telescope (ET) and Cosmic...
We construct a physics-agnostic approach to the neutron star (NS) equation of state (EoS) based on a...
For the interpretation of high-energy astrophysical phenomena such as supernova explosions or neutro...
In the past few years, new observations of neutron stars and neutron-star mergers have provided a we...
We demonstrate that ab-initio calculations in QCD at high densities offer significant and nontrivial...
We show how observations of gravitational waves from binary neutron star (BNS) mergers over the next...
The properties of neutron stars are determined by the nature of the matter that they contain. These ...
Observations of neutron stars, whether in binaries or in isolation, provide information about the in...
Astrophysical observations of neutron stars have been widely used to infer the properties of the nuc...