We study the evolution of supernova core from the beginning of gravitational collapse of a 15Msolar star up to 1 second after core bounce. We present results of spherically symmetric simulations of core-collapse supernovae by solving general relativistic neutrino-radiation-hydrodynamics in the implicit time-differencing. We aim to explore the evolution of shock wave in a long term and investigate the formation of protoneutron star together with supernova neutrino signatures. These studies are done to examine the influence of equation of state (EOS) on the postbounce evolution of shock wave in the late phase and the resulting thermal evolution of protoneutron star. We make a comparison of two sets of EOS, that is, by Lattimer and Swesty (LS-...
Core-collapse supernovae are among Nature’s grandest explosions. They are powered by the energy rele...
In a core-collapse supernova, a huge amount of energy is released in the Kelvin-Helmholtz phase subs...
The state of matter at extreme densities remains highly uncertain. Exploding stars provide the extra...
We examine simulations of core-collapse supernovae in spherical symmetry. Our model is based on gene...
We study the dependence of the delayed neutrino-heating mechanism for core-collapse supernovae on th...
The puzzle of core-collapse supernovae (CCSN) remains complicated. New insights from theory and obse...
Core-collapse supernovae (CCSN) mark the end of the life of massive stars and are cosmic laboratorie...
We investigate the post-explosion phase in core-collapse supernovae with 2D hydrodynamical simulatio...
We investigate the impact of different properties of the nuclear equation of state in core-collapse ...
One of the key ingredients to the core collapse supernova mechanism is the physics of matter at or n...
We study the physics of core-collapse supernovae and the neutron stars they create. We study the mic...
In the interior of supernovae, temperatures and densities exceed the range that is easily accessible...
Uncertainties in our knowledge of the properties of dense matter near and above nuclear saturation d...
We perform spherically symmetric general-relativistic simulations of core collapse and the postbounc...
We discuss the impact of consistent modeling of weak processes and nuclear equation of state (EOS) d...
Core-collapse supernovae are among Nature’s grandest explosions. They are powered by the energy rele...
In a core-collapse supernova, a huge amount of energy is released in the Kelvin-Helmholtz phase subs...
The state of matter at extreme densities remains highly uncertain. Exploding stars provide the extra...
We examine simulations of core-collapse supernovae in spherical symmetry. Our model is based on gene...
We study the dependence of the delayed neutrino-heating mechanism for core-collapse supernovae on th...
The puzzle of core-collapse supernovae (CCSN) remains complicated. New insights from theory and obse...
Core-collapse supernovae (CCSN) mark the end of the life of massive stars and are cosmic laboratorie...
We investigate the post-explosion phase in core-collapse supernovae with 2D hydrodynamical simulatio...
We investigate the impact of different properties of the nuclear equation of state in core-collapse ...
One of the key ingredients to the core collapse supernova mechanism is the physics of matter at or n...
We study the physics of core-collapse supernovae and the neutron stars they create. We study the mic...
In the interior of supernovae, temperatures and densities exceed the range that is easily accessible...
Uncertainties in our knowledge of the properties of dense matter near and above nuclear saturation d...
We perform spherically symmetric general-relativistic simulations of core collapse and the postbounc...
We discuss the impact of consistent modeling of weak processes and nuclear equation of state (EOS) d...
Core-collapse supernovae are among Nature’s grandest explosions. They are powered by the energy rele...
In a core-collapse supernova, a huge amount of energy is released in the Kelvin-Helmholtz phase subs...
The state of matter at extreme densities remains highly uncertain. Exploding stars provide the extra...