We discuss the formation of stellar mass black holes via protoneutron star (PNS) collapse. Such PNSs are modelled as central objects in general relativistic ID core collapse simulations with Boltzmann neutrino transport. In the absence of an earlier explosion, the PNS collapses eventually due to continued accretion of outer layers of a massive star onto the central object. We investigate the resulting conditions with respect to neutrino emission at the formation of a black hole
The possibility of detecting the ¯ e burst from the collapse of a neutron star into a black hole is...
We calculate the luminosity and energy spectrum of the neutrino emission from electron-positron pair...
There is increasing observational evidence for the existence of strange stars: ultra-compact objects...
During a failed core-collapse supernova, the protoneutron star eventually collapses under its own gr...
Failed supernovae are the implosive final fates of massive stars, where ablack hole is formed. Durin...
Neutrinos are unique probes of core-collapse supernova dynamics, especially in the case of black hol...
We describe the scenario of massive black hole (MBH) formation inside a supermassive star (SMS) in t...
We study the final fate of a very massive star by performing full general relativistic (GR), three-d...
The detection of neutrinos from massive stellar collapses can teach us a great deal not only about s...
We investigate several aspects of black hole formation in failing core-collapse supernovae us-ing 1D...
Massive stars end their lives in explosions with kinetic energies on the order of 1051 erg. Immediat...
We describe the formation of a seed massive black hole (MBH) inside a supermassive star (SMS) in a d...
We present numerical simulations of the delayed collapse of a hot nascent neutron star to a black ho...
We investigate the final collapse of rotating and non-rotating pulsational pair-instability supernov...
The gravitational collapse of a non-rotating, black-hole-forming massive star is studied by neutrino...
The possibility of detecting the ¯ e burst from the collapse of a neutron star into a black hole is...
We calculate the luminosity and energy spectrum of the neutrino emission from electron-positron pair...
There is increasing observational evidence for the existence of strange stars: ultra-compact objects...
During a failed core-collapse supernova, the protoneutron star eventually collapses under its own gr...
Failed supernovae are the implosive final fates of massive stars, where ablack hole is formed. Durin...
Neutrinos are unique probes of core-collapse supernova dynamics, especially in the case of black hol...
We describe the scenario of massive black hole (MBH) formation inside a supermassive star (SMS) in t...
We study the final fate of a very massive star by performing full general relativistic (GR), three-d...
The detection of neutrinos from massive stellar collapses can teach us a great deal not only about s...
We investigate several aspects of black hole formation in failing core-collapse supernovae us-ing 1D...
Massive stars end their lives in explosions with kinetic energies on the order of 1051 erg. Immediat...
We describe the formation of a seed massive black hole (MBH) inside a supermassive star (SMS) in a d...
We present numerical simulations of the delayed collapse of a hot nascent neutron star to a black ho...
We investigate the final collapse of rotating and non-rotating pulsational pair-instability supernov...
The gravitational collapse of a non-rotating, black-hole-forming massive star is studied by neutrino...
The possibility of detecting the ¯ e burst from the collapse of a neutron star into a black hole is...
We calculate the luminosity and energy spectrum of the neutrino emission from electron-positron pair...
There is increasing observational evidence for the existence of strange stars: ultra-compact objects...