Calculations of the cosmic rate of core collapses, and the associated neutrino flux, commonly assume that a fixed fraction of massive stars collapse to black holes. We argue that recent results suggest that this fraction instead increases with redshift. With relatively more stars vanishing as “unnovae” in the distant universe, the detectability of the cosmic MeV neutrino background is improved due to their hotter neutrino spectrum, and expectations for supernova surveys are reduced. We conclude that neutrino detectors, after the flux from normal SNe is isolated via either improved modeling or the next Galactic SN, can probe the conditions and history of black hole formation
After the historical detection of a neutrino burst coming from the supernova 1987A, the interest for...
Neutrino-dominated accretion flows (NDAFs) around rotating stellar-mass black holes (BHs) have been ...
We consider the relic neutrino background produced by Population III stars coupled with a normal mod...
AbstractCalculations of the cosmic rate of core collapses, and the associated neutrino flux, commonl...
It has been suggested that the supermassive black holes, at the centers of galaxies and quasars, may...
Evidence from the WMAP polarization data indicates that the Universe may have been reionized at very...
Neutrinos are unique probes of core-collapse supernova dynamics, especially in the case of black hol...
In large stars that have exhausted their nuclear fuel, the stellar core collapses to a hot and dense...
The detection of neutrinos from massive stellar collapses can teach us a great deal not only about s...
During a failed core-collapse supernova, the protoneutron star eventually collapses under its own gr...
We calculate the luminosity and energy spectrum of the neutrino emission from electron-positron pair...
If spacetime has more than four dimensions, ultrahigh energy cosmic rays may create microscopic blac...
Open AccessThe statistics of black holes and their masses strongly suggests that their mass distribu...
Failed supernovae are the implosive final fates of massive stars, where ablack hole is formed. Durin...
The gravitational core collapse of a star produces a huge burst of neutrinos of all flavors. A numbe...
After the historical detection of a neutrino burst coming from the supernova 1987A, the interest for...
Neutrino-dominated accretion flows (NDAFs) around rotating stellar-mass black holes (BHs) have been ...
We consider the relic neutrino background produced by Population III stars coupled with a normal mod...
AbstractCalculations of the cosmic rate of core collapses, and the associated neutrino flux, commonl...
It has been suggested that the supermassive black holes, at the centers of galaxies and quasars, may...
Evidence from the WMAP polarization data indicates that the Universe may have been reionized at very...
Neutrinos are unique probes of core-collapse supernova dynamics, especially in the case of black hol...
In large stars that have exhausted their nuclear fuel, the stellar core collapses to a hot and dense...
The detection of neutrinos from massive stellar collapses can teach us a great deal not only about s...
During a failed core-collapse supernova, the protoneutron star eventually collapses under its own gr...
We calculate the luminosity and energy spectrum of the neutrino emission from electron-positron pair...
If spacetime has more than four dimensions, ultrahigh energy cosmic rays may create microscopic blac...
Open AccessThe statistics of black holes and their masses strongly suggests that their mass distribu...
Failed supernovae are the implosive final fates of massive stars, where ablack hole is formed. Durin...
The gravitational core collapse of a star produces a huge burst of neutrinos of all flavors. A numbe...
After the historical detection of a neutrino burst coming from the supernova 1987A, the interest for...
Neutrino-dominated accretion flows (NDAFs) around rotating stellar-mass black holes (BHs) have been ...
We consider the relic neutrino background produced by Population III stars coupled with a normal mod...