AbstractWe study quantum radiation emitted during the collapse of a quantized, gravitating, spherical domain wall. The amount of radiation emitted during collapse now depends on the wavefunction of the collapsing wall and the background spacetime. If the wavefunction is initially in the form of a sharp wavepacket, the expectation value of the particle occupation number is determined as a function of time and frequency. The results are in good agreement with our earlier semiclassical analysis and show that the quantum radiation is non-thermal and evaporation accompanies gravitational collapse
Particle creation leading to Hawking radiation is produced by the changing gravitational field of th...
Particle creation leading to Hawking radiation is produced by the changing gravitational field of th...
In a previous paper we discussed corrections to Hawking radiation from a collapsing shell due to qua...
We study quantum radiation emitted during the collapse of a quantized, gravitating, spherical domain...
AbstractWe study quantum radiation emitted during the collapse of a quantized, gravitating, spherica...
In this thesis we investigate quantum mechanical effects to various aspects of gravitational collaps...
AbstractBased on a previously found general class of quantum improved exact solutions composed of no...
Based on a previously found general class of quantum improved exact solutions composed of non-intera...
We provide a detailed analysis of quantum field theory around a collapsing shell and discuss several...
Gravitational collapse into a black hole has been extensively studied with classical sources. We dev...
If we consider the gravitational collapse of a material object to a black hole, we would expect, for...
Gravitational collapse into a black hole has been extensively studied with classical sources. We dev...
AbstractParticle creation leading to Hawking radiation is produced by the changing gravitational fie...
A sufficiently massive collapsing star will end its life as a spacetimesingularity. The nature of th...
LeMa\^\i tre-Tolman-Bondi models of spherical dust collapse have been used and continue to be used e...
Particle creation leading to Hawking radiation is produced by the changing gravitational field of th...
Particle creation leading to Hawking radiation is produced by the changing gravitational field of th...
In a previous paper we discussed corrections to Hawking radiation from a collapsing shell due to qua...
We study quantum radiation emitted during the collapse of a quantized, gravitating, spherical domain...
AbstractWe study quantum radiation emitted during the collapse of a quantized, gravitating, spherica...
In this thesis we investigate quantum mechanical effects to various aspects of gravitational collaps...
AbstractBased on a previously found general class of quantum improved exact solutions composed of no...
Based on a previously found general class of quantum improved exact solutions composed of non-intera...
We provide a detailed analysis of quantum field theory around a collapsing shell and discuss several...
Gravitational collapse into a black hole has been extensively studied with classical sources. We dev...
If we consider the gravitational collapse of a material object to a black hole, we would expect, for...
Gravitational collapse into a black hole has been extensively studied with classical sources. We dev...
AbstractParticle creation leading to Hawking radiation is produced by the changing gravitational fie...
A sufficiently massive collapsing star will end its life as a spacetimesingularity. The nature of th...
LeMa\^\i tre-Tolman-Bondi models of spherical dust collapse have been used and continue to be used e...
Particle creation leading to Hawking radiation is produced by the changing gravitational field of th...
Particle creation leading to Hawking radiation is produced by the changing gravitational field of th...
In a previous paper we discussed corrections to Hawking radiation from a collapsing shell due to qua...