Abstract The near-horizon geometry of evaporation black holes is determined according to the semi-classical Einstein equation. We consider spherically symmetric configurations in which the collapsing star has already collapsed below the Schwarzschild radius. The back-reaction of the vacuum energy-momentum, including Hawking radiation, is taken into account. The vacuum energy-momentum plays a crucial role in a small neighborhood of the apparent horizon, as it appears at the leading order in the semi-classical Einstein equation. Our study is focused on the time-dependent geometry in this region
Gravitational collapse is analyzed in the Brane-World by arguing that regularity of five-dimensional...
Usually, Hawking radiation is derived assuming (i) that a future eternal event horizon forms, and (i...
A detailed model is constructed for the spacetime of an evaporating black hole. This model is used t...
In case of spherical symmetry, the assumptions of finite-time formation of a trapped region and regu...
We present a semi-classical model for the formation and evaporation of a four dimensional black hole...
The formation and semiclassical evaporation of two-dimensional black holes is studied in an exactly ...
We find that a collapsing dust cloud with a central homogeneous core must have a faint atmosphere in...
We analyze the time evolution of a spherically-symmetric collapsing matter from the point of view th...
AbstractWith the back-reaction of Hawking radiation taken into consideration, the work of Kawai, Mat...
A simple model for an evaporating non-rotating black hole is considered, employing a global time tha...
Models of black-hole evaporation and the information paradox often assume a fully formed black hole ...
The gravitational collapse of massive stars serves to manifest the most severe deviations of general...
An investigation into open problems related to black hole evaporation in the semi-classical framewor...
We study the gravitational collapse of compact objects in the Brane-World. We begin by arguing that ...
The correspondence principle and causality divide the spacetime of a macroscopic collapsing mass int...
Gravitational collapse is analyzed in the Brane-World by arguing that regularity of five-dimensional...
Usually, Hawking radiation is derived assuming (i) that a future eternal event horizon forms, and (i...
A detailed model is constructed for the spacetime of an evaporating black hole. This model is used t...
In case of spherical symmetry, the assumptions of finite-time formation of a trapped region and regu...
We present a semi-classical model for the formation and evaporation of a four dimensional black hole...
The formation and semiclassical evaporation of two-dimensional black holes is studied in an exactly ...
We find that a collapsing dust cloud with a central homogeneous core must have a faint atmosphere in...
We analyze the time evolution of a spherically-symmetric collapsing matter from the point of view th...
AbstractWith the back-reaction of Hawking radiation taken into consideration, the work of Kawai, Mat...
A simple model for an evaporating non-rotating black hole is considered, employing a global time tha...
Models of black-hole evaporation and the information paradox often assume a fully formed black hole ...
The gravitational collapse of massive stars serves to manifest the most severe deviations of general...
An investigation into open problems related to black hole evaporation in the semi-classical framewor...
We study the gravitational collapse of compact objects in the Brane-World. We begin by arguing that ...
The correspondence principle and causality divide the spacetime of a macroscopic collapsing mass int...
Gravitational collapse is analyzed in the Brane-World by arguing that regularity of five-dimensional...
Usually, Hawking radiation is derived assuming (i) that a future eternal event horizon forms, and (i...
A detailed model is constructed for the spacetime of an evaporating black hole. This model is used t...