A “clean” black hole is a black hole in vacuum such as the Schwarzschild black hole. However in real physical systems, there are matter fields around a black hole. Such a black hole is called a “dirty black hole”. In this paper, the effect of matter fields on the black hole and the greybody factor is investigated. The results show that matter fields make a black hole smaller. They can increase the potential energy to a black hole to obstruct Hawking radiation to propagate. This causes the greybody factor of a dirty black hole to be less than that of a clean black hole
The accelerated-mirror results are applied to a black hole. As a consequence the hole produces black...
We study in detail the scalar-field Hawking radiation emitted into the bulk by a higher-dimensional,...
The results of various calculations of the Casimir effect and of the effect of particle creation by ...
A “clean” black hole is a black hole in vacuum such as the Schwarzschild black hole. However in real...
The higher derivative gravity includes corrections of the second order in curvature and allows for b...
The production of black holes in extra-dimensional brane-world theories can lead to detectable signa...
The production of black holes in extra-dimensional brane-world theories can lead to detectable signa...
The production of black holes in extra-dimensional brane-world theories can lead to detectable signa...
From the quantum point of view, black holes are unstable and emit socalled Hawking radiation. Specif...
Abstract In the classical theory of general relativity black holes can only absorb and not emit part...
The application of quantum-field flat-space-time results to a black hole reveals the domain and the ...
Our understanding of black holes changed drastically, when Stephen Hawking discovered their evaporat...
Particle creation by a black hole is investigated in terms of temperature corrections to the Casimir...
This paper argues that the effect of Hawking radiation on an astro-physical black hole situated in a...
The (3+1)-dimensional Einstein-Gauss-Bonnet theory of gravity which breaks the Lorentz invariance in...
The accelerated-mirror results are applied to a black hole. As a consequence the hole produces black...
We study in detail the scalar-field Hawking radiation emitted into the bulk by a higher-dimensional,...
The results of various calculations of the Casimir effect and of the effect of particle creation by ...
A “clean” black hole is a black hole in vacuum such as the Schwarzschild black hole. However in real...
The higher derivative gravity includes corrections of the second order in curvature and allows for b...
The production of black holes in extra-dimensional brane-world theories can lead to detectable signa...
The production of black holes in extra-dimensional brane-world theories can lead to detectable signa...
The production of black holes in extra-dimensional brane-world theories can lead to detectable signa...
From the quantum point of view, black holes are unstable and emit socalled Hawking radiation. Specif...
Abstract In the classical theory of general relativity black holes can only absorb and not emit part...
The application of quantum-field flat-space-time results to a black hole reveals the domain and the ...
Our understanding of black holes changed drastically, when Stephen Hawking discovered their evaporat...
Particle creation by a black hole is investigated in terms of temperature corrections to the Casimir...
This paper argues that the effect of Hawking radiation on an astro-physical black hole situated in a...
The (3+1)-dimensional Einstein-Gauss-Bonnet theory of gravity which breaks the Lorentz invariance in...
The accelerated-mirror results are applied to a black hole. As a consequence the hole produces black...
We study in detail the scalar-field Hawking radiation emitted into the bulk by a higher-dimensional,...
The results of various calculations of the Casimir effect and of the effect of particle creation by ...