We study the black hole particle production in a regular spacetime metric obtained in a minisuperspace approach to loop quantum gravity. In different previous papers the static solution was obtained and shown to be singularity-free and self-dual. In this paper expanding a previous study of the black hole dynamics we repeat the Hawking analysis which leads to a thermal flux of particles at the future infinity. The evaporation time is infinite and the unitarity is recovered due to the regularity of the spacetime and to the characteristic behavior of the surface gravity. © 2014 Springer Science+Business Media New York
The problem of finding the quantum theory of the gravitational field, and thus understanding what is...
International audienceWe introduce the notion of fluid approximation of a quantum spherical black ho...
International audienceWe introduce the notion of fluid approximation of a quantum spherical black ho...
We review a recent black hole particle production analisys in a regular spacetime metric obtained in...
We review a recent black hole particle production analisys in a regular spacetime metric obtained in...
International audienceThis is a review of results on black hole physics in the context of loop quant...
We incorporate elements of the recently discovered exact solutions of the quantum constraints of loo...
Particle creation by a black hole is described in terms of temperature corrections to the Casimir ef...
Particle creation by a black hole is described in terms of temperature corrections to the Casimir ef...
Particle creation by a black hole is described in terms of temperature corrections to the Casimir ef...
In this paper we obtain the black hole metric from a semiclassical analysis of loop quantum black ho...
AbstractBlack holes are considered as objects that can reveal quantum aspects of spacetime. Loop Qua...
Particle creation by a black hole is described in terms of temperature corrections to the Casimir ef...
In this paper we summarize "loop quantum gravity" (LQG) and we show how ideas developed in LQG can s...
Abstract. In the classical theory black holes can only absorb and not emit particles. However it is ...
The problem of finding the quantum theory of the gravitational field, and thus understanding what is...
International audienceWe introduce the notion of fluid approximation of a quantum spherical black ho...
International audienceWe introduce the notion of fluid approximation of a quantum spherical black ho...
We review a recent black hole particle production analisys in a regular spacetime metric obtained in...
We review a recent black hole particle production analisys in a regular spacetime metric obtained in...
International audienceThis is a review of results on black hole physics in the context of loop quant...
We incorporate elements of the recently discovered exact solutions of the quantum constraints of loo...
Particle creation by a black hole is described in terms of temperature corrections to the Casimir ef...
Particle creation by a black hole is described in terms of temperature corrections to the Casimir ef...
Particle creation by a black hole is described in terms of temperature corrections to the Casimir ef...
In this paper we obtain the black hole metric from a semiclassical analysis of loop quantum black ho...
AbstractBlack holes are considered as objects that can reveal quantum aspects of spacetime. Loop Qua...
Particle creation by a black hole is described in terms of temperature corrections to the Casimir ef...
In this paper we summarize "loop quantum gravity" (LQG) and we show how ideas developed in LQG can s...
Abstract. In the classical theory black holes can only absorb and not emit particles. However it is ...
The problem of finding the quantum theory of the gravitational field, and thus understanding what is...
International audienceWe introduce the notion of fluid approximation of a quantum spherical black ho...
International audienceWe introduce the notion of fluid approximation of a quantum spherical black ho...