The Schwarzschild black hole can be viewed as the special case of the marginally bound Lema\^\i tre-Tolman-Bondi models of dust collapse which corresponds to a constant mass function. We have presented a midi-superspace quantization of this model for an arbitrary mass-function in a separate publication. In this letter we show that our solution leads both to Bekenstein's area spectrum for black holes as well as to the black hole entropy, which, in this context, is naturally interpreted as the loss of information of the original matter distribution within the collapsing dust cloud
Astrophysical objects and the surrounding geometry must be described by suitable states in the compl...
In this paper we present a non-singular black hole model as a possible end-product of gravitational ...
Gravitational collapse into a black hole has been extensively studied with classical sources. We dev...
LeMa\^\i tre-Tolman-Bondi models of spherical dust collapse have been used and continue to be used e...
International audienceThe fate of matter forming a black hole is still an open problem, although mod...
Everybody knows what the classical black holes are. In short, this is a spacetime region beyond the ...
The Schwarzschild singularity's resolution has key values in cracking the key mysteries related with...
In an earlier paper, we obtained exact solutions of the Wheeler-DeWitt equation for the Lemaitre-Tol...
If we consider the gravitational collapse of a material object to a black hole, we would expect, for...
In the present paper we consider, using our earlier results, the process of quantum gravitational co...
It is commonly believed that the ubiquitous singularities of general relativity will be cured in a t...
We study the homogeneous gravitational collapse of a spherical cloud of matter in a super-renormaliz...
Following Rosen's quantization rules, two of the authors (C. Corda and F. Feleppa) recently describe...
We present a new quantum description for the Oppenheimer-Snyder model of gravitational collapse of a...
Gravitational collapses are natural laboratories where observable signatures of a quantum theory of...
Astrophysical objects and the surrounding geometry must be described by suitable states in the compl...
In this paper we present a non-singular black hole model as a possible end-product of gravitational ...
Gravitational collapse into a black hole has been extensively studied with classical sources. We dev...
LeMa\^\i tre-Tolman-Bondi models of spherical dust collapse have been used and continue to be used e...
International audienceThe fate of matter forming a black hole is still an open problem, although mod...
Everybody knows what the classical black holes are. In short, this is a spacetime region beyond the ...
The Schwarzschild singularity's resolution has key values in cracking the key mysteries related with...
In an earlier paper, we obtained exact solutions of the Wheeler-DeWitt equation for the Lemaitre-Tol...
If we consider the gravitational collapse of a material object to a black hole, we would expect, for...
In the present paper we consider, using our earlier results, the process of quantum gravitational co...
It is commonly believed that the ubiquitous singularities of general relativity will be cured in a t...
We study the homogeneous gravitational collapse of a spherical cloud of matter in a super-renormaliz...
Following Rosen's quantization rules, two of the authors (C. Corda and F. Feleppa) recently describe...
We present a new quantum description for the Oppenheimer-Snyder model of gravitational collapse of a...
Gravitational collapses are natural laboratories where observable signatures of a quantum theory of...
Astrophysical objects and the surrounding geometry must be described by suitable states in the compl...
In this paper we present a non-singular black hole model as a possible end-product of gravitational ...
Gravitational collapse into a black hole has been extensively studied with classical sources. We dev...