Abstract The horizon quantum mechanics is an approach that was previously introduced in order to analyze the gravitational radius of spherically symmetric systems and compute the probability that a given quantum state is a black hole. In this work, we first extend the formalism to general space-times with asymptotic (ADM) mass and angular momentum. We then apply the extended horizon quantum mechanics to a harmonic model of rotating corpuscular black holes. We find that simple configurations of this model naturally suppress the appearance of the inner horizon and seem to disfavor extremal (macroscopic) geometries
Black Holes have always played a central role in investigations of quantum gravity. This includes bo...
none3siIt is congruous with the quantum nature of the world to view the spacetime geometry as an eme...
String theory is a unified framework for general relativity and quantum mechanics, thus being a theo...
none4siThe horizon quantum mechanics is an approach that was previously introduced in order to analy...
The Horizon Quantum Mechanics is an approach that allows one to analyse the gravitational radius of ...
In this paper we discuss some mathematical aspects of the horizon wave-function formalism, also know...
We present a quantum theory of black hole (and other) horizons, in which the standard assumptions of...
We consider black holes generically sourced by quantum matter described by regular wavefunctions. Th...
We study the extent of quantum gravitational effects in the internal region of non-singular, Hayward...
We employ the formalism of the Horizon Quantum Mechanics to describe the gravitational radius of com...
A detailed description of how black holes grow in full, non-linear general relativity is presented. ...
none4siWe adapt the horizon wave-function formalism to describe massive static spherically symmetric...
© 2015 American Physical Society. We consider generic rotating axially symmetric "dirty" (surrounded...
none4siWe employ the recently proposed formalism of the "horizon wave-function" to investigate the e...
Quantum physics lends a view of space-time geometry as an emergent structure that shows classical fe...
Black Holes have always played a central role in investigations of quantum gravity. This includes bo...
none3siIt is congruous with the quantum nature of the world to view the spacetime geometry as an eme...
String theory is a unified framework for general relativity and quantum mechanics, thus being a theo...
none4siThe horizon quantum mechanics is an approach that was previously introduced in order to analy...
The Horizon Quantum Mechanics is an approach that allows one to analyse the gravitational radius of ...
In this paper we discuss some mathematical aspects of the horizon wave-function formalism, also know...
We present a quantum theory of black hole (and other) horizons, in which the standard assumptions of...
We consider black holes generically sourced by quantum matter described by regular wavefunctions. Th...
We study the extent of quantum gravitational effects in the internal region of non-singular, Hayward...
We employ the formalism of the Horizon Quantum Mechanics to describe the gravitational radius of com...
A detailed description of how black holes grow in full, non-linear general relativity is presented. ...
none4siWe adapt the horizon wave-function formalism to describe massive static spherically symmetric...
© 2015 American Physical Society. We consider generic rotating axially symmetric "dirty" (surrounded...
none4siWe employ the recently proposed formalism of the "horizon wave-function" to investigate the e...
Quantum physics lends a view of space-time geometry as an emergent structure that shows classical fe...
Black Holes have always played a central role in investigations of quantum gravity. This includes bo...
none3siIt is congruous with the quantum nature of the world to view the spacetime geometry as an eme...
String theory is a unified framework for general relativity and quantum mechanics, thus being a theo...