Isolated horizon conditions specialized to spherical symmetry can be imposed directly at the quantum level. This answers several questions concerning horizon degrees of freedom, which are seen to be related to orientation, and its fluctuations at the kinematical as well as dynamical level. In particular, in the absence of scalar or fermionic matter the horizon area is an approximate quantum observable. Including different kinds of matter fields allows to probe several aspects of the Hamiltonian constraint of quantum geometry that are important in inhomogeneous situations
Abstract. We review our recent proposal of a method to extend the quantization of spherically symmet...
We study the extent of quantum gravitational effects in the internal region of non-singular, Hayward...
We construct condensate states encoding the continuum spherically symmetric quantum geometry of a ho...
Isolated horizon conditions specialized to spherical symmetry can be imposed directly at the quantum...
The kinematical setting of spherically symmetric quantum geometry, derived from the full theory of l...
The Horizon Quantum Mechanics is an approach that allows one to analyse the gravitational radius of ...
none3siWe start investigating the extension of the horizon quantum mechanics to the case of non-sphe...
Variables adapted to the quantum dynamics of spherically symmetric models are introduced, which furt...
Based on a recent purely geometric construction of observables for the spatial diffeomorphism constr...
In this paper we discuss some mathematical aspects of the horizon wave-function formalism, also know...
Abstract The horizon quantum mechanics is an approach that was previously introduced in order to ana...
Spherically symmetric space-times provide many examples for interesting black hole solutions, which ...
The flat, homogeneous, and isotropic universe with a massless scalar field is a paradigmatic model i...
Presentation improvements, published versionInternational audienceWe study the classical field theor...
International audienceNumerical studies of gravitational collapse to black holes make use of apparen...
Abstract. We review our recent proposal of a method to extend the quantization of spherically symmet...
We study the extent of quantum gravitational effects in the internal region of non-singular, Hayward...
We construct condensate states encoding the continuum spherically symmetric quantum geometry of a ho...
Isolated horizon conditions specialized to spherical symmetry can be imposed directly at the quantum...
The kinematical setting of spherically symmetric quantum geometry, derived from the full theory of l...
The Horizon Quantum Mechanics is an approach that allows one to analyse the gravitational radius of ...
none3siWe start investigating the extension of the horizon quantum mechanics to the case of non-sphe...
Variables adapted to the quantum dynamics of spherically symmetric models are introduced, which furt...
Based on a recent purely geometric construction of observables for the spatial diffeomorphism constr...
In this paper we discuss some mathematical aspects of the horizon wave-function formalism, also know...
Abstract The horizon quantum mechanics is an approach that was previously introduced in order to ana...
Spherically symmetric space-times provide many examples for interesting black hole solutions, which ...
The flat, homogeneous, and isotropic universe with a massless scalar field is a paradigmatic model i...
Presentation improvements, published versionInternational audienceWe study the classical field theor...
International audienceNumerical studies of gravitational collapse to black holes make use of apparen...
Abstract. We review our recent proposal of a method to extend the quantization of spherically symmet...
We study the extent of quantum gravitational effects in the internal region of non-singular, Hayward...
We construct condensate states encoding the continuum spherically symmetric quantum geometry of a ho...