Based on a recent purely geometric construction of observables for the spatial diffeomorphism constraint, we propose two distinct quantum reductions to spherical symmetry within full 3+1-dimensional loop quantum gravity. The construction of observables corresponds to using the radial gauge for the spatial metric and allows to identify rotations around a central observer as unitary transformations in the quantum theory. Group averaging over these rotations yields our first proposal for spherical symmetry. Hamiltonians of the full theory with angle-independent lapse preserve this spherically symmetric subsector of the full Hilbert space. A second proposal consists in implementing the vanishing of a certain vector field in spherical symmetry a...
We show that holography follows directly from the basic structure of spherically symmetric loop quan...
We study gravity coupled to a scalar field in spherical symmetry using loop quantum gravity techniqu...
This work introduces a new space of 'vertex-smooth' states for use in the loop approach to quantum g...
The kinematical setting of spherically symmetric quantum geometry, derived from the full theory of l...
Variables adapted to the quantum dynamics of spherically symmetric models are introduced, which furt...
Given a symmetry group acting on a principal fibre bundle, symmetric states of the quantum theory of...
We quantize the exterior of spherically symmetric vacuum spacetimes using a midi-superspace reductio...
Loop quantum gravity introduces two characteristic modifications in the classical constraints of gen...
Loop quantum gravity corrections, in the presence of inhomogeneities, can lead to a deformed constra...
Loop quantum gravity is an approach to quantum gravity that starts from the Hamiltonian formulation ...
A new symmetric Hamiltonian constraint operator is proposed for loop quantum gravity, which is well ...
AbstractA new symmetric Hamiltonian constraint operator is proposed for loop quantum gravity, which ...
Isolated horizon conditions specialized to spherical symmetry can be imposed directly at the quantum...
It is often emphasized that spin-foam models could realize a projection on the physical Hilbert spac...
In [1] we initiated an approach towards quantizing the Hamiltonian constraint in Loop Quantum Gravit...
We show that holography follows directly from the basic structure of spherically symmetric loop quan...
We study gravity coupled to a scalar field in spherical symmetry using loop quantum gravity techniqu...
This work introduces a new space of 'vertex-smooth' states for use in the loop approach to quantum g...
The kinematical setting of spherically symmetric quantum geometry, derived from the full theory of l...
Variables adapted to the quantum dynamics of spherically symmetric models are introduced, which furt...
Given a symmetry group acting on a principal fibre bundle, symmetric states of the quantum theory of...
We quantize the exterior of spherically symmetric vacuum spacetimes using a midi-superspace reductio...
Loop quantum gravity introduces two characteristic modifications in the classical constraints of gen...
Loop quantum gravity corrections, in the presence of inhomogeneities, can lead to a deformed constra...
Loop quantum gravity is an approach to quantum gravity that starts from the Hamiltonian formulation ...
A new symmetric Hamiltonian constraint operator is proposed for loop quantum gravity, which is well ...
AbstractA new symmetric Hamiltonian constraint operator is proposed for loop quantum gravity, which ...
Isolated horizon conditions specialized to spherical symmetry can be imposed directly at the quantum...
It is often emphasized that spin-foam models could realize a projection on the physical Hilbert spac...
In [1] we initiated an approach towards quantizing the Hamiltonian constraint in Loop Quantum Gravit...
We show that holography follows directly from the basic structure of spherically symmetric loop quan...
We study gravity coupled to a scalar field in spherical symmetry using loop quantum gravity techniqu...
This work introduces a new space of 'vertex-smooth' states for use in the loop approach to quantum g...