f(Q) symmetric-teleparallel gravity is considered in view of quantum cosmology. Specifically, we derive cosmological equations for f(Q) models and then investigate the related energy conditions. In the Minisuperspace formalism, the point-like f(Q) Hamiltonian is taken into account. In this framework, we obtain and solve the Wheeler–De Witt equation, thus finding the wave function of the universe in different cases. We show that the Hartle criterion can be applied and classical observable universes occur
The existence of a Noether symmetry for a given minisuperspace cosmological model is a sort of selec...
The incompleteness of the Dirac quantization scheme leads to a redundant set of solutions of the Whe...
There is a formal analogy between the evolution of the universe, when it is seen as a trajectory in ...
f(Q) symmetric-teleparallel gravity is considered in view of quantum cosmology. Specifically, we der...
Abstract f(Q) symmetric-teleparallel gravity is considered in view of quantum cosmology. Specificall...
Minisuperspace Quantum Cosmology is an approach by which it is possible to infer initial conditions ...
We apply the Noether Symmetry Approach to point-like teleparallel Lagrangians in view to derive mini...
We explore an extension of the symmetric teleparallel gravity denoted the f(Q) theory, by considerin...
We consider f(Q) extended symmetric teleparallel cosmologies, where Q is the non-metricity scalar, a...
This work studies the quantum cosmology of a closed, spatially homogeneous, and isotropic FLRW minis...
The main task of this review is to discuss quantum cosmology minisuperspace models based on the Whee...
We use Dirac's method for the quantization of constrained systems in order to quantize a spatia...
Spatially homogeneous universes can be described in (loop) quantum gravity as condensates of element...
We study the Wheeler-DeWitt equation for a class of induced gravity models in the minisuperspace app...
Modified gravity theories have the potential of explaining the recent acceleration of the Universe w...
The existence of a Noether symmetry for a given minisuperspace cosmological model is a sort of selec...
The incompleteness of the Dirac quantization scheme leads to a redundant set of solutions of the Whe...
There is a formal analogy between the evolution of the universe, when it is seen as a trajectory in ...
f(Q) symmetric-teleparallel gravity is considered in view of quantum cosmology. Specifically, we der...
Abstract f(Q) symmetric-teleparallel gravity is considered in view of quantum cosmology. Specificall...
Minisuperspace Quantum Cosmology is an approach by which it is possible to infer initial conditions ...
We apply the Noether Symmetry Approach to point-like teleparallel Lagrangians in view to derive mini...
We explore an extension of the symmetric teleparallel gravity denoted the f(Q) theory, by considerin...
We consider f(Q) extended symmetric teleparallel cosmologies, where Q is the non-metricity scalar, a...
This work studies the quantum cosmology of a closed, spatially homogeneous, and isotropic FLRW minis...
The main task of this review is to discuss quantum cosmology minisuperspace models based on the Whee...
We use Dirac's method for the quantization of constrained systems in order to quantize a spatia...
Spatially homogeneous universes can be described in (loop) quantum gravity as condensates of element...
We study the Wheeler-DeWitt equation for a class of induced gravity models in the minisuperspace app...
Modified gravity theories have the potential of explaining the recent acceleration of the Universe w...
The existence of a Noether symmetry for a given minisuperspace cosmological model is a sort of selec...
The incompleteness of the Dirac quantization scheme leads to a redundant set of solutions of the Whe...
There is a formal analogy between the evolution of the universe, when it is seen as a trajectory in ...