Conditional symmetries in axisymmetric quantum cosmologies with scalar fields and the fate of the classical singularities
arXiv:1511.08382 · doi:10.1088/1475-7516/2016/05/066
Abstract
In this paper, the classical and quantum solutions of some axisymmetric cosmologies coupled to a massless scalar field are studied in the context of minisuperspace approximation. In these models, the singular nature of the Lagrangians entails a search for possible conditional symmetries. These have been proven to be the simultaneous conformal symmetries of the supermetric and the superpotential. The quantization is performed by adopting the Dirac proposal for constrained systems, i.e. promoting the first-class constraints to operators annihilating the wave function. To further enrich the approach, we follow \cite{Christodoulakis:2012eg} and impose the operators related to the classical conditional symmetries on the wave function. These additional equations select particular solutions of the Wheeler-DeWitt equation. In order to gain some physical insight from the quantization of these cosmological systems, we perform a semiclassical analysis following the Bohmian approach to quantum theory. The generic result is that, in all but one model, one can find appropriate ranges of the parameters, so that the emerging semiclassical geometries are non-singular. An attempt for physical interpretation involves the study of the effective energy-momentum tensor which corresponds to an imperfect fluid.
29 pages, LaTeX2e source file, no figures; v2 References and a new appendix added. Typo in title corected. Matches accepted version in JCAP
References in corpus (12)
- Quantum Nature of the Big Bang: Improved dynamics
- Quantum Nature of the Big Bang
- Quantum Nature of the Big Bang: An Analytical and Numerical Investigation
- Loop Quantum Cosmology: An Overview
- Quantum cosmology: a review
- The General Solution of Bianchi Type III Vacuum Cosmology
- Classical and Quantum Solutions in Brans-Dicke Cosmology with a Perfect Fluid
- Noether analysis of Scalar-Tensor Cosmology
- Classical and quantum cosmology of Born-Infeld type models
- Wheeler-DeWitt quantization and singularities
- Canonical Quantization of the BTZ Black Hole using Noether Symmetries
- On the essential constants in Riemannian geometries
Cited by in corpus (22)
- Cartan symmetries and global dynamical systems analysis in a higher-order modified teleparallel theory
- Dynamical symmetries in Brans-Dicke cosmology
- Crossing the phantom divide line as an effect of quantum transitions
- Decoupling of the re-parametrization degree of freedom and a generalized probability in quantum cosmology
- Dust fluid component from Lie symmetries in Scalar field Cosmology
- Conservation laws and Exact Solutions in Brans-Dicke Cosmology with a Scalar Field
- Integrability from Point Symmetries in a family of Cosmological Horndeski Lagrangians
- Infinite dimensional symmetry groups of the Friedmann equations
- Multi-fluid cosmology in Einstein gravity: analytical solutions
- Wheeler-DeWitt equation and Lie symmetries in Bianchi scalar-field cosmology
- Minisuperspace Quantization of Cosmology
- Quantization of the Szekeres System
- Similarity solutions for the Wheeler-DeWitt equation in -cosmology
- Cosmological solutions in Hořava-Lifshitz gravity
- Quantum cosmology of a Bianchi III LRS geometry coupled to a source free electromagnetic field
- Integrability of geodesic motions in curved manifolds through non-local conserved charges
- Exact solution of the Einstein-Skyrme model in a Kantowski-Sachs spacetime
- Discrete spectrum of the quantum Reissner - Nordström geometry
- A new symmetry of the spatially flat Einstein-Friedmann equations
- Quantum fate of timelike naked singularity with scalar hair
- Classical and quantum (2+1)-dimensional spatially homogeneous string cosmology
- Quantum Cosmology in theory