Wormholes, Classical Limit and Dynamical Vacuum in Quantum Cosmology
arXiv:gr-qc/9906061 · doi:10.1023/A:1026766217564
Abstract
First a Friedmann-Robertson-Walker (FRW) universe filled with dust and a conformally invariant scalar field is quantized. For the closed model we find a discrete set of wormhole quantum states. In the case of flat spacelike sections we find states with classical behaviour at small values of the scale factor and quantum behaviour for large values of the scale factor. Next we study a FRW model with a conformally invariant scalar field and a nonvanishing cosmological constant dynamically introduced by regarding the vacuum as a perfect fluid. The ensuing Wheeler-DeWitt equation turns out to be a bona fide Schrodinger equation, and we find that there are realizable states with a definite value of the cosmological constant. Once again we find finite-norm solutions to the Wheeler-DeWitt equation with definite values of the cosmological constant that represent wormholes, suggesting that in quantum cosmological models with a simple matter content wormhole states are a common occurrence.
17 pages, Latex, 1 Postscript figure. To appear in General Relativity and Gravitation
References in corpus (2)
Cited by in corpus (12)
- Constraints Algebra and Equations of Motion in Bohmian Interpretation of Quantum Gravity
- The dynamics of the early universe and the initial conditions for inflation in a model with radiation and a Chaplygin gas
- Quantum FRW cosmological solutions in the presence of Chaplygin gas and perfect fluid
- Does the Big Rip survive quantization?
- Stephani-Schutz quantum cosmology
- Signature change from Schutz's canonical quantum cosmology and its classical analogue
- Quantum Stephani exact cosmological solutions and the selection of time variable
- A Quantum Cosmological Model With Static and Dynamic Wormholes
- Classical analogous of quantum cosmological perfect fluid models
- Chaplygin Gas Hořava-Lifshitz Quantum Cosmology
- Can Quantum Gravitational Effects Influence the Entire History of the Universe?
- Topology and Volume Effects in Quantum Gravity: Wheeler-DeWitt Theory