A Quantum Cosmological Model With Static and Dynamic Wormholes
arXiv:gr-qc/0210054 · doi:10.1023/A:1022321916891
Abstract
Quantization is performed of a Friedmann-Robertson-Walker universe filled with a conformally invariant scalar field and a perfect fluid with equation of state . A well-known discrete set of static quantum wormholes is shown to exist for radiation (), and a novel continuous set is found for cosmic strings (), the latter states having throat radii of any size. In both cases wave-packet solutions to the Wheeler-DeWitt equation are obtained with all the properties of evolving quantum wormholes. In the case of a radiation fluid, a detailed analysis of the quantum dynamics is made in the context of the Bohm-de Broglie interpretation. It is shown that a repulsive quantum force inversely proportional to the cube of the scale factor prevents singularities in the quantum domain. For the states considered, there are no particle horizons either.
LaTex file, 13 pages. To appear in General Relativity and Gravitation
References in corpus (1)
Cited by in corpus (5)
- Wormholes and Ringholes in a Dark-Energy Universe
- Quantization of Friedmann-Robertson-Walker spacetimes in the presence of a negative cosmological constant and radiation
- The Planck era with a negative cosmological constant and cosmic strings
- Probing singularities in quantum cosmology with curvature scalars
- Quantum Perfect-Fluid Kaluza-Klein Cosmology