Thermal properties of spacetime foam
arXiv:gr-qc/9806047 · doi:10.1103/PhysRevD.58.124015
Abstract
Spacetime foam can be modeled in terms of nonlocal effective interactions in a classical nonfluctuating background. Then, the density matrix for the low-energy fields evolves, in the weak-coupling approximation, according to a master equation that contains a diffusion term. Furthermore, it is argued that spacetime foam behaves as a quantum thermal field that, apart from inducing loss of coherence, gives rise to effects such as gravitational Lamb and Stark shifts as well as quantum damping in the evolution of the low-energy observables. These effects can be, at least in principle, experimentally tested.
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References in corpus (6)
- Potential Sensitivity of Gamma-Ray Burster Observations to Wave Dispersion in Vacuo
- Spacetime foam as a quantum thermal bath
- Completely positive dynamics of correlated neutral kaons
- Dominant Topologies in Euclidean Quantum Gravity
- A Self-Consistent Vacuum for Misner Space and the Chronology Protection Conjecture
- Spacetime Foam and the Cosmological Constant
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