Wormhole Spaces: the Common Cause for the Black Hole Entropy-Area Law,the Holographic Principle and Quantum Entanglement
arXiv:0910.4017
Abstract
We present strong arguments that the deep structure of the quantum vacuum contains a web of microscopic wormholes or short-cuts. We develop the concept of wormhole spaces and show that this web of wormholes generate a peculiar array of long-range correlations in the patterns of vacuum fluctuations on the Planck scale. We conclude that this translocal structure represents the common cause for both the BH-entropy-area law, the more general holographic principle and the entanglement phenomena in quantum theory. In so far our approach exhibits a common structure which underlies both gravity and quantum theory on a microscopic scale. A central place in our analysis is occupied by a quantitative derivation of the distribution laws of microscopic wormholes in the quantum vacuum. This makes it possible to address a number of open questions and controversial topics in the field of quantum gravity.
32 pages, 7 figures; gives a detailed elaboration of ideas sketched in 0708.0901
References in corpus (7)
- Black Holes, AdS, and CFTs
- Yet More Ado About Nothing: The Remarkable Relativistic Vacuum State
- Unitarity and the Hilbert space of quantum gravity
- Emergent Properties in Structurally Dynamic Disordered Cellular Networks
- Wormhole Spaces, Connes' "Points, Speaking to Each Other", and the Translocal Structure of Quantum Theory
- About the Minimal Resolution of Space-Time Grains in Experimental Quantum Gravity
- Spacetime Foam and Vacuum Energy