Spacetime foam: from entropy and holography to infinite statistics and nonlocality
arXiv:0801.2962 · doi:10.3390/e10040441
Abstract
Due to quantum fluctuations, spacetime is foamy on small scales. The degree of foaminess is found to be consistent with holography, a principle prefigured in the physics of black hole entropy. It has bearing on the ultimate accuracies of clocks and measurements and the physics of quantum computation. Consistent with existing archived data on active galactic nuclei from the Hubble Space Telescope, the application of the holographic spacetime foam model to cosmology requires the existence of dark energy which, we argue, is composed of an enormous number of inert "particles" of extremely long wavelength. We suggest that these "particles" obey infinite statistics in which all representations of the particle permutation group can occur, and that the nonlocality present in systems obeying infinite statistics may be related to the nonlocality present in holographic theories. We also propose to detect spacetime foam by looking for halos in the images of distant quasars, and argue that it does not modify the GZK cutoff in the ultra-high energy cosmic ray spectrum and its contributions to time-of-flight differences of high energy gamma rays from distant GRB are too small to be detectable.
28 pages, LaTeX; added references, minor changes; invited review article for the special issue in Entropy (http://www.mdpi.org) on "Quantum spaces: where locality is not necessary, causality might not be, but entropy certainly is," edited by P.A. Zizzi
References in corpus (6)
- Correlation of the highest energy cosmic rays with nearby extragalactic objects
- Variable VHE gamma-ray emission from Markarian 501
- Fundamental decoherence from quantum gravity: a pedagogical review
- Space-time in light of Karolyhazy uncertainty relation
- Holographic Foam, Dark Energy and Infinite Statistics
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- Gravitational Effects in Quantum Mechanics
- Quantum Gravity, Dynamical Energy-Momentum Space and Vacuum Energy
- Quantum Foam, Gravitational Thermodynamics, and the Dark Sector
- Analyzing Black Hole super-radiance Emission of Particles/Energy from a Black Hole as a Gedankenexperiment to get bounds on the mass of a Graviton
- Quantum Gravity and Turbulence
- Testing time-delayed cosmology
- Towards a holographic theory of cosmology -- threads in a tapestry
- Scale-free power spectrums in the delayed cosmology
- Quantum Field Theory on Multifractal Spacetime: Varying Dimension and Ultraviolet Completeness