Light-Cone Broadening and TeV Scale Extra Dimensions
arXiv:hep-th/9907141 · doi:10.1016/S0370-2693(99)01098-9
Abstract
We examine the effect of light-cone broadening induced by quantum-gravity foam in the context of theories with ``large'' extra dimensions stretching between two parallel brane worlds. We consider the propagation of photon probes on one of the branes, including the response to graviton fluctuations, from both field- and string-theoretical viewpoints. In the latter approach, the dominant source of light-cone broadening may be the recoil of the D-brane, which scales linearly with the string coupling. Astrophysical constraints then place strong restrictions on consistent string models of macroscopic extra dimensions. The broadening we find in the field-theoretical picture seems to be close to the current sensitivity of gravity-wave interferometers, and therefore could perhaps be tested experimentally in the foreseeable future.
12 pages REVTeX, 2 axodraw figures incorporated
Cited by in corpus (9)
- Bits and Pieces in Logarithmic Conformal Field Theory
- Quantum-Gravity Analysis of Gamma-Ray Bursts using Wavelets
- Gravity-wave interferometers as probes of a low-energy effective quantum gravity
- Cumulative Non-Decoupling Effects of Kaluza-Klein Neutrinos in Electroweak Processes
- Interferometric Tests of Planckian Quantum Geometry Models
- Bulk photons in Asymmetrically Warped Space-times and Non-trivial Vacuum Refractive Index
- Asymmetrically Warped Brane Models, Bulk Photons and Lorentz Invariance
- D-Brane Recoil and Supersymmetry Breaking as a Relaxation Process
- Recoiling D-branes