On High-Energy Behavior of Cross Sections in Theories with Large Extra Dimensions
arXiv:hep-ph/0103043 · doi:10.1103/PhysRevD.64.047702
Abstract
We discuss the high-energy behavior of cross sections in theories with large extra dimensions and low-scale quantum gravity, addressing two particular issues: (i) the tension of the D-branes, and (ii) bounds on the cross section and their relation to approximations in the mode sum over Kaluza-Klein-graviton exchanges.
6 pages, latex
Cited by in corpus (15)
- Theory of Neutrinos: A White Paper
- High-energy Neutrino Astronomy: The Cosmic Ray Connection
- Cosmic Rays as Probes of Large Extra Dimensions and TeV Gravity
- Transplanckian Collisions at the LHC and Beyond
- Ultrahigh Energy Cosmic Rays: The state of the art before the Auger Observatory
- Angular Dependence of Neutrino Flux in KM3 Detectors in Low Scale Gravity Models
- Large Extra Dimensions and Decaying KK Recurrences
- The Particle Physics Reach of High-Energy Neutrino Astronomy
- Brane-Production and the Neutrino-Nucleon cross section at Ultra High Energies in Low Scale Gravity Models
- New hadrons as ultra-high energy cosmic rays
- Energy and Angular Distribution of Upward UHE Neutrinos and Signals of Low Scale Gravity: Role of Tau Decay
- Majorana neutrinos with split fermions in extra dimensions
- NLO corrections to ultra-high energy neutrino-nucleon scattering, shadowing and small x
- Determination of the Fundamental Scale of Gravity and the Number of Space-time Dimensions from High Energetic Particle Interactions
- A Problem in Virtual Graviton exchanges in Flat Large Extra Dimensions