Gauge/String-Gravity Duality and Froissart Bound
Abstract
The gauge/string-gravity duality correspondence opened renewed hope and possibility to address some of the fundamental and non-perturbative QCD problems in particle physics, such as hadron spectrum and Regge behavior of the scattering amplitude at high energies. One of the most fundamental and long-standing problem is the high energy behavior of total cross-sections. According to a series of exhaustive tests by the COMPETE group, (1). total cross-sections have a universal Heisenberg behavior in energy corresponding to the maximal energy behavior allowed by the Froissart bound, i.e., with and for all reactions, and (2). the factorization relation among is well satisfied by experiments. I discuss the recent interesting application of the gauge/string-gravity duality of correspondence with a deformed background metric so as to break the conformal symmetry that can lead to the Heisenberg behavior of rising total cross-sections, and present some preliminary results on the high energy QCD from Planckian scattering in and black-hole production.
Cite
@article{arxiv.hep-ph/0410239,
title = {Gauge/String-Gravity Duality and Froissart Bound},
author = {Kyungsik Kang},
journal= {arXiv preprint arXiv:hep-ph/0410239},
year = {2009}
}
Comments
10 pages, Presented to the Coral Gables Conference 2003, Launching of BelleE\'poque in High Energy Physics and Cosmology, 17 - 21 December 2003, Fort Lauderdale, Florida