Longitudinal Rescaling and High-Energy Effective Actions
Abstract
Under a rescaling of longitudinal coordinates by a factor which is taken to zero, the classical QCD action simplifies dramatically. This is the high-energy limit, as is of order , where is the center-of-mass energy squared of a hadronic collision. We find the quantum corrections to the rescaled action at one loop, in particular finding the anomalous powers of in this action, for close to unity. The method is an integration over high-momentum components of the gauge field. This is a Wilsonian renormalization procedure, and counterterms are needed to make the sharp-momentum cut-off gauge invariant. Our result for the quantum action is found, assuming that the logarithm of is small, which is essential for the validity of perturbation theory. If is sufficiently small (so that its logarithm is large), then the perturbative renormalization group breaks down. This is due to uncontrollable fluctuations of the longitudinal chromomagnetic field.
Keywords
Cite
@article{arxiv.0901.2955,
title = {Longitudinal Rescaling and High-Energy Effective Actions},
author = {Peter Orland and Jing Xiao},
journal= {arXiv preprint arXiv:0901.2955},
year = {2009}
}
Comments
Version to appear in Physical Review D