Next-to-leading order numerical calculations in Coulomb gauge
Abstract
Calculations of observables in quantum chromodynamics can be performed using a method in which all of the integrations, including integrations over virtual loop momenta, are performed numerically. We use the flexibility inherent in this method in order to perform next-to-leading order calculations for event shape variables in electron-positron annihilation in Coulomb gauge. The use of Coulomb gauge provides the potential to go beyond a purely order alpha_s^2 calculation by including, for instance, renormalon or parton showering effects. We expect that the approximations needed to include such effects at all orders in alpha_s will be simplest in a gauge in which unphysically polarized gluons do not propagate over long distances.
Keywords
Cite
@article{arxiv.hep-ph/0204113,
title = {Next-to-leading order numerical calculations in Coulomb gauge},
author = {Michael Kramer and Davison E. Soper},
journal= {arXiv preprint arXiv:hep-ph/0204113},
year = {2009}
}
Comments
36 pages with 7 figures