On normalization of QCD effects in $O(m_t^2)$ electroweak corrections
Abstract
We point out that, contrary to some recent claims, there is no intrinsic long-distance uncertainty in perturbative calculation of the QCD effects in the and loops giving the electroweak corrections proportional to . If these corrections are expressed in terms of the ``on-shell" mass , the only ambiguity arising is that associated with the definition of the ``on-shell" mass of a quark. The latter is entirely eliminated if the result is expressed in terms of defined at short distances. Applying the Brodsky-Lepage-Mackenzie criterion for determining the natural scale for normalization of , we find that using the ``on-shell" mass makes this scale numerically small in units of . Specifically, we find that by this criterion the first QCD correction to the terms is determined by . Naturally, a full calculation of three-loop graphs is needed to completely quantify the scale.
Keywords
Cite
@article{arxiv.hep-ph/9401357,
title = {On normalization of QCD effects in $O(m_t^2)$ electroweak corrections},
author = {Brian H. Smith and M. B. Voloshin},
journal= {arXiv preprint arXiv:hep-ph/9401357},
year = {2009}
}
Comments
LaTeX, 10 pages + 1 figure (appended as a PostScript file)