Infrared Renormalization Group Flow for Heavy Quark Masses
Abstract
A short-distance heavy quark mass depends on two parameters, the renormalization scale mu controlling the absorption of ultraviolet fluctuations into the mass, and a scale R controlling the absorption of infrared fluctuations. 1/R can be thought of as the radius for perturbative corrections that build up the mass beyond its point-like definition in the pole scheme. Treating R as a variable gives a renormalization group equation. We argue that the sign of this anomalous dimension is universal: increasing R to add IR modes decreases m(R). The flow improves the stability of conversions between mass schemes, allowing us to avoid large logs and the renormalon. The flow in R can be used to study IR renormalons without using bubble chains, and we use it to determine the coefficient of the LambdaQCD renormalon ambiguity of the pole mass with a convergent sum-rule.
Keywords
Cite
@article{arxiv.0803.4214,
title = {Infrared Renormalization Group Flow for Heavy Quark Masses},
author = {Andre H. Hoang and Ambar Jain and Ignazio Scimemi and Iain W. Stewart},
journal= {arXiv preprint arXiv:0803.4214},
year = {2008}
}
Comments
4 pages, 2 figures, Added explicit result for the top MSbar mass with uncertainties