Non-Perturbative Corrections to Heavy Quark Fragmentation in e^+e^- Annihilation
Abstract
We estimate the non-perturbative power-suppressed corrections to heavy flavour fragmentation and correlation functions in e^+e^- annihilation, using a model based on the analysis of one-loop Feynman graphs containing a massive gluon. This approach corresponds to the study of infrared renormalons in the large-n_f limit of QCD, or to the assumption of an infrared-finite effective coupling at low scales. We find that the leading corrections to the heavy quark fragmentation function are of order , where is a typical hadronic scale ( GeV) and M is the heavy quark mass. The inclusion of higher corrections corresponds to convolution with a universal function of M(1-x) concentrated at values of its argument of order , in agreement with intuitive expectations. On the other hand, corrections to heavy quark correlations are very small, of the order of , where Q is the centre-of-mass energy and .
Keywords
Cite
@article{arxiv.hep-ph/9612353,
title = {Non-Perturbative Corrections to Heavy Quark Fragmentation in e^+e^- Annihilation},
author = {P. Nason and B. R. Webber},
journal= {arXiv preprint arXiv:hep-ph/9612353},
year = {2009}
}
Comments
11 pages, Latex