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arXiv:hep-ph/0208025·v3·High Energy Physics — Phenomenology

Optimal Renormalization-Group Improvement of the Perturbative Series for the e^+ e^- -Annihilation Cross-Section

M.R. Ahmady🇨🇦 · F.A. Chishtie🇺🇸 · V. Elias🇨🇦 · A.H. Fariborz🇺🇸 · D.G.C. McKeon🇨🇦 · T.N. Sherry🇮🇪 · A. Squires🇨🇦 · T.G. Steele🇨🇦

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Abstract

Using renormalization-group methods, we derive differential equations for the all-orders summation of logarithmic corrections to the QCD series for R(s) = sigma(e^+ e^- --> hadrons)/sigma(e^+ e^- --> mu^+ mu^-), as obtained from the imaginary part of the purely-perturbative vector-current correlation function. We present explicit solutions for the summation of leading and up to three subsequent subleading orders of logarithms. The summations accessible from the four-loop vector-correlator not only lead to a substantial reduction in sensitivity to the renormalization scale, but necessarily impose a common infrared bound on perturbative approximations to R(s), regardless of the infrared behaviour of the true QCD couplant.

Comments: 7 pages, revtex, 3 eps figures embedded in manuscript. Revised version includes additional references and corrects equation (16)

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