English

Renormalization-scheme variation of a QCD perturbation expansion with tamed large-order behavior

High Energy Physics - Phenomenology 2018-09-26 v2

Abstract

The renormalization-scheme and scale dependence of the truncated QCD perturbative expansions is one of the main sources of theoretical error of the standard model predictions, especially at intermediate energies. Recently, a class of renormalization schemes, parametrized by a single real number CC, has been defined and investigated in the frame of the standard perturbation expansions in powers of the coupling. In the present paper we investigate the CC-scheme variation of a Borel-improved QCD perturbation series, which implements information about the large-order divergent character of perturbation theory by means of an optimal conformal mapping of the Borel plane. In the new expansions, the powers of the strong coupling are replaced by a set of expansion functions with properties which resemble those of the expanded correlators, having in particular a singular behavior at the origin of the complex coupling plane. On the other hand, the new expansions have a tamed increase at high orders, as demonstrated by previous studies in the MS\overline{\text{MS}} renormalization scheme. Using as examples the Adler function and the hadronic decay width of the τ\tau lepton, we investigate the properties of the Borel-improved expansions in the CC-scheme, in comparison with the standard expansions in the CC-scheme and the expansions in MS\overline{\text{MS}}. The variation with the renormalization scale and the prescription for the choice of an optimal value of the parameter CC are discussed. The good large-order behavior of the Borel-improved expansions is proved also in the CC-scheme, which is a further argument in favor of using them in applications of perturbative QCD at intermediate energies.

Keywords

Cite

@article{arxiv.1806.10325,
  title  = {Renormalization-scheme variation of a QCD perturbation expansion with tamed large-order behavior},
  author = {Irinel Caprini},
  journal= {arXiv preprint arXiv:1806.10325},
  year   = {2018}
}

Comments

extended analysis, references added, version to appear in Phys. Rev. D