English

A new determination of $\alpha_S$ from Renormalization Group Optimized Perturbation

High Energy Physics - Phenomenology 2013-10-25 v1

Abstract

A new version of the so-called optimized perturbation (OPT), implementing consistently renormalization group properties, is used to calculate the nonperturbative ratio Fπ/ΛF_\pi/\overline\Lambda of the pion decay constant and the basic QCD scale in the MS\overline{MS} scheme. Using the experimental FπF_\pi input value it provides a new determination of Λ\overline\Lambda for nf=2n_f=2 and nf=3n_f=3, and of the QCD coupling constant αS\overline\alpha_S at various scales once combined with a standard perturbative evolution. The stability and empirical convergence properties of the RGOPT modified series is demonstrated up to the third order. We examine the difference sources of theoretical uncertainties and obtain αS(mZ)=0.1174.0005+.0010±.001±.0005evol\overline\alpha_S (m_Z) =0.1174 ^{+.0010}_{-.0005} \pm .001 \pm .0005_{evol}, where the first errors are estimates of the intrinsic theoretical uncertainties of our method, and the second errors come from present uncertainties in Fπ/F0F_\pi/F_0, where F0F_0 is FπF_\pi in the exact chiral SU(3)SU(3) limit.

Keywords

Cite

@article{arxiv.1310.6724,
  title  = {A new determination of $\alpha_S$ from Renormalization Group Optimized Perturbation},
  author = {J-L. Kneur and A. Neveu},
  journal= {arXiv preprint arXiv:1310.6724},
  year   = {2013}
}

Comments

5 pages, talk given at EPS-HEP, Stockholm, Sweden 18-24 July, 2013