English

Determination of $\Lambda_{\bar{MS}}$ at five loops from holographic QCD

High Energy Physics - Phenomenology 2017-09-11 v3

Abstract

The recent determination of the β\beta--function of the QCD running coupling αMS(Q2)\alpha_{\overline{MS}}(Q^2) to 5-loops{\color{blue},} provides a verification of the convergence of a novel method for determining the fundamental QCD parameter Λs\Lambda_s based on the Light-Front Holographic approach to nonperturbative QCD. The new 5-loop analysis, together with improvements in determining the holographic QCD nonperturbative scale parameter κ\kappa from hadronic spectroscopy, leads to an improved precision of the value of Λs\Lambda_s in the MS{\overline{MS}} scheme close to a factor of two; we find ΛMS(3)=0.339±0.019\Lambda^{(3)}_{\overline{MS}}=0.339\pm0.019 GeV for nf=3n_{f}=3, in excellent agreement with the world average, ΛMS(3)=0.332±0.017\Lambda_{\overline{MS}}^{(3)}=0.332\pm0.017 GeV. We also discuss the constraints imposed on the scale dependence of the strong coupling in the nonperturbative domain by superconformal quantum mechanics and its holographic embedding in anti-de Sitter space.

Keywords

Cite

@article{arxiv.1608.04933,
  title  = {Determination of $\Lambda_{\bar{MS}}$ at five loops from holographic QCD},
  author = {A. Deur and S. J. Brodsky and G. F. de Teramond},
  journal= {arXiv preprint arXiv:1608.04933},
  year   = {2017}
}

Comments

16 pages, 4 Figures. Published version

R2 v1 2026-06-22T15:22:08.933Z