English

The strong coupling from a nonperturbative determination of the $\Lambda$ parameter in three-flavor QCD

High Energy Physics - Lattice 2017-09-13 v2 High Energy Physics - Experiment High Energy Physics - Phenomenology

Abstract

We present a lattice determination of the Λ\Lambda parameter in three-flavor QCD and the strong coupling at the Z pole mass. Computing the nonperturbative running of the coupling in the range from 0.20.2\,GeV to 7070\,GeV, and using experimental input values for the masses and decay constants of the pion and the kaon, we obtain ΛMS(3)=341(12)\Lambda_{\overline{\rm MS}}^{(3)}=341(12)\,MeV. The nonperturbative running up to very high energies guarantees that systematic effects associated with perturbation theory are well under control. Using the four-loop prediction for ΛMS(5)/ΛMS(3)\Lambda_{\overline{\rm MS}}^{(5)}/\Lambda_{\overline{\rm MS}}^{(3)} yields αMS(5)(mZ)=0.11852(84)\alpha^{(5)}_{\overline{\rm MS}}(m_{\rm Z}) = 0.11852(84).

Keywords

Cite

@article{arxiv.1706.03821,
  title  = {The strong coupling from a nonperturbative determination of the $\Lambda$ parameter in three-flavor QCD},
  author = {M. Bruno and M. Dalla Brida and P. Fritzsch and T. Korzec and A. Ramos and S. Schaefer and H. Simma and S. Sint and R. Sommer},
  journal= {arXiv preprint arXiv:1706.03821},
  year   = {2017}
}

Comments

Correction in the comparison to the LHC value for alpha(1.5TeV) which was given by CMS in the 5-flavor theory. The agreement is improved. Also 1 Reference added and a few typos corrected