English

A non-perturbative determination of $b_{\rm g}$

High Energy Physics - Lattice 2024-01-12 v1

Abstract

Close to the continuum limit, lattice QCD with mass-degenerate Wilson quarks can be described by Symanzik's effective continuum action, which contains the dimension 5 operator, mtr(FμνFμν)m\,{\rm tr}(F_{\mu\nu}F_{\mu\nu}). Its effect can be eliminated by an O(amqam_{\rm q}) rescaling of the bare lattice coupling constant. Until recently, the corresponding improvement coefficient, bgb_{\rm g}, was only known perturbatively to 1-loop order and an estimate of the remaining uncertainty is the dominant systematic error in the ALPHA collaboration's recent determination of αs(mZ)\alpha_s(m_Z) with the decoupling method. To remove this error we have determined bgb_{\rm g} non-perturbatively for the corresponding parameter range. We here briefly review improvement conditions for bgb_{\rm g}, perform a perturbative test and report on our non-perturbative results for bgb_{\rm g}.

Keywords

Cite

@article{arxiv.2401.05791,
  title  = {A non-perturbative determination of $b_{\rm g}$},
  author = {Mattia Dalla Brida and Roman Höllwieser and Francesco Knechtli and Tomasz Korzec and Alberto Ramos and Stefan Sint and Rainer Sommer},
  journal= {arXiv preprint arXiv:2401.05791},
  year   = {2024}
}

Comments

8 pages, 1 figure, contribution to "The 40th International Symposium on Lattice Field Theory (Lattice 2023)", CERN-TH-2024-004