English

The running of the electroweak gauge couplings from first principles

High Energy Physics - Lattice 2026-07-03 v1 High Energy Physics - Phenomenology

Abstract

We present a high-precision calculation of the hadronic running of electroweak gauge couplings from first principles. Employing lattice QCD in the low-energy regime, we achieve permille precision for virtualities Q212  GeV2Q^2 \lesssim 12\;\mathrm{GeV}^2. At Q21  GeV2Q^2 \simeq 1\;\mathrm{GeV}^2, our determination deviates by up to 7σ7\sigma from estimates based on e+ee^+e^- measurements. Combining lattice QCD with perturbative QCD via the Euclidean split technique, we obtain for the electromagnetic coupling Δαhad(5)(MZ2)=0.027821(34)lat(35)pQCD\Delta\alpha^{(5)}_{\mathrm{had}}(M_Z^2) = 0.027821(34)_{\mathrm{lat}}(35)_{\mathrm{pQCD}}, which is more than twice as precise as recent phenomenological determinations. We assess improvement scenarios by which the precision target for next-generation electroweak measurements could be reached.

Keywords

Cite

@article{arxiv.2607.03370,
  title  = {The running of the electroweak gauge couplings from first principles},
  author = {Alessandro Conigli and Dalibor Djukanovic and Georg von Hippel and Simon Kuberski and Harvey B. Meyer and Kohtaroh Miura and Konstantin Ottnad and Andreas Risch and Hartmut Wittig},
  journal= {arXiv preprint arXiv:2607.03370},
  year   = {2026}
}

Comments

Accepted for publication in PRL with companion paper arXiv:2511.01623