Perturbative contributions to $\Delta\alpha^{(5)}(M^2_Z)$
Abstract
We compute a theoretically driven prediction for the hadronic contribution to the electromagnetic running coupling at the scale using lattice QCD and state-of-the-art perturbative QCD. We obtain where the first error is the quoted lattice uncertainty. The second is due to perturbative QCD, and is dominated by the parametric uncertainty on , which is based on a rather conservative error. Using instead the PDG average, we find a total error on of . Furthermore, with a particular emphasis on the charm quark contributions, we also update when low-energy cross-section data is used as an input, obtaining . The difference between lattice QCD and cross-section-driven results reflects the known tension between both methods in the computation of the anomalous magnetic moment of the muon. Our results are expressed in a way that will allow straightforward modifications and an easy implementation in electroweak global fits.
Keywords
Cite
@article{arxiv.2308.05740,
title = {Perturbative contributions to $\Delta\alpha^{(5)}(M^2_Z)$},
author = {Jens Erler and Rodolfo Ferro-Hernandez},
journal= {arXiv preprint arXiv:2308.05740},
year = {2023}
}