Revised QCD effects on the $Z\to b\bar{b}$ forward-backward asymmetry in $e^+e^-$ collisions
Abstract
The forward-backward (FB) asymmetry of quarks in collisions at the Z pole measured at LEP, , remains today one of the electroweak precision observables with the largest disagreement (2.4) with respect to the Standard Model prediction, . Beyond the dominant statistical uncertainties, QCD effects, such as -quark showering and hadronization, are the leading sources of systematic uncertainty, and have not been revised in the last twenty years. We reassess the QCD uncertainties of the eight original LEP measurements, using modern parton shower PYTHIA 8 and VINCIA simulations with nine different implementations of soft and collinear radiation as well as of parton fragmentation. Our analysis, combined with NNLO massive -quark corrections independently computed, indicates total propagated QCD uncertainties of 0.7\% and 0.3\% for the lepton- and jet-charge analyses, respectively, that are about a factor of two smaller than those of the original LEP results. Accounting for such updated QCD effects leads to a new average, with a data-theory tension slightly reduced from 2.4 to 2.2. Confirmation or resolution of this long-term discrepancy requires a new high-luminosity collider collecting orders-of-magnitude more data at the Z pole to significantly reduce the dominant statistical uncertainties, and to improve our understanding of -quark showering and hadronization.
Keywords
Cite
@article{arxiv.2011.00530,
title = {Revised QCD effects on the $Z\to b\bar{b}$ forward-backward asymmetry in $e^+e^-$ collisions},
author = {David d'Enterria and Cynthia Yan},
journal= {arXiv preprint arXiv:2011.00530},
year = {2025}
}
Comments
13 pages, 3 figs, 3 tables. Matches published version