English

Precision determination of the strong coupling constant within a global PDF analysis

High Energy Physics - Phenomenology 2018-07-10 v2 High Energy Physics - Experiment

Abstract

We present a determination of the strong coupling constant αs(mZ)\alpha_s(m_Z) based on the NNPDF3.1 determination of parton distributions, which for the first time includes constraints from jet production, top-quark pair differential distributions, and the ZZ pTp_T distributions using exact NNLO theory. Our result is based on a novel extension of the NNPDF methodology - the correlated replica method - which allows for a simultaneous determination of αs\alpha_s and the PDFs with all correlations between them fully taken into account. We study in detail all relevant sources of experimental, methodological and theoretical uncertainty. At NNLO we find αs(mZ)=0.1185±0.0005(exp)±0.0001(meth)\alpha_s(m_Z) = 0.1185 \pm 0.0005^\text{(exp)}\pm 0.0001^\text{(meth)}, showing that methodological uncertainties are negligible. We conservatively estimate the theoretical uncertainty due to missing higher order QCD corrections (N3^3LO and beyond) from half the shift between the NLO and NNLO αs\alpha_s values, finding Δαsth=0.0011\Delta\alpha^{\rm th}_s =0.0011.

Keywords

Cite

@article{arxiv.1802.03398,
  title  = {Precision determination of the strong coupling constant within a global PDF analysis},
  author = {Richard D. Ball and Stefano Carrazza and Luigi Del Debbio and Stefano Forte and Zahari Kassabov and Juan Rojo and Emma Slade and Maria Ubiali},
  journal= {arXiv preprint arXiv:1802.03398},
  year   = {2018}
}

Comments

23 pages, 10 figures.Final version, published in EPJC. New plots added to figs 3.5 and 3.6 and improved discussion of the d'Agostini bias. Discussion of ABMP clarified. Some references added

R2 v1 2026-06-23T00:17:25.134Z