English

The Path to N$^3$LO Parton Distributions

High Energy Physics - Phenomenology 2024-07-08 v2 High Energy Physics - Experiment

Abstract

We extend the existing leading (LO), next-to-leading (NLO), and next-to-next-to-leading order (NNLO) NNPDF4.0 sets of parton distribution functions (PDFs) to approximate next-to-next-to-next-to-leading order (aN3^3LO). We construct an approximation to the N3^3LO splitting functions that includes all available partial information from both fixed-order computations and from small and large xx resummation, and estimate the uncertainty on this approximation by varying the set of basis functions used to construct the approximation. We include known N3^3LO corrections to deep-inelastic scattering structure functions and extend the FONLL general-mass scheme to O(αs3)\mathcal{O}\left( \alpha_s^3\right) accuracy. We determine a set of aN3^3LO PDFs by accounting both for the uncertainty on splitting functions due to the incomplete knowledge of N3^3LO terms, and to the uncertainty related to missing higher corrections (MHOU), estimated by scale variation, through a theory covariance matrix formalism. We assess the perturbative stability of the resulting PDFs, we study the impact of MHOUs on them, and we compare our results to the aN3^3LO PDFs from the MSHT group. We examine the phenomenological impact of aN3^3LO corrections on parton luminosities at the LHC, and give a first assessment of the impact of aN3^3LO PDFs on the Higgs and Drell-Yan total production cross-sections. We find that the aN3^3LO NNPDF4.0 PDFs are consistent within uncertainties with their NNLO counterparts, that they improve the description of the global dataset and the perturbative convergence of Higgs and Drell-Yan cross-sections, and that MHOUs on PDFs decrease substantially with the increase of perturbative order.

Keywords

Cite

@article{arxiv.2402.18635,
  title  = {The Path to N$^3$LO Parton Distributions},
  author = {The NNPDF Collaboration and Richard D. Ball and Andrea Barontini and Alessandro Candido and Stefano Carrazza and Juan Cruz-Martinez and Luigi Del Debbio and Stefano Forte and Tommaso Giani and Felix Hekhorn and Zahari Kassabov and Niccolò Laurenti and Giacomo Magni and Emanuele R. Nocera and Tanjona R. Rabemananjara and Juan Rojo and Christopher Schwan and Roy Stegeman and Maria Ubiali},
  journal= {arXiv preprint arXiv:2402.18635},
  year   = {2024}
}

Comments

63 pages, 41 figures. Final version, as published in EPJC. Various clarifications added. Fig 2.9 and Tab. 4.6, 5.1 and 5.2 added. In particular, comparison to approximate YR4 estimate of PDF uncertainties added (Tab 4.1, 4.2 and associate discussion in sect. 5)

R2 v1 2026-06-28T15:03:44.882Z