English

The photon PDF within the CT18 global analysis

High Energy Physics - Phenomenology 2023-02-14 v4 High Energy Physics - Experiment Nuclear Theory

Abstract

Building upon the most recent CT18 global fit, we present a new calculation of the photon content of the proton based on an application of the LUX formalism. In this work, we explore two principal variations of the LUX ansatz. In one approach, which we designate "CT18lux," the photon PDF is calculated directly using the LUX formula for all scales, μ\mu. In an alternative realization, "CT18qed," we instead initialize the photon PDF in terms of the LUX formulation at a lower scale, μ ⁣ ⁣μ0\mu\! \sim\! \mu_0, and evolve to higher scales with a combined QED+QCD kernel at O(α), O(ααs)\mathcal{O}(\alpha),~\mathcal{O}(\alpha\alpha_s) and O(α2)\mathcal{O}(\alpha^2). While we find these two approaches generally agree, especially at intermediate xx (103x0.310^{-3}\lesssim x\lesssim0.3), we discuss some moderate discrepancies that can occur toward the end-point regions at very high or low xx. We also study effects that follow from variations of the inputs to the LUX calculation originating outside the pure deeply-inelastic scattering (DIS) region, including from elastic form factors and other contributions to the photon PDF. Finally, we investigate the phenomenological implications of these photon PDFs for the LHC, including high-mass Drell-Yan, vector-boson pair, top-quark pair, and Higgs associated with vector-boson production.

Keywords

Cite

@article{arxiv.2106.10299,
  title  = {The photon PDF within the CT18 global analysis},
  author = {Keping Xie and T. J. Hobbs and Tie-Jiun Hou and Carl Schmidt and Mengshi Yan and C. -P. Yuan},
  journal= {arXiv preprint arXiv:2106.10299},
  year   = {2023}
}

Comments

45 pages, 27 figures, and 5 tables

R2 v1 2026-06-24T03:22:24.730Z