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String-based axial and helicity-flip GPDs: A comparison to lattice QCD

  • Stony Brook University
  • College of William and Mary

Research output: Contribution to journalArticlepeer-review

3 Scopus citations

Abstract

We construct an analytic, string-based representation of the nucleon’s axial and helicity-flip conformal moments of generalized parton distributions (GPDs) that holds for any skewness and for both the quark and gluon channels. The starting point is the Mellin-Barnes resummation of the conformal partial-wave expansion, where the moments are parametrized by open- (Reggeon) and closed-string (Pomeron) trajectories with slopes determined by experimental form factors and meson/glueball spectroscopy. The forward limits are fixed by the empirical unpolarized and polarized parton distributions. Polynomiality, crossing symmetry, and support are satisfied by construction. After next-to-leading order Dokshitzer-Gribov-Lipatov-Altarelli-Parisi/Efremov-Radyushkin-Brodsky-Lepage evolution to μ ¼ 2 GeV our analytic framework (i) reproduces some of the currently available lattice moments of E and H̃ in the nonsinglet sector, (ii) predicts sea-quark and gluon polarized moments that will be testable by forthcoming simulations and experiments at Jefferson Lab and the future Electron-Ion Collider, and (iii) yields axial and helicity-flip GPDs in x-space in reasonable agreement with lattice QCD.

Original languageEnglish
Article number074018
JournalPhysical Review D
Volume112
Issue number7
DOIs
StatePublished - Oct 16 2025

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