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arXiv:2509.02472·v1·High Energy Physics — Lattice

Gradient flow for parton distribution functions: first application to the pion

Anthony Francis🇹🇼 · Patrick Fritzsch🇮🇪 · Robert V. Harlander🇩🇪 · Rohith Karur🇺🇸 · Jangho Kim🇰🇷 · Jonas T. Kohnen🇩🇪 · Giovanni Pederiva🇩🇪 · Dimitra A. Pefkou🇺🇸 · Antonio Rago🇩🇰 · Andrea Shindler🇩🇪 · André Walker-Loud🇺🇸 · Savvas Zafeiropoulos🇫🇷

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Abstract

Parton distribution functions (PDFs) are central to precision QCD phenomenology. Their Mellin moments can be computed on the lattice, but direct determinations using local operators, besides , face severe challenges from reduced hypercubic symmetry, limiting results to the lowest moments. A recently proposed method resolves these issues using gradient flow. We demonstrate the efficacy of this method by computing ratios of flavor non-singlet pion PDF moments up to , on four lattice spacings at MeV. The moments and reconstructed PDF agree quantitatively with recent phenomenological extractions.

Comments: 13 pages, 5 figures, 3 tables

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