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Parton Distribution Functions from Large Momentum Expansion of Current-Current Correlators

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abstract

The universality of the large momentum expansion allows computing parton distribution functions (PDFs) starting from any Euclidean correlator with appropriate large momentum Fourier Components. Here we consider current-current correlators which have been used in short-distance expansion to obtain moments of PDFs. The advantage of such correlators is that they have simple renormalization properties and do not have linear power divergences as in quasi-PDF. However, in lattice calculations, four-point functions are needed. Here we present an expansion formula with current-current correlators up to the next-to-leading order, and preliminary numerical calculations with four-point functions.

fields

hep-lat 1

years

2026 1

verdicts

UNVERDICTED 1

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Kinematic enhancement for nucleon interpolators

hep-lat · 2026-06-01 · unverdicted · novelty 4.0

Kinematically enhanced nucleon interpolators improve precision of renormalized quark matrix elements by an order of magnitude at 2.5 GeV with no observed lattice spacing dependence on CLS ensembles.

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  • Kinematic enhancement for nucleon interpolators hep-lat · 2026-06-01 · unverdicted · none · ref 20 · internal anchor

    Kinematically enhanced nucleon interpolators improve precision of renormalized quark matrix elements by an order of magnitude at 2.5 GeV with no observed lattice spacing dependence on CLS ensembles.