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Unraveling Generalized Parton Distributions Through Lorentz Symmetry and Partial DGLAP Knowledge

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arxiv 2401.12013 v2 pith:4PM6UR6O submitted 2024-01-22 hep-ph nucl-th

classification hep-phnucl-th
keywords generalizedpartondistributionsdglaplorentzmethodsobtainreconstruction
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Relying on the polynomiality property of generalized parton distributions, which roots on Lorentz covariance, we prove that it is enough to know them at vanishing- and low-skewness within the DGLAP region to obtain a unique extension to their entire support up to a D-term. We put this idea in practice using two methods: Reconstruction using artificial neural networks and finite-elements methods. We benchmark our results against standard models for generalized parton distributions. In agreement with the formal expectation, we obtain a very accurate reconstructions for a maximal value of the skewness as low as 20% of the longitudinal momentum fraction. This result might be relevant for reconstruction of generalized parton distribution from experimental and lattice QCD data, where computations are for now, restricted in skewness.

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    A new analytic parametrization of meson valence-quark GPDs yields spatial charge and mass distributions and radius ratios for pions, kaons and heavy-light mesons.

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