PaperPanorama

arXiv:2310.07796·v2·High Energy Physics — Phenomenology

Light quark mass dependence of nucleon electromagnetic form factors in dispersively modified chiral perturbation theory

Fernando Alvarado🇪🇸 · Di An🇸🇪 · Luis Alvarez-Ruso🇪🇸 · Stefan Leupold🇸🇪

Abstract

The nucleon isovector electromagnetic form factors are calculated up to next-to-next-to-leading order by combining relativistic chiral perturbation theory (ChPT) of pion, nucleon, and (1232) with dispersion theory. We specifically address the light-quark mass dependence of the form factors, achieving a good description of recent Lattice QCD results over a range of GeV and MeV. For the Dirac form factor, the combination of ChPT and dispersion theory outperforms the pure dispersive and pure ChPT descriptions. For the Pauli form factor, the combined calculation leads to results comparable to the purely dispersive ones. The anomalous magnetic moment and the Dirac and Pauli radii are extracted.

Comments: 27 pages, 13 figures. It contains supplementary material "anc"

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