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arxiv: 0812.0416 · v1 · submitted 2008-12-02 · ⚛️ nucl-th · hep-lat· hep-ph· nucl-ex

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Survey of nucleon electromagnetic form factors

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classification ⚛️ nucl-th hep-lathep-phnucl-ex
keywords formfactorschargecorrelationselectromagneticnucleonradiusseparation
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A dressed-quark core contribution to nucleon electromagnetic form factors is calculated. It is defined by the solution of a Poincare' covariant Faddeev equation in which dressed-quarks provide the elementary degree of freedom and correlations between them are expressed via diquarks. The nucleon-photon vertex involves a single parameter; i.e., a diquark charge radius. It is argued to be commensurate with the pion's charge radius. A comprehensive analysis and explanation of the form factors is built upon this foundation. A particular feature of the study is a separation of form factor contributions into those from different diagram types and correlation sectors, and subsequently a flavour separation for each of these. Amongst the extensive body of results that one could highlight are: r_1^{n,u}>r_1^{n,d}, owing to the presence of axial-vector quark-quark correlations; and for both the neutron and proton the ratio of Sachs electric and magnetic form factors possesses a zero.

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  1. Unified Description of Pseudoscalar Meson Structure from Light to Heavy Quarks

    hep-ph 2026-02 unverdicted novelty 5.0

    An algebraic light-front model supplies unified leading-twist PDAs, LFWFs, GPDs, PDFs, EFFs, charge radii and IPS-GPDs for light, heavy-light and heavy-heavy pseudoscalar mesons from the same Bethe-Salpeter amplitudes.