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Valence-quark structure N* resonances from DSEs

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arxiv 1801.07251 v1 pith:AEOTRZQO submitted 2018-01-22 nucl-th hep-exhep-lathep-ph

classification nucl-thhep-exhep-lathep-ph
keywords momentumcontact-interactiondependenceelasticelectromagneticfactorsformframework
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We present a unified Quantum Chromodynamics (QCD)-based description of elastic and transition electromagnetic form factors involving the nucleon and its resonances. We compare predictions made using a framework built upon a Faddeev equation kernel and interaction vertices that possess QCD-like momentum dependence with results obtained using a confining, symmetry-preserving treatment of a vector$\,\otimes\,$vector contact-interaction in a widely-used leading-order (rainbow-ladder) truncation of QCD's Dyson-Schwinger equations. This comparison explains that the contact-interaction framework produces hard form factors, curtails some quark orbital angular momentum correlations within a baryon, and suppresses two-loop diagrams in the elastic and transition electromagnetic currents. Such defects are rectified in our QCD-based approach and, by contrasting the results obtained for the same observables in both theoretical schemes, shows those objects which are most sensitive to the momentum dependence of elementary quantities in QCD.

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