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Parametrizations of the $\gamma^\ast N \to \Delta(1232)$ quadrupole form factors and Siegert's theorem

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arxiv 1606.03042 v2 pith:3TJT4G5W submitted 2016-06-09 hep-ph hep-latnucl-exnucl-th

classification hep-phhep-latnucl-exnucl-th
keywords formquadrupolefactorssiegerttheoremparametrizationsclouddata
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abstract

The large $N_c$ limit provides relations that can be used to calculate the $\gamma^\ast N \to \Delta(1232)$ quadrupole form factors at low and intermediate $Q^2$ under the assumption of the pion cloud dominance. There are two limitations in those parametrizations. First, the parametrization of the Coulomb quadrupole form factor underestimate the low $Q^2$ data. Second, when extrapolated for the timelike region, the form factors violate Siegert's theorem by terms of the order $1/N_c^2$. We propose here corrections to the parametrization of the electric quadrupole form factor, which violate Siegert's theorem only by terms of the order $1/N_c^4$. Combining the improved large $N_c$ pion cloud parametrizations with the valence quark contributions based on a covariant quark model for the quadrupole transition form factors, we obtain an extrapolation to the timelike region consistent with Siegert's theorem, and accomplish also a very good description of the data.

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Cited by 2 Pith papers

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  1. Low-$Q^2$ empirical parametrizations of the $N^\ast$ helicity amplitudes

    hep-ph 2019-08 conditional novelty 5.0 of 10

    Empirical helicity amplitude fits for nine nucleon and Delta resonances are modified near the pseudothreshold using a polynomial in the photon momentum matched at QP^2 = 0.1, 0.3, and 0.5 GeV^2.

  2. Hyperon electromagnetic timelike elastic form factors at large $q^2$

    hep-ph 2019-08 conditional novelty 5.0 of 10

    Using a quark model calibrated in the spacelike region plus analyticity relations, the paper predicts timelike hyperon form factors that agree broadly with available data, with clear exceptions for Lambda and Xi-zero,...

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