English

Baryon Transition Form Factors from Dynamical Coupled-Channel Analyses

Nuclear Theory 2026-01-29 v1 High Energy Physics - Phenomenology Nuclear Experiment

Abstract

In this talk, the electromagnetic transition form factors from the nucleon ground state to twelve NN^* and Δ\Delta states are exhibited and discussed. Those results are extracted through a comprehensive coupled-channel approach -- the Juelich-Bonn-Washington model, with the center-of-mass energy ranging from 1.131.13 GeV to 1.81.8 GeV, and the photon virtuality up to 88 GeV2^2. The extraction is based on 10510^5 electroproduction data points of πN\pi N, ηN\eta N, and KΛK\Lambda channels, with additionally about 5×1045\times 10^4 data points in the hadronic sector as well as photoproductions as boundary conditions. The form factors are defined from the residues at the corresponding resonance poles in the multipole amplitudes. Uncertainties are also estimated by the exploration of the parameter space. The qualitative behavior of the transition form factors of N(1440)N(1440) and Δ(1232)\Delta(1232) here are in agreement with the previous studies, while for the other states, there has not been literature results that are also defined at the resonance poles.

Keywords

Cite

@article{arxiv.2601.20188,
  title  = {Baryon Transition Form Factors from Dynamical Coupled-Channel Analyses},
  author = {Yu-Fei Wang},
  journal= {arXiv preprint arXiv:2601.20188},
  year   = {2026}
}

Comments

7 pages, 2 figures, conference proceeding of the 21st International Conference on Hadron Spectroscopy and Structure (HADRON2025), already published

R2 v1 2026-07-01T09:23:09.220Z