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Quark + Diquark Description of Nucleon Elastic Electromagnetic Form Factors

High Energy Physics - Phenomenology 2025-07-21 v1 High Energy Physics - Experiment High Energy Physics - Lattice Nuclear Experiment Nuclear Theory

Abstract

Working with a Poincar\'e-covariant quark + diquark, q(qq)q(qq), Faddeev equation approach to nucleon structure, a refined symmetry preserving current for electron + nucleon elastic scattering is developed. The parameters in the interaction current are chosen to ensure that the q(qq)q(qq) picture reproduces selected results from contemporary 33-body analyses of nucleon elastic electromagnetic form factors. Although the subset of fitted results is small, the q(qq)q(qq) picture reproduces almost all the 33-body predictions and often results in better agreement with available data. Notably, the q(qq)q(qq) framework predicts a zero in GEp/GMpG_E^p/G_M^p, the absence of such a zero in GEn/GMnG_E^n/G_M^n, and a zero in the proton's dd-quark Dirac form factor. Derived q(qq)q(qq) results for proton flavour-separated light-front-transverse number and anomalous magnetisation densities are also discussed. With the q(qq)q(qq) framework thus newly benchmarked, one may proceed to comparisons with a broader array of 33-body results. This may enable new steps to be made toward answering an important question, viz. is the quark + fully-interacting diquark picture of baryon structure only a useful phenomenology or does it come close to expressing robust features of baryon structure?

Keywords

Cite

@article{arxiv.2507.13484,
  title  = {Quark + Diquark Description of Nucleon Elastic Electromagnetic Form Factors},
  author = {Peng Cheng and Zhao Qian Yao and Daniele Binosi and Ya Lu and Craig D. Roberts},
  journal= {arXiv preprint arXiv:2507.13484},
  year   = {2025}
}

Comments

19 pages, 11 figures, 2 tables