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Timelike electromagnetic form factors of hyperons at large $q^2$

High Energy Physics - Phenomenology 2026-01-27 v2 High Energy Physics - Experiment High Energy Physics - Lattice Nuclear Experiment

Abstract

In the last few years there has been considerable progress in the study of the electromagnetic form factors of baryons in the timelike region, through electron-positron scattering, with increasing squared transfer momentum q2q^2. The modulus of the electric (GEG_E) and magnetic (GMG_M) form factors has been measured for nucleons, hyperons and other baryons at BaBar, CLEO, Belle and BESIII. The novel measurements motivated the extension of a covariant quark model, developed to the spacelike region (q20q^2 \le 0), to the timelike region, without any further parameter fitting. The extension is based on asymptotic relations derived from analyticity and unitarity, valid for the large-q2q^2 region. We use the model to make predictions for the effective form factor G|G| (combination of GEG_E and GMG_M) and the ratio GE/GM|G_E/G_M| for spin 1/2 hyperons at large q2q^2 (above 10 GeV2^2). Our calculations are in good agreement with the data from CLEO and BESIII for Λ\Lambda, Σ+\Sigma^+ and Ξ\Xi^- above q2=15q^2=15 GeV2^2. Upcoming data for Σ0\Sigma^0, Σ\Sigma^- and Ξ\Xi^- at large q2q^2 may be used to further test our predictions. We also compare our model calculations with the scarce available data for GE/GM|G_E/G_M|. We conclude that the present q2q^2 range is not large enough to test our calculations, but that a more definitive test can be made by experiments above q2=20q^2=20 GeV2^2.

Keywords

Cite

@article{arxiv.2507.15248,
  title  = {Timelike electromagnetic form factors of hyperons at large $q^2$},
  author = {G. Ramalho and M. T. Peña and K. Tsushima and Myung-Ki Cheoun},
  journal= {arXiv preprint arXiv:2507.15248},
  year   = {2026}
}

Comments

Contribution to proceedings of HADRON 2025. Detailed bibliography