Timelike electromagnetic form factors of hyperons at large $q^2$
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 . The modulus of the electric () and magnetic () 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 (), 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- region. We use the model to make predictions for the effective form factor (combination of and ) and the ratio for spin 1/2 hyperons at large (above 10 GeV). Our calculations are in good agreement with the data from CLEO and BESIII for , and above GeV. Upcoming data for , and at large may be used to further test our predictions. We also compare our model calculations with the scarce available data for . We conclude that the present range is not large enough to test our calculations, but that a more definitive test can be made by experiments above GeV.
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