English

$\gamma^\ast \gamma \to \eta, \eta^\prime$ transition form factors

Nuclear Theory 2019-01-16 v1 High Energy Physics - Experiment High Energy Physics - Lattice High Energy Physics - Phenomenology Nuclear Experiment

Abstract

Using a continuum approach to the hadron bound-state problem, we calculate γγη,η\gamma^\ast \gamma \to \eta, \eta^\prime transition form factors on the entire domain of spacelike momenta, for comparison with existing experiments and in anticipation of new precision data from next-generation e+ee^+ e^- colliders. One novel feature is a model for the contribution to the Bethe-Salpeter kernel deriving from the non-Abelian anomaly, an element which is crucial for any computation of η,η\eta, \eta^\prime properties. The study also delivers predictions for the amplitudes that describe the light- and strange-quark distributions within the η,η\eta, \eta^\prime. Our results compare favourably with available data. Important to this at large-Q2Q^2 is a sound understanding of QCD evolution, which has a visible impact on the η\eta^\prime in particular. Our analysis also provides some insights into the properties of η,η\eta, \eta^\prime mesons and associated observable manifestations of the non-Abelian anomaly.

Keywords

Cite

@article{arxiv.1810.12313,
  title  = {$\gamma^\ast \gamma \to \eta, \eta^\prime$ transition form factors},
  author = {Minghui Ding and Khepani Raya and Adnan Bashir and Daniele Binosi and Lei Chang and Muyang Chen and Craig D. Roberts},
  journal= {arXiv preprint arXiv:1810.12313},
  year   = {2019}
}

Comments

16 pages, 7 figures, 3 tables