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arXiv:2512.00501·v2·High Energy Physics — Phenomenology

Dispersive analysis of the transition form factor with - mixing effects

Xiong-Hui Cao🇨🇳 · Feng-Kun Guo🇨🇳 · Christoph Hanhart🇩🇪 · Bastian Kubis🇩🇪

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Abstract

Motivated by the discrepancies noted recently between the theoretical predictions of the electromagnetic transition form factor and the BESIII data, we reanalyze this transition form factor using the dispersive Khuri-Treiman equations, with final-state interactions in both the direct channel and the crossed channels properly considered. This improved framework incorporates - mixing effects. The effect of four-pion states is evaluated through a dispersively improved vector-meson-dominance model. From this information, we propose a two-parameter fit that provides an excellent description of the BESIII data over the broad energy range from 0 to 2.8GeV. We demonstrate that the decay mode of the is dominated by strong interaction, while the mode is dominated by one-photon exchange. From this, we extract the relative phase between the strong and the one-virtual-photon (electromagnetic) modes in hadronic decays of as . This could provide useful information in understanding the long-standing puzzle in decays.

Comments: 37 pages, 10 figures, 4 tables; references added, version accepted in Phys. Rev. D

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