paper

Dispersive analysis of the $J/ψ\toπ^0 γ^\ast$ transition form factor with - mixing effects

arXiv:2512.00501 · doi:10.1103/gmj6-hd9j

Abstract

Motivated by the discrepancies noted recently between the theoretical predictions of the electromagnetic $J/ψ\to π^0 γ^*$ 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.

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

Dispersive analysis of the $J/ψ\toπ^0 γ^\ast$ transition form factor with $ρ$-$ω$ mixing effects · wovepaper