arXiv · 2504.13827
Extracting the chiral anomaly from $e^+e^-\to 3π$
Abstract
The strength of the interaction of three pions and a photon, $F_{3π}$ is predicted by the axial anomaly in terms of the pion decay constant, a relation that is frequently used to constrain low-energy radiative processes involving pions, but only tested experimentally at the $10\%$ level. Here, we present a new avenue to test this prediction, via a fit of a dispersive description of the $γ^*\to3π$ amplitude to data for $e^+e^-\to 3π$. From the global fit to SND, CMD-2, and BaBar data we obtain $F_{3π}=33.1(1.7)\,\text{GeV}^{-3}$, in agreement with the chiral prediction at the level of $5\%$. We also consider dispersive fits to the recent data by Belle II, in which case we observe tensions with the dispersive constraints, the width parameters of $ω$ and $ϕ$, and the chiral anomaly.
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Martin Hoferichter, Bai-Long Hoid, Bastian Kubis. 2025-07-08. Extracting the chiral anomaly from $e^+e^-\to 3π$. https://doi.org/10.1007/jhep07(2025)095
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