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Timelike form factor for the anomalous process $\gamma^\ast \pi \rightarrow \pi \pi$

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abstract

The form factor $F_{3\pi}(s,t,u)$ for the anomalous process $\gamma^\ast \pi \rightarrow \pi \pi$ is calculated in the isospin limit for several values of the light current-quark mass (i.e., the pion mass) using Dyson-Schwinger and Bethe-Salpeter equations. Beyond a quark interaction kernel representing gluon-mediated interactions, leading beyond-rainbow-ladder effects at low energies are incorporated by back-coupling pions as explicit degrees of freedom. Building upon an earlier calculation of the quark-photon vertex that captures the branch cut associated with the two-pion threshold and the rho meson resonance, the form factor $F_{3\pi}(s,t,u)$ is determined for timelike Mandelstam s. In particular, predictions are made for the kinematics relevant for the Primakoff reaction studied with COMPASS/AMBER at CERN.

fields

hep-ph 1

years

2025 1

verdicts

CONDITIONAL 1

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  • Extracting the chiral anomaly from $e^+e^-\to 3\pi$ hep-ph · 2025-04-18 · conditional · none · ref 38 · internal anchor

    A dispersive fit to e+e−→3π data yields F3π = 33.1(1.7) GeV^-3, consistent with the chiral anomaly prediction at the 5% level.