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- W2078718110 abstract "Chiral anomalies are calculated using an effective-Lagrangian technique introduced for anomalies by Wess and Zumino and recently reformulated by Witten. Anomalous amplitudes for vector currents decaying into three pseudoscalars are tested by comparison with ${K}_{l4}$ decay, $ensuremath{eta}$ and ${ensuremath{eta}}^{ensuremath{'}}ensuremath{rightarrow}{ensuremath{pi}}^{+}{ensuremath{pi}}^{ensuremath{-}}ensuremath{gamma}$, and strong decays of vector mesons. The agreement with experiment for ${K}_{l4}$ is an impressive verification of the anomaly in the vector current. For $ensuremath{eta}$ and ${ensuremath{eta}}^{ensuremath{'}}$ decay, the results are excellent, and for the strong decays, good. Since the electromagnetic and strong amplitudes have been extrapolated to higher momenta with a final-state-interaction approximation, it is not surprising that the agreement is less good here, where, indeed, further dynamical assumptions are needed. A number of new predictions are made for hadronic decays of ${ensuremath{rho}}^{ensuremath{'}}$, ${ensuremath{omega}}^{ensuremath{'}}$, and ${ensuremath{varphi}}^{ensuremath{'}}$." @default.
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- W2078718110 date "1984-07-01" @default.
- W2078718110 modified "2023-09-24" @default.
- W2078718110 title "Testing chiral anomalies with hadronic currents" @default.
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- W2078718110 doi "https://doi.org/10.1103/physrevd.30.89" @default.
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