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A study of $\rho-\omega$ mixing in resonance chiral theory

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abstract

The strong and electromagnetic corrections to $\rho-\omega$ mixing are calculated using a SU(2) version of resonance chiral theory up to next-to-leading orders in $1/N_C$ expansion, respectively. Up to our accuracy, the effect of the momentum dependence of $\rho-\omega$ mixing is incorporated due to the inclusion of loop contributions. We analyze the impact of $\rho-\omega$ mixing on the pion vector form factor by performing numerical fit to the data extracted from $e^+e^-\rightarrow \pi^+\pi^-$ and $\tau\rightarrow \nu_{\tau}2\pi$, while the decay width of $\omega\rightarrow \pi^+\pi^-$ is taken into account as a constraint. It is found that the momentum dependence is significant in a good description of the experimental data. In addition, based on the fitted values of the involved parameters, we analyze the decay width of $\omega \rightarrow \pi^+\pi^-$, which turns out to be highly dominated by the $\rho-\omega$ mixing effect.

fields

hep-ph 1

years

2025 1

verdicts

CONDITIONAL 1

representative citing papers

Identify hadron anomalous couplings at colliders

hep-ph · 2025-04-21 · conditional · novelty 6.0

With vector-meson effects included, the WZW anomalous coupling extracted from eta-prime to pi+ pi- gamma matches theory and implies a box-anomaly branching fraction about an order of magnitude larger than the published value.

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  • Identify hadron anomalous couplings at colliders hep-ph · 2025-04-21 · conditional · none · ref 29 · internal anchor

    With vector-meson effects included, the WZW anomalous coupling extracted from eta-prime to pi+ pi- gamma matches theory and implies a box-anomaly branching fraction about an order of magnitude larger than the published value.