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Photon-fusion reactions from the chiral Lagrangian with dynamical light vector mesons

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arxiv 1211.1503 v2 pith:ESSWNZJT submitted 2012-11-07 hep-ph nucl-th

classification hep-phnucl-th
keywords gammarightarrowchiraldatalagrangianreactionsvectordynamical
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

We study the reactions $\gamma\gamma\rightarrow \pi^0\pi^0$, $\pi^+\pi^-$, $K^0\bar{K}^0$, $K^+K^-$, $\eta \eta$ and $\pi^0\eta$ based on a chiral Lagrangian with dynamical light vector mesons as formulated within the hadrogenesis conjecture. At present our chiral Lagrangian contains 5 unknown parameters that are relevant for the photon fusion reactions. They parameterize the strength of interaction terms involving two vector meson fields. These parameters are fitted to photon fusion data $\gamma\gamma\rightarrow \pi^0\pi^0$, $\pi^+\pi^-, \pi^0\eta$ and to the decay $\eta\rightarrow\pi^0\gamma\gamma$. In order to derive gauge invariant reaction amplitudes in the resonance region constraints from micro-causality and exact coupled-channel unitarity are used. Our results are in good agreement with the existing experimental data from threshold up to about 0.9 GeV for the two-pion final states. The $a_0$ meson in the $\pi^0\eta$ channel is dynamically generated and an accurate reproduction of the $\gamma\gamma\rightarrow \pi^0\eta$ data is achieved up to 1.2 GeV. Based on our parameter sets we predict the $\gamma\gamma\rightarrow $ $K^0\bar{K}^0$, $K^+K^-$, $\eta \eta$ cross sections.

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  1. Measurement of $\eta\to\pi^{0}\gamma\gamma$ branching fraction with the KLOE detector

    hep-ex 2025-05 accept novelty 6.0 of 10

    KLOE finds the eta to pi0 gamma gamma branching fraction is (0.98 +/- 0.11 +/- 0.14) x 10^-4, about half the previous world average.

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