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Nature of the Y(4260): A light-quark perspective

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arxiv 1902.10957 v2 pith:ZARRBHBC submitted 2019-02-28 hep-ph hep-exnucl-th

Nature of the Y(4260): A light-quark perspective

classification hep-ph hep-exnucl-th
keywords light-quarkcomponentperspectivesigmastateaccountbeenchannel
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The $Y(4260)$ has been one of the most puzzling pieces among the so-called $XYZ$ states. In this paper, we try to gain insights into the structure of the $Y(4260)$ from the light-quark perspective. We study the dipion invariant mass spectrum of the $e^+ e^- \to Y(4260) \to J/\psi \pi^+\pi^-$ process and the ratio of the cross sections ${\sigma(e^+e^- \to J/\psi K^+ K^-)}/{\sigma(e^+e^- \to J/\psi \pi^+\pi^-)}$. In particular, we consider the effects of different light-quark SU(3) eigenstates inside the $Y(4260)$. The strong pion-pion final-state interactions as well as the $K\bar{K}$ coupled channel in the $S$-wave are taken into account in a model-independent way using dispersion theory. We find that the SU(3) octet state plays a significant role in these transitions, implying that the $Y(4260)$ contains a large light-quark component. Our findings suggest that the $Y(4260)$ is neither a hybrid nor a conventional charmonium state, and they are consistent with the $Y(4260)$ having a sizeable $\bar D D_1$ component which, however, is not completely dominant.

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  1. Searching for the pseudoscalar partner of $G(3900)$ via radiative $Y(4230)$ decays

    hep-ph 2026-06 unverdicted novelty 5.0

    Calculates B(Y(4230) → γ G0(3900)) = 3.8×10^{-5}–3.3×10^{-4} assuming P-wave molecular interpretations for both states and a triangle mechanism.