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Production of $1^{-+}$ exotic charmonium-like states in electron-positron collisions

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arxiv 2503.06259 v3 pith:GVBIH3DV submitted 2025-03-08 hep-ph hep-ex

classification hep-phhep-ex
keywords statescharmonium-likeelectron-positronprimecollisionsdecayexoticgamma
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

The absence of observed charmonium-like states with the exotic quantum numbers $J^{PC}=1^{-+}$ has prompted us to investigate the production rates of the $1^{-+}$ $D\bar D_1(2420)$ and $D^*\bar D_1(2420)$ hadronic molecules, which we refer to as $\eta_{c1}$ and $\eta_{c1}^{\prime}$, respectively, in electron-positron collisions. Assuming a hadronic molecular nature for the vector charmonium-like states $\psi(4360)$ and $\psi(4415)$, we evaluate the radiative decay widths of $\psi(4360)\to\gamma\eta_{c1}$ and $\psi(4415)\to\gamma\eta_{c1}^{\prime}$. Using these decay widths, we estimate the cross sections for producing $\eta_{c1}$ and $\eta_{c1}^{\prime}$ in electron-positron annihilations, as well as the event numbers at the planned Super $\tau$-Charm Facility. Our results suggest that the ideal energy region for observing these states is around $4.44$ and $4.50$ GeV, just above the $D^* \bar D_1(2420)$ and $D^*\bar D_2^*(2460)$ thresholds, respectively.

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  1. Resonance parameters of the vector charmoniumlike state $G(3900)$

    hep-ph 2025-04 conditional novelty 6.0 of 10

    A coupled-channel fit to e+e- to D meson pairs finds that G(3900) is a dynamically generated P-wave D Dbar* resonance.

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