arXiv · 2212.13512
Confirming the existence of a new higher charmonium $ψ(4500)$ by the newly released data of $e^+e^- \to K^+K^- J/ψ$
Abstract
Recently, the BESIII Collaboration published the Born cross section of $e^+e^- \to K^+K^- J/ψ$, in which a new vector enhancement structure $Y(4500)$ was observed for the first time. The mass of the $Y(4500)$ resonance structure is in good agreement with our previous prediction for a $5S$-$4D$ mixing charmonium candidate $ψ(4500)$, while the measured width is $2σ$ larger than the theoretical estimate. In this work, we reanalyzed the cross section of $e^+e^- \to K^+K^- J/ψ$ by introducing two theoretically predicted charmonium states $ψ(4220)$ and $ψ(4500)$ as intermediate resonances, and found that this width deviation problem can be resolved. Meanwhile, we found that the inclusion of two established charmonium states $ψ(4160)$ and $ψ(4415)$ can further improve the fit quality, with four sets of widely different solutions to $Γ_{e^+e^-} \mathcal{B}(ψ\to K^+K^- J/ψ)$. In order to better identify the properties of the $Y(4500)$, we calculated the charmonium hadronic transition to final states $K^+K^- J/ψ$ within the charmed meson loop mechanism, where the fitted branching ratio of $ψ(4500) \to K^+K^- J/ψ$ can be well explained by the theoretical calculation, further supporting the new enhancement structure around 4.5 GeV as a higher charmonium $ψ(4500)$ that we predicted. Finally, we also discussed the possible signal of another predicted charmonium candidate $ψ(4380)$ in $e^+e^- \to K^+K^- J/ψ$. These research results should be an important step in constructing the charmonium family and thoroughly solving the charmoniumlike $Y$ problem.
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Jun-Zhang Wang, Xiang Liu. 2023-03-14. Confirming the existence of a new higher charmonium $ψ(4500)$ by the newly released data of $e^+e^- \to K^+K^- J/ψ$. https://doi.org/10.1103/physrevd.107.054016
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