arXiv · 2205.04049
Investigating the $\mathbf{\Upsilon(10753)\to \Upsilon(1^3D_J)\eta}$ transitions
Abstract
In this work, we investigate the $\Upsilon(10753)\to\Upsilon(1^3D_J)\eta$ ($J=1,2,3$) processes, where the $\Upsilon(10753)$ is assigned as a conventional bottomonium under the $4S$-$3D$ mixing scheme. Our result shows that the concerned processes have considerable branching ratios, {\it i.e.}, branching ratios $\mathcal{B}[\Upsilon(10753)\to\Upsilon(1^3D_{1})\eta]$ and $\mathcal{B}[\Upsilon(10753)\to\Upsilon(1^3D_{2})\eta]$ can reach up to the order of magnitude of $10^{-4}-10^{-3}$, while $\mathcal{B}[\Upsilon(10753)\to\Upsilon(1^3D_{3})\eta]$ is around $10^{-6}-10^{-5}$. With the running of Belle II, it is a good opportunity for finding out the concerned hidden-bottom hadronic decays.
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Yu-Shuai Li, Zi-Yue Bai, Xiang Liu. 2022-05-09. Investigating the $\mathbf{\Upsilon(10753)\to \Upsilon(1^3D_J)\eta}$ transitions. https://doi.org/10.1103/physrevd.105.114041
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