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Hunting for the XbX_b via hidden bottomonium decays

Published 10 Feb 2015 in hep-ph | (1502.02936v1)

Abstract: In this work, we study the isospin conserved hidden bottomonium decay of Xb→Υ(1S)ωX_b\to \Upsilon(1S)\omega, where XbX_b is taken to be the counterpart of the famous X(3872)X(3872) in the bottomonium sector as a candidate for the meson-meson molecule. Since it is likely that the XbX_b is below the BBˉ<sup>∗B\bar B<sup>* threshold and the mass difference between the neutral and charged bottom meson is small compared to the binding energy of the XbX_b, the isospin violating decay mode Xb→Υ(nS)π<sup>+π<sup>−X_b\to \Upsilon (nS)\pi<sup>+\pi<sup>- would be greatly suppressed. We use the effective Lagrangian based on the heavy quark symmetry to explore the rescattering mechanism of Xb→Υ(1S)ωX_b\to \Upsilon(1S)\omega and calculate the partial widths. Our results show that the partial width for the Xb→Υ(1S)ωX_b\to \Upsilon(1S)\omega is about tens of keVs. Taking into account the fact that the total width of XbX_b may be smaller than a few MeV like X(3872)X(3872), the calculated branching ratios may reach to orders of 10<sup>−210<sup>{-2}. These hidden bottomonium decay modes are of great importance in the experimental search for the XbX_b particularly at the hadron collider. Also, the associated studies of hidden bottomonium decays Xb→Υ(nS)γX_b \to \Upsilon(nS) \gamma, Υ(nS)ω\Upsilon(nS)\omega, and BBˉγB\bar B \gamma may help us investigate the structure of XbX_b deeply. The experimental observation of XbX_b will provide us with further insight into the spectroscopy of exotic states and is helpful to probe the structure of the states connected by the heavy quark symmetry.

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