English

Enhanced breaking of heavy quark spin symmetry

High Energy Physics - Phenomenology 2014-10-14 v2 High Energy Physics - Experiment

Abstract

Heavy quark spin symmetry is useful to make predictions on ratios of decay or production rates of systems involving heavy quarks. The breaking of spin symmetry is generally of the order of O(ΛQCD/mQ)O({\Lambda_{\rm QCD}/m_Q}), with ΛQCD\Lambda_{\rm QCD} the scale of QCD and mQm_Q the heavy quark mass. In this paper, we will show that a small SS- and DD-wave mixing in the wave function of the heavy quarkonium could induce a large breaking in the ratios of partial decay widths. As an example, we consider the decays of the Υ(10860)\Upsilon(10860) into the χbJω(J=0,1,2)\chi_{bJ}\omega\, (J=0,1,2), which were recently measured by the Belle Collaboration. These decays exhibit a huge breaking of the spin symmetry relation were the Υ(10860)\Upsilon(10860) a pure 5S5S bottomonium state. We propose that this could be a consequence of a mixing of the SS-wave and DD-wave components in the Υ(10860)\Upsilon(10860). Prediction on the ratio Γ(Υ(10860)χb0ω)/Γ(Υ(10860)χb2ω)\Gamma(\Upsilon(10860)\to\chi_{b0}\omega)/\Gamma(\Upsilon(10860)\to\chi_{b2}\omega) is presented assuming that the decay of the DD-wave component is dominated by the coupled-channel effects.

Keywords

Cite

@article{arxiv.1406.6543,
  title  = {Enhanced breaking of heavy quark spin symmetry},
  author = {Feng-Kun Guo and Ulf-G. Meißner and Cheng-Ping Shen},
  journal= {arXiv preprint arXiv:1406.6543},
  year   = {2014}
}

Comments

13 pages, 5 figures. Discussion extended, version to appear in Phys.Lett.B