English

Effect of $Z_b$ states on $\Upsilon(3S)\to\Upsilon(1S)\pi\pi$ decays

High Energy Physics - Phenomenology 2016-03-07 v3 High Energy Physics - Experiment Nuclear Theory

Abstract

Within the framework of dispersion theory, we analyze the dipion transitions between the lightest Υ\Upsilon states, Υ(nS)Υ(mS)ππ\Upsilon(nS) \rightarrow \Upsilon(mS) \pi\pi with m<n3m < n \leq 3. In particular, we consider the possible effects of two intermediate bottomoniumlike exotic states Zb(10610)Z_b(10610) and Zb(10650)Z_b(10650). The ππ\pi\pi rescattering effects are taken into account in a model-independent way using dispersion theory. We confirm that matching the dispersive representation to the leading chiral amplitude alone cannot reproduce the peculiar two-peak ππ\pi\pi mass spectrum of the decay Υ(3S)Υ(1S)ππ\Upsilon(3S) \rightarrow \Upsilon(1S) \pi\pi. The existence of the bottomoniumlike ZbZ_b states can naturally explain this anomaly. We also point out the necessity of a proper extraction of the coupling strengths for the ZbZ_b states to Υ(nS)π\Upsilon(nS)\pi, which is only possible if a Flatt\'e-like parametrization is used in the data analysis for the ZbZ_b states.

Keywords

Cite

@article{arxiv.1512.03583,
  title  = {Effect of $Z_b$ states on $\Upsilon(3S)\to\Upsilon(1S)\pi\pi$ decays},
  author = {Yun-Hua Chen and Johanna T. Daub and Feng-Kun Guo and Bastian Kubis and Ulf-G. Meißner and Bing-Song Zou},
  journal= {arXiv preprint arXiv:1512.03583},
  year   = {2016}
}

Comments

21 pages, 6 figures. The final version published in Phys. Rev. D 93, 034030 (2016)