English

$D$ wave bottomonia production from $Z_b^{(\prime)}$ decay

High Energy Physics - Phenomenology 2021-01-04 v1

Abstract

In the present work, we investigate the dipion transitions between Υ(5S)\Upsilon(5S) and ΥJ(1D)\Upsilon_J(1D) with J=1,2,3J=1, 2, 3. Our analysis indicates that the dominant sources of the anomalously large widths of Υ(5S)ΥJ(1D)π+π\Upsilon(5S)\to \Upsilon_J(1D) \pi^+ \pi^- should be Zb()Z_b^{(\prime)}, i.e., the dipion transitions occur via the cascade decays Υ(5S)Zb()±πΥJ(1D)π+π\Upsilon(5S)\to Z_b^{(\prime)\pm} \pi^\mp \to \Upsilon_J(1D) \pi^+ \pi^-. With the assumption that all the short ranged dynamics could be absorbed in a single cutoff with a model parameter α\alpha, the present estimations indicate that in a reasonable parameter range the measured branching ratios of Υ(5S)ΥJ(1D)π+π\Upsilon(5S) \to \Upsilon_J(1D) \pi^+ \pi^- can be reproduced in magnitude, which further proves that the decays via Zb()Z_b^{(\prime)} dominate the dipion transitions of Υ(5S)\Upsilon(5S) to ΥJ(1D)\Upsilon_J(1D). Moreover, we also predict the ratios of the branching fractions of Zb()ΥJ(1D)πZ_b^{(\prime)} \to \Upsilon_J(1D) \pi, which in our calculations are largely independent of the parameter α\alpha and could be tested by further experiments in Belle II.

Keywords

Cite

@article{arxiv.2012.02940,
  title  = {$D$ wave bottomonia production from $Z_b^{(\prime)}$ decay},
  author = {Qi Wu and Dian-Yong Chen and Takayuki Matsuki},
  journal= {arXiv preprint arXiv:2012.02940},
  year   = {2021}
}

Comments

9 pages, 5 figures, accepted for publication in the Phys.Rev.D