Predictions of $\Upsilon(4S) \to h_b(1P,2P) \pi^+\pi^-$ transitions
Abstract
In this work, we study the contributions of the intermediate bottomoniumlike states and the bottom meson loops in the heavy quark spin flip transitions . Depending on the constructive or destructive interferences between the -exchange and the bottom meson loops mechanisms, we predict two possible branching ratios for each process: BR or , and BR or . The bottom meson loops contribution is found to be much larger than the -exchange contribution in the transitions, while it can not produce decay rates comparable to the heavy quark spin conserved processes. We also predict the branch fractions of contributed from the charm meson loops.
Keywords
Cite
@article{arxiv.1907.05547,
title = {Predictions of $\Upsilon(4S) \to h_b(1P,2P) \pi^+\pi^-$ transitions},
author = {Yun-Hua Chen},
journal= {arXiv preprint arXiv:1907.05547},
year = {2020}
}
Comments
17 pages, 4 figures; the direct gluon hadronization mechanism contribution within QCD multipole expansion discussed, the distributions of the $\pi\pi$ and $h_b\pi$ invariant mass spectra, and the angular distribution presented, the branch fractions of $\psi(3S,4S) \to h_c(1P)\pi^+\pi^-$ estimated, more discussions added; version to appear in CPC