English

Bottomonium production associated with a photon at a high luminosity $e^+e^-$ collider with next-to-leading order QCD corrections

High Energy Physics - Phenomenology 2014-04-18 v2

Abstract

We make a detailed discussion on the one-loop QCD correction to the bottomonium production associated with a photon, i.e. via the channel e+eγ/Z0Hbbˉ+γe^{+}e^{-} \to\gamma^*/Z^0 \to |H_{b\bar{b}}\rangle + \gamma, where Hbbˉ|H_{b\bar{b}}\rangle stands for the color-singlet bottomonium state as ηb\eta_b, Υ\Upsilon, hbh_b or χbJ\chi_{bJ} (JJ=0, 1 or 2), respectively. At the super ZZ factory with the collision energy EcmmZE_{cm} \sim m_Z, by summing up the cross sections for all bottomonium states, we obtain a large one-loop QCD correction, i.e. R30%|R|\sim 30\%. This ensures the necessity and importance of the one-loop QCD corrections for the present processes. Further more, for the ηb\eta_b, hbh_b and χbJ\chi_{bJ} production, their cross sections are dominated by the ss-channel diagrams and are enhanced by the Z0Z^0 boson resonance effect when EcmmZE_{cm}\sim m_Z. While, for the Υ\Upsilon production, such resonance effect shall be smeared by a large t(u)t(u)-channel contribution that dominant over the ss-channel one. Theoretical uncertainties caused by slight change of EcmE_{cm}, the bb-quark mass, the renormalization scale and etc. have been presented. At the super ZZ factory with a high luminosity up to L=1036cm2s1{\cal L}=10^{36}{\rm cm}^{-2}{\rm s}^{-1}, the bottomonium plus one photon events are sizable, especially for ηb\eta_b and Υ\Upsilon, which have large signal significance. Summing up all bottomonium states, we shall totally have 3.8×105\sim 3.8\times10^{5} bottomonium events in one operation year. So, the super ZZ factory shall provide a good platform for studying the bottomonium properties.

Keywords

Cite

@article{arxiv.1401.2735,
  title  = {Bottomonium production associated with a photon at a high luminosity $e^+e^-$ collider with next-to-leading order QCD corrections},
  author = {Zhan Sun and Xing-Gang Wu and Gu Chen and Yang Ma and Hong-Hao Ma and Huan-Yu Bi},
  journal= {arXiv preprint arXiv:1401.2735},
  year   = {2014}
}

Comments

15 pages, 9 figures. Discussions improved, to be published in Phys.Rev.D