English

Heavy Quarkonium Production through the Semi-Exclusive $e^+ e^-$ Annihilation Channels around the $Z^0$ Peak

High Energy Physics - Phenomenology 2013-06-10 v3

Abstract

Within the framework of the non-relativistic QCD, we present a detailed discussion on the heavy quarkonium production at the leading order in αs\alpha_s at a e+ee^+ e^- collider with the collision energy around the Z0Z^0 peak. Quarkonia are produced through the semi-exclusive channels e+eHQQˉ+Xe^{+}e^{-} \rightarrow |H_{Q\bar{Q}}\rangle +X with X=QQˉX=Q\bar{Q} or gggg, where QQ indicates a heavy quark (respectively bb or cc). It is noted that in addition to the color-singlet 1S-level quarkonium states, the 2S and 1P color-singlet states and the color-octet (QQˉ)[13S1(8)]g|(Q\bar{Q})[1^3S_1^{({\bf 8})}]g\rangle state also provide sizable contributions. The heavy quarkonium transverse momentum and rapidity distributions for the e+ee^+ e^- collision energy Ecm=mZE_{cm}=m_Z are presented. For both charmonium and bottomonium production via the Z0Z^0 propagator, there is approximate "spin degeneracy" between the spin-triplet and spin-singlet quarkonium states. Uncertainties for the total cross sections are estimated by taking mc=1.50±0.15m_c=1.50\pm0.15 GeV and mb=4.90±0.15m_b=4.90\pm0.15 GeV. Around Ecm=mZE_{cm}=m_{Z}, due to the Z0Z^0-boson resonance effect, total cross sections for the channels via the Z0Z^0-propagator become much larger than the channels via the virtual photon propagator. We conclude that, in addition to the BB factories as BaBar and Belle and the hadronic colliders as Tevatron and LHC, such a super ZZ-factory will present an excellent platform for studying the heavy quarkonium properties.

Keywords

Cite

@article{arxiv.1302.4282,
  title  = {Heavy Quarkonium Production through the Semi-Exclusive $e^+ e^-$ Annihilation Channels around the $Z^0$ Peak},
  author = {Zhan Sun and Xing-Gang Wu and Gu Chen and Jun Jiang and Zhi Yang},
  journal= {arXiv preprint arXiv:1302.4282},
  year   = {2013}
}

Comments

28 pages, 20 figures, 15 tables. to be published in Phys.Rev.D. We are grateful for the anonymous referee's comments and suggestions that substantially improve the manuscript