Heavy Quarkonium Production at LHC through $W$ Boson Decays
Abstract
The production of the heavy -quarkonium, -quarkonium and -quarkonium states (-quarkonium for short), via the semi-inclusive decays, has been systematically studied within the framework of the non-relativistic QCD. In addition to the two color-singlet -wave states, we also discuss the production of the four color-singlet -wave states and (with ) together with the two color-octet components and . Improved trace technology is adopted to derive the simplified analytic expressions at the amplitude level, which shall be useful for dealing with the following cascade decay channels. At the LHC with the luminosity and the center-of-mass energy TeV, sizable heavy-quarkonium events can be produced through the boson decays, i.e. , and -wave charmonium events per year can be obtained; and , and -wave -quarkonium events per year can be obtained. Main theoretical uncertainties have also been discussed. By adding the uncertainties caused by the quark masses in quadrature, we obtain KeV, KeV, KeV and eV.
Cite
@article{arxiv.1111.4609,
title = {Heavy Quarkonium Production at LHC through $W$ Boson Decays},
author = {Qi-Li Liao and Xing-Gang Wu and Jun Jiang and Zhi Yang and Zhen-Yun Fang},
journal= {arXiv preprint arXiv:1111.4609},
year = {2015}
}
Comments
24 pages, 12 figures. References updated. To be published in Phys.Rev. D. To match the published version