Production of the $P$-Wave Excited $B_c$-States through the $Z^0$ Boson Decays
Zhi Yang, Xing-Gang Wu, Li-Cheng Deng, Jia-Wei Zhang, Gu Chen

TL;DR
This paper investigates the production of P-wave excited B_c quarkonium states via Z^0 boson decays, including color-octet contributions, and estimates their impact on the total decay width.
Contribution
It extends previous work by analyzing P-wave and color-octet states' contributions to Z^0 decay into B_c, providing a more comprehensive understanding of production mechanisms.
Findings
P-wave states contribute about 20% to the total decay width.
Color-octet states have comparable contributions to color-singlet P-wave states.
Total decay width of Z^0 to B_c is estimated at approximately 236 KeV.
Abstract
In Ref.[7],we have dealt with the production of the two color-singlet -wave -quarkonium states and through the boson decays. As an important sequential work, we make a further discussion on the production of the more complicated -wave excited -quarkonium states, i.e. and (with ). More over, we also calculate the channel with the two color-octet quarkonium states and , whose contributions to the decay width maybe at the same order of magnitude as that of the color-singlet -wave states according to the naive nonrelativistic quantum chromodynamics scaling rules. The -wave states shall provide sizable contributions to the production, whose…
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