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Next-to-leading-order QCD correction to the exclusive double charmonium production via $Z$ decays
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abstract
In this paper, we preformed a further research on the exclusive productions of double charmonium via $Z$-boson decay by using nonrelativistic QCD factorizations approach, where the single-photon fragmentation topologies of the QED diagrams, the interference terms between the QCD and full QED diagrams, the next-to-leading-order calculations of the interference terms are preformed. For the production of $J/\psi+J/\psi$ in $Z$-boson decay, the interference terms show a significantly phenomenological effect due to the addition of the newly calculated NLO QCD corrections. After adding together all contributions, the branching fraction $\mathcal{B}_{Z\to J/\psi J/\psi}$ still undershoots the CMS collaboration data obviously. In addition, we simultaneously complete the next-to-leading-order calculations for $Z\to J/\psi+\eta_c (\chi_{cJ})$ with $J=(0,1,2)$. The calculated results show that the newly-calculated complete QED and cross terms will have obvious effective on the total decay widths.
Forward citations
Cited by 2 Pith papers
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Next-to-leading order QCD and relativistic corrections to $Z \to J/\psi+\Upsilon(nS)$
NLO QCD and relativistic corrections are large and negative, substantially reducing the leading-order decay widths for Z → J/ψ + Υ(nS).
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Double heavy quarkonia production with color-octet channels at Z factory and at the CEPC/FCC-ee
Color-octet channels are predicted to dominate many double heavy quarkonium production processes at future Z factories, with relativistic corrections suppressing charmonium rates by roughly a factor of two.
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