Abstract
Gluon-induced contributions to the associated production of a Higgs and a Z boson are calculated with NLO accuracy in QCD. They constitute a significant contribution to the cross section for this process. The perturbative correction factor (K-factor) is calculated in the limit of infinite top-quark and vanishing bottom-quark masses. The qualitative similarity of the results to the well-known ones for the gluon-fusion process gg → H allows to conclude that rescaling the LO prediction by this K-factor leads to a reliable NLO result and realistic error estimate due to missing higher-order perturbative effects. We consider the total inclusive cross section as well as a scenario with a boosted Higgs boson, where the Higgs boson's transverse momentum is restricted to values pT,H > 200 GeV. In both cases, we find large correction factors K ≈ 2 in most of the parameter space. © 2013 SISSA.
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Altenkamp, L., Dittmaier, S., Harlander, R. V., Rzehak, H., & Zirke, T. J. E. (2013). Gluon-induced Higgs-strahlung at next-to-leading order QCD. Journal of High Energy Physics, 2013(2). https://doi.org/10.1007/JHEP02(2013)078
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