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Next-to-leading order QCD predictions for $Z^0 H^0 + {\rm jet}$ production at LHC

We calculate the complete next-to-leading order (NLO) QCD corrections to the $Z^0H^0$ production in association with a jet at the LHC. We study the impacts of the NLO QCD radiative corrections to the integrated and differential cross sections and the dependence of the cross section on the factorization/renormalization scale. We present the transverse momentum distributions of the final $Z^0$-, Higgs-boson and leading-jet. We find that the NLO QCD corrections significantly modify the physical observables, and obviously reduce the scale uncertainty of the LO cross section. The QCD K-factors can be 1.183 and 1.180 at the $\sqrt{s}=14 TeV$ and $\sqrt{s}=7 TeV$ LHC respectively, when we adopt the inclusive event selection scheme with $p_{T,j}^{cut}=50 GeV$, $m_H=120 GeV$ and $μ=μ_r=μ_f=μ_0 \equiv 1/2(m_Z+m_H)$. Furthermore, we make the comparison between the two scale choices, $μ=μ_0$ and $μ=μ_1=1/2(E_{T}^{Z}+E_{T}^{H}+ \sum_{j}E_{T}^{jet})$, and find the scale choice $μ=μ_1$ seems to be more appropriate than the fixed scale $μ=μ_0$.

preprint2012arXivOpen access

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