NNLO QCD corrections to Higgs boson production at large transverse momentum
X. Chen, J. Cruz-Martinez, T. Gehrmann, E.W.N. Glover, M. Jaquier

TL;DR
This paper calculates the second-order QCD corrections to Higgs boson production with high transverse momentum, improving theoretical precision and comparing results with LHC data at 8 and 13 TeV.
Contribution
It provides the first fully differential NNLO QCD calculation for Higgs plus jet production including finite top mass effects at leading order.
Findings
NNLO corrections are moderate and positive.
Reduced theoretical uncertainties at NNLO.
Good agreement with 13 TeV ATLAS data.
Abstract
We derive the second-order QCD corrections to the production of a Higgs boson recoiling against a parton with finite transverse momentum, working in the effective field theory in which the top quark contributions are integrated out. To account for quark mass effects, we supplement the effective field theory result by the full quark mass dependence at leading order. Our calculation is fully differential in the final state kinematics and includes the decay of the Higgs boson to a photon pair. It allows one to make next-to-next-to- leading order (NNLO)-accurate theory predictions for Higgs-plus-jet final states and for the transverse momentum distribution of the Higgs boson, accounting for the experimental definition of the fiducial cross sections. The NNLO QCD corrections are found to be moderate and positive, they lead to a substantial reduction of the theory uncertainty on the…
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