The fully differential hadronic production of a Higgs boson via bottom quark fusion at NNLO
Stephan Buehler, Franz Herzog, Achilleas Lazopoulos, Romain Mueller

TL;DR
This paper presents a next-to-next-to-leading order (NNLO) QCD calculation of Higgs boson production via bottom quark fusion, providing detailed differential distributions and introducing a novel non-linear mapping method for such calculations.
Contribution
It introduces the first application of non-linear mappings for NNLO differential calculations at hadron colliders, advancing precision in Higgs production modeling.
Findings
Differential distributions with scale uncertainties are provided for 8 TeV LHC.
First application of non-linear mappings for NNLO differential calculations.
Enhanced theoretical precision in Higgs boson production predictions.
Abstract
The fully differential computation of the hadronic production cross section of a Higgs boson via bottom quarks is presented at NNLO in QCD. Several differential distributions with their corresponding scale uncertainties are presented for the 8 TeV LHC. This is the first application of the method of non-linear mappings for NNLO differential calculations at hadron colliders.
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