2015
DOI: 10.1016/j.physletb.2015.06.055
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Higgs boson production in association with a jet using jettiness subtraction

Abstract: We use the recently proposed jettiness-subtraction scheme to provide the complete calculation of Higgs boson production in association with a jet in hadronic collisions through next-to-nextto-leading order in perturbative QCD. This method exploits the observation that the N -jettiness event-shape variable completely describes the singularity structure of QCD when final-state colored particles are present. Our results are in agreement with a recent computation of the gg and qg partonic initial states based on s… Show more

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Cited by 235 publications
(263 citation statements)
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“…One observes a very considerable decrease in the uncertainties in going from NNLO to N 3 LO with only a modest change in the central values, associated with a small increase in the total cross section from the N 3 LO corrections [8] and a slight decrease in the low-p t efficiency associated with an increase in the 1-jet cross section at NNLO [9][10][11].…”
Section: Jhep04(2016)049mentioning
confidence: 98%
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“…One observes a very considerable decrease in the uncertainties in going from NNLO to N 3 LO with only a modest change in the central values, associated with a small increase in the total cross section from the N 3 LO corrections [8] and a slight decrease in the low-p t efficiency associated with an increase in the 1-jet cross section at NNLO [9][10][11].…”
Section: Jhep04(2016)049mentioning
confidence: 98%
“…Since the first NNLO+NNLL predictions for the jet-veto, three important theoretical advances happened: firstly, the N 3 LO calculation of the total gluon-fusion cross section [8]; secondly the calculation of the NNLO corrections to the Higgs plus one-jet cross-section [9][10][11]; and finally the LL resummation of logarithms of the jet-radius R [12]. Given these recent advances, we are now in a position to improve on the previous prediction by extending the matching of the jet-veto cross-section to N 3 LO+NNLL+LL R .…”
Section: Jhep04(2016)049mentioning
confidence: 99%
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