The authors computed the real corrections to the NLO Higgs impact factor with finite top mass, confirming the BFKL rapidity-divergence structure and the infinite-top-mass limit.
Double resummation for Higgs production
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abstract
We present the first double-resummed prediction of the inclusive cross section for the main Higgs production channel in proton-proton collisions, namely gluon fusion. Our calculation incorporates to all orders in perturbation theory two distinct towers of logarithmic corrections which are enhanced, respectively, at threshold, i.e. large x, and in the high-energy limit, i.e. small x. Large-x logarithms are resummed to next-to-next-to-next-to-leading logarithmic accuracy, while small-x ones to leading logarithmic accuracy. The double-resummed cross section is furthermore matched to the state-of-the-art fixed-order prediction at next-to-next-to-next-to-leading accuracy. We find that double resummation corrects the Higgs production rate by 2% at the currently explored center-of-mass energy of 13 TeV and its impact reaches 10% at future circular colliders at 100 TeV.
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The real corrections to the Higgs impact factor at next-to-leading order with finite top mass
The authors computed the real corrections to the NLO Higgs impact factor with finite top mass, confirming the BFKL rapidity-divergence structure and the infinite-top-mass limit.