Higgs Production at NNLL$'$+NNLO using Rapidity Dependent Jet Vetoes
Abstract
The rapidity-dependent jet veto observables and provide a tight jet veto at central rapidity, gradually transitioning to a loose veto at forward rapidities. They divide the phase space into exclusive jet bins in a different way to the traditional jet veto observable , and are advantageous to use under harsh pile-up conditions. We obtain predictions for the -jet gluon-fusion (ggF) Higgs cross section using both of these veto observables at NNLLNNLO, and compare these predictions to the prior state-of-the-art of NLLNLO. A significant reduction in perturbative uncertainty is observed going from NLLNLO to NNLLNNLO, with the NNLLNNLO predictions lying inside the uncertainty band of the NLLNLO predictions. We also investigate the relative sensitivities of ggF Higgs cross sections with , and jet vetoes to underlying event and hadronisation effects using an NLO+parton shower calculation. We find that the cross sections with and vetoes have a reduced sensitivity to underlying event and hadronisation effects compared to that with a veto.
Keywords
Cite
@article{arxiv.2003.04323,
title = {Higgs Production at NNLL$'$+NNLO using Rapidity Dependent Jet Vetoes},
author = {Shireen Gangal and Jonathan R. Gaunt and Frank J. Tackmann and Eleni Vryonidou},
journal= {arXiv preprint arXiv:2003.04323},
year = {2020}
}
Comments
22 pages, 9 figures. v2: Minor alterations, published version