English

Higgs Production at NNLL$'$+NNLO using Rapidity Dependent Jet Vetoes

High Energy Physics - Phenomenology 2020-05-14 v2

Abstract

The rapidity-dependent jet veto observables TBj\mathcal{T}_{Bj} and TCj\mathcal{T}_{Cj} 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 pTjp_{Tj}, and are advantageous to use under harsh pile-up conditions. We obtain predictions for the 00-jet gluon-fusion (ggF) Higgs cross section using both of these veto observables at NNLL+'+NNLO, and compare these predictions to the prior state-of-the-art of NLL+'+NLO. A significant reduction in perturbative uncertainty is observed going from NLL+'+NLO to NNLL+'+NNLO, with the NNLL+'+NNLO predictions lying inside the uncertainty band of the NLL+'+NLO predictions. We also investigate the relative sensitivities of ggF Higgs cross sections with TBj\mathcal{T}_{Bj}, TCj\mathcal{T}_{Cj} and pTjp_{Tj} jet vetoes to underlying event and hadronisation effects using an NLO+parton shower calculation. We find that the cross sections with TBj\mathcal{T}_{Bj} and TCj\mathcal{T}_{Cj} vetoes have a reduced sensitivity to underlying event and hadronisation effects compared to that with a pTjp_{Tj} 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

R2 v1 2026-06-23T14:09:13.272Z