English

Effective transverse momentum in multiple jet production at hadron colliders

High Energy Physics - Phenomenology 2022-09-22 v2

Abstract

We consider the class of inclusive hadron collider processes in which several energetic jets are produced, possibly accompanied by colourless particles (such as Higgs boson(s), vector boson(s) with their leptonic decays, and so forth). We propose a new variable that smoothly captures the N+1N+1 to NN-jet transition. This variable, that we dub kTnessk_T^{\rm ness}, represents an effective transverse momentum controlling the singularities of the N+1N+1-jet cross section when the additional jet is unresolved. The kTnessk_T^{\rm ness} variable offers novel opportunities to perform higher-order calculations in Quantum Chromodynamics (QCD) by using non-local subtraction schemes. We study the singular behavior of the N+1N+1-jet cross section as kTness0k_T^{\rm ness}\to 0 and, as a phenomenological application, we use the ensuing results to evaluate next-to-leading order corrections to HH+jet and ZZ+2 jet production at the LHC. We show that kTnessk_T^{\rm ness} performs extremely well as a resolution variable and appears to be very stable with respect to hadronization and multiple-parton interactions.

Keywords

Cite

@article{arxiv.2201.11519,
  title  = {Effective transverse momentum in multiple jet production at hadron colliders},
  author = {Luca Buonocore and Massimiliano Grazzini and Jürg Haag and Luca Rottoli and Chiara Savoini},
  journal= {arXiv preprint arXiv:2201.11519},
  year   = {2022}
}

Comments

9 pages, 3 figures. Added appendix with details on jet and soft functions at NLO. Version published in Phys.Rev.D