arXiv:1802.00426·v2·High Energy Physics — Phenomenology
New NLOPS predictions for -jet production at the LHC
Tomáš Ježo🇨🇭 · Jonas M. Lindert🇬🇧 · Niccolo Moretti🇨🇭 · Stefano Pozzorini🇨🇭
Abstract
Measurements of production in the channel depend in a critical way on the theoretical uncertainty associated with the irreducible -jet background. In this paper, analysing the various topologies that account for -jet production in association with a pair, we demonstrate that the process at hand is largely driven by final-state splittings. We also show that in five-flavour simulations based on multi-jet merging -jet production is mostly driven by the parton shower, while matrix elements play only a marginal role in the description of splittings. Based on these observations we advocate the use of NLOPS simulations of in the four-flavour scheme, and we present a new POWHEG generator of this kind. Predictions and uncertainties for -jet observables at the 13 TeV LHC are presented both for the case of stable top quarks and with spin-correlated top decays. Besides QCD scale variations we consider also theoretical uncertainties related to the POWHEG matching method and to the parton shower modelling, with emphasis on splittings. In general, matching and shower uncertainties turn out to be remarkably small. This is confirmed also by a tuned comparison against Sherpa+OpenLoops.
Comments: 43 pages, 15 figures. Version accepted for publication in EPJC. Results unchanged. Figs. 9-10 updated