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arXiv:2012.10310·v2·High Energy Physics — Phenomenology

Combined subleading high-energy logarithms and NLO accuracy for W production in association with multiple jets

Jeppe R. Andersen🇬🇧 · James A. Black🇬🇧 · Helen M. Brooks🇦🇺 · Emmet P. Byrne🇬🇧 · Andreas Maier🇩🇪 · Jennifer M. Smillie🇬🇧

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Abstract

Large logarithmic corrections in lead to substantial variations in the perturbative predictions for inclusive -plus-dijet processes at the Large Hadron Collider. This instability can be cured by summing the leading-logarithmic contributions in to all orders in . As expected though, leading logarithmic accuracy is insufficient to guarantee a suitable description in regions of phase space away from the high energy limit. We present (i) the first calculation of all partonic channels contributing at next-to-leading logarithmic order in -boson production in association with at least two jets, and (ii) bin-by-bin matching to next-to-leading fixed-order accuracy. This new perturbative input is implemented in \emph{High Energy Jets}, and systematically improves the description of available experimental data in regions of phase space which are formally subleading with respect to .

Comments: 54 pages, 23 figures. Journal version

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