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arXiv:1805.01353·v3·High Energy Physics — Phenomenology

Electroweak and QCD corrections to -boson production with one jet in a massive 5 Flavor Scheme

Diogenes Figueroa🇺🇸 · Steven Honeywell🇺🇸 · Seth Quackenbush🇺🇸 · Laura Reina🇺🇸 · Christian Reuschle🇺🇸 · Doreen Wackeroth🇺🇸

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Abstract

We compute the and contributions to the production cross section of a boson with one jet at the Large Hadron Collider (LHC), and study their phenomenological relevance for LHC physics. The accurate prediction of hadronic -jet production is needed to control a background that greatly affects both the measurement of Higgs-boson properties and searches of new physics at the LHC. At the same time it could enable the first precise measurement of the -quark parton distribution function. In this context -quark mass effects become relevant and need to be studied with care, both at the level of the hard process and at the level of the initial- and final-state parton evolution. It is the aim of this paper to explore some of these issues in the framework of a massive 5 Flavor Scheme and to assess the need for both the inclusion of electroweak corrections, in addition to QCD corrections, and -quark mass effects in the prediction of total and differential cross sections for hadronic -jet production.

Comments: 32 pages, 7 figures, 2 tables. V3: Version to appear in PRD

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