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Electroweak corrections to W + jet hadroproduction including leptonic W-boson decays

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arxiv 0906.1656 v2 pith:MVW36LJ7 submitted 2009-06-09 hep-ph

classification hep-ph
keywords w-bosoncorrectionsdecayselectroweakhadroproductionincludingleptonicnext-to-leading-order
verification ladder T0 review T1 audit T2 compute T3 formal

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We present the first calculation of the next-to-leading-order electroweak corrections to W-boson + jet hadroproduction including leptonic W-boson decays. The W-boson resonance is treated consistently using the complex-mass scheme, and all off-shell effects are taken into account. The corresponding next-to-leading-order QCD corrections have also been recalculated. All the results are implemented in a flexible Monte Carlo code. Numerical results for cross sections and distributions of this Standard Model benchmark process are presented for the Tevatron and the LHC.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Complete NLO corrections to off-shell $\boldsymbol{t\bar{t}}$ production in the $\boldsymbol{\ell+j}$ decay channel

    hep-ph 2025-12 unverdicted novelty 7.0 of 10

    First complete NLO QCD+EW predictions for off-shell ttbar production in the lepton+jets channel, including all subleading Born and NLO terms and an IR-safe photon-jet treatment, at 13.6 TeV.

  2. Search for heavy resonances decaying into two Higgs bosons in the $\mathrm{b\bar{b}}\tau^+\tau^-$ final state in proton-proton collisions at $\sqrt{s}$ = 13 TeV

    hep-ex 2026-01 accept novelty 6.0 of 10

    No excess is observed in resonant Higgs pair production in the bb tau tau final state; 95% CL limits are set on spin-0 and spin-2 resonance cross sections from 1 to 4.5 TeV.

  3. Search for dark matter produced in association with one or two top quarks in proton-proton collisions at $\sqrt{s}$ = 13 TeV

    hep-ex 2025-05 accept novelty 6.0 of 10

    A search for dark matter produced with one or two top quarks finds no significant signal and excludes scalar and pseudoscalar mediator masses below 310 and 320 GeV at 95% confidence.

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