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Measurement of inclusive and differential cross sections of single top quark production in association with a W boson in proton-proton collisions at sqrt{s} = 13.6 TeV

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arxiv 2409.06444 v2 pith:MXALWIBP submitted 2024-09-10 hep-ex

Measurement of inclusive and differential cross sections of single top quark production in association with a W boson in proton-proton collisions at sqrt{s} = 13.6 TeV

classification hep-ex
keywords differentialcrossinclusivemeasurementproductionassociationbosoncollisions
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The first measurement of the inclusive and normalised differential cross sections of single top quark production in association with a W boson in proton-proton collisions at a centre-of-mass energy of 13.6 TeV is presented. The data were recorded with the CMS detector at the LHC in 2022, and correspond to an integrated luminosity of 34.7 fb$^{-1}$. The analysed events contain one muon and one electron in the final state. For the inclusive measurement, multivariate discriminants exploiting the kinematic properties of the events are used to separate the signal from the dominant top quark-antiquark production background. A cross section of 82.3 $\pm$ 2.1 (stat) ${}^{+9.9}_{-9.7}$ (syst) $\pm$ 3.3 (lumi) pb is obtained, consistent with the predictions of the standard model. A fiducial region is defined according to the detector acceptance to perform the differential measurements. The resulting differential distributions are unfolded to particle level and show good agreement with the predictions at next-to-leading order in perturbative quantum chromodynamics.

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Cited by 2 Pith papers

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  1. Approximate N$^2$LO and N$^3$LO QCD Predictions for $tW$ Production

    hep-ph 2025-12 conditional novelty 6.0

    Higher-order QCD corrections to top-plus-W production raise the predicted rate by over 10% and give |Vtb|=0.99±0.03.

  2. Constraining dimension-6 SMEFT with higher-order predictions for $p p \to t W$

    hep-ph 2026-01 unverdicted novelty 4.0

    Higher-order QCD predictions for pp to tW enable three-parameter SMEFT fits that constrain effective new-physics scales to 0.5–2 TeV using LHC Run II and III data.