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Probing top-quark couplings indirectly at Higgs factories

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arxiv 1809.03520 v2 pith:U23PGXEA submitted 2018-09-10 hep-ph hep-ex

classification hep-phhep-ex
keywords top-quarkcouplingshiggsproductionthresholdbelowcolliderscoupling
verification ladder T0 review T1 audit T2 compute T3 formal

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abstract

We perform a global effective-field-theory analysis to assess the combined precision on Higgs couplings, triple gauge-boson couplings, and top-quark couplings, at future circular $e^+e^-$ colliders, with a focus on runs below the $t\bar t$ production threshold. Deviations in the top-quark sector entering as one-loop corrections are consistently taken into account in Higgs and diboson processes. We find that future lepton colliders running at center-of-mass energies below the $t\bar t$ production threshold can still provide useful information on top-quark couplings, by measuring virtual top-quark effects. With rate and differential measurements, the indirect individual sensitivity achievable is better than at the high-luminosity LHC. However, strong correlations between the extracted top-quark and Higgs couplings are also present and lead to much weaker global constraints on top-quark couplings. This implies that a direct probe of top-quark couplings above the $t\bar t$ production threshold is helpful also for the determination of Higgs and triple-gauge-boson couplings. In addition, we find that below the $e^+e^-\to t\bar th$ production threshold, the top-quark Yukawa coupling can be determined by its loop corrections to all Higgs production and decay channels. Degeneracy with the $ggh$ coupling can be resolved, and even a global limit is competitive with the prospects of a linear collider above the threshold. This provides an additional means of determining the top-quark Yukawa coupling indirectly at lepton colliders.

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Cited by 2 Pith papers

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  1. Electroweak and QCD Corrections to $Z$ and $W$ pole observables in the SMEFT

    hep-ph 2019-09 conditional novelty 7.0 of 10

    The complete NLO electroweak and QCD corrections to Z and W pole observables in the SMEFT shift fitted Wilson coefficient bounds by 5 to 10 percent and introduce 22 new operator dependencies.

  2. Constraining the top quark effective field theory using the top quark pair production in association with a jet at future lepton colliders

    hep-ph 2019-09 conditional novelty 4.0 of 10

    Simulated e+e- -> ttbar + jet events at 500 GeV and 3 TeV show future lepton colliders could limit top-quark SMEFT Wilson coefficients down to 10^-3 to 10^-4 at 95% CL.

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