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The present and future of four top operators

Giovanni Banelli, Ennio Salvioni, Javi Serra, Tobias Theil, Andreas Weiler

2021Journal of High Energy Physics46 citationsDOIOpen Access PDF

Abstract

A bstract We study the phenomenology of a strongly-interacting top quark at future hadron and lepton colliders, showing that the characteristic four-top contact operators give rise to the most significant effects. We demonstrate the extraordinary potential of a 100 TeV proton-proton collider to directly test such non-standard interactions in four-top production, a process that we thoroughly analyze in the same-sign dilepton and trilepton channels, and explore in the fully hadronic channel. Furthermore, high-energy electron-positron colliders, such as CLIC or the ILC, are shown to exhibit an indirect yet remarkable sensitivity to four-top operators, since these constitute, via renormalization group evolution, the leading new-physics deformations in top-quark pair production. We investigate the impact of our results on the parameter space of composite Higgs models with a strongly-coupled (right-handed) top quark, finding that four-top probes provide the best sensitivity on the compositeness scale at the future energy frontier. In addition, we investigate mild yet persisting LHC excesses in multilepton plus jets final states, showing that they can be consistently described in the effective field theory of such a new-physics scenario.

Topics & Concepts

PhysicsParticle physicsLarge Hadron ColliderParameter spacePhenomenology (philosophy)Higgs bosonEffective field theoryRenormalization groupPhysics beyond the Standard ModelHadronRenormalizationQuarkLeptonStandard Model (mathematical formulation)Top quarkDrell–Yan processPair productionTheoretical physicsSensitivity (control systems)ColliderMissing energyScale (ratio)Electron–positron annihilationQuantum field theoryScalingInternational Linear ColliderField (mathematics)PartonVacuum stateSpace (punctuation)Nuclear physicsParticle physics theoretical and experimental studiesComputational Physics and Python ApplicationsInternational Science and Diplomacy
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