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Subleading Higgs effects at lepton colliders
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abstract
Subtle field-theoretical effects suggest the presence of additional Higgs contributions in standard model processes. This has been supported by electroweak lattice calculation, e.\ g.\ for vector boson scattering. These effects can be included in perturbation theory by a suitable augmentation. We use such augmented perturbation theory to determine the impact at next-to-leading order at lepton colliders, from LEP to future machines such as FCC, in collisions with fermion-antifermion final states. After providing the formal background, we outline the calculational procedure, showing that in the fully exclusive process $e^-e^+\to f\bar{f}$ deviations only occur in fixed order at electroweak NNLO, but become relevant at the TeV scale already in resummed tree-level calculations. We discuss further processes where deviations are expected already at fixed-order NLO.
Forward citations
Cited by 2 Pith papers
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The observable spectrum for GUT-like theories
Lattice simulations of an SU(3) gauge theory with a fundamental Higgs reveal new parity-degenerate and charged states that ordinary perturbation theory does not predict.
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The Equivalence Theorem at work: manifestly gauge-invariant Abelian Higgs model physics
The Abelian Higgs action is rewritten with gauge-invariant FMS operators as elementary fields, and one-loop renormalizability is demonstrated via the Equivalence Theorem.
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