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arxiv: hep-ph/0409351 · v2 · submitted 2004-09-30 · ✦ hep-ph · hep-ex

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Probing new physics from top quark FCNC processes at linear colliders : a mini review

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classification ✦ hep-ph hep-ex
keywords modelfcncquarkmodelsphysicsprocessesassociatedcollision
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We briefly review the studies on the top quark FCNC processes at a next-generation linear collider. Such processes, including various FCNC top quark rare decays and top-charm associated productions, are extremely suppressed in the standard model (SM) but could be significantly enhanced in some extensions. We compared the predictions from different typical new physics models: the SM, the minimal supersymmetric model (MSSM), the general two-higgs-doublet model (2HDM) and the topcolor-assisted technicolor (TC2) model. Our conclusion is: (1) While all the new physics models can enhance the rates by several orders relative to the SM predictions, the TC2 model predicts much larger rates than other models; (2) The optimal channel for probing the top quark FCNC is the top-charm associated production in \gamma-\gamma collision, which occurs at a much higher rate than e^+ e^- or e^- \gamma collision and can reach the detectable level for a large part of the parameter space.

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  1. Sensitivity to top-quark FCNC interactions at future muon colliders

    hep-ph 2026-04 unverdicted novelty 4.0

    A 10 TeV muon collider with 10 ab^{-1} could reach O(10^{-3}) sensitivity on top-quark FCNC couplings, improving current ATLAS/CMS bounds by more than an order of magnitude.