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arXiv:1304.2675·v2·High Energy Physics — Phenomenology

Minimal Flavour Violation and Anomalous Top Decays

Sven Faller🇩🇪 · Stefan Gadatsch🇳🇱 · Thomas Mannel🇩🇪

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Abstract

Top quark physics at the LHC may open a window to physics beyond the standard model and even lead us to an understanding of the phenomenon "flavour". However, current flavour data is a strong hint that no "new physics" with a generic flavour structure can be expected in the TeV scale. In turn, if there is "new physics" at the TeV scale, it must be "minimally flavour violating". This has become a widely accepted assumption for "new physics" models. In this paper we propose a model-independent scheme to test minimal flavour violation for the anomalous charged , , and flavour-changing , and couplings within an effective field theory framework, i.e., in a model-independent way. We perform a spurion analysis of our effective field theory approach and calculate the decay rates for the anomalous top-quark decays in terms of the effective couplings for different helicities by using a two-Higgs doublet model of type II, under the assumption that the top-quark is produced at a high-energy collision and decays as a quasi-free particle.

Comments: 12 pages, 6 figures

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