mixing within minimal flavor-violating two-Higgs-doublet models
arXiv:1505.03650 · doi:10.1140/epjc/s10052-015-3813-y
Abstract
In the "Higgs basis" for a generic 2HDM, only one scalar doublet gets a nonzero vacuum expectation value and, under the criterion of minimal flavor violation, the other one is fixed to be either color-singlet or color-octet, which are named as the type-III and type-C models, respectively. In this paper, the charged-Higgs effects of these two models on mixing are studied. Firstly, we perform a complete one-loop computation of the electro-weak corrections to the amplitudes of mixing. Together with the up-to-date experimental measurements, a detailed phenomenological analysis is then performed in the cases of both real and complex Yukawa couplings of charged scalars to quarks. The spaces of model parameters allowed by the current experimental data on mixing are obtained and the differences between type-III and type-C models are investigated, which is helpful to distinguish between these two models.
19 pages, 3 figures, 2 tables; More references and discussions added, final version published in the journal
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- Starobinsky Model in Rainbow Gravity
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- Dark Energy Star in Gravity's Rainbow
- Updated global fit of the aligned two-Higgs-doublet model with heavy scalars
- Searches for anomalous couplings from the trilepton signal of associated production at the 14 TeV LHC
- LHC bounds on coloured scalars
- Light scalars within the -conserving Aligned-two-Higgs-doublet model
- Anomaly-free axion dark matter in three Higgs doublet model and its phenomenological implications
- mixing in the minimal flavor-violating two-Higgs-doublet models
- Rare top-quark decays in the aligned two-Higgs-doublet model