The right top coupling in the aligned two-Higgs-doublet model
arXiv:1611.07756 · doi:10.1007/JHEP03(2017)128
Abstract
We compute the right top quark coupling in the aligned two-Higgs-doublet model. In the Standard Model the real part of this coupling is dominated by QCD-gluon-exchange diagram, but the imaginary part, instead, is purely electroweak at one loop. Within this model we show that values for the imaginary part of the coupling up to one order of magnitude larger than the electroweak prediction can be obtained. For the real part of the electroweak contribution we find that it can be up to three orders of magnitude larger than the standard model one. We also present detailed results of the one loop analytical computation.
References in corpus (10)
- Probing anomalous Wtb couplings in top pair decays
- Measurement of the W boson polarization in top quark decays with the ATLAS detector
- Lepton distribution as a probe of new physics in production and decay of the t quark and its polarization
- ATLAS sensitivity to Wtb anomalous couplings in top quark decays
- Top Quark Physics at the LHC: A Review of the First Two Years
- The Top Quark Decay Vertex in Standard Model Extensions
- Search for anomalous $\boldmath{Wtb}$ couplings in single top quark production
- Studying the vertex structure using recent LHC results
- New physics in t-> b W decay at next-to-leading order in QCD
- Anomalous Couplings in the Two Higgs Doublet Model