Electroweak phase transition and Higgs boson couplings in the model based on supersymmetric strong dynamics
arXiv:1211.5883 · doi:10.1007/JHEP05(2013)066
Abstract
We discuss a strongly-coupled extended Higgs sector with the 126 GeV Higgs boson, which is a low-energy effective theory of the supersymmetric SU(2) gauge thoery that causes confinement. In this effective theory, we study the parameter region where electroweak phase transition is of strongly first order, as required for successful electroweak baryogenesis. In such a parameter region, the model has a Landau pole at the order of 10 TeV, which corresponds to the confinement scale of the SU(2) gauge theory. We find that the large coupling constant which blows up at the Landau pole results in large non-decoupling loop effects on low-energy observables, such as the Higgs-photon-photon vertex and the triple Higgs boson vertex. As phenomenological consequences of electroweak baryogenesis in our model, the Higgs-to-diphoton branching ratio is about 20% smaller while the triple Higgs boson coupling is more than about 20% larger than the standard model predictions. Such deviations may be detectable in future collider experiments.
References in corpus (8)
- Neutrino mass, Dark Matter and Baryon Asymmetry via TeV-Scale Physics without Fine-Tuning
- Cold Dark Matter, Radiative Neutrino Mass, mu to e gamma, and Neutrinoless Double Beta Decay
- The Baryogenesis Window in the MSSM
- Anomaly Induced Dark Matter Decay and PAMELA/ATIC Experiments
- Yukawa Interactions and Supersymmetric Electroweak Baryogenesis
- Dark matter in the supersymmetric radiative seesaw model with an anomalous U(1) symmetry
- Supersymmetric U(1) Gauge Realization of the Dark Scalar Doublet Model of Radiative Neutrino Mass
- Non-decoupling effects in supersymmetric Higgs sectors
Cited by in corpus (20)
- Improved sphaleron decoupling condition and the Higgs coupling constants in the real singlet-extended SM
- Gravitational waves from first order electroweak phase transition in models with the gauge symmetry
- Impact of top-Higgs couplings on di-Higgs production at future colliders
- Electroweak phase transition in the economical 3-3-1 model
- Electroweak phase transition in the reduced minimal 3-3-1 model
- Probing Electroweak Baryogenesis induced by extra bottom Yukawa coupling via EDMs and collider signatures
- Radiative neutrino mass, dark matter and electroweak baryogenesis from the supersymmetric gauge theory with confinement
- Sphaleron in the first-order electroweak phase transition with the dimension-six Higgs operator
- Higgs Pair Production at the LHC and ILC from general potential
- Discerning Singlet and Triplet scalars at the electroweak phase transition and Gravitational Wave
- Baryogenesis in the Zee-Babu model with arbitrary gauge
- Neutrino masses from SUSY breaking in radiative seesaw models
- A UV complete model for radiative seesaw and electroweak baryogenesis based on the SUSY gauge theory
- Baryogenesis and gravitational waves in the Zee-Babu Model
- Multi-period structure of electro-weak phase transition in the 3-3-1-1 model
- Dual electroweak phase transition in the two-Higgs-doublet model with the discrete symmetry
- Scattering Entanglement Entropy and Its Implications for Electroweak Phase Transitions
- Electroweak phase transition via Dilaton in Two-Time Physics
- Electro-weak Phase Transition With Three Phases in The Model
- Sphaleron and gravitational wave with the Higgs-Dilaton potential in the Standard Model Two-Time Physics