Constraint on the Higgs-Dilaton potential via Warm inflation in Two-Time Physics
arXiv:2107.01683 · doi:10.1155/2022/5313952
Abstract
Within the symmetry, the Two-time model (2T model) has six dimensions with two dimensions of time and the dilaton field that can be identified as inflaton in a warm inflation scenario with potential of the form . From that consideration, we derive the range of parameters for the Higgs-Dilaton potential, the coupling constant between Higgs and Dialton () is larger than and the mass of Dilaton is smaller than GeV. Therefore, the 2T-model indirectly suggests that extra-dimension can also be a source of inflation.
15 pages and 2 figures
References in corpus (12)
- The Standard Model Higgs boson as the inflaton
- Search for high-mass diphoton resonances in proton-proton collisions at 13 TeV and combination with 8 TeV search
- The Standard Model of Particles and Forces in the Framework of 2T-physics
- Observational implications of mattergenesis during inflation
- Gravity in 2T-Physics
- Dissipation coefficients for supersymmetric inflatonary models
- The Semi-Hooperon: Gamma-ray and anti-proton excesses in the Galactic Center
- Geometry and Symmetry Structures in 2T Gravity
- inflation is not excluded
- Interacting Two-Time Physics Field Theory With a BRST Gauge Invariant Action
- Constraints on Interacting Scalars in 2T Field Theory and No Scale Models in 1T Field Theory
- Quasiattractor dynamics of lambda-phi^4-inflation