Higgs Inflation and General Initial Conditions
arXiv:1504.00482 · doi:10.1140/epjc/s10052-015-3525-3
Abstract
Higgs field of particle physics can play the role of the inflaton in the early universe, if it is non-minimally coupled to gravity. The Higgs inflation scenario predicts a small tensor to scalar ratio: . Although this value is consistent with the upper bound given by BICEP2/Keck Array and Planck data, but it is not at their maximum likelihood point: . Inflationary observables depend not only on the inflationary models, but also depend on the initial conditions of inflation. Changing initial state of inflation can improve the value of . In this work, we study the Higgs inflation model under general initial conditions and show that there is a subset of these general initial conditions which leads to enhancement of . Then we show that this region of parameter space is consistent with non-Gaussianity bound.
13 pages, 2 figures
References in corpus (8)
- The Standard Model Higgs boson as the inflaton
- BICEP2 I: Detection Of B-mode Polarization at Degree Angular Scales
- Higgs inflation: consistency and generalisations
- Enhanced Non-Gaussianity from Excited Initial States
- Superconformal Symmetry, NMSSM, and Inflation
- Non-Bunch-Davies Initial State Reconciles Chaotic Models with BICEP and Planck
- CMB quadrupole suppression: I. Initial conditions of inflationary perturbations
- Higgs-Dilaton cosmology: Universality vs. criticality
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- Primordial tensor non-Gaussianities from general single-field inflation with non-Bunch-Davies initial states
- Ultraviolet behaviour of Higgs inflation models
- Mimetic gravity: mimicking the dynamics of the primeval universe in the context of loop quantum cosmology
- On Higgs inflation in non-minimally coupled models of gravity
- Stochastic gravitational wave background anisotropies from inflation with non-Bunch-Davies states