Mixed constraints to inflationary models
arXiv:1811.09331
Abstract
We show how to constrain inflationary models and reheating by using mixed constraints. In particular we study the physics of the reheating phase after inflation from observational constraints to the inflationary stage. We show that it is possible to determine , the equation of state during reheating, by using the reported values of the spectral index and the {\it full} number of -folds , which includes the accelerated expansion and the reheating phase. We show that the reheating number of -folds is quite sensitive to this equation of state. Requiring and a sensible value for the thermalization scale , demands in general a reheating phase with . We exemplify the constraints with two particular examples: We show how the Starobinsky model allows only large values of if the reheating phase is dominated by dust (), and if Primordial Black Hole production is subdominant. For the case of Supergravity inflation, the extra parameter of the potential provides the necessary freedom to afford lower-scale thermalization in a dust-like reheating phase and yet our method serves to determine the rest of the observable parameters.
13 pages, 11 figures
References in corpus (8)
- Nonperturbative Dynamics Of Reheating After Inflation: A Review
- BICEP2 / Keck Array x: Constraints on Primordial Gravitational Waves using Planck, WMAP, and New BICEP2/Keck Observations through the 2015 Season
- Reheating constraints to inflationary models
- Reheating predictions in single field inflation
- Gravitational Waves from Oscillons with Cuspy Potentials
- Gravitational waves from asymmetric oscillon dynamics?
- Primordial Black Hole Formation During Slow Reheating After Inflation
- Inflation with Planck: a survey of some "exotic" inflationary models