Observable Signatures of Inflaton Decays
arXiv:1012.1372 · doi:10.1088/1475-7516/2011/02/024
Abstract
We numerically compute features in the power-spectrum that originate from the decay of fields during inflation. Using a simple, phenomenological, multi-field setup, we increase the number of fields from a few to thousands. Whenever a field decays, its associated potential energy is transferred into radiation, causing a jump in the equation of state parameter and mode mixing at the perturbed level. We observe discrete steps in the power-spectrum if the number of fields is low, in agreement with analytic arguments in the literature. These features become increasingly smeared out once many fields decay within a given Hubble time. In this regime we confirm the validity of the analytic approach to staggered inflation, which is based on a coarse-graining procedure. Our numerical approach bridges the aforementioned analytic treatments, and can be used in more complicated scenarios.
26 pages, 5 figures
References in corpus (15)
- Features of heavy physics in the CMB power spectrum
- String Cosmology: A Review
- Curvature and isocurvature perturbations from two-field inflation in a slow-roll expansion
- Trapped Inflation
- Cosmological Fluctuations from Infra-Red Cascading During Inflation
- Energy Transfer in Multi Field Inflation and Cosmological Perturbations
- On Features and Nongaussianity from Inflationary Particle Production
- Constraints on the primordial curvature perturbation from primordial black holes
- Preheating after N-flation
- On the Suppression of Parametric Resonance and the Viability of Tachyonic Preheating after Multi-Field Inflation
- Multi-Field Inflation on the Landscape
- Fields Annihilation and Particles Creation in DBI inflation
- Dynamics of D3-D7 Brane Inflation in Throats
- A Terminal Velocity on the Landscape: Particle Production near Extra Species Loci in Higher Dimensions
- Preheating after Multi-field Inflation
Cited by in corpus (15)
- Features and New Physical Scales in Primordial Observables: Theory and Observation
- Correlating features in the primordial spectra
- The Effective Field Theory of Inflation Models with Sharp Features
- Joint resonant CMB power spectrum and bispectrum estimation
- An optimal estimator for resonance bispectra in the CMB
- Fluid Inflation
- Effect of transitions in the Planck mass during inflation on primordial power spectra
- A Multiple Step-like Spectrum of Primordial Perturbation
- Multiple Inflationary Stages with Varying Equation of State
- Local Features with Large Spiky non-Gaussianities during Inflation
- Local random potentials of high differentiability to model the Landscape
- A Universal Bound on Excitations of Heavy Fields during Inflation
- Particle Production during Inflation in Light of PLANCK
- Jump in fluid properties of inflationary universe to reconcile scalar and tensor spectra
- Effects of Variable Newton Constant During Inflation