Large-scale curvature perturbations with spatial and time variations of the inflaton decay rate
arXiv:astro-ph/0306416 · doi:10.1088/1475-7516/2003/08/007
Abstract
We present a gauge-invariant formalism to study the evolution of the curvature and entropy perturbations in the case in which spatial and time variations of the inflaton decay rate into ordinary matter are present. During the reheating stage after inflation curvature perturbations can vary with time on super-horizon scales sourced by a a gauge-invariant inflaton decay rate perturbation. We show that the latter is a function not only of the spatial variations of the decay rate generated during inflation, as envisaged in a recently proposed scenario, but also of the time variation of the inflaton decay rate during reheating. If only the second source is present, the final curvature perturbation at the end of the reheating stage is proportional to the curvature perturbation at the beginning of reheating with a coefficient of proportionality which can be either smaller or larger than unity depending upon the underlying physics governing the time variation of the inflaton decay rate. As a consequence, we show that the standard consistency relation between the amplitude of curvature perturbations, the amplitude of tensor perturbations and the tensor spectral index of one-single field models of inflation is violated and there is the possibility that the tensor-to-curvature amplitude ratio is larger than in the standard case.
LaTeX file, 21 pages. A few typos corrected
Cited by in corpus (33)
- Non-Gaussianity from Inflation: Theory and Observations
- Inflation Dynamics and Reheating
- Turbulent Thermalization
- On Non-Gaussianity in the Curvaton Scenario
- The anisotropic power spectrum and bispectrum in the f(phi) F^2 mechanism
- Quantum corrections to slow roll inflation and new scaling of superhorizon fluctuations
- Modulated fluctuations from hybrid inflation
- Large non-Gaussianities in the Effective Field Theory Approach to Single-Field Inflation: the Bispectrum
- Large non-Gaussianities in the Effective Field Theory Approach to Single-Field Inflation: the Trispectrum
- Evolution of Second-Order Cosmological Perturbations and Non-Gaussianity
- Particle decay during inflation: self-decay of inflaton quantum fluctuations during slow roll
- Particle decay in inflationary cosmology
- Cosmological perturbations from varying masses and couplings
- Curvature Perturbations from Broken Symmetries
- Curvatons in Supersymmetric Models
- Supergravity inspired Vector Curvaton
- Primordial non-Gaussianity: local curvature method and statistical significance of constraints on f_NL from WMAP data
- Modulated Perturbations from Instant Preheating after new Ekpyrosis
- Cosmological perturbations for an inflaton field coupled to radiation
- A Study of Structure Formation and Reheating in the D3/D7 Brane Inflation Model
- Fluctuating annihilation cross sections and the generation of density perturbations
- Tilt and Running of Cosmological Observables in Generalized Single-Field Inflation
- Inhomogeneous reheating scenario with low scale inflation and/or MSSM flat directions
- Reheating in tachyonic inflationary models: Effects on the large scale curvature perturbations
- The inflationary origin of the Cold Spot anomaly
- fNL - gNL mixing in the matter density field at higher orders
- Freeze-in Dark Matter Perturbations are Adiabatic
- Liberating the Inflaton from Primordial Spectrum Constraints
- Generating cosmological perturbations with mass variations
- Thermal Effects and Sudden Decay Approximation in the Curvaton Scenario
- Suppression of the large scale curvature perturbation by interacting fluids
- Hidden in the background: a local approach to CMB anomalies
- Inhomogeneous Reheating Scenario with DBI fields