Curvature Perturbations From Stochastic Particle Production During Inflation
arXiv:2001.09158 · doi:10.1088/1475-7516/2020/06/039
Abstract
We calculate the curvature power spectrum sourced by spectator fields that are excited repeatedly and non-adiabatically during inflation. In the absence of detailed information of the nature of spectator field interactions, we consider an ensemble of models with intervals between the repeated interactions and interaction strengths drawn from simple probabilistic distributions. We show that the curvature power spectra of each member of the ensemble shows rich structure with many features, and there is a large variability between different realizations of the same ensemble. Such features can be probed by the cosmic microwave background (CMB) and large scale structure observations. They can also have implications for primordial black hole formation and CMB spectral distortions. The geometric random walk behavior of the spectator field allows us to calculate the ensemble-averaged power spectrum of curvature perturbations semi-analytically. For sufficiently large stochastic sourcing, the ensemble-averaged power spectrum shows a scale dependence arising from the time spent by modes outside the horizon during the period of particle production, in spite of there being no preferred scale in the underlying model. We find that the magnitude of the ensemble-averaged power spectrum overestimates the typical power spectra in the ensemble because the ensemble distribution of the power spectra is highly non-Gaussian with fat tails.
68 pages, 23 figures
References in corpus (17)
- The Effective Field Theory of Inflation
- Effective Field Theory for Inflation
- Starting the Universe: Stable Violation of the Null Energy Condition and Non-standard Cosmologies
- Nonperturbative Dynamics Of Reheating After Inflation: A Review
- Non-Gaussianity from Preheating
- Trapped Inflation
- Non-Gaussian Spikes from Chaotic Billiards in Inflation Preheating
- Blue Tensor Spectrum from Particle Production during Inflation
- Lattice calculation of non-Gaussianity from preheating
- Gravitational Waves and the Scale of Inflation
- Non-Gaussianity from massless preheating
- MultiModeCode: An efficient numerical solver for multifield inflation
- Multi-field Inflation with a Random Potential
- Disorder in the Early Universe
- Multifield Stochastic Particle Production: Beyond a Maximum Entropy Ansatz
- Stochastic Particle Production in a de Sitter Background
- Cherenkov in the Sky: Measuring the Sound Speed of Primordial Scalar Fluctuations
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