Power spectrum nulls due to non-standard inflationary evolution
arXiv:1011.4914 · doi:10.1103/PhysRevD.83.023526
Abstract
The simplest models of inflation based on slow roll produce nearly scale invariant primordial power spectra (PPS). But there are also numerous models that predict radically broken scale invariant PPS. In particular, markedly cuspy dips in the PPS correspond to nulls where the perturbation amplitude, hence PPS, goes through a zero at a specific wavenumber. Near this wavenumber, the true quantum nature of the generation mechanism of the primordial fluctuations may be revealed. Naively these features may appear to arise from fine tuned initial conditions. However, we show that this behavior arises under fairly generic set of conditions involving super-Hubble scale evolution of perturbation modes during inflation. We illustrate this with the well-studied examples of punctuated inflation and the Starobinsky-break model.
5 pages, 4 figures; Accepted for publication in PRD
References in corpus (10)
- Quantum Contributions to Cosmological Correlations II: Can These Corrections Become Large?
- Single-field inflation, anomalous enhancement of superhorizon fluctuations, and non-Gaussianity in primordial black hole formation
- New Constraints on Oscillations in the Primordial Spectrum of Inflationary Perturbations
- Lectures on inflation and cosmological perturbations
- Estimation of Primordial Spectrum with post-WMAP 3 year data
- Features in the Primordial Spectrum from WMAP: A Wavelet Analysis
- Features in the primordial power spectrum? A frequentist analysis
- On the evolution of tachyonic perturbations at super-Hubble scales
- Large curvature perturbations near horizon crossing in single-field inflation models
- Surprising phenomena in a rich new class of inflationary models
Cited by in corpus (9)
- Reconstruction of the primordial power spectrum of curvature perturbations using multiple data sets
- Quantum to Classical Transition of Inflationary Perturbations - Continuous Spontaneous Localization as a Possible Mechanism -
- Observational imprints of enhanced scalar power on small scales in ultra slow roll inflation and associated non-Gaussianities
- Loop contributions to the scalar power spectrum due to quartic order action in ultra slow roll inflation
- Joint Planck and WMAP Assessment of Low CMB Multipoles
- Observing nulling of primordial correlations via the 21 cm signal
- Primordial Power Spectrum features and constraints
- An analytical approximation of the evolution of the primordial curvature perturbation in the ultraslow-roll inflation
- Primordial power spectrum features and consequences