An introduction to inflation and cosmological perturbation theory
arXiv:0904.4584
Abstract
This article provides an introductory review of inflation and cosmological perturbation theory. I begin by motivating the need for an epoch of inflation during the early stages of the radiation dominated era, and describe how inflation is typically achieved using scalar fields. Then, after an overview of linear cosmological perturbation theory, I derive the equations governing the perturbations, and outline the generation of the scalar and the tensor perturbations during inflation. I illustrate that slow roll inflation naturally leads to an almost scale invariant spectrum of perturbations, a prediction that seems to be in remarkable agreement with the measurements of the anisotropies of the cosmic microwave background. I describe the constraints from the recent observations on some of the more popular models of inflation. I conclude with a brief discussion on the status and certain prospects of the inflationary paradigm.
Revtex, 19 pages, 3 figures, Invited review for Current Science
Cited by in corpus (21)
- Primordial features due to a step in the inflaton potential
- The Observational Status of Cosmic Inflation after Planck
- Reconstruction of broad features in the primordial spectrum and inflaton potential from Planck
- Loop contributions to the scalar power spectrum due to quartic order action in ultra slow roll inflation
- Duality and scale invariant magnetic fields from bouncing universes
- Enhanced power on small scales and evolution of quantum state of perturbations in single and two field inflationary models
- Consistency relation in power law G-inflation
- Sharp inflaton potentials and bi-spectra: Effects of smoothening the discontinuity
- Viable scalar spectral tilt and tensor-to-scalar ratio in near-matter bounces
- Lattice simulations of axion-U(1) inflation: gravitational waves, magnetic fields, and scalar statistics
- Constraining the history of reheating with the NANOGrav 15-year data
- Ultraviolet Unitarity Violations in Non-minimally Coupled Scalar-Starobinsky Inflation
- Constraining ultra slow roll inflation using cosmological datasets
- A gauge invariant prescription to avoid -crossing instability in Galileon bounce
- Estimation of imprints of the bounce in loop quantum cosmology on the bispectra of cosmic microwave background
- Suppression of scalar power on large scales and associated bispectra
- Numerical evaluation of the tensor bispectrum in two field inflation
- Unifying inflationary and reheating solution
- Cosmological Geometric Phase From Pure Quantum States: A study without/with having Bell's inequality violation
- Inflationary cross-correlations of a non-minimal spectator and their soft limits
- Theoretical and observational aspects of cosmological inflation