Consistency relations for sharp features in the primordial spectra
arXiv:1507.08481 · doi:10.1088/1475-7516/2015/10/062
Abstract
We study the generation of sharp features in the primordial spectra within the framework of effective field theory of inflation, wherein curvature perturbations are the consequence of the dynamics of a single scalar degree of freedom. We identify two sources in the generation of features: rapid variations of the sound speed c_s (at which curvature fluctuations propagate) and rapid variations of the expansion rate H during inflation. With this in mind, we propose a non-trivial relation linking these two quantities that allows us to study the generation of sharp features in realistic scenarios where features are the result of the simultaneous occurrence of these two sources. This relation depends on a single parameter with a value determined by the particular model (and its numerical input) responsible for the rapidly varying background. As a consequence, we find a one-parameter consistency relation between the shape and size of features in the bispectrum and features in the power spectrum. To substantiate this result, we discuss several examples of models for which this one-parameter relation (between c_s and H) holds, including models in which features in the spectra are both sudden and resonant.
39 pages, 5 figures. v2: no changes in the contents, version submitted to JCAP. v3: minor changes, added section 2.5, updated references, accepted by JCAP. v4: corrected equations 2.25 and A.34
References in corpus (34)
- The Effective Field Theory of Inflation
- Observational Signatures and Non-Gaussianities of General Single Field Inflation
- Generation and Characterization of Large Non-Gaussianities in Single Field Inflation
- On the consistency relation of the 3-point function in single field inflation
- Features and New Physical Scales in Primordial Observables: Theory and Observation
- Inflation and WMAP three year data: Features have a Future!
- Mass hierarchies and non-decoupling in multi-scalar field dynamics
- Heavy fields, reduced speeds of sound and decoupling during inflation
- Strongly Coupled Perturbations in Two-Field Inflationary Models
- Effects of particle production during inflation
- Energy Transfer in Multi Field Inflation and Cosmological Perturbations
- Primordial power spectrum from Planck
- Models of the Primordial Standard Clock
- Effective field theory of weakly coupled inflationary models
- Combining power spectrum and bispectrum measurements to detect oscillatory features
- Polyspectra searches for sharp oscillatory features in cosmic microwave sky data
- On the scalar consistency relation away from slow roll
- Power Spectrum and Signatures for Cascade Inflation
- Untangling features in the primordial spectra
- Strong scale dependent bispectrum in the Starobinsky model of inflation
- Multi-field Inflation with a Random Potential
- Irruption of massive particle species during inflation
- An optimal estimator for resonance bispectra in the CMB
- Searching for features of a string-inspired inflationary model with cosmological observations
- Higher derivatives and power spectrum in effective single field inflation
- Effect of transitions in the Planck mass during inflation on primordial power spectra
- Primordial Power Spectrum features and constraints
- On degenerate models of cosmic inflation
- Towards general patterns of features in multi-field inflation
- Combined features in the primordial spectra induced by a sudden turn in two-field DBI inflation
- Chain inflation and the imprint of fundamental physics in the CMBR
- A Universal Bound on Excitations of Heavy Fields during Inflation
- Primordial Non-Gaussianities of inflationary step-like models
- Primordial non-Gaussianities produced by features in the potential of single slow-roll inflationary models
Cited by in corpus (25)
- The Future of Primordial Features with Large-Scale Structure Surveys
- The Future of Primordial Features with 21 cm Tomography
- Joint resonant CMB power spectrum and bispectrum estimation
- Constraints on inflation with LSS surveys: features in the primordial power spectrum
- Numerically evaluating the bispectrum in curved field-space - with PyTransport 2.0
- Constraints on holographic multi-field inflation and models based on the Hamilton-Jacobi formalism
- Searching for features of a string-inspired inflationary model with cosmological observations
- Bayesian analysis of inflationary features in Planck and SDSS data
- Correlating CMB Spectral Distortions with Temperature: what do we learn on Inflation?
- Direct search for features in the primordial bispectrum
- Late time sky as a probe of steps and oscillations in primordial Universe
- Robust predictions for an oscillatory bispectrum in Planck 2015 data from transient reductions in the speed of sound of the inflaton
- Induced Gravitational Waves from Multi-Sound Speed Resonances during Cosmological Inflation
- Primordial power spectrum features in phenomenological descriptions of inflation
- Consistency relations for sharp inflationary non-Gaussian features
- Correlated primordial spectra in effective theory of inflation
- Quantum quenches during inflation
- Reconstructing the EFT of Inflation from Cosmological Data
- Shapes and features of the primordial bispectrum
- Scale invariance of the primordial tensor power spectrum
- Refining the nonlinear modelling of primordial oscillatory features
- Degeneracy in the spectrum and bispectrum among featured inflaton potentials
- Non-linear effects in early Universe cosmology
- Exploring the CMB Power Suppression in Canonical Inflation Models
- Cross-tests of CMB features in the primordial spectra