(Small) Resonant non-Gaussianities: Signatures of a Discrete Shift Symmetry in the Effective Field Theory of Inflation
arXiv:1111.3373 · doi:10.1088/1475-7516/2012/12/036
Abstract
We apply the Effective Field Theory of Inflation to study the case where the continuous shift symmetry of the Goldstone boson πis softly broken to a discrete subgroup. This case includes and generalizes recently proposed String Theory inspired models of Inflation based on Axion Monodromy. The models we study have the property that the 2-point function oscillates as a function of the wavenumber, leading to oscillations in the CMB power spectrum. The non-linear realization of time diffeomorphisms induces some self-interactions for the Goldstone boson that lead to a peculiar non-Gaussianity whose shape oscillates as a function of the wavenumber. We find that in the regime of validity of the effective theory, the oscillatory signal contained in the n-point correlation functions, with n>2, is smaller than the one contained in the 2-point function, implying that the signature of oscillations, if ever detected, will be easier to find first in the 2-point function, and only then in the higher order correlation functions. Still the signal contained in higher-order correlation functions, that we study here in generality, could be detected at a subleading level, providing a very compelling consistency check for an approximate discrete shift symmetry being realized during inflation.
v2 minor revisions; 39 pages, 5 figures
References in corpus (13)
- The Effective Field Theory of Inflation
- Observational Signatures and Non-Gaussianities of General Single Field Inflation
- Monodromy in the CMB: Gravity Waves and String Inflation
- Starting the Universe: Stable Violation of the Null Energy Condition and Non-standard Cosmologies
- Signatures of Supersymmetry from the Early Universe
- Generation and Characterization of Large Non-Gaussianities in Single Field Inflation
- On the consistency relation of the 3-point function in single field inflation
- Dissipative effects in the Effective Field Theory of Inflation
- Folded Resonant Non-Gaussianity in General Single Field Inflation
- Large non-Gaussianities in the Effective Field Theory Approach to Single-Field Inflation: the Trispectrum
- A Naturally Large Four-Point Function in Single Field Inflation
- Resonant Trispectrum and a Dozen More Primordial N-point functions
- Supergravity for Effective Theories
Cited by in corpus (69)
- Planck 2018 results. X. Constraints on inflation
- Planck 2015 results. XVII. Constraints on primordial non-Gaussianity
- Features and New Physical Scales in Primordial Observables: Theory and Observation
- Inflation Physics from the Cosmic Microwave Background and Large Scale Structure
- The Cosmological Optical Theorem
- Symmetries and Loops in Inflation
- Oscillations in the stochastic gravitational wave background from sharp features and particle production during inflation
- Productive Interactions: heavy particles and non-Gaussianity
- Building a Boostless Bootstrap for the Bispectrum
- The Science of the Einstein Telescope
- Correlating features in the primordial spectra
- Quantum loop effects on the power spectrum and constraints on primordial black holes
- On Squeezed Limits in Single-Field Inflation - Part I
- Galileon inflation evades the no-go for PBH formation in the single-field framework
- Inflation with moderately sharp features in the speed of sound: GSR and in-in formalism for power spectrum and bispectrum
- Bell violation in the Sky
- Observational Constraints on Gauge Field Production in Axion Inflation
- Drifting Oscillations in Axion Monodromy
- Effective field theory of weakly coupled inflationary models
- The Effective Field Theory of Inflation Models with Sharp Features
- Planck Constraints on Monodromy Inflation
- Constraining Monodromy Inflation
- B-modes and the Nature of Inflation
- Bootstrapping Large Graviton non-Gaussianities
- Gravitational Waves and the Scale of Inflation
- Searching for Oscillations in the Primordial Power Spectrum: Perturbative Approach (Paper I)
- Bispectrum in Single-Field Inflation Beyond Slow-Roll
- Inflationary Butterfly Effect: Non-perturbative Dynamics From Small-Scale Features
- The Effective Theory of Shift-Symmetric Cosmologies
- Oscillatory features in the curvature power spectrum after a sudden turn of the inflationary trajectory
- Imprints of Oscillatory Bispectra on Galaxy Clustering
- Joint resonant CMB power spectrum and bispectrum estimation
- Dynamical Constraints on RG Flows and Cosmology
- The Open Effective Field Theory of Inflation
- CMB from EFT
- Constraints on Primordial Magnetic Fields from Inflation
- Bounds on non-adiabatic evolution in single-field inflation
- Multiple Soft Limits of Cosmological Correlation Functions
- Disorder in the Early Universe
- An optimal estimator for resonance bispectra in the CMB
- Higher N-point function data analysis techniques for heavy particle production and WMAP results
- A Cosmological Bootstrap for Resonant Non-Gaussianity
- Localized Features in Non-Gaussianity from Heavy Physics
- Consistency relations for sharp features in the primordial spectra
- Large fluctuations and Primordial Black Holes
- The Cosmological OTOC: Formulating new cosmological micro-canonical correlation functions for random chaotic fluctuations in Out-of-Equilibrium Quantum Statistical Field Theory
- Searching for Oscillations in the Primordial Power Spectrum with CMB and LSS Data
- Toward an Effective Field Theory Approach to Reheating
- Nonlinear Excitations in Inflationary Power Spectra
- New Shapes of Primordial Non-Gaussianity from Quasi-Single Field Inflation with Multiple Isocurvatons
- Perturbative Unitarity of Inflationary Models with Features
- Boost Breaking in the EFT of Inflation
- Primordial Spikes from Wrapped Brane Inflation
- Combined features in the primordial spectra induced by a sudden turn in two-field DBI inflation
- Optimal CMB estimators for bispectra from excited states
- Consistency relations for sharp inflationary non-Gaussian features
- Ultra-Slow-Roll Inflation on the Lattice II: Nonperturbative Curvature Perturbation
- A Universal Bound on Excitations of Heavy Fields during Inflation
- Resonant non-Gaussianity with equilateral properties
- Resonant Reconciliation of Convex Models and the Planck
- The Trispectrum in the Effective Theory of Inflation with Galilean symmetry
- New natural shapes of non-Gaussianity from high-derivative interactions and their optimal limits from WMAP 9-year data
- Enhanced tensor non-Gaussianities in presence of a source
- Power spectrum oscillations from Planck-suppressed operators in effective field theory motivated monodromy inflation
- Observable Quantum Loop Effects in the Sky
- Log-periodic gravitational-wave background beyond Einstein gravity
- The UV Sensitivity of Axion Monodromy Inflation
- Hidden regimes during preheating
- On the space of non-Gaussian fields with single-clock bispectra