Time-sliced perturbation theory with primordial non-Gaussianity and effects of large bulk flows on inflationary oscillating features
arXiv:1906.08697 · doi:10.1088/1475-7516/2019/09/037
Abstract
We extend the formalism of time-sliced perturbation theory (TSPT) for cosmological large-scale structure to include non-Gaussian initial conditions. We show that in such a case the TSPT interaction vertices acquire new contributions whose time-dependence factorizes for the Einstein-de Sitter cosmology. The new formulation is free from spurious infrared (IR) enhancements and reveals a clear IR structure of non-Gaussian vertices. We use the new technique to study the evolution of oscillating features in primordial statistics and show that they are damped due to non-linear effects of large bulk flows. We derive the damping factors for the oscillating primordial power spectrum and bispectrum by means of a systematic IR resummation of relevant Feynman diagrams.
39 pages, 7 figures, minor revision, published version
References in corpus (13)
- Monodromy in the CMB: Gravity Waves and String Inflation
- The Effective Field Theory of Cosmological Large Scale Structures
- Improving Cosmological Distance Measurements by Reconstruction of the Baryon Acoustic Peak
- Cosmological Collider Physics
- Non-Gaussianity as a Particle Detector
- Flowing with Time: a New Approach to Nonlinear Cosmological Perturbations
- Planck 2018 results. IX. Constraints on primordial non-Gaussianity
- Reconstructing Baryon Oscillations: A Lagrangian Theory Perspective
- Signature of Primordial Non-Gaussianity on Matter Power Spectrum
- Scratches from the Past: Inflationary Archaeology through Features in the Power Spectrum of Primordial Fluctuations
- Precise measurements of inflationary features with 21 cm observations
- How Gaussian can our Universe be?
- Soft-Pion Theorems for Large Scale Structure
Cited by in corpus (32)
- A new analysis of galaxy 2-point functions in the BOSS survey, including full-shape information and post-reconstruction BAO
- Consistent Modeling of Velocity Statistics and Redshift-Space Distortions in One-Loop Perturbation Theory
- Constraints on Multi-Field Inflation from the BOSS Galaxy Survey
- Constraints on Single-Field Inflation from the BOSS Galaxy Survey
- Precision analysis of the redshift-space galaxy bispectrum
- Cosmology with the Galaxy Bispectrum Multipoles: Optimal Estimation and Application to BOSS Data
- Optimizing large-scale structure data analysis with the theoretical error likelihood
- Primordial Features from Linear to Nonlinear Scales
- Cosmological constraints without fingers of God
- Baryon Acoustic Oscillation Theory and Modelling Systematics for the DESI 2024 results
- Cosmological constraints from the power spectrum of eBOSS quasars
- Observational constraints on early dark energy
- Non-linear damping of superimposed primordial oscillations on the matter power spectrum in galaxy surveys
- Primordial Standard Clock Models and CMB Residual Anomalies
- Planck residuals anomaly as a fingerprint of alternative scenarios to inflation
- A Parameter-Masked Mock Data Challenge for Beyond-Two-Point Galaxy Clustering Statistics
- Euclid: The search for primordial features
- Modeling features in the redshift-space halo power spectrum with perturbation theory
- New constraints on primordial features from the galaxy two-point correlation function
- Primordial feature constraints from BOSS+eBOSS
- The ACCEL2 Project: Precision Measurements of EFT Parameters and BAO Peak Shifts for the Lyman- Forest
- Non-Gaussian CMB and LSS statistics beyond polyspectra
- Nonlinear reconstruction of features in the primordial power spectrum from large-scale structure
- On the primordial origin of the smoothing excess in the temperature power spectrum in light of LSS data
- The Renormalization Group for Large-Scale Structure: Primordial non-Gaussianities
- Bounds on Velocity-Dependent Dark Matter-Baryon Scattering from Large-Scale Structure
- Knot reconstruction of the scalar primordial power spectrum with Planck, ACT, and SPT CMB data
- Refining the nonlinear modelling of primordial oscillatory features
- Calculating the EFT likelihood via saddle-point expansion
- Modeling the Cosmological Lyman- Forest at the Field Level
- Precision calculation of the EFT likelihood with primordial non-Gaussianities
- Cosmology with the Redshift-Space Galaxy Bispectrum Monopole at One-Loop Order