Reconstruction of the primordial power spectrum of curvature perturbations using multiple data sets
arXiv:1308.2317 · doi:10.1088/1475-7516/2014/01/025
Abstract
Detailed knowledge of the primordial power spectrum of curvature perturbations is essential both in order to elucidate the physical mechanism (`inflation') which generated it, and for estimating the cosmological parameters from observations of the cosmic microwave background and large-scale structure. Hence it ought to be extracted from such data in a model-independent manner, however this is difficult because relevant cosmological observables are given by a convolution of the primordial perturbations with some smoothing kernel which depends on both the assumed world model and the matter content of the universe. Moreover the deconvolution problem is ill-conditioned so a regularisation scheme must be employed to control error propagation. We demonstrate that `Tikhonov regularisation' can robustly reconstruct the primordial spectrum from multiple cosmological data sets, a significant advantage being that both its uncertainty and resolution are then quantified. Using Monte Carlo simulations we investigate several regularisation parameter selection methods and find that generalised cross-validation and Mallow's method give optimal results. We apply our inversion procedure to data from the Wilkinson Microwave Anisotropy Probe, other ground-based small angular scale CMB experiments, and the Sloan Digital Sky Survey. The reconstructed spectrum (assuming the standard CDM cosmology) is \emph{not} scale-free but has an infrared cutoff at (due to the anomalously low CMB quadrupole) and several features with significance at 0.0013--0.0025, 0.0362--0.0402 and 0.051--0.056, reflecting the `WMAP glitches'. To test whether these are indeed real will require more accurate data, such as from the Planck satellite and new ground-based experiments.
67 pages, 28 figures, 3 tables; Resubmitted to JCAP; Layout changed to put method and results in body of paper, with supporting technical material in appendices; Clarifying comments added; No change in conclusions
References in corpus (47)
- Wilkinson Microwave Anisotropy Probe (WMAP) Three Year Results: Implications for Cosmology
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- Cosmological Constraints from the SDSS Luminous Red Galaxies
- Three Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Polarization Analysis
- Three-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Temperature Analysis
- On the Robustness of the Acoustic Scale in the Low-Redshift Clustering of Matter
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Angular Power Spectra
- High resolution CMB power spectrum from the complete ACBAR data set
- Generation and Characterization of Large Non-Gaussianities in Single Field Inflation
- Inflation and WMAP three year data: Features have a Future!
- Minimally Parametric Power Spectrum Reconstruction from the Lyman-alpha Forest
- New Universal Local Feature in the Inflationary Perturbation Spectrum
- Bayesian reconstruction of the cosmological large-scale structure: methodology, inverse algorithms and numerical optimization
- New Constraints on Oscillations in the Primordial Spectrum of Inflationary Perturbations
- Single-field inflation, anomalous enhancement of superhorizon fluctuations, and non-Gaussianity in primordial black hole formation
- Non-Gaussian Spikes from Chaotic Billiards in Inflation Preheating
- Cosmological Fluctuations from Infra-Red Cascading During Inflation
- Lattice calculation of non-Gaussianity from preheating
- Local Void vs Dark Energy: Confrontation with WMAP and Type Ia Supernovae
- Effects of particle production during inflation
- The pre-inflationary vacuum in the cosmic microwave background
- Model selection applied to reconstruction of the Primordial Power Spectrum
- Estimation of Primordial Spectrum with post-WMAP 3 year data
- Features in the Primordial Spectrum from WMAP: A Wavelet Analysis
- Reconstruction of the Primordial Power Spectrum using Temperature and Polarisation Data from Multiple Experiments
- Is a step in the primordial spectral index favored by CMB data ?
- Reconciling the local void with the CMB
- Rank deficiency and Tikhonov regularization in the inverse problem for gravitational-wave bursts
- On the evolution of tachyonic perturbations at super-Hubble scales
- Power Corrections in Charmless Nonleptonic B-Decays: Annihilation is Factorizable and Real
- Nongaussianity from Particle Production During Inflation
- WMAP 3-year primordial power spectrum
- Power Spectrum and Signatures for Cascade Inflation
- Likelihood methods for the combined analysis of CMB temperature and polarisation power spectra
- Band-power reconstruction of the primordial fluctuation spectrum by the maximum likelihood reconstruction method
- The effect of varying sound velocity on primordial curvature perturbations
- Reconstruction of the primordial fluctuation spectrum from the five-year WMAP data by the cosmic inversion method with band-power decorrelation analysis
- Wiggles in the cosmic microwave background radiation: echoes from non-singular cyclic-inflation
- Cosmological Results from Five Years of 30 GHz CMB Intensity Measurements with the Cosmic Background Imager
- The large scale CMB cut-off and the tensor-to-scalar ratio
- Nonlinear corrections to the cosmological matter power spectrum and scale-dependent galaxy bias: implications for parameter estimation
- Detectability of large-scale power suppression in the galaxy distribution
- Extracting New Physics from the CMB
- Fine-tuning criteria for inflation and the search for primordial gravitational waves
- The Neutrino Mass Matrix - New Developments
- Large scale power and running spectral index in New Old Inflation
Cited by in corpus (52)
- Planck 2018 results. X. Constraints on inflation
- The Simons Observatory: Science goals and forecasts
- CMB-S4 Science Case, Reference Design, and Project Plan
- Features and New Physical Scales in Primordial Observables: Theory and Observation
- Primordial power spectrum from Planck
- Wiggly Whipped Inflation
- Whipped inflation
- On the scalar consistency relation away from slow roll
- Generating primordial features at large scales in two field models of inflation
- Reconstruction of broad features in the primordial spectrum and inflaton potential from Planck
- Search for features in the spectrum of primordial perturbations using Planck and other datasets
- Ruling out the power-law form of the scalar primordial spectrum
- Reconstruction of the neutrino mass as a function of redshift
- Untangling features in the primordial spectra
- Primordial features and Planck polarization
- Dark Radiation and Inflationary Freedom after Planck 2015
- Examining the consistency relations describing the three-point functions involving tensors
- Inflationary Freedom and Cosmological Neutrino Constraints
- Probing features in inflaton potential and reionization history with future CMB space observations
- Consistency relations for sharp features in the primordial spectra
- Polarization Predictions for Inflationary CMB Power Spectrum Features
- Joint Planck and WMAP Assessment of Low CMB Multipoles
- Bayesian reconstruction of the inflaton's speed of sound using CMB data
- Hint of a truncated primordial spectrum from the CMB large-scale anomalies
- Nonlinear Excitations in Inflationary Power Spectra
- Primordial features from ekpyrotic bounces
- Axions as Hot and Cold Dark Matter
- Light Sterile Neutrinos and Inflationary Freedom
- Constraints on features in the inflationary potential from future Euclid data
- Primordial Power Spectrum features and constraints
- PRISM: Sparse Recovery of the Primordial Power Spectrum
- Inflamagnetogenesis redux: Unzipping sub-Planckian inflation via various cosmoparticle probes
- Effects of local features of the inflaton potential on the spectrum and bispectrum of primordial perturbations
- Classicalization of Quantum Fluctuations at the Planck Scale in the R_h=ct Universe
- Reconstructing the EFT of Inflation from Cosmological Data
- Searching for local features in primordial power spectrum using genetic algorithms
- Reconstruction of a direction-dependent primordial power spectrum from Planck CMB data
- On primordial equation of state transitions
- Scale invariance of the primordial tensor power spectrum
- Knot reconstruction of the scalar primordial power spectrum with Planck, ACT, and SPT CMB data
- Spectral Distortion Signatures of Step-like Inflationary Potential
- Degeneracy in the spectrum and bispectrum among featured inflaton potentials
- The scalar-scalar-tensor inflationary three-point function in the axion monodromy model
- Density perturbation in the models reconstructed from jerk parameter
- Inflation Story: slow-roll and beyond
- Robustness of cosmological axion mass limits
- Revisiting the oscillations in the CMB angular power spectra at in the Planck2015 data
- A Map Between Primordial Power Spectra and the Effective Field Theory of Inflation
- Perturbations In Some Dark Energy Models
- Dark Radiation and Inflationary Freedom
- Probing inflation with large-scale structure data: the contribution of information at small scales
- Dark Radiation and Inflationary Freedom