The Knotted Sky I: Planck constraints on the primordial power spectrum
arXiv:1403.5849 · doi:10.1088/1475-7516/2014/08/052
Abstract
Using the temperature data from Planck we search for departures from a power-law primordial power spectrum, employing Bayesian model-selection and posterior probabilities. We parametrize the spectrum with knots located at arbitrary values of , with both linear and cubic splines. This formulation recovers both slow modulations and sharp transitions in the primordial spectrum. The power spectrum is well-fit by a featureless, power-law at wavenumbers . A modulated primordial spectrum yields a better fit relative to CDM at large scales, but there is no strong evidence for a departure from a power-law spectrum. Moreover, using simulated maps we show that a local feature at can mimic the suppression of large-scale power. With multi-knot spectra we see only small changes in the posterior distributions for the other free parameters in the standard CDM universe. Lastly, we investigate whether the hemispherical power asymmetry is explained by independent features in the primordial power spectrum in each ecliptic hemisphere, but find no significant differences between them.
24 pages, 9 figures, 4 tables, 1 appendix; v2: references added, discussion updated, matches published version
References in corpus (19)
- BICEP2 I: Detection Of B-mode Polarization at Degree Angular Scales
- The Cosmic Linear Anisotropy Solving System (CLASS) I: Overview
- Planck 2018 results. VII. Isotropy and Statistics of the CMB
- BICEP2 II: Experiment and Three-Year Data Set
- A Hemispherical Power Asymmetry from Inflation
- Minimally Parametric Power Spectrum Reconstruction from the Lyman-alpha Forest
- Energy Transfer in Multi Field Inflation and Cosmological Perturbations
- Hunting Down the Best Model of Inflation with Bayesian Evidence
- 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
- The Knotted Sky II: Does BICEP2 require a nontrivial primordial power spectrum?
- WMAP 3-year primordial power spectrum
- Power Spectrum and Signatures for Cascade Inflation
- Band-power reconstruction of the primordial fluctuation spectrum by the maximum likelihood reconstruction method
- Reconstruction of the primordial fluctuation spectrum from the five-year WMAP data by the cosmic inversion method with band-power decorrelation analysis
- Hemispherical Power Asymmetry from a Space-Dependent Component of the Adiabatic Power Spectrum
- Relating the inhomogeneous power spectrum to the CMB hemispherical anisotropy
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- Observational Constraints on the Primordial Curvature Power Spectrum
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- FlexKnot as a Generalised Model of the Sky-averaged 21-cm Signal at z ~ 6-30 in the Presence of Systematics
- Knot reconstruction of the scalar primordial power spectrum with Planck, ACT, and SPT CMB data
- Spectral Distortion Signatures of Step-like Inflationary Potential
- Naturally large tensor-to-scalar ratio in inflation
- Bayesian inference methodology for Primordial Power Spectrum reconstructions from Large Scale Structure
- 21-cm power spectrum and ionization bias as a probe of long-mode modulated non Gaussian sky
- J-PAS: forecast on the primordial power spectrum reconstruction