arXiv · 1403.5849
The Knotted Sky I: Planck constraints on the primordial power spectrum
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 $n$ knots located at arbitrary values of $\log{k}$, 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 $k>10^{-3} \, \mathrm{Mpc}^{-1}$. A modulated primordial spectrum yields a better fit relative to $Λ$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 $k \sim 10^{-3} \, \mathrm{Mpc}^{-1}$ 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 $Λ$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.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Grigor Aslanyan, Layne C. Price, Kevork N. Abazajian, Richard Easther. 2014-08-26. The Knotted Sky I: Planck constraints on the primordial power spectrum. https://doi.org/10.1088/1475-7516%2F2014%2F08%2F052
Cite the original work for its findings. Save a collection to share your selection of sources.