Lens distortion effects on CMB maps
arXiv:astro-ph/9802243
Abstract
Weak lensing effects are known to introduce non-linear couplings in CMB temperature maps. In inflationary scenario, the primary CMB anisotropies are expected to form a 2D Gaussian map, for which, the probability distribution function of the ellipticity defined from the local temperature curvature matrix has a very specific shape. I show that lenses alter significantly the shape of this PDF, inducing an excess of elongated structures. The precise functional form is computed for both the field points and the temperature extrema. These analytical results are confirmed by numerical experiments on 10x10 square degree maps. These numerical results allow to investigate the effects of smoothing and to estimate the cosmic variance. For the best resolution and sky coverage of the Planck mission the signal to noise ratio for the statistical indicators presented here is about 3 to 6 depending on the cosmological models. A marginal detection should therefore be possible.
10 pages, 5 figures, LaTeX, submitted to Astronomy and Astrophysics
Cited by in corpus (12)
- Weak Gravitational Lensing of the CMB
- Cosmic Microwave Background Anisotropies
- Testing General Relativity in Cosmology
- Gravitational Lensing
- Full-sky lensing reconstruction of gradient and curl modes from CMB maps
- CMB Lensing Reconstruction in Real Space
- The Impact of Prior Assumptions on Bayesian Estimates of Inflation Parameters and the Expected Gravitational Waves Signal from Inflation
- Morphology of CMB fields -- effect of weak gravitational lensing
- Cosmology with Weak Lensing Surveys
- Impact of Low ell's on Large Scale Structure Anomalies
- The imprint of primordial gravitational waves on the CMB intensity profile
- Non-Gaussian Signatures in the Lens Deformations of the CMB Sky. A New Ray-Tracing Procedure