Correlating Fourier phase information with real-space higher order statistics
arXiv:1311.5053 · doi:10.1103/PhysRevD.89.123004
Abstract
We establish for the first time heuristic correlations between harmonic space phase information and higher order statistics. Using the spherical full-sky maps of the cosmic microwave background as an example we demonstrate that known phase correlations at large spatial scales can gradually be diminished when subtracting a suitable best-fit (Bianchi-) template map of given strength. The weaker phase correlations lead in turn to a vanishing signature of anisotropy when measuring the Minkowski functionals and scaling indices in real-space and comparing them with surrogate maps being free of phase correlations. Those investigations can open a new road to a better understanding of signatures of non-Gaussianities in complex spatial structures by elucidating the meaning of Fourier phase correlations and their influence on higher order statistics.
6 pages plus 1 supplemental page, 4 figures, submitted
References in corpus (7)
- Nine-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Final Maps and Results
- The Ninth Data Release of the Sloan Digital Sky Survey: First Spectroscopic Data from the SDSS-III Baryon Oscillation Spectroscopic Survey
- Bianchi Type VII_h Models and the WMAP 3-year Data
- Bayesian analysis of anisotropic cosmologies: Bianchi VII_h and WMAP
- No Higher Criticism of the Bianchi Corrected WMAP Data
- Scale dependent non-Gaussianities in the CMB data identified with Minkowski Functionals and Scaling Indices
- Probing non-Gaussianities in the CMB on an incomplete sky using surrogates
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