Structure in Galaxy Distribution. III. Fourier Transforming the Universe
arXiv:1510.06129 · doi:10.3847/1538-4357/aa692d
Abstract
We demonstrate the effectiveness of a relatively straightforward analysis of the complex 3D Fourier transform of galaxy coordinates derived from redshift surveys. Numerical demonstrations of this approach are carried out on a volume-limited sample of the Sloan Digital Sky Survey redshift survey. The direct unbinned transform yields a complex 3D data cube quite similar to that from the Fast Fourier Transform (FFT) of finely binned galaxy positions. In both cases deconvolution of the sampling window function yields estimates of the true transform. Simple power spectrum estimates from these transforms are roughly consistent with those using more elaborate methods. However we concentrate on the less often studied Fourier phase spectrum, a simple and general framework for characterizing non-Gaussianity, more easily interpretable than the tangled, incomplete multi-point methods conventionally used. No significant signature of non-Gaussianity has been found in the relatively small data set analyzed, but we identify some threads of modern large scale inference methodology that will presumably yield detections in new wider and deeper surveys.
34 pages, 14 figures, Paper III in the series; second major revision. NB some pdf viewers may show spurious patterns in Fig. 6-10
References in corpus (13)
- The shape of the SDSS DR5 galaxy power spectrum
- The bispectrum of galaxies from high-redshift galaxy surveys: primordial non-Gaussianity and non-linear galaxy bias
- Higher Criticism for Large-Scale Inference, Especially for Rare and Weak Effects
- Computing the Three-Point Correlation Function of Galaxies in Time
- Cosmological Measurements with General Relativistic Galaxy Correlations
- Accelerating the 2-point and 3-point galaxy correlation functions using Fourier transforms
- The galaxy power spectrum: precision cosmology from large scale structure?
- On the signature of the baryon-dark matter relative velocity in the two and three-point galaxy correlation functions
- On the inadequacy of N-point correlation functions to describe nonlinear cosmological fields: explicit examples and connection to simulations
- Bayesian estimation of non-Gaussianity in pulsar timing analysis
- Statistics of Fourier Modes in Non-Gaussian Fields
- The Anisotropic Line Correlation Function as a Probe of Anisotropies in Galaxy Surveys
- Structure in the 3D Galaxy Distribution: II. Voids and Watersheds of Local Maxima and Minima