Higher Order Moments of the Angular Distribution of Galaxies from Early SDSS Data
Abstract
We present initial results for counts in cells statistics of the angular distribution of galaxies in early data from the Sloan Digital Sky Survey (SDSS). We analyze a rectangular stripe wide, covering approximately 160 sq. degrees, containing over galaxies in the apparent magnitude range , with areas of bad seeing, contamination from bright stars, ghosts, and high galactic extinction masked out. This survey region, which forms part of the SDSS Early Data Release, is the same as that for which two-point angular clustering statistics have recently been computed. The third and fourth moments of the cell counts, (skewness) and (kurtosis), constitute the most accurate measurements to date of these quantities (for ) over angular scales . They display the approximate hierarchical scaling expected from non-linear structure formation models and are in reasonable agreement with the predictions of -dominated cold dark matter models with galaxy biasing that suppresses higher order correlations at small scales. The results are in general consistent with previous measurements in the APM, EDSGC, and Deeprange surveys. These results suggest that the SDSS imaging data are free of systematics to a high degree and will therefore enable determination of the skewness and kurtosis to 1% and less then 10%, as predicted by Colombi, Szapudi, & Szalay (1998).
Cite
@article{arxiv.astro-ph/0111058,
title = {Higher Order Moments of the Angular Distribution of Galaxies from Early SDSS Data},
author = {István Szapudi and Joshua A. Frieman and Roman Scoccimarro and Alexander S. Szalay and Andrew J. Connolly and Scott Dodelson and Daniel J. Eisenstein and James E. Gunn and David Johnston and Stephen Kent and Jon Loveday and Avery Meiksin and Robert C. Nichol and Ryan Scranton and Albert Stebbins and Michael S. Vogeley},
journal= {arXiv preprint arXiv:astro-ph/0111058},
year = {2009}
}
Comments
24 pages, submitted to ApJ