Disentangling non-Gaussianity, bias and GR effects in the galaxy distribution
Abstract
Local non-Gaussianity, parametrized by , introduces a scale-dependent bias that is strongest at large scales, precisely where General Relativistic (GR) effects also become significant. With future data, it should be possible to constrain with high redshift surveys. GR corrections to the power spectrum and ambiguities in the gauge used to define bias introduce effects similar to , so it is essential to disentangle these effects. For the first time in studies of primordial non-Gaussianity, we include the consistent GR calculation of galaxy power spectra, highlighting the importance of a proper definition of bias. We present observable power spectra with and without GR corrections, showing that an incorrect definition of bias can mimic non-Gaussianity. However, these effects can be distinguished by their different redshift and scale dependence, so as to extract the true primordial non-Gaussianity.
Keywords
Cite
@article{arxiv.1106.3999,
title = {Disentangling non-Gaussianity, bias and GR effects in the galaxy distribution},
author = {Marco Bruni and Robert Crittenden and Kazuya Koyama and Roy Maartens and Cyril Pitrou and David Wands},
journal= {arXiv preprint arXiv:1106.3999},
year = {2013}
}
Comments
5 pages, 2 figures, published version