English

Power correlations in cosmology: limits on primordial non-Gaussian density fields

Astrophysics 2016-06-08 v1

Abstract

We probe the statistical nature of the primordial density field by measuring correlations between the power in adjacent Fourier modes. For certain types of non-Gaussian field, these k-space correlations would be expected to be more extended than for a Gaussian field, providing a useful discriminatory test for Gaussian fields. We apply this test to the combined QDOT and 1.2-Jy IRAS galaxy survey and find the observed density field to be in good agreement with having Gaussian density fluctuations for modes with k < 0.1 h/Mpc. From this result we are able to set quantitative limits on a class of possible non-Gaussian distributions -- the product of a Gaussian field with an independent stochastic field. The maximum sensitivity is to modulations of a Gaussian field with coherence scales of 30 Mpc/h and the rms modulation on this scale cannot greatly exceed unity. We discuss the improvements to this limit likely to be set by future surveys.

Keywords

Cite

@article{arxiv.astro-ph/9608101,
  title  = {Power correlations in cosmology: limits on primordial non-Gaussian density fields},
  author = {A. J. Stirling and J. A. Peacock},
  journal= {arXiv preprint arXiv:astro-ph/9608101},
  year   = {2016}
}

Comments

MNRAS in press. 6 pages TeX including Postscript figures. Uses mn.sty and epsf.sty

R2 v1 2026-07-22T09:30:00.146Z