English

Non-Gaussian CMB and LSS statistics beyond polyspectra

Cosmology and Nongalactic Astrophysics 2020-08-03 v3 High Energy Physics - Phenomenology High Energy Physics - Theory

Abstract

Cosmic inflation may have led to non-Gaussian initial conditions that cannot be fully parametrised by 3- and/or 4-point functions. In this work, we discuss various strategies to search for primordial non-Gaussianity beyond polyspectra with the help of cosmological data. Our starting point is a generalised local ansatz for the primordial curvature perturbation ζ\zeta of the form ζ=ζG+FNG(ζG)\zeta = \zeta_{\rm G} + \mathcal{F}_{\rm NG} (\zeta_{\rm G}), where ζG\zeta_{\rm G} is a Gaussian random field and FNG\mathcal{F}_{\rm NG} is an arbitrary function parametrising non-Gaussianity that, in principle, could be reconstructed from data. Noteworthily, in the case of multi-field inflation, the function FNG\mathcal{F}_{\rm NG} can be shown to be determined by the shape of tomographic sections of the landscape potential responsible for driving inflation. We discuss how this generalised local ansatz leads to a probability distribution functional that may be used to extract information about inflation from current and future observations. In particular, we derive various classes of probability distribution functions suitable for the statistical analysis of the cosmic microwave background and large-scale structure.

Keywords

Cite

@article{arxiv.1907.05332,
  title  = {Non-Gaussian CMB and LSS statistics beyond polyspectra},
  author = {Gonzalo A. Palma and Bruno Scheihing Hitschfeld and Spyros Sypsas},
  journal= {arXiv preprint arXiv:1907.05332},
  year   = {2020}
}

Comments

53 pages, matches published version

R2 v1 2026-06-23T10:18:45.378Z