Spatial Curvature from Super-Hubble Cosmological Fluctuations
Abstract
We revisit how super-Hubble cosmological fluctuations induce, at any time in the cosmic history, a non-vanishing spatial curvature of the local background metric. The random nature of these fluctuations promotes the curvature density parameter to a stochastic quantity for which we derive novel non-perturbative expressions for its mean, variance, higher moments and full probability distribution. For scale-invariant Gaussian perturbations, such as those favored by cosmological observations, we find that the most probable value for the curvature density parameter today is , that its mean is , both being overwhelmed by a standard deviation of order . We then discuss how these numbers would be affected by the presence of large super-Hubble non-Gaussianities, or, if inflation lasted for a very long time. In particular, we find that substantial values of are obtained if inflation lasts for more than a billion e-folds.
Cite
@article{arxiv.2302.14530,
title = {Spatial Curvature from Super-Hubble Cosmological Fluctuations},
author = {Baptiste Blachier and Pierre Auclair and Christophe Ringeval and Vincent Vennin},
journal= {arXiv preprint arXiv:2302.14530},
year = {2023}
}
Comments
7 pages, 2 figures, uses RevTex. Misprints corrected, references added, matches published version