An update on adiabatic modes in cosmology and $\delta$N formalism
Abstract
In this paper, we generalize the Weinberg's procedure to determine the comoving curvature perturbation to non-attractor inflationary regimes. We show that both modes of are related to a symmetry of the perturbative equations in the Newtonian gauge. As a byproduct, we clarify that adiabaticity does not generally imply constancy of , not even in the limit. We then show that there exist non-equivalent definitions of that would reproduce or the uniform density curvature perturbation at linear order. We have then shown that the perturbative definition in terms of difference between the number of e-foldings of different gauges, can be extended non-perturbatively at leading order in gradient expansion. Nevertheless, the computer friendly definition in terms of the difference of e-foldings obtained from the evolution of a local FRW Universe, respectively with perturbed and un-perturbed initial conditions, might only give information about the linear order curvature perturbations, contrary to what stated in the literature.
Keywords
Cite
@article{arxiv.2212.05112,
title = {An update on adiabatic modes in cosmology and $\delta$N formalism},
author = {Diego Cruces and Cristiano Germani and Adrian Palomares},
journal= {arXiv preprint arXiv:2212.05112},
year = {2023}
}
Comments
18 pages. Explanations and minor corrections added. Results unchanged. Accepted for publication in JCAP