Conformal Symmetries of Adiabatic Modes in Cosmology
Abstract
We remark on the existence of non-linearly realized conformal symmetries for scalar adiabatic perturbations in cosmology. These conformal symmetries are present for any cosmological background, beyond any slow-roll or quasi-de Sitter approximation. The dilatation transformation shifts the curvature perturbation by a constant, and corresponds to the well-known symmetry under spatial rescaling. We argue that the scalar sector is also invariant under special conformal transformations, which shift the curvature perturbation by a term linear in the spatial coordinates. We discuss whether these conformal symmetries can be extended to include tensor perturbations. Tensor modes introduce their own set of non-linearly realized symmetries. We identify an infinite set of large gauge transformations which maintain the transverse, traceless gauge condition, while shifting the tensor mode non-trivially.
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Cite
@article{arxiv.1203.6351,
title = {Conformal Symmetries of Adiabatic Modes in Cosmology},
author = {Kurt Hinterbichler and Lam Hui and Justin Khoury},
journal= {arXiv preprint arXiv:1203.6351},
year = {2012}
}
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16 pages