Cosmological perturbations in non-local higher-derivative gravity
Abstract
We study cosmological perturbations in a non-local higher-derivative model of gravity introduced by Biswas, Mazumdar and Siegel. We extend previous work, which had focused on classical scalar perturbations around a cosine hyperbolic bounce solution, in three ways. First, we point out the existence of a Starobinsky solution in this model, which is more attractive from a phenomenological point of view (even though it has no bounce). Second, we study classical vector and tensor perturbations. Third, we show how to quantize scalar and tensor perturbations in a de Sitter phase (for choices of parameters such that the model is ghost-free). Our results show that the model is well-behaved at this level, and are very similar to corresponding results in local models. In particular, for the Starobinsky solution of non-local higher-derivative gravity, we find the same tensor-to-scalar ratio as for the conventional Starobinsky model.
Cite
@article{arxiv.1407.4982,
title = {Cosmological perturbations in non-local higher-derivative gravity},
author = {Ben Craps and Tim De Jonckheere and Alexey S. Koshelev},
journal= {arXiv preprint arXiv:1407.4982},
year = {2015}
}
Comments
28 pages; v2: various clarifications, improved discussion of tensor-to-scalar ratio