Impact on the power spectrum of Screening in Modified Gravity Scenarios
Abstract
We study the effects of screened modified gravity of the , dilaton and symmetron types on structure formation, from the quasi-linear to the non-linear regime, using semi-analytical methods. For such models, where the range of the new scalar field is typically within the Mpc range and below in the cosmological context, non-linear techniques are required to understand the deviations of the power spectrum of the matter density contrast compared to the -CDM template. This is nowadays commonly tackled using extensive N-body simulations. Here we present new results combining exact perturbation theory at the one loop level (and a partial resummation of the perturbative series) with a halo model. The former allows one to extend the linear perturbative analysis up to at the perturbative level while the latter leads to a reasonable, up to a few percent, agreement with numerical simulations for for large curvature models, and for dilatons and symmetrons, at . We also discuss how the behaviors of the perturbative expansions and of the spherical collapse differ for , dilaton, and symmetron models.
Keywords
Cite
@article{arxiv.1305.5647,
title = {Impact on the power spectrum of Screening in Modified Gravity Scenarios},
author = {Philippe Brax and Patrick Valageas},
journal= {arXiv preprint arXiv:1305.5647},
year = {2015}
}
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31 pages