Abstract
We investigate cosmological perturbations for nonlinear f(R) models within the cosmic screening approach. Matter is considered both in the form of a set of discrete point-like massive bodies and in the form of a continuous pressureless perfect fluid. We perform full relativistic analysis of the first-order theory of scalar perturbations for arbitrary nonlinear f(R) models and demonstrate that scalar potentials Φ(t, r) and Ψ(t, r) are determined by a system of only two master equations. Our equations are applicable at all spatial scales as long as the approximation δR/ R¯ ≪ 1 (which is usually assumed in studies devoted to cosmological perturbations in f(R) models) works.
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CITATION STYLE
Akarsu, Ö., Brilenkov, R., Eingorn, M., Shulga, V., & Zhuk, A. (2018). Scalar perturbations in cosmological f(R) models: the cosmic screening approach. European Physical Journal C, 78(8). https://doi.org/10.1140/epjc/s10052-018-6091-7
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