Solar System constraints to nonminimally coupled gravity
Abstract
We extend the analysis of Chiba, Smith and Erickcek \cite{CSE} of Solar System constraints on gravity to a class of nonminimally coupled (NMC) theories of gravity. These generalize theories by replacing the action functional of General Relativity (GR) with a more general form involving two functions and of the Ricci scalar curvature . While the function is a nonlinear term in the action, analogous to gravity, the function yields a NMC between the matter Lagrangian density and the scalar curvature. The developed method allows for obtaining constraints on the admissible classes of functions and , by requiring that predictions of NMC gravity are compatible with Solar System tests of gravity. We apply this method to a NMC model which accounts for the observed accelerated expansion of the Universe.
Keywords
Cite
@article{arxiv.1306.1176,
title = {Solar System constraints to nonminimally coupled gravity},
author = {Orfeu Bertolami and Riccardo March and Jorge Páramos},
journal= {arXiv preprint arXiv:1306.1176},
year = {2015}
}
Comments
13 pages, 3 figures