Solar System Tests in Brans-Dicke and Palatini f(R)-theories
Abstract
We compare Mercury's precession test in standard General Relativity (GR), Brans-Dicke theories (BD), and Palatini f(R)-theories. We avoid post Newtonian (PN) approximation and compute exact precession in these theories. We show that the well-known mathematical equivalence between Palatini f(R)-theories and a specific subset of BD theories does not extend to a really physical equivalence among theories since equivalent models still allow different incompatible precession for Mercury depending on the solution one chooses. As a result one cannot use BD equivalence to rule out Palatini f(R)-theories. On the contrary, we directly discuss that Palatini f(R)-theories can (and specific models do) easily pass Solar System tests as Mercury's precession.
Keywords
Cite
@article{arxiv.2011.06303,
title = {Solar System Tests in Brans-Dicke and Palatini f(R)-theories},
author = {Alice Bonino and Stefano Camera and Lorenzo Fatibene and Andrea Orizzonte},
journal= {arXiv preprint arXiv:2011.06303},
year = {2022}
}
Comments
22 pages, 2 figures