Constraining f(R) gravity in solar system, cosmology and binary pulsar systems
Abstract
The gravity can be cast into the form of a scalar-tensor theory, and scalar degree of freedom can be suppressed in high-density regions by the chameleon mechanism. In this article, for the general gravity, using a scalar-tensor representation with the chameleon mechanism, we calculate the parameterized post-Newtonian parameters and , the effective gravitational constant , and the effective cosmological constant . In addition, for the general gravity, we also calculate the rate of orbital period decay of the binary system due to gravitational radiation. Then we apply these results to specific models (Hu-Sawicki model, Tsujikawa model and Starobinsky model) and derive the constraints on the model parameters by combining the observations in solar system, cosmological scales and the binary systems.
Cite
@article{arxiv.1711.08991,
title = {Constraining f(R) gravity in solar system, cosmology and binary pulsar systems},
author = {Tan Liu and Xing Zhang and Wen Zhao},
journal= {arXiv preprint arXiv:1711.08991},
year = {2018}
}
Comments
LaTex, 19 pages,1 figure, typo corrected. To appear in Physics Letters B