Influence of global cosmological expansion on local dynamics and kinematics
Abstract
We review attempts to estimate the influence of global cosmological expansion on local systems. Here `local' is taken to mean that the sizes of the considered systems are much smaller than cosmologically relevant scales. For example, such influences can affect orbital motions as well as configurations of compact objects, like black holes. We also discuss how measurements based on the exchange of electromagnetic signals of distances, velocities, etc. of moving objects are influenced. As an application we compare orders of magnitudes of such effects with the scale set by the apparently anomalous acceleration of the Pioneer 10 and 11 spacecrafts, which is 10^-9 m/s^2. We find no reason to believe that the latter is of cosmological origin. However, the general problem of gaining a qualitative and quantitative understanding of how the cosmological dynamics influences local systems remains challenging, with only partial clues being so far provided by exact solutions to the field equations of General Relativity.
Keywords
Cite
@article{arxiv.0810.2712,
title = {Influence of global cosmological expansion on local dynamics and kinematics},
author = {Matteo Carrera and Domenico Giulini},
journal= {arXiv preprint arXiv:0810.2712},
year = {2015}
}
Comments
LaTeX (RevTeX), 41 pages, 3 figures. To appear in Reviews of Modern Physics. Adapted to journal version (typos corrected and minor additions on the interpretation of the Misner-Sharp energy)