Novel Probes of Gravity and Dark Energy
Abstract
The discovery of cosmic acceleration has stimulated theorists to consider dark energy or modifications to Einstein's General Relativity as possible explanations. The last decade has seen advances in theories that go beyond smooth dark energy -- modified gravity and interactions of dark energy. While the theoretical terrain is being actively explored, the generic presence of fifth forces and dark sector couplings suggests a set of distinct observational signatures. This report focuses on observations that differ from the conventional probes that map the expansion history or large-scale structure. Examples of such novel probes are: detection of scalar fields via lab experiments, tests of modified gravity using stars and galaxies in the nearby universe, comparison of lensing and dynamical masses of galaxies and clusters, and the measurements of fundamental constants at high redshift. The observational expertise involved is very broad as it spans laboratory experiments, high resolution astronomical imaging and spectroscopy and radio observations. In the coming decade, searches for these effects have the potential for discovering fundamental new physics. We discuss how the searches can be carried out using experiments that are already under way or with modest adaptations of existing telescopes or planned experiments. The accompanying paper on the Growth of Cosmic Structure describes complementary tests of gravity with observations of large-scale structure.
Keywords
Cite
@article{arxiv.1309.5389,
title = {Novel Probes of Gravity and Dark Energy},
author = {Bhuvnesh Jain and Austin Joyce and Rodger Thompson and Amol Upadhye and James Battat and Philippe Brax and Anne-Christine Davis and Claudia de Rham and Scott Dodelson and Adrienne Erickcek and Gregory Gabadadze and Wayne Hu and Lam Hui and Dragan Huterer and Marc Kamionkowski and Justin Khoury and Kazuya Koyama and Baojiu Li and Eric Linder and Fabian Schmidt and Roman Scoccimarro and Glenn Starkman and Chris Stubbs and Masahiro Takada and Andrew Tolley and Mark Trodden and Jean-Philippe Uzan and Vinu Vikram and Amanda Weltman and Mark Wyman and Dennis Zaritsky and Gongbo Zhao},
journal= {arXiv preprint arXiv:1309.5389},
year = {2013}
}
Comments
Report from the "Dark Energy and CMB" working group for the American Physical Society's Division of Particles and Fields long-term planning exercise ("Snowmass")