The XMM Cluster Survey: Testing chameleon gravity using the profiles of clusters
Abstract
The chameleon gravity model postulates the existence of a scalar field that couples with matter to mediate a fifth force. If it exists, this fifth force would influence the hot X-ray emitting gas filling the potential wells of galaxy clusters. However, it would not influence the clusters' weak lensing signal. Therefore, by comparing X-ray and weak lensing profiles, one can place upper limits on the strength of a fifth force. This technique has been attempted before using a single, nearby cluster (Coma, ). Here we apply the technique to the stacked profiles of 58 clusters at higher redshifts (), including 12 new to the literature, using X-ray data from the XMM Cluster Survey (XCS) and weak lensing data from the Canada France Hawaii Telescope Lensing Survey (CFHTLenS). Using a multi-parameter MCMC analysis, we constrain the two chameleon gravity parameters ( and ). Our fits are consistent with general relativity, not requiring a fifth force. In the special case of gravity (where ), we set an upper limit on the background field amplitude today of (95% CL). This is one of the strongest constraints to date on on cosmological scales. We hope to improve this constraint in future by extending the study to hundreds of clusters using data from the Dark Energy Survey.
Keywords
Cite
@article{arxiv.1504.03937,
title = {The XMM Cluster Survey: Testing chameleon gravity using the profiles of clusters},
author = {Harry Wilcox and David Bacon and Robert C. Nichol and Philip J. Rooney and Ayumu Terukina and A. Kathy Romer and Kazuya Koyama and Gong-Bo Zhao and Ross Hood and Robert G. Mann and Matt Hilton and Maria Manolopoulou and Martin Sahlen and Chris A. Collins and Andrew R. Liddle and Julian A. Mayers and Nicola Mehrtens and Christopher J. Miller and John P. Stott and Pedro T. P. Viana},
journal= {arXiv preprint arXiv:1504.03937},
year = {2015}
}
Comments
14 pages, 7 figures