English

KiDS+2dFLenS+GAMA: Testing the cosmological model with the $E_{\rm G}$ statistic

Cosmology and Nongalactic Astrophysics 2018-10-26 v2

Abstract

We present a new measurement of EGE_{\rm G}, which combines measurements of weak gravitational lensing, real-space galaxy clustering and redshift space distortions. This statistic was proposed as a consistency test of General Relativity (GR) that is insensitive to linear, deterministic galaxy bias and the matter clustering amplitude. We combine deep imaging data from KiDS with overlapping spectroscopy from 2dFLenS, BOSS DR12 and GAMA and find EG(z=0.267)=0.43±0.13E_{\rm G}(\overline{z}=0.267)=0.43 \pm 0.13 (GAMA), EG(z=0.305)=0.27±0.08E_{\rm G}(\overline{z}=0.305)=0.27 \pm 0.08 (LOWZ+2dFLOZ) and EG(z=0.554)=0.26±0.07E_{\rm G}(\overline{z}=0.554)=0.26 \pm 0.07 (CMASS+2dFHIZ). We demonstrate that the existing tension in the value of the matter density parameter hinders the robustness of this statistic as solely a test of GR. We find that our EGE_{\rm G} measurements, as well as existing ones in the literature, favour a lower matter density cosmology than the Cosmic Microwave Background. For a flat Λ\LambdaCDM Universe and assuming GR, we find Ωm(z=0)=0.25±0.03\Omega_{\rm m}(z=0)=0.25\pm0.03. With this paper we publicly release the 2dFLenS dataset at: \url{http://2dflens.swin.edu.au}.

Keywords

Cite

@article{arxiv.1711.10999,
  title  = {KiDS+2dFLenS+GAMA: Testing the cosmological model with the $E_{\rm G}$ statistic},
  author = {A. Amon and C. Blake and C. Heymans and C. D. Leonard and M. Asgari and M. Bilicki and A. Choi and T. Erben and K. Glazebrook and J. Harnois-Deraps and H. Hildebrandt and H. Hoekstra and B. Joachimi and S. Joudaki and K. Kuijken and C. Lidman and J. Loveday and D. Parkinson and E. A. Valentijn and C. Wolf},
  journal= {arXiv preprint arXiv:1711.10999},
  year   = {2018}
}

Comments

17 pages, 8 figures

R2 v1 2026-06-22T23:01:18.113Z