The ΛCDM expansion could be mimicked by a dark energy coupled to matter. Then, the equation of state wˉ and coupling Qˉ of this coupled dark energy could not be constrained by observations of the Hubble function alone. Also, in this paper, we determine the constraints on two such coupled dark energy models considering some current and forecast Euclid-like growth-rate data and assuming the prior on the ΛCDM dark matter density parameter today Ωm0=0.295±0.04. The first model is defined by a constant equation of state. We find that at 2σ, wˉ=−1.02−0.22+0.06 and the coupling function Qˉ0 today is Qˉ0H0−3=0.057−0.148+0.353 with H0 the Hubble constant. The second model is defined by a varying equation of state wˉ=wˉa−wˉbln(1+z), with z the redshift and (wˉa,wˉb), two constants. We find that at 2σ, wˉa=−0.99−0.90+0.17, wˉb=−0.04−1.17+0.31 and Qˉ0H0−3=0.0002−0.18+1.35. These constraints on coupled dark energy agreed with a ΛCDM model but are too poor to discard confidently a coupled dark energy different from vacuum but mimicking a ΛCDM expansion.
@article{arxiv.1605.01644,
title = {Constraints from growth-rate data on some coupled dark energy models mimicking a $\Lambda CDM$ expansion},
author = {Stephane Fay},
journal= {arXiv preprint arXiv:1605.01644},
year = {2016}
}
Comments
7 pages, 5 figures, accepted for publication in MNRAS