arXiv · 0910.1539
Imprints of dynamical dark energy on weak-lensing measurements
Abstract
We show that simple models of scalar-field dark energy leave a generic enhancement in the weak-lensing power spectrum when compared to the LCDM prediction. In particular, we calculate the linear-scale enhancement in the convergence (or cosmic-shear) power spectrum for two best-fit models of scalar-field dark energy, namely, the Ratra-Peebles and SUGRA-type quintessence. Our calculations are based on linear perturbation theory, using gauge-invariant variables with carefully defined adiabatic initial conditions. We find that geometric effects enhance the lensing power spectrum on a broad range of scales, whilst the clustering of dark energy gives rise to additional power on large scales. The dark-energy power spectrum for these models are also explicitly obtained. On degree scales, the total enhancement may be as large as 30-40% for sources at redshift ~1. We argue that there are realistic prospects for detecting such an enhancement using the next generation of large telescopes.
Explore related subjects
Keep this discovery
Sirichai Chongchitnan, Lindsay King. 2009-10-08. Imprints of dynamical dark energy on weak-lensing measurements. https://doi.org/10.1111/j.1365-2966.2010.17054.x
Cite the original work for its findings. Save a collection to share your selection of sources.