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Title: Constraining dark energy evolution with gravitational lensing by large scale structures

Journal Article · · Physical Review. D, Particles Fields
;  [1]
  1. Center for Cosmology and Particle Physics, Physics Department, New York University, New York, New York 10003 (United States)

We study the sensitivity of weak lensing by large scale structures as a probe of the evolution of dark energy. We explore a two-parameters model of dark energy evolution, inspired by tracking quintessence models. To this end, we compute the likelihood of a few fiducial models with varying and nonvarying equation of states. For the different models, we investigate the dark energy parameter degeneracies with the mass power spectrum shape {gamma}, normalization {sigma}{sub 8}, and with the matter mean density {omega}{sub M}. We find that degeneracies are such that weak lensing turns out to be a good probe of dark energy evolution, even with limited knowledge on {gamma}, {sigma}{sub 8}, and {omega}{sub M}. This result is a strong motivation for performing large scale structure simulations beyond the simple constant dark energy models, in order to calibrate the nonlinear regime accurately. Such calibration could then be used for any large scale structure tests of dark energy evolution. Prospective for the Canada France Hawaii Telescope Legacy Survey and Super-Novae Acceleration Probe are given. These results complement nicely the cosmic microwave background and supernovae constraints.

OSTI ID:
20698224
Journal Information:
Physical Review. D, Particles Fields, Vol. 70, Issue 12; Other Information: DOI: 10.1103/PhysRevD.70.123515; (c) 2004 The American Physical Society; Country of input: International Atomic Energy Agency (IAEA); ISSN 0556-2821
Country of Publication:
United States
Language:
English