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3D weak lensing

2003/04/10 by Alan Heavens · 1 citation
Physics and Astronomy · #astro-ph

paper · pdf · doi:10.1046/j.1365-8711.2003.06780.x

published as Mon.Not.Roy.Astron.Soc. 343 (2003) 1327 · 8 pages; submitted to MNRAS

arxiv created 2003/04/10 · arxiv updated 2009/12/01

Abstract

I propose an analysis method, based on spin-spherical harmonics and spherical Bessel functions, for large-scale weak lensing surveys which have source distance information through photometric redshifts. I show that the distance information can significantly reduce statistical errors on cosmological parameters; in particular, 3D lensing analysis offers excellent prospects for constraining the equation of state of the vacuum energy which dominates the energy density of the Universe. I show that the ratio of pressure to energy density could be determined to an accuracy of ∼ 1% or better. Having distance information also offers significant advantages in the control of systematic effects such as the intrinsic alignment of galaxies. The case for obtaining photometric redshifts is therefore compelling. A signal-to-noise eigenmode analysis of the modes shows that the modes with highest signal-to-noise correspond quite closely to ignoring the redshift information, but there is significant extra information from a few radial modes. These modes are generally long-wavelength, suggesting that useful information can be gleaned even if the photometric redshifts are relatively inaccurate.

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