Halo-Galaxy Lensing: A Full Sky Approach
Abstract
The halo-galaxy lensing correlation function or the average tangential shear profile over sampled halos is a very powerful means of measuring the halo masses, the mass profile, and the halo-mass correlation function of very large separations in the linear regime. We reformulate the halo-galaxy lensing correlation in harmonic space. We find that, counter-intuitively, errors in the conventionally used flat-sky approximation remain at a % level even at very small angles. The errors increase at larger angles and for lensing halos at lower redshifts: the effect is at a few % level at the baryonic acoustic oscillation scales for lensing halos of , and comparable with the effect of primordial non-Gaussianity with at large separations. Our results allow to readily estimate/correct for the full-sky effect on a high-precision measurement of the average shear profile available from upcoming wide-area lensing surveys.
Cite
@article{arxiv.1007.4809,
title = {Halo-Galaxy Lensing: A Full Sky Approach},
author = {Roland de Putter and Masahiro Takada},
journal= {arXiv preprint arXiv:1007.4809},
year = {2010}
}
Comments
12 pages, 4 figures