Cosmic shear analysis of archival HST/ACS data: I. Comparison of early ACS pure parallel data to the HST/GEMS Survey
T. Schrabback, T. Erben, P. Simon, J.-M. Miralles, P. Schneider, C., Heymans, T. Eifler, R.A.E. Fosbury, W. Freudling, M. Hetterscheidt, H., Hildebrandt, and N. Pirzkal

TL;DR
This paper demonstrates a new PSF correction method for ACS data, successfully measuring cosmic shear and estimating the matter power spectrum normalization, while addressing systematic errors in weak lensing analysis.
Contribution
It introduces a novel PSF correction scheme that accounts for time variation, enabling more accurate cosmic shear measurements from archival HST/ACS data.
Findings
PSF correction reduces systematics to < 2×10^{-6} for galaxy fields.
Remaining systematics in parallel data are attributed to insufficient dithering.
Estimated sigma_8 in the CDFS is 0.52, indicating a local under-density.
Abstract
This is the first paper of a series describing our measurement of weak lensing by large-scale structure using archival observations from the Advanced Camera for Surveys (ACS) on board the Hubble Space Telescope (HST). In this work we present results from a pilot study testing the capabilities of the ACS for cosmic shear measurements with early parallel observations and presenting a re-analysis of HST/ACS data from the GEMS survey and the GOODS observations of the Chandra Deep Field South (CDFS). We describe our new correction scheme for the time-dependent ACS PSF based on observations of stellar fields. This is currently the only technique which takes the full time variation of the PSF between individual ACS exposures into account. We estimate that our PSF correction scheme reduces the systematic contribution to the shear correlation functions due to PSF distortions to < 2*10^{-6} for…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Adaptive optics and wavefront sensing · Astronomy and Astrophysical Research
