Lossy compression of weak lensing data
arXiv:1106.5805 · doi:10.1086/661748
Abstract
Future orbiting observatories will survey large areas of sky in order to constrain the physics of dark matter and dark energy using weak gravitational lensing and other methods. Lossy compression of the resultant data will improve the cost and feasibility of transmitting the images through the space communication network. We evaluate the consequences of the lossy compression algorithm of Bernstein et al. (2010) for the high-precision measurement of weak-lensing galaxy ellipticities. This square-root algorithm compresses each pixel independently, and the information discarded is by construction less than the Poisson error from photon shot noise. For simulated space-based images (without cosmic rays) digitized to the typical 16 bits per pixel, application of the lossy compression followed by image-wise lossless compression yields images with only 2.4 bits per pixel, a factor of 6.7 compression. We demonstrate that this compression introduces no bias in the sky background. The compression introduces a small amount of additional digitization noise to the images, and we demonstrate a corresponding small increase in ellipticity measurement noise. The ellipticity measurement method is biased by the addition of noise, so the additional digitization noise is expected to induce a multiplicative bias on the galaxies' measured ellipticities. After correcting for this known noise-induced bias, we find a residual multiplicative ellipticity bias of m ~ -4x10^{-4}. This bias is small when compared to the many other issues that precision weak lensing surveys must confront, and furthermore we expect it to be reduced further with better calibration of ellipticity measurement methods.
11 pages, 9 figures, aastex; PASP in press
References in corpus (11)
- Report of the Dark Energy Task Force
- The Shear TEsting Programme 2: Factors affecting high precision weak lensing analyses
- Evidence for the accelerated expansion of the Universe from weak lensing tomography with COSMOS
- COSMOS: 3D weak lensing and the growth of structure
- Results of the GREAT08 Challenge: An image analysis competition for cosmological lensing
- Optimal Surveys for Weak Lensing Tomography
- Findings of the Joint Dark Energy Mission Figure of Merit Science Working Group
- Astronomical Image Simulation for Telescope and Survey Development
- Pixelation Effects in Weak Lensing
- Color, 3D simulated images with shapelets
- Noise and bias in square-root compression schemes