Impact of Atmospheric Chromatic Effects on Weak Lensing Measurements
arXiv:1409.6273 · doi:10.1088/0004-637X/807/2/182
Abstract
Current and future imaging surveys will measure cosmic shear with statistical precision that demands a deeper understanding of potential systematic biases in galaxy shape measurements than has been achieved to date. We use analytic and computational techniques to study the impact on shape measurements of two atmospheric chromatic effects for ground-based surveys such as the Dark Energy Survey and the Large Synoptic Survey Telescope (LSST): (i) atmospheric differential chromatic refraction and (ii) wavelength dependence of seeing. We investigate the effects of using the point spread function (PSF) measured with stars to determine the shapes of galaxies that have different spectral energy distributions than the stars. We find that both chromatic effects lead to significant biases in galaxy shape measurements for current and future surveys, if not corrected. Using simulated galaxy images, we find a form of chromatic `model bias' that arises when fitting a galaxy image with a model that has been convolved with a stellar, instead of galactic, point spread function. We show that both forms of atmospheric chromatic biases can be predicted (and corrected) with minimal model bias by applying an ordered set of perturbative PSF-level corrections based on machine-learning techniques applied to six-band photometry. Catalog-level corrections do not address the model bias. We conclude that achieving the ultimate precision for weak lensing from current and future ground-based imaging surveys requires a detailed understanding of the wavelength dependence of the PSF from the atmosphere, and from other sources such as optics and sensors. The source code for this analysis is available at https://github.com/DarkEnergyScienceCollaboration/chroma .
25 pages, 14 figures, accepted by ApJ
References in corpus (6)
- The Milky Way Tomography with SDSS: II. Stellar Metallicity
- Systematic Bias in Cosmic Shear: Beyond the Fisher Matrix
- PSF calibration requirements for dark energy from cosmic shear
- Toward 1% Photometry: End-to-end Calibration of Astronomical Telescopes and Detectors
- Towards More Precise Survey Photometry for PanSTARRS and LSST: Measuring Directly the Optical Transmission Spectrum of the Atmosphere
- Shear Recovery Accuracy in Weak Lensing Analysis with Elliptical Gauss-Laguerre Method
Cited by in corpus (7)
- Point spread function modelling for astronomical telescopes: a review focused on weak gravitational lensing studies
- Analytical Weak-lensing Shear Responses of Galaxy Properties and Galaxy Detection
- Metadetection Weak Lensing for the Vera C. Rubin Observatory
- The Dark Energy Survey Supernova Program: Corrections on photometry due to wavelength-dependent atmospheric effects
- Dark Energy Survey Year 6 Results: Cell-based Coadds and Metadetection Weak Lensing Shape Catalogue
- Chromatic Effects on the PSF and Shear Measurement for the Roman Space Telescope High-Latitude Wide Area Survey
- The chromatic Point Spread Function of weak lensing measurement in Chinese Space Station survey Telescope