Initial results from a laboratory emulation of weak gravitational lensing measurements
arXiv:1308.3875 · doi:10.1086/673318
Abstract
Weak gravitational lensing observations are a key science driver for the NASA Wide Field Infrared Survey Telescope (WFIRST). To validate the performance of the WFIRST infrared detectors, we have performed a laboratory emulation of weak gravitational lensing measurements. Our experiments used a custom precision projector system to image a target mask composed of a grid of pinholes, emulating stellar point sources, onto a 1.7 micron cut-off Teledyne HgCdTe/H2RG detector. We used a 880nm LED illumination source and f/22 pupil stop to produce undersampled point spread functions similar to those expected from WFIRST. We also emulated the WFIRST image reconstruction strategy, using the IMage COMbination (IMCOM) algorithm to derive oversampled images from dithered, undersampled input images. We created shear maps for this data and computed shear correlation functions to mimic a real weak lensing analysis. After removing only 2nd order polynomial fits to the shear maps, we found that the correlation functions could be reduced to O(10^-6). This places a conservative upper limit on the detector-induced bias to the correlation function (under our test conditions). This bias is two orders of magnitude lower than the expected weak lensing signal. Restricted to scales relevant to dark energy analyses (sky separations > 0.5 arcmin), the bias is O(10^-7): comparable to the requirement for future weak lensing missions to avoid biasing cosmological parameter estimates. Our experiment will need to be upgraded and repeated under different configurations to fully characterize the shape measurement performance of WFIRST IR detectors.
57 pages (double-spaced preprint format), 17 color figures, accepted to PASP. Changes to version 2: fixed typos, figure quality
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- The effect of detector nonlinearity on WFIRST PSF profiles for weak gravitational lensing measurements
- Superresolution Reconstruction of Severely Undersampled Point-spread Functions Using Point-source Stacking and Deconvolution
- Brighter-fatter effect in near-infrared detectors -- III. Fourier-domain treatment of flat field correlations and application to WFIRST
- Weak Gravitational Lensing Systematics from Image Combination
- Quantum yield and charge diffusion in the Nancy Grace Roman Space Telescope infrared detectors
- Precision Projector Laboratory: Detector Characterization with an Astronomical Emulation Testbed
- Intra-pixel response characterization of a HgCdTe near infrared detector with a pronounced crosshatch pattern