Image Ellipticity from Atmospheric Aberrations
arXiv:astro-ph/0703102 · doi:10.1086/517873
Abstract
We investigate the ellipticity of the point-spread function (PSF) produced by imaging an unresolved source with a telescope, subject to the effects of atmospheric turbulence. It is important to quantify these effects in order to understand the errors in shape measurements of astronomical objects, such as those used to study weak gravitational lensing of field galaxies. The PSF modeling involves either a Fourier transform of the phase information in the pupil plane or a ray-tracing approach, which has the advantage of requiring fewer computations than the Fourier transform. Using a standard method, involving the Gaussian weighted second moments of intensity, we then calculate the ellipticity of the PSF patterns. We find significant ellipticity for the instantaneous patterns (up to more than 10%). Longer exposures, which we approximate by combining multiple (N) images from uncorrelated atmospheric realizations, yield progressively lower ellipticity (as 1 / sqrt(N)). We also verify that the measured ellipticity does not depend on the sampling interval in the pupil plane using the Fourier method. However, we find that the results using the ray-tracing technique do depend on the pupil sampling interval, representing a gradual breakdown of the geometric approximation at high spatial frequencies. Therefore, ray tracing is generally not an accurate method of modeling PSF ellipticity induced by atmospheric turbulence unless some additional procedure is implemented to correctly account for the effects of high spatial frequency aberrations. The Fourier method, however, can be used directly to accurately model PSF ellipticity, which can give insights into errors in the statistics of field galaxy shapes used in studies of weak gravitational lensing.
9 pages, 5 color figures (some reduced in size). Accepted for publication in the Astrophysical Journal
References in corpus (4)
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- Simulation of Astronomical Images from Optical Survey Telescopes using a Comprehensive Photon Monte Carlo Approach
- Towards Precision LSST Weak-Lensing Measurement - I: Impacts of Atmospheric Turbulence and Optical Aberration
- The impact of high spatial frequency atmospheric distortions on weak lensing measurements
- Spurious Shear in Weak Lensing with LSST
- Atmospheric PSF Interpolation for Weak Lensing in Short Exposure Imaging Data
- Point spread function modelling for astronomical telescopes: a review focused on weak gravitational lensing studies
- An H-band Vector Vortex Coronagraph for the Subaru Coronagraphic Extreme-Adaptive Optics System
- Testing PSF Interpolation In Weak Lensing With Real Data
- Toward understanding the anisotropic point spread function of Suprime-Cam and its impact on cosmic shear measurement
- Reducing Systematic Error in Cluster Scale Weak Lensing
- Chromatic Effects on the PSF and Shear Measurement for the Roman Space Telescope High-Latitude Wide Area Survey
- Characterizing the Instrumental Profile of LAMOST