Characterizing the Adaptive Optics Off-Axis Point-Spread Function - I: A Semi-Empirical Method for Use in Natural-Guide-Star Observations
arXiv:astro-ph/0207261 · doi:10.1086/343217
Abstract
Even though the technology of adaptive optics (AO) is rapidly maturing, calibration of the resulting images remains a major challenge. The AO point-spread function (PSF) changes quickly both in time and position on the sky. In a typical observation the star used for guiding will be separated from the scientific target by 10" to 30". This is sufficient separation to render images of the guide star by themselves nearly useless in characterizing the PSF at the off-axis target position. A semi-empirical technique is described that improves the determination of the AO off-axis PSF. The method uses calibration images of dense star fields to determine the change in PSF with field position. It then uses this information to correct contemporaneous images of the guide star to produce a PSF that is more accurate for both the target position and the time of a scientific observation. We report on tests of the method using natural-guide-star AO systems on the Canada-France-Hawaii Telescope and Lick Observatory Shane Telescope, augmented by simple atmospheric computer simulations. At 25" off-axis, predicting the PSF full width at half maximum using only information about the guide star results in an error of 60%. Using an image of a dense star field lowers this error to 33%, and our method, which also folds in information about the on-axis PSF, further decreases the error to 19%.
29 pages, 9 figures, accepted for publication in the PASP
References in corpus (1)
Cited by in corpus (11)
- Adaptive Optics for Astronomy
- Three Wide Planetary-Mass Companions to FW Tau, ROXs 12, and ROXs 42B
- High Precision Astrometry with MICADO at the European Extremely Large Telescope
- Deconvolution With a Spatially-Variant PSF
- The Anisoplanatic Point Spread Function in Adaptive Optics
- Accounting for anisoplanatic point spread function in deep wide-field adaptive optics images
- Characterizing the Adaptive Optics Off-Axis Point-Spread Function. II. Methods for Use in Laser Guide Star Observations
- Keck Adaptive Optics Imaging of 0.5<z<1 Field Galaxies from the Hubble Space Telescope Archive
- Galaxies in Southern Bright Star Fields I. Near-infrared imaging
- CATS: Optical to Near-Infrared Colors of the Bulge and Disk of Two z=0.7 Galaxies Using HST and Keck Laser Adaptive Optics Imaging
- AO assisted spectroscopy with SINFONI: PSF, background, and interpolation