Exploring the Structure of Distant Galaxies with Adaptive Optics on the Keck-II Telescope
arXiv:astro-ph/0008411 · doi:10.1086/317719
Abstract
We report on the first observation of cosmologically distant field galaxies with an high order Adaptive Optics (AO) system on an 8-10 meter class telescope. Two galaxies were observed at 1.6 microns at an angular resolution as high as 50 milliarcsec using the AO system on the Keck-II telescope. Radial profiles of both objects are consistent with those of local spiral galaxies and are decomposed into a classic exponential disk and a central bulge. A star-forming cluster or companion galaxy as well as a compact core are detected in one of the galaxies at a redshift of 0.37+/-0.05. We discuss possible explanations for the core including a small bulge, a nuclear starburst, or an active nucleus. The same galaxy shows a peak disk surface brightness that is brighter than local disks of comparable size. These observations demonstrate the power of AO to reveal details of the morphology of distant faint galaxies and to explore galaxy evolution.
5 pages, Latex, 3 figures. Accepted for publication in P.A.S.P
References in corpus (2)
Cited by in corpus (6)
- Adaptive Optics Rest-Frame V-band Imaging of Lyman Break Galaxies at z~3: High-surface Density Disk-like Galaxies ?
- Accounting for anisoplanatic point spread function in deep wide-field adaptive optics images
- High resolution science with high redshift galaxies
- Galaxy morphology and evolution from SWAN Adaptive Optics imaging
- Galaxies in Southern Bright Star Fields I. Near-infrared imaging
- CATS: CfAO Treasury Survey of distant galaxies, supernovae, and AGN's