Deep optical galaxy counts with the Keck Telescope
Abstract
We present faint galaxy counts from deep images obtained with the Keck Telescope. These images reach in median seeing FWHM --0.6 arcsec and we detect a integrated galaxy number density of degree, equivalent to galaxies in the observable Universe. In addition we present median galaxy colors as a function of magnitude; bluing trends are visible in all colors to . Fainter than , however, the typical \VR\ color becomes redder again, \VI\ remains constant, and \RI\ becomes yet bluer. These trends are consistent with the count slopes, implying a decrease in the slope at the faintest levels, which our data supports. Taking advantage of our good seeing we also present median half-light radii for faint galaxies, these show a steady decline at fainter magnitudes, leading to an intrinsic half-light radius of arcsec for a typical --26 galaxy. Irrespective of the redshift distribution, the extremely high galaxy surface densities and their small intrinsic sizes are consistent with a scenario in which the majority of the very faint field population are dwarf galaxies or sub-galactic units.
Cite
@article{arxiv.astro-ph/9506095,
title = {Deep optical galaxy counts with the Keck Telescope},
author = {Ian Smail and David W. Hogg and Lin Yan and Judy Cohen},
journal= {arXiv preprint arXiv:astro-ph/9506095},
year = {2009}
}
Comments
7 pages plus four figures in a self-unpacking uuencoded tar file. Accepted for publication, ApJ Letters