The COS-Halos Survey: Keck LRIS and Magellan MagE Optical Spectroscopy
Jessica K. Werk, J. Xavier Prochaska, Christopher Thom, Jason, Tumlinson, Todd M. Tripp, John M. O'Meara, and Joseph D. Meiring

TL;DR
This study provides detailed optical spectra and galaxy properties for 67 low-redshift galaxies near background QSOs, aiming to map the physical state and metallicity of gaseous galaxy halos using combined optical and UV data.
Contribution
It offers a comprehensive dataset of galaxy properties and optical spectra that, together with UV spectroscopy, enables analysis of halo gas and galaxy interactions at low redshift.
Findings
Galaxy sample spans diverse colors, masses, and star formation rates.
Optical data quality allows precise redshift and property measurements.
Sample characteristics agree with general low-redshift galaxy population.
Abstract
We present high signal-to-noise optical spectra for 67 low-redshift (0.1 < z < 0.4) galaxies that lie within close projected distances (5 kpc < rho < 150 kpc) of 38 background UV-bright QSOs. The Keck LRIS and Magellan MagE data presented here are part of a survey that aims to construct a statistically sampled map of the physical state and metallicity of gaseous galaxy halos using the Cosmic Origins Spectrograph (COS) on the Hubble Space Telescope (HST). We provide a detailed description of the optical data reduction and subsequent spectral analysis that allow us to derive the physical properties of this uniquely data-rich sample of galaxies. The galaxy sample is divided into 38 pre-selected L ~ L*, z ~ 0.2 "target" galaxies and 29 "bonus" galaxies that lie in close proximity to the QSO sightlines. We report galaxy spectroscopic redshifts accurate to +/- 30 km s-1, impact parameters,…
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