Magellan LDSS3 emission confirmation of galaxies hosting metal-rich Lyman-alpha absorption systems
Lorrie A. Straka (1), Sean D. Johnson (2), Donald G. York (2,3), David, V. Bowen (4), Michael Florian (2), Varsha P. Kulkarni (5), Britt Lundgren, (6), Celine Peroux (7) ((1) Sterrewacht Leiden, (2) University of Chicago,, (3) Enrico Fermi Institute, (4) Princeton University

TL;DR
This study uses Magellan LDSS3 spectroscopy to confirm galaxies hosting high-metallicity Lyman-alpha absorption systems, measuring their properties and exploring the relationship between impact parameters, metallicity, and absorption features.
Contribution
First spectroscopic confirmation of host galaxies for high-metallicity Lyman-alpha absorbers at specific redshifts, including measurements of star formation rates and metallicities.
Findings
Confirmed three host galaxies at redshifts 0.7387, 0.7401, and 0.9286.
Measured SFRs range from 11 to 25 solar masses per year.
Found no metallicity gradient between absorption and emission metallicities.
Abstract
Using the Low Dispersion Survey Spectrograph 3 at the Magellan II Clay Telescope, we target {candidate absorption host galaxies} detected in deep optical imaging {(reaching limiting apparent magnitudes of 23.0-26.5 in and filters) in the fields of three QSOs, each of which shows the presence of high metallicity, high absorption systems in their spectra (Q0826-2230: =0.9110, Q1323-0021: , Q1436-0051: ). We confirm three host galaxies {at redshifts 0.7387, 0.7401, and 0.9286} for two of the Lyman- absorption systems (one with two galaxies interacting). For these systems, we are able to determine the star formation rates (SFRs); impact parameters (from previous imaging detections); the velocity shift between the absorption and emission redshifts; and, for one system, also the emission metallicity.} Based…
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