ALMA redshifts of millimeter-selected galaxies from the SPT survey: The redshift distribution of dusty star-forming galaxies
A. Weiss, C. De Breuck, D. P. Marrone, J. D. Vieira, J. E. Aguirre, K., A. Aird, M. Aravena, M. L. N. Ashby, M. Bayliss, B. A. Benson, M. Bethermin,, A. D. Biggs, L. E. Bleem, J. J. Bock, M. Bothwell, C. M. Bradford, M., Brodwin, J. E. Carlstrom, C. L. Chang, S. C. Chapman

TL;DR
This study uses ALMA to determine the redshift distribution of millimeter-selected dusty star-forming galaxies, revealing a higher mean redshift than radio-selected samples, and providing insights into galaxy evolution.
Contribution
First blind ALMA redshift survey of SPT-selected DSFGs, establishing their redshift distribution and demonstrating the effectiveness of spectral line identification.
Findings
Mean redshift of the sample is 3.5, higher than radio-selected DSFGs.
Approximately 70% of sources have secure redshifts.
Detected multiple emission lines in about half of the sources.
Abstract
Using the Atacama Large Millimeter/submillimeter Array (ALMA), we have conducted a blind redshift survey in the 3 mm atmospheric transmission window for 26 strongly lensd dusty star-forming galaxies (DSFGs) selected with the South Pole Telescope (SPT). The sources were selected to have S_1.4mm>20 mJy and a dust-like spectrum and, to remove low-z sources, not have bright radio (S_843MHz<6mJy) or far-infrared counterparts (S_100um<1 Jy, S_60um<200mJy). We robustly detect 44 line features in our survey, which we identify as redshifted emission lines of 12CO, 13CO, [CI], H2O, and H2O+. We find one or more spectral features in 23 sources yielding a ~90% detection rate for this survey; in 12 of these sources we detect multiple lines, while in 11 sources we detect only a single line. For the sources with only one detected line, we break the redshift degeneracy with additional spectroscopic…
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