Millimeter imaging of submillimeter galaxies in the COSMOS field: Redshift distribution
V. Smolcic, M. Aravena, F. Navarrete, E. Schinnerer, D. A. Riechers,, F. Bertoldi, C. Feruglio, A. Finoguenov, M. Salvato, M. Sargent, H. J., McCracken, M. Albrecht, A. Karim, P. Capak, C. L. Carilli, N. Cappelluti, M., Elvis, O. Ilbert, J. Kartaltepe, S. Lilly, D. Sanders

TL;DR
This study uses high-resolution millimeter imaging to analyze the redshift distribution of submillimeter galaxies in the COSMOS field, revealing higher redshifts and multiple source components than previously known.
Contribution
It provides the first detailed interferometric analysis of SMGs in COSMOS, showing the importance of high-resolution data for accurate redshift and counterpart identification.
Findings
15-40% of single-dish SMGs are multiple sources
Only ~50% of SMGs have confirmed multi-wavelength counterparts
Higher surface density of z>4 SMGs than models predict
Abstract
We present new IRAM PdBI 1.3mm continuum observations at ~1.5" resolution of 28 SMGs previously discovered with the 870um bolometer LABOCA at APEX within the central 0.7deg2 of the COSMOS field. 19 out of the 28 LABOCA sources were detected with the PdBI at a >~3sigma level of ~1.4mJy/b. A combined analysis of this new sample with existing interferometrically identified SMGs in the COSMOS field yields the following results: 1) >~15%, and possibly up to ~40% of single-dish detected SMGs consist of multiple sources, 2) statistical identifications of multi-wavelength counterparts to the single-dish SMGs yield that only ~50% of these single-dish SMGs have real radio or IR counterparts, 3) ~18% of interferometric SMGs have only radio or even no multi-wavelength counterpart at all, and 4) ~50-70% of z>~3 SMGs have no radio counterparts down to an rms of 7-12uJy at 1.4GHz. Using the exact…
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