Deep 1.1 mm-wavelength imaging of the GOODS-S field by AzTEC/ASTE - I. Source catalogue and number counts
K. S. Scott, M. S. Yun, G. W. Wilson, J. E. Austermann, E. Aguilar, I., Aretxaga, H. Ezawa, D. Ferrusca, B. Hatsukade, D. H. Hughes, D. Iono, M., Giavalisco, R. Kawabe, K. Kohno, P. D. Mauskopf, T. Oshima, T. A. Perera, J., Rand, Y. Tamura, T. Tosaki, M. Velazquez

TL;DR
This paper presents a deep 1.1 mm survey of the GOODS-S field, identifying dusty galaxies, deriving number counts, and providing insights into the cosmic infrared background and high-redshift galaxy populations.
Contribution
First deep 1.1 mm map of GOODS-S with robust source detection and number counts, constraining faint-end counts and revealing high-redshift dust-obscured galaxies.
Findings
Detected 41 dusty starburst galaxies with high confidence
Consistent number counts from two analysis methods
Evidence of high-redshift galaxies contributing significantly to the infrared background
Abstract
[Abridged] We present the first results from a 1.1 mm confusion-limited map of the GOODS-S field taken with AzTEC on the ASTE telescope. We imaged a 270 sq. arcmin field to a 1\sigma depth of 0.48 - 0.73 mJy/beam, making this one of the deepest blank-field surveys at mm-wavelengths ever achieved. Although our GOODS-S map is extremely confused, we demonstrate that our source identification and number counts analyses are robust, and the techniques discussed in this paper are relevant for other deeply confused surveys. We find a total of 41 dusty starburst galaxies with S/N >= 3.5 within this uniformly covered region, where only two are expected to be false detections. We derive the 1.1mm number counts from this field using both a "P(d)" analysis and a semi-Bayesian technique, and find that both methods give consistent results. Our data are well-fit by a Schechter function model with (S',…
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