Faint Submillimter Galaxy Counts at 450 micron
Chian-Chou Chen, Lennox L. Cowie, Amy J. Barger, Caitlin M. Casey,, Nicholas Lee, David B. Sanders, Wei-Hao Wang, Jonathan P. Williams

TL;DR
This study uses SCUBA2 to observe faint submillimeter galaxies at 450 and 850 microns behind the A370 cluster, revealing deeper counts than previous surveys and insights into their redshift distribution and contribution to the extragalactic background light.
Contribution
First deep 450 micron counts in a lensing field, extending previous Herschel results, and analyzing the redshift distribution of submillimeter sources using multi-wavelength data.
Findings
450 micron counts are four times deeper than Herschel results.
Approximately 47-61% of the 450 micron EBL is resolved into sources above 4.5 mJy.
High radio counterpart identification rate (85%) for bright 450 micron sources.
Abstract
We present the results of SCUBA2 observations at 450 micron and 850 micron of the field lensed by the massive cluster A370. With a total survey area > 100 arcmin2 and 1 sigma sensitivities of 3.92 and 0.82 mJy/beam at 450 and 850 micron respectively, we find a secure sample of 20 sources at 450 micron and 26 sources at 850 micron with a signal-to-noise ratio > 4. Using the latest lensing model of A370 and Monte Carlo simulations, we derive the number counts at both wavelengths. The 450 micron number counts probe a factor of four deeper than the counts recently obtained from the Herschel Space Telescope at similar wavelengths, and we estimate that ~47-61% of the 450 micron extragalactic background light (EBL) resolved into individual sources with 450 micron fluxes greater than 4.5 mJy. The faint 450 micron sources in the 4 sigma sample have positional accuracies of 3 arcseconds, while…
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