Submillimeter Array Identification of the Millimeter-Selected Galaxy SSA22-AzTEC1: A Protoquasar in a Protocluster?
Y. Tamura, D. Iono, D. J. Wilner, M. Kajisawa, Y. K. Uchimoto, D. M., Alexander, A. Chung, H. Ezawa, B. Hatsukade, T. Hayashino, D. H. Hughes, T., Ichikawa, S. Ikarashi, R. Kawabe, K. Kohno, B. D. Lehmer, Y. Matsuda, K., Nakanishi, T. Takata, G. W. Wilson, T. Yamada, M. S. Yun

TL;DR
This study identifies SSA22-AzTEC1 as a protoquasar within a protocluster at z=3.09, revealing a heavily obscured AGN with dominant star formation, using submillimeter, infrared, and X-ray observations.
Contribution
First detailed multiwavelength characterization of a protoquasar in a high-redshift protocluster environment.
Findings
SSA22-AzTEC1 is located at z≈3.19, consistent with the protocluster.
Hosts a heavily obscured AGN with high X-ray luminosity.
Star formation activity dominates the bolometric output.
Abstract
We present results from Submillimeter Array (SMA) 860-micron sub-arcsec astrometry and multiwavelength observations of the brightest millimeter (S_1.1mm = 8.4 mJy) source, SSA22-AzTEC1, found near the core of the SSA22 protocluster that is traced by Ly\alpha emitting galaxies at z = 3.09. We identify a 860-micron counterpart with a flux density of S_860um = 12.2 +/- 2.3 mJy and absolute positional accuracy that is better than 0.3". At the SMA position, we find radio to mid-infrared counterparts, whilst no object is found in Subaru optical and near-infrared deep images at wavelengths \le 1 micron (J > 25.4 in AB, 2\sigma). The photometric redshift estimate, using flux densities at \ge 24 microns, indicates z_phot = 3.19^{+0.26}_{-0.35}, consistent with the protocluster redshift. We then model the near-to-mid-infrared spectral energy distribution (SED) of SSA22-AzTEC1, and find that the…
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