Planck's Dusty GEMS: Gravitationally lensed high-redshift galaxies discovered with the Planck survey
R. Canameras, N. P. H. Nesvadba, D. Guery, T. McKenzie, S. Koenig, G., Petitpas, H. Dole, B. Frye, I. Flores-Cacho, L. Montier, M. Negrello, A., Beelen, F. Boone, D. Dicken, G. Lagache, E. Le Floch, B. Altieri, M., Bethermin, R. Chary, G. De Zotti, M. Giard, R. Kneissl, M. Krips

TL;DR
This paper reports the discovery and analysis of 11 gravitationally lensed high-redshift galaxies identified through the Planck survey, revealing their properties and star-formation activity.
Contribution
First detailed multi-wavelength characterization of a sample of gravitationally lensed high-z galaxies discovered by Planck.
Findings
All sources are strongly gravitationally lensed high-redshift galaxies.
Spectral energy distributions peak near 350 or 500 microns, indicating high luminosities.
Star-formation efficiencies and dust properties are consistent with intense high-redshift starbursts.
Abstract
We present an analysis of 11 bright far-IR/submm sources discovered through a combination of the Planck survey and follow-up Herschel-SPIRE imaging. Each source has a redshift z=2.2-3.6 obtained through a blind redshift search with EMIR at the IRAM 30-m telescope. Interferometry obtained at IRAM and the SMA, and optical/near-infrared imaging obtained at the CFHT and the VLT reveal morphologies consistent with strongly gravitationally lensed sources. Additional photometry was obtained with JCMT/SCUBA-2 and IRAM/GISMO at 850 um and 2 mm, respectively. All objects are bright, isolated point sources in the 18 arcsec beam of SPIRE at 250 um, with spectral energy distributions peaking either near the 350 um or the 500 um bands of SPIRE, and with apparent far-infrared luminosities of up to 3x10^14 L_sun. Their morphologies and sizes, CO line widths and luminosities, dust temperatures, and…
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