Multi-wavelength characterisation of z~2 clustered, dusty star forming galaxies discovered by Planck
I. Flores-Cacho, D. Pierini, G. Soucail, L. Montier, H. Dole, E., Pointecouteau, R. Pello, E. Le Floch, N. Nesvadba, G. Lagache, D. Guery, R., Canameras

TL;DR
This study characterizes a high-redshift galaxy structure detected by Planck, confirming it as two separate proto-clusters at z~1.7 and z~2.0, demonstrating Planck's effectiveness in identifying early large-scale structures.
Contribution
First complete multi-wavelength follow-up of a Planck high-z candidate revealing two distinct proto-clusters at z~2, showcasing Planck's capability to detect early universe structures.
Findings
Identification of two high-z structures at z~1.7 and z~2.0
Confirmation of over-density of galaxies in the candidate region
Demonstration of Planck's utility in detecting early large-scale structures
Abstract
(abridged) We report the discovery of PHz G95.5-61.6, a complex structure detected in emission in the Planck all-sky survey that corresponds to two over-densities of high-redshift galaxies. This is the first source from the Planck catalogue of high-z candidates that has been completely characterised with follow-up observations from the optical to the sub-millimetre domain. Herschel/SPIRE observations at 250, 350 and 500 microns reveal the existence of five sources producing a 500 microns emission excess that spatially corresponds to the candidate proto-clusters discovered by Planck. Further observations at CFHT in the optical bands (g and i) and in the near infrared (J, H and K_s), plus mid infrared observations with IRAC/Spitzer (at 3.6 and 4.5 microns) confirm that the sub-mm red excess is associated with an over-density of colour-selected galaxies. Follow-up spectroscopy of 13…
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