Far-infrared properties of submillimeter and optically faint radio galaxies
B. Magnelli, D. Lutz, S. Berta, B. Altieri, P. Andreani, H. Aussel, H., Castaneda, A. Cava, J. Cepa, A. Cimatti, E. Daddi, H. Dannerbauer, H., Dominguez, D. Elbaz, N. Forster Schreiber, R. Genzel, A. Grazian, C., Gruppioni, G. Magdis, R. Maiolino, R. Nordon, I. Perez Fournon

TL;DR
This study uses Herschel PACS data to analyze the far-infrared properties of submillimeter and optically faint radio galaxies, confirming their high luminosities and star-formation rates, and validating the FIR/radio correlation at high redshift.
Contribution
First detailed Herschel PACS analysis of FIR properties of SMGs and OFRGs, confirming high luminosities and star-formation rates, and validating FIR/radio correlation at high redshift.
Findings
Median dust temperature for SMGs is 36±8K.
Median dust temperature for OFRGs is 47±3K.
SMGs have median IR luminosity of 4.6×10^12 Lsun.
Abstract
We use deep observations obtained with the Photodetector Array Camera and Spectrometer (PACS) onboard the Herschel space observatory to study the far-infrared (FIR) properties of submm and optically faint radio galaxies (SMGs and OFRGs). From literature we compiled a sample of 35 securely identified SMGs and nine OFRGs located in the GOODS-N and the A2218 fields. This sample is cross-matched with our PACS 100 um and 160 um multi-wavelength catalogs. About half of the galaxies in our sample are detected with PACS. The dust temperatures and the infrared luminosities of our galaxies are derived by fitting their PACS and SCUBA 850 um (only the upper limits for the OFRGs) flux densities with a single modified (beta=1.5) black body function. The median dust temperature of our SMG sample is T=36+/-8K while for our OFRG sample it is T=47+/-3K. For both samples, median dust temperatures derived…
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