Stellar masses and star formation rates of lensed dusty star-forming galaxies from the SPT survey
Jingzhe Ma, Anthony H. Gonzalez, J.S. Spilker, M. Strandet, M.L.N., Ashby, M. Aravena, M. B\'ethermin, M.S. Bothwell, C. de Breuck, M. Brodwin,, S.C. Chapman, C.D. Fassnacht, T.R. Greve, B. Gullberg, Y. Hezaveh, M. Malkan,, D.P. Marrone, B.R. Saliwanchik, J.D. Vieira, A. Wei\ss

TL;DR
This study measures stellar masses and star formation rates of six high-redshift, gravitationally lensed dusty star-forming galaxies, revealing intense starburst activity likely driven by mergers, using multi-wavelength data and lens modeling.
Contribution
First detailed multi-wavelength analysis of high-redshift lensed DSFGs with robust lens models and SED fitting to derive their stellar masses and star formation rates.
Findings
Stellar masses range over an order of magnitude, median ~5×10^{10} M_sun.
IR luminosities from 4×10^{12} to 4×10^{13} L_sun.
Star formation rates from 510 to 4800 M_sun/yr, all above the main sequence.
Abstract
To understand cosmic mass assembly in the Universe at early epochs, we primarily rely on measurements of stellar mass and star formation rate of distant galaxies. In this paper, we present stellar masses and star formation rates of six high-redshift () dusty, star-forming galaxies (DSFGs) that are strongly gravitationally lensed by foreground galaxies. These sources were first discovered by the South Pole Telescope (SPT) at millimeter wavelengths and all have spectroscopic redshifts and robust lens models derived from ALMA observations. We have conducted follow-up observations, obtaining multi-wavelength imaging data, using {\it HST}, {\it Spitzer}, {\it Herschel} and the Atacama Pathfinder EXperiment (APEX). We use the high-resolution {\it HST}/WFC3 images to disentangle the background source from the foreground lens in {\it Spitzer}/IRAC data. The detections and…
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