Unveiling the nature of 11 dusty star-forming galaxies at the peak of cosmic star formation history

Abstract

We present a panchromatic study of 11 (sub-)millimetre selected DSFGs with spectroscopically confirmed redshift (1.5< z spec<3) in the GOODS-S field, with the aim of constraining their astrophysical properties (e.g., age, stellar mass, dust and gas content) and characterizing their role in the context of galaxy evolution. The multi-wavelength coverage of GOODS-S, from X-rays to radio band, allow us to model galaxy SED by using CIGALE with a novel approach, based on a physical motivated modelling of stellar light attenuation by dust. Median stellar mass (6.5×1010 M) and SFR (241 M yr-1) are consistent with galaxy main-sequence at z2. The galaxies are experiencing an intense and dusty burst of star formation (median L IR2×1012 L), with a median age of 750 Myr. The high median content of interstellar dust (M dust5×108 M) suggests a rapid enrichment of the ISM (on timescales 108 yr). We derived galaxy total and molecular gas content from CO spectroscopy and/or Rayleigh-Jeans dust continuum (1010 M gas/M1011), depleted over a typical timescale τ depl200 Myr. X-ray and radio luminosities suggest that most of the galaxies hosts an accreting radio silent/quiet SMBH. This evidence, along with their compact multi-wavelength sizes (median r ALMA r VLA=1.8 kpc, r HST=2.3 kpc) measured from high-resolution imaging (θ res 1 arcsec), indicates these objects as the high-z star-forming counterparts of massive quiescent galaxies, as predicted e.g., by the in-situ scenario. Four objects show some signatures of a forthcoming/ongoing AGN feedback, that is thought to trigger the morphological transition from star-forming disks to ETGs.

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