(Sub)millimetre interferometric imaging of a sample of COSMOS/AzTEC submillimetre galaxies - II. The spatial extent of the radio-emitting regions
Oskari Miettinen, Mladen Novak, Vernesa Smol\v{c}i\'c, Eva Schinnerer,, Mark Sargent, Eric J. Murphy, Manuel Aravena, Marco Bondi, Chris L. Carilli,, Alex Karim, Mara Salvato, and Gianni Zamorani

TL;DR
This study uses high-resolution radio observations to measure the sizes of star-forming regions in submillimetre galaxies, revealing larger radio-emitting areas than dust continuum sizes, and suggesting extended gas components and merger-driven processes.
Contribution
First high-resolution 3 GHz radio imaging of a flux-limited SMG sample in COSMOS, measuring sizes and exploring their relation to galaxy properties.
Findings
Median radio size of 4.2 kpc for detected SMGs.
No strong correlation between size and flux or redshift.
Radio sizes are larger than dust continuum sizes, indicating extended gas components.
Abstract
Radio emission at cm wavelengths from highly star-forming galaxies, such as SMGs, is dominated by synchrotron radiation arising from supernova activity. Using deep, high-resolution ( Jy beam; ) cm radio-continuum observations taken by the VLA-COSMOS 3 GHz Large Project, we studied the radio-emitting sizes of a flux-limited sample of SMGs in the COSMOS field. Of the 39 SMGs studied here, 3 GHz emission was detected towards 18 of them () with S/N ratios in the range of . Using 2D elliptical Gaussian fits, we derived a median deconvolved major axis FWHM size of for our 18 SMGs detected at 3 GHz. For the 15 SMGs with known redshift we derived a median linear major axis FWHM of kpc. No clear correlation was found between the radio-emitting size and the 3 GHz or submm flux density, or the…
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