Detection of molecular gas in a distant submillimetre galaxy at z=4.76 with ATCA
Kristen Coppin (1), Scott Chapman (2), Ian Smail (1), Mark Swinbank, (1), Fabian Walter (3), Julie Wardlow (4), Axel Weiss (5), David M. Alexander, (4), Niel Brandt (6), Helmut Dannerbauer (7), Carlos De Breuck (8), Mark, Dickinson (9), James Dunlop (10), Alastair Edge (1)

TL;DR
This study reports the detection of molecular gas in a distant submillimetre galaxy at z=4.76, providing insights into early galaxy formation and the properties of high-redshift SMGs.
Contribution
First detection of CO(2-1) emission in a z~5 SMG, constraining its gas and dynamical mass, and comparing it with galaxy formation models.
Findings
Massive gas reservoir detected (~1.6x10^10 Msun)
Dynamical mass estimate (~5x10^10 Msun)
Gas properties consistent with lower-redshift SMGs
Abstract
We have detected the CO(2-1) transition from the submillimetre galaxy (SMG) LESSJ033229.4-275619 at z=4.755 using the new Compact Array Broadband Backend system on the Australian Telescope Compact Array. These data have identified a massive gas reservoir available for star formation for the first time in an SMG at z~5. We use the luminosity and velocity width (FWHM of 160 km/s) of the CO(2--1) line emission to constrain the gas and dynamical mass of Mgas~1.6x10^10 Msun and Mdyn(<2kpc)~5x10^10 (0.25/sin^2(i)) Msun, respectively, similar to that observed for SMGs at lower redshifts of z~2-4, although we note that our observed CO FWHM is a factor of ~3 narrower than typically seen in SMGs. Together with the stellar mass we estimate a total baryonic mass of Mbary~1x10^11 Msun, consistent with the dynamical mass for this young galaxy within the uncertainties. Dynamical and baryonic mass…
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