An ALMA survey of submillimetre galaxies in the Extended <i>Chandra</i> Deep Field South: an unbiased study of SMG environments measured with narrowband imaging

Cornish, Thomas M and Wardlow, Julie and Wade, Heather and Sobral, David and Brandt, W N and Cox, Pierre and Dannerbauer, Helmut and Decarli, Roberto and Gullberg, Bitten and Knudsen, Kirsten and Stott, John and Swinbank, Mark and Walter, Fabian and van der Werf, Paul (2024) An ALMA survey of submillimetre galaxies in the Extended <i>Chandra</i> Deep Field South: an unbiased study of SMG environments measured with narrowband imaging. Monthly Notices of the Royal Astronomical Society, 533 (2). pp. 2399-2419. ISSN 0035-8711

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Abstract

Submillimetre galaxies (SMGs) are some of the most extreme star-forming systems in the Universe, whose place in the framework of galaxy evolution is as yet uncertain. It has been hypothesised that SMGs are progenitors of local early-type galaxies, requiring that SMGs generally reside in galaxy cluster progenitors at high redshift. We test this hypothesis and explore SMG environments using a narrowband VLT/HAWK-I+GRAAL study of Hα and [O iii] emitters around an unbiased sample of three ALMA-identified and spectroscopically-confirmed SMGs at z ∼ 2.3 and z ∼ 3.3, where these SMGs were selected solely on spectroscopic redshift. Comparing with blank-field observations at similar epochs, we find that one of the three SMGs lies in an overdensity of emission-line sources on the ∼4 Mpc scale of the HAWK-I field of view, with overdensity parameter $\delta _{g} = 2.6^{+1.4}_{-1.2}$. A second SMG is significantly overdense only on ≲ 1.6 Mpc scales and the final SMG is consistent with residing in a blank field environment. The total masses of the two overdensities are estimated to be log (Mh/M⊙) = 12.1–14.4, leading to present-day masses of log (Mh, z = 0/M⊙) = 12.9–15.9. These results imply that SMGs occupy a range of environments, from overdense protoclusters or protogroups to the blank field, suggesting that while some SMGs are strong candidates for the progenitors of massive elliptical galaxies in clusters, this may not be their only possible evolutionary pathway.

Item Type:
Journal Article
Journal or Publication Title:
Monthly Notices of the Royal Astronomical Society
Uncontrolled Keywords:
Research Output Funding/yes_externally_funded
Subjects:
?? yes - externally fundedyesastronomy and astrophysicsspace and planetary science ??
ID Code:
223299
Deposited By:
Deposited On:
21 Aug 2024 12:15
Refereed?:
Yes
Published?:
Published
Last Modified:
01 Oct 2024 01:00