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Multiply lensed star forming clumps in the A521-sys1 galaxy at redshift 1

Messa, Matteo; Dessauges-Zavadsky, Miroslava; Richard, Johan; Adamo, Angela; Nagy, David; Combes, Françoise; Mayer, Lucio; Ebeling, Harald (2022). Multiply lensed star forming clumps in the A521-sys1 galaxy at redshift 1. Monthly Notices of the Royal Astronomical Society, 516(2):2420-2443.

Abstract

We study the population of star-forming clumps in A521-sys1, a z=1.04 system gravitationally lensed by the foreground (⁠z=0.25⁠) cluster Abell 0521. The galaxy presents one complete counter-image with a mean magnification of μ∼4 and a wide arc containing two partial images of A521-sys1 with magnifications reaching μ>20⁠, allowing the investigations of clumps down to scales of Reff<50 pc. We identify 18 unique clumps with a total of 45 multiple images. Intrinsic sizes and UV magnitudes reveal clumps with elevated surface brightnesses comparable to similar systems at redshifts z≳1.0⁠. Such clumps account for ∼40per cent of the galaxy UV luminosity implying a significant fraction of the recent star-formation activity is taking place there. Clump masses range from 106 to 109M⊙ and sizes from tens to hundreds of parsec resulting in mass surface densities from 10 to 103M⊙pc−2 with a median of ∼102M⊙pc−2⁠. These properties suggest that we detect star formation taking place across a wide range of scale from cluster aggregates to giant star-forming complexes. We find ages of less than 100 Myr consistent with clumps being observed close to their natal region. The lack of galactocentric trends with mass, mass density, or age and the lack of old migrated clumps can be explained either by dissolution of clumps after few ∼100 Myr or by stellar evolution making them fall below the detectability limits of our data

Additional indexing

Item Type:Journal Article, refereed, original work
Communities & Collections:07 Faculty of Science > Department of Astrophysics
Dewey Decimal Classification:530 Physics
Uncontrolled Keywords:Space and Planetary Science, Astronomy and Astrophysics
Language:English
Date:10 September 2022
Deposited On:21 Nov 2022 07:40
Last Modified:25 Feb 2025 02:37
Publisher:Oxford University Press
ISSN:0035-8711
OA Status:Hybrid
Free access at:Publisher DOI. An embargo period may apply.
Publisher DOI:https://doi.org/10.1093/mnras/stac2189
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  • Language: English
  • Licence: Creative Commons: Attribution 4.0 International (CC BY 4.0)

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