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      CEERS: MIRI deciphers the spatial distribution of dust-obscured star formation in galaxies at 0.1<z<2.5

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          Abstract

          [Abridged] We combine HST images from the Cosmic Assembly Near-infrared Deep Extragalactic Legacy Survey with JWST images from the Cosmic Evolution Early Release Science (CEERS) survey to measure the stellar and dust-obscured star formation distributions of a mass-complete (>1010M) sample of 95 star-forming galaxies (SFGs) at 0.1<z<2.5. Rest-mid-infrared (rest-MIR) morphologies (sizes and S\'ersic indices) are determined using their sharpest Mid-InfraRed Instrument (MIRI) images dominated by dust emission. Rest-MIR S\'ersic indices are only measured for the brightest MIRI sources (S/N>75; 38 galaxies). At lower S/N, simulations show that simultaneous measurements of the size and S\'ersic index become unreliable. We extend our study to fainter sources (S/N>10; 95 galaxies) by fixing their S\'ersic index to unity. The S\'ersic index of bright galaxies (S/N>75) has a median value of 0.7, which, together with their axis ratio distribution, suggests a disk-like morphology in the rest-MIR. Galaxies above the main sequence (MS; i.e., starbursts) have rest-MIR sizes that are a factor 2 smaller than their rest-optical sizes. The median rest-optical to rest-MIR size ratio of MS galaxies increases with stellar mass, from 1.1 at 109.8M to 1.6 at 1011M. This mass-dependent trend resembles the one found in the literature between the rest-optical and rest-near-infrared sizes of SFGs, suggesting that it is due to dust attenuation gradients affecting rest-optical sizes and that the sizes of the stellar and star-forming components of SFGs are, on average, consistent at all masses. There is, however, a small population of SFGs (15%) with a compact star-forming component embedded in a larger stellar structure. This could be the missing link between galaxies with an extended stellar component and those with a compact stellar component; the so-called blue nuggets.

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          Author and article information

          Journal
          30 May 2023
          Article
          2305.19331
          4a8409e3-537b-4f0d-8262-469967ecabe8

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

          History
          Custom metadata
          Submitted to A&A. 18 pages, 14 figures
          astro-ph.GA astro-ph.CO

          Cosmology & Extragalactic astrophysics,Galaxy astrophysics
          Cosmology & Extragalactic astrophysics, Galaxy astrophysics

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