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CANUCS/Technicolor: JWST Medium Band Photometry Finds Half of the Star Formation at $z>7.5$ is Obscured

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arxiv 2503.01579 v3 pith:6OZE4EN6 submitted 2025-03-03 astro-ph.GA

classification astro-ph.GA
keywords galaxiesdustformationstarobscuredobscurationattenuationbands
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abstract

We present a sample of 146 high-redshift ($z>7.5$) galaxies from the CANUCS/Technicolor surveys, showcasing photometry in every wide- and medium-band NIRCam filter in addition to ancillary HST data sampling $0.4-5 \mu m$ (22 JWST bands out of 29 bands total). Additionally, 48 ($33\%$) galaxies in our sample meet criteria to be classified as extreme emission line galaxies, 15 ($10\%$) of which are completely missed by typical dropout selections due to faint UV emission. By fitting the SEDs covering the rest-frame UV to optical at $z > 7.5$, we investigate the dust obscuration properties, giving an unbiased view of dust buildup in high-redshift galaxies free from spectroscopic follow-up selection effects. Dust attenuation correlates with stellar mass, but more strongly with star formation rate. We find typical galaxies at $z>7.5$ have $\sim 25 \%$ of their star formation obscured. However, since galaxies with higher star formation rates suffer more attenuation, $\sim 50 \%$ of the total star formation rate density at $7.5<z<9$ is obscured. The obscured fraction drops to $\sim 35 \%$ in our $9<z<12$ bin, possibly due to substantial dust grain growth in the interstellar medium not having time to occur. Extrapolating the decline in dust obscuration of galaxies to higher redshifts, we infer that dust obscuration should approach zero at $z > 15$, implying that epoch as when dust first forms in bright galaxies.

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Cited by 3 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Trading oxygen for iron II. Oxygen- versus iron-dependent cosmic star formation history

    astro-ph.GA 2025-11 conditional novelty 6.5 of 10

    Most cosmic star formation occurred in gas with non-solar O/Fe; the cosmic mean [Fe/H] lags [O/H] by up to ~0.5 dex.

  2. MINERVA: A NIRCam Medium Band and MIRI Imaging Survey to Unlock the Hidden Gems of the Distant Universe

    astro-ph.GA 2025-07 conditional novelty 6.0 of 10

    The MINERVA survey will expand JWST medium-band imaging area by about 7 times and is forecast to cut photometric-redshift scatter and outlier fractions by factors of 3.7 and 2.6.

  3. Even redder than we knew: color and $A_{\mathrm{V}}$ evolution up to $z=2.5$ from JWST/NIRCam photometry

    astro-ph.GA 2025-06 conditional novelty 6.0 of 10

    Massive star-forming galaxies at z~2 have dust attenuation A_V of 2-3 (sometimes 4), far higher than pre-JWST surveys found, because the new NIRCam photometry fixes the photometric redshifts of the reddest galaxies.

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