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The onset of star formation 250 million years after the Big Bang
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abstract
A fundamental quest of modern astronomy is to locate the earliest galaxies and study how they influenced the intergalactic medium a few hundred million years after the Big Bang. The abundance of star-forming galaxies is known to decline from redshifts of about 6 to 10, but a key question is the extent of star formation at even earlier times, corresponding to the period when the first galaxies might have emerged. Here we present spectroscopic observations of MACS1149-JD1, a gravitationally lensed galaxy observed when the Universe was less than four per cent of its present age. We detect an emission line of doubly ionized oxygen at a redshift of $9.1096\pm0.0006$, with an uncertainty of one standard deviation. This precisely determined redshift indicates that the red rest-frame optical colour arises from a dominant stellar component that formed about 250 million years after the Big Bang, corresponding to a redshift of about 15. Our results indicate the it may be possible to detect such early episodes of star formation in similar galaxies with future telescopes.
Forward citations
Cited by 3 Pith papers
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Breathing Fire: Hot Dust in the Big Three Dragons at z = 7.15
The Big Three Dragons galaxy pair at z=7.15 has hot dust (T_d ≈ 78 K) and is almost fully obscured (f_obs ≈ 0.94), implying that UV-bright galaxies can host major hidden starbursts in the early universe.
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On the Origin of the Ly$\alpha$ Damping Wing in Galaxies at $8\le z \le 10$: Explorations using the NINJA Simulations
At z=8-10, the strongest JWST damped Lyα absorbers require neutral gas inside and around galaxies, and the NINJA models still underproduce them unless additional unresolved birth-cloud gas is invoked.
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A Massive Galaxy at the Edge of Feedback-Free Efficiency
UNCOVER 3686 at z = 9.31 has a star-formation efficiency of 20–60%, 2–6 times above empirical models and consistent with the feedback-free starburst scenario.
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