Bound star clusters observed in a lensed galaxy 460 Myr after the Big Bang.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 38914113.
- Also identified by DOI 10.1038/s41586-024-07703-7 and PMC identifier 11324512.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
The Cosmic Gems arc is among the brightest and highly magnified galaxies observed at redshift z ≈ 10.2 (ref. <sup>1</sup>). However, it is an intrinsically ultraviolet faint galaxy, in the range of those now thought to drive the reionization of the Universe<sup>2-4</sup>. Hitherto the smallest features resolved in a galaxy at a comparable redshift are between a few hundreds and a few tens of parsecs (pc)<sup>5,6</sup>. Here we report JWST observations of the Cosmic Gems. The light of the galaxy is resolved into five star clusters located in a region smaller than 70 pc. They exhibit minimal dust attenuation and low metallicity, ages younger than 50 Myr and intrinsic masses of about 10<sup>6</sup>M<sub>⊙</sub>. Their lensing-corrected sizes are approximately 1 pc, resulting in stellar surface densities near 10<sup>5</sup>M<sub>⊙</sub> pc<sup>-2</sup>, three orders of magnitude higher than typical young star clusters in the local Universe<sup>7</sup>. Despite the uncertainties inherent to the lensing model, they are consistent with being gravitationally bound stellar systems, that is, proto-globular clusters. We conclude that star cluster formation and feedback likely contributed to shaping the properties of galaxies during the epoch of reionization.