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Early Results from GLASS-JWST. XXI: Rapid assembly of a galaxy at z=6.23 revealed by its C/O abundance

Authors :
Jones, Tucker
Sanders, Ryan
Chen, Yuguang
Wang, Xin
Morishita, Takahiro
Roberts-Borsani, Guido
Treu, Tommaso
Dressler, Alan
Merlin, Emiliano
Paris, Diego
Santini, Paola
Bergamini, Pietro
Huntzinger, Erin
Nanayakkara, Themiya
Boyett, Kristan
Bradac, Marusa
Brammer, Gabriel
Calabro, Antonello
Glazebrook, Karl
Grasha, Kathryn
Mascia, Sara
Pentericci, Laura
Trenti, Michele
Vulcani, Benedetta
Publication Year :
2023

Abstract

The abundance of carbon relative to oxygen (C/O) is a promising probe of star formation history in the early universe, as the ratio changes with time due to production of these elements by different nucleosynthesis pathways. We present a measurement of $\log{\mathrm{(C/O)}} = -1.01\pm0.12$ (stat) $\pm0.15$ (sys) in a $z=6.23$ galaxy observed as part of the GLASS-JWST Early Release Science Program. Notably, we achieve good precision thanks to the detection of the rest-frame ultraviolet O III], C III], and C IV emission lines delivered by JWST/NIRSpec. The C/O abundance is $\sim$0.8 dex lower than the solar value and is consistent with the expected yield from core-collapse supernovae, indicating that longer-lived intermediate mass stars have not fully contributed to carbon enrichment. This in turn implies rapid buildup of a young stellar population with age $\lesssim100$ Myr in a galaxy seen $\sim$900 million years after the Big Bang. Our chemical abundance analysis is consistent with spectral energy distribution modeling of JWST/NIRCam photometric data, which indicates a current stellar mass $\log\,\mathrm{M}_* / \mathrm{M_{sun}} = 8.4^{+0.4}_{-0.2}$ and specific star formation rate sSFR $\simeq 20$ Gyr$^{-1}$. These results showcase the value of chemical abundances and C/O in particular to study the earliest stages of galaxy assembly.<br />16 pages, 4 figures, 2 tables. Accepted for publication in ApJL

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....c7a7a514aeb17c1e71cce9fe76767dfe