paper

Novel auroral line measurements extend the gradual offset of the FMR deep into the first Gyr of cosmic time

arXiv:2506.15779 · doi:10.1051/0004-6361/202556032

Abstract

The mass assembly and chemical enrichment of the first galaxies provide key insights into their star-formation histories and the earliest stellar populations at cosmic dawn. Here we compile and utilize new, high-quality spectroscopic JWST/NIRSpec Prism observations from the JWST archive. We extend the wavelength coverage beyond the standard pipeline cutoff up to 5.5m, enabling a detailed examination of the rest-frame optical emission-line properties for galaxies at . The improved calibration allows us to detect H and the [OIII] doublet and resolve the auroral [OIII] line for the 11 galaxies in our sample () to obtain direct -based metallicity measurements. We find that all galaxies show high ionisation fields and electron temperatures, with derived metallicities in the range , consistent with previous strong-line diagnostics at high-z. We derive an empirical relation for and 12+log(O/H) at , useful for future higher-z studies, and show that the sample galaxies are `typical' star-forming galaxies though with relatively high specific star-formation rates and with evidence for bursty star formation. Combining the rest-frame optical line analysis and detailed UV to optical SED modelling, we determine the mass-metallicity relation and the fundamental-metallicity relation of the sample, pushing the redshift frontier of these measurements to . These results, together with literature measurements, point to a gradually decreasing MZR at higher redshifts, with a break in the FMR at , decreasing to metallicities lower at than observed during the majority of cosmic time at , likely caused by massive pristine gas inflows diluting the observed metal abundances during early galaxy assembly at cosmic dawn.

Submitted to A&A, 13 pages, 8 figures

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