Novel z ∼ 10 auroral line measurements extend the gradual offset of the fundamental metallicity relation deep into the first gigayear of cosmic time
Pollock CL, Gottumukkala R, Heintz KE, Brammer GB, Roberts-Borsani G, Oesch PA, Witstok J, Arellano-Córdova KZ, Cullen F, Scholte D, Terp C, Rowland L, Sneppen A, Ito K, Valentino F, Matthee JJ, Watson D, Toft S. 2026. Novel z ∼ 10 auroral line measurements extend the gradual offset of the fundamental metallicity relation deep into the first gigayear of cosmic time. Astronomy & Astrophysics. 708, A203.
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Author
Pollock, Clara L.;
Gottumukkala, Rashmi;
Heintz, Kasper E.;
Brammer, Gabriel B.;
Roberts-Borsani, Guido;
Oesch, Pascal A.;
Witstok, Joris;
Arellano-Córdova, Karla Z.;
Cullen, Fergus;
Scholte, Dirk;
Terp, Chamilla;
Rowland, Lucie
All
All
Department
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 utilise new, high-quality spectroscopic JWST/NIRSpec Prism observations from the JWST archive. In particular, we extend the wavelength coverage beyond the standard pipeline cut-off (5.3 μm) up to 5.5 μm, which enables for the first time a detailed examination of the rest-frame optical emission-line properties for galaxies at z ≈ 10. Crucially, the improved calibration allows us to detect Hβ and the [O III] λλ4959, 5007 doublet and resolve the auroral [O III] λ4363 line for the 11 galaxies in our sample (z = 9.3 − 10.0) to obtain direct Te-based metallicity measurements. We find that the interstellar medium (ISM) of all galaxies shows high ionisation fields and electron temperatures, with derived metallicities in the range 12 + log(O/H) = 7.1 − 8.3 (3–50% solar), consistent with previous strong-line diagnostics based on JWST data at high redshifts. We derive an empirical relation for MUV and 12 + log(O/H) at z ≈ 10, useful for future higher-redshift studies, and show that the sample galaxies are ‘typical’ star-forming galaxies though with relatively high specific star formation rates (median sSFR = SFRHβ/M★ = 38 Gyr−1) and with evidence of bursty star formation on 10 Myr versus 100 Myr timescales (log10(SFR10/SFR100)≈0.7). Combining the rest-frame optical line analysis and detailed UV to optical spectro-photometric modelling, we determine the mass-metallicity relation (MZR) and the fundamental metallicity relation (FMR) of the sample, pushing the previous redshift frontier of these measurements to z = 10. These results, together with literature measurements, point to a gradually decreasing MZR at higher redshifts, with a break in the FMR at z ≈ 3, decreasing to metallicities ≈3× lower at z = 10 than observed in galaxies during the majority of cosmic time at z = 0 − 3, likely caused by massive pristine gas inflows diluting the observed metal abundances during early galaxy assembly at cosmic dawn.
Publishing Year
Date Published
2026-04-01
Journal Title
Astronomy & Astrophysics
Publisher
EDP Sciences
Acknowledgement
We would like to thank the referee for providing a comprehensive and constructive report, greatly improving the results presented in this work. We further express our greatest gratitude to the investigators on the major JWST observing programs, such as RUBIES, CAPERS, UNCOVER, and JADES. The work presented here would not have been possible without their major efforts in designing and obtaining the observational data included in our work here. The Cosmic Dawn Center (DAWN) is funded by the Danish National Research Foundation under grant DNRF140. The data products presented herein were retrieved from the DAWN JWST Archive (DJA). DJA is an initiative of the Cosmic Dawn Center, which is funded by the Danish National Research Foundation under grant DNRF140. This work has received funding from the Swiss State Secretariat for Education, Research and Innovation (SERI) under contract number MB22.00072, as well as from the Swiss National Science Foundation (SNSF) through project grant 200020_207349. This work is based in part on observations made with the NASA/ESA/CSA James Webb Space Telescope. The data were obtained from the Mikulski Archive for Space Telescopes (MAST) at the Space Telescope Science Institute, which is operated by the Association of Universities for Research in Astronomy, Inc., under NASA contract NAS 5-03127 for JWST. Software used in this work includes MATPLOTLIB (Hunter 2007), NUMPY (Harris et al. 2020), SCIPY (Virtanen et al. 2020), and ASTROPY (Astropy Collaboration 2013).
Volume
708
Article Number
A203
ISSN
eISSN
IST-REx-ID
Cite this
Pollock CL, Gottumukkala R, Heintz KE, et al. Novel z ∼ 10 auroral line measurements extend the gradual offset of the fundamental metallicity relation deep into the first gigayear of cosmic time. Astronomy & Astrophysics. 2026;708. doi:10.1051/0004-6361/202556032
Pollock, C. L., Gottumukkala, R., Heintz, K. E., Brammer, G. B., Roberts-Borsani, G., Oesch, P. A., … Toft, S. (2026). Novel z ∼ 10 auroral line measurements extend the gradual offset of the fundamental metallicity relation deep into the first gigayear of cosmic time. Astronomy & Astrophysics. EDP Sciences. https://doi.org/10.1051/0004-6361/202556032
Pollock, Clara L., Rashmi Gottumukkala, Kasper E. Heintz, Gabriel B. Brammer, Guido Roberts-Borsani, Pascal A. Oesch, Joris Witstok, et al. “Novel z ∼ 10 Auroral Line Measurements Extend the Gradual Offset of the Fundamental Metallicity Relation Deep into the First Gigayear of Cosmic Time.” Astronomy & Astrophysics. EDP Sciences, 2026. https://doi.org/10.1051/0004-6361/202556032.
C. L. Pollock et al., “Novel z ∼ 10 auroral line measurements extend the gradual offset of the fundamental metallicity relation deep into the first gigayear of cosmic time,” Astronomy & Astrophysics, vol. 708. EDP Sciences, 2026.
Pollock CL, Gottumukkala R, Heintz KE, Brammer GB, Roberts-Borsani G, Oesch PA, Witstok J, Arellano-Córdova KZ, Cullen F, Scholte D, Terp C, Rowland L, Sneppen A, Ito K, Valentino F, Matthee JJ, Watson D, Toft S. 2026. Novel z ∼ 10 auroral line measurements extend the gradual offset of the fundamental metallicity relation deep into the first gigayear of cosmic time. Astronomy & Astrophysics. 708, A203.
Pollock, Clara L., et al. “Novel z ∼ 10 Auroral Line Measurements Extend the Gradual Offset of the Fundamental Metallicity Relation Deep into the First Gigayear of Cosmic Time.” Astronomy & Astrophysics, vol. 708, A203, EDP Sciences, 2026, doi:10.1051/0004-6361/202556032.
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