JADES: Insights on the low-mass end of the mass--metallicity--star-formation rate relation at $3 < z < 10$ from deep JWST/NIRSpec spectroscopy
Mirko Curti, Roberto Maiolino, Emma Curtis-Lake, Jacopo Chevallard,, Stefano Carniani, Francesco D'Eugenio, Tobias J. Looser, Jan Scholtz,, Stephane Charlot, Alex Cameron, Hannah \"Ubler, Joris Witstok, Kristian, Boyett, Isaac Laseter, Lester Sandles, Santiago Arribas

TL;DR
This study uses JWST/NIRSpec data to analyze the low-mass galaxy population at high redshift, revealing a shallower mass-metallicity relation, deviations from local relations, and implications for feedback and galaxy evolution models.
Contribution
It provides the first detailed characterization of the mass-metallicity-star formation relation for low-mass galaxies at z>3 using JWST data, highlighting differences from local universe relations.
Findings
Shallower slope in the low-mass end of the MZR at high redshift.
Deviation from the local fundamental metallicity relation at z > 6.
Evidence for different feedback mechanisms in dwarf galaxies at early times.
Abstract
We analyse the gas-phase metallicity properties of a sample of low stellar mass (log M*/M_sun <= 9) galaxies at 3 < z < 10, observed with JWST/NIRSpec as part of the JADES programme in its deep GOODS-S tier. By combining this sample with more massive galaxies at similar redshifts from other programmes, we study the scaling relations between stellar mass, oxygen abundance (O/H), and star-formation rate (SFR) for 146 galaxies, spanning across three orders of magnitude in stellar mass and out to the epoch of early galaxy assembly. We find evidence for a shallower slope at the low-mass-end of the mass-metallicity relation (MZR), with 12 + log(O/H) = (7.72+-0.02) + (0.17+-0.03) log(M* / 10^8 M_sun), in good agreement with the MZR probed by local analogues of high-redshift systems like 'Green Pea' and 'Blueberry' galaxies. The inferred slope is well matched by models including…
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Taxonomy
TopicsGalaxies: Formation, Evolution, Phenomena · Astronomy and Astrophysical Research · Stellar, planetary, and galactic studies
