The Extreme Low-mass End of the Mass-Metallicity Relation at
arXiv:2407.17110 · doi:10.3847/2041-8213/ad8dc9
Abstract
The mass-metallicity relation (MZR) provides crucial insights into the baryon cycle in galaxies and provides strong constraints on galaxy formation models. We use \jwst\ NIRSpec observations from the UNCOVER program to measure the gas-phase metallicity in a sample of eight galaxies during the epoch of reionization at . Thanks to the strong lensing of the galaxy cluster Abell 2744, we are able to probe extremely low stellar masses between and \msol. Using strong lines diagnostics and the most recent \jwst\ calibrations, we derive extremely-low oxygen abundances ranging from 12+log(O/H) = 6.7 to 7.8. By combining this sample with more massive galaxies at similar redshifts, we derive a best-fit relation of 12+{\rm log(O/H)} = , which becomes steeper than determinations at towards low-mass galaxies. Our results show a clear redshift evolution in the overall normalization of the relation, galaxies at higher redshift having significantly lower metallicities at a given mass. A comparison with theoretical models provides important constraints on which physical processes, such as metal mixing, star formation or feedback recipes, are important in reproducing the observations. Additionally, these galaxies exhibit star formation rates that are higher by a factor of a few to tens compared to extrapolated relations at similar redshifts or theoretical predictions of main-sequence galaxies, pointing to a recent burst of star formation. All these observations are indicative of highly stochastic star formation and ISM enrichment, expected in these low-mass systems, suggesting that feedback mechanisms in high- dwarf galaxies might be different from those in place at higher masses.
Accepted to ApJL
References in corpus (41)
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- Constraining the Low-Mass Slope of the Star Formation Sequence at 0.5<z<2.5
- Strong Nebular Line Ratios in the Spectra of z~2-3 Star-forming Galaxies: First Results from KBSS-MOSFIRE
- CEERS Key Paper I: An Early Look into the First 500 Myr of Galaxy Formation with JWST
- The Mass-Metallicity and the Fundamental Metallicity Relation revisited on a fully Te-based abundance scale for galaxies
- Clues to the Origin of the Mass-Metallicity Relation: Dependence on Star Formation Rate and Galaxy Size
- The Main Sequence of star-forming galaxies across cosmic times
- The Universal Relation of Galactic Chemical Evolution: The Origin of the Mass-Metallicity Relation
- New fully empirical calibrations of strong-line metallicity indicators in star forming galaxies
- Hubble Space Telescope Combined Strong and Weak Lensing Analysis of the CLASH Sample: Mass and Magnification Models and Systematic Uncertainties
- The chemical enrichment in the early Universe as probed by JWST via direct metallicity measurements at z~8
- The MOSDEF Survey: The Evolution of the Mass-Metallicity Relation from to
- Extragalactic chemical abundances: do HII regions and young stars tell the same story? The case of the spiral galaxy NGC 300
- Nebular Emission Line Ratios in z~2-3 Star-Forming Galaxies with KBSS-MOSFIRE: Exploring the Impact of Ionization, Excitation, and Nitrogen-to-Oxygen Ratio
- The star formation main sequence and stellar mass assembly of galaxies in the Illustris simulation
- The MOSDEF Survey: Excitation Properties of Star-forming Galaxies
- Introducing the NewHorizon simulation: Galaxy properties with resolved internal dynamics across cosmic time
- JADES NIRSpec Initial Data Release for the Hubble Ultra Deep Field: Redshifts and Line Fluxes of Distant Galaxies from the Deepest JWST Cycle 1 NIRSpec Multi-Object Spectroscopy
- CEERS Spectroscopic Confirmation of NIRCam-Selected z > 8 Galaxy Candidates with JWST/NIRSpec: Initial Characterization of their Properties
- Most of the photons that reionized the Universe came from dwarf galaxies
- JWST UNCOVER: Extremely red and compact object at triply imaged by Abell 2744
- z~2-9 Galaxies Magnified by the Hubble Frontier Field Clusters II: Luminosity Functions and Constraints on a Faint-End Turnover
- UNCOVERing the extended strong lensing structures of Abell 2744 with the deepest JWST imaging
- EMPRESS. V. Metallicity Diagnostics of Galaxies over 12+log(O/H)=~6.9-8.9 Established by a Local Galaxy Census: Preparing for JWST Spectroscopy
- JADES: Detecting [OIII] Emitters and Testing Strong Line Calibrations in the High- Universe with Ultra-deep JWST/NIRSpec Spectroscopy up to
- Coevolution of metallicity and star formation in galaxies to z=3.7: I. A fundamental plane
- The Star Formation Burstiness and Ionizing Efficiency of Low-mass Galaxies
- The nature of an ultra-faint galaxy in the cosmic Dark Ages seen with JWST
- The GLASS-JWST Early Release Science Program. III. Strong lensing model of Abell 2744 and its infalling regions
- Inferring More from Less: Prospector as a Photometric Redshift Engine in the Era of JWST
- New high-precision strong lensing modeling of Abell 2744. Preparing for JWST observations
- Unscrambling the lensed galaxies in JWST images behind SMACS0723
- Evolution of the Mass-Metallicity Relation from Redshift to the Local Universe
- The impact of an evolving stellar initial mass function on early galaxies and reionisation
- The mass-metallicity relation of Lyman-break analogues and its dependence on galaxy properties
- J2229+2725: an extremely low-metallicity dwarf compact star-forming galaxy with an exceptionally high [OIII]5007/[OII]3727 flux ratio of 53
- Astraeus V: The emergence and evolution of metallicity scaling relations during the Epoch of Reionization
- The mass-metallicity relation at z~1-2 and its dependence on star formation rate
- Stellar mass, not dynamical mass nor gravitational potential, drives the mass-metallicity relationship
- First Light And Reionisation Epoch Simulations (FLARES) XII: The consequences of star-dust geometry on galaxies in the EoR
- Properties of the Lowest Metallicity Galaxies Over the Redshift Range z = 0.2 to z = 1
Cited by in corpus (16)
- Synergising semi-analytical models and hydrodynamical simulations to interpret JWST data from the first billion years
- The mass-metallicity relation as a ruler for galaxy evolution: insights from the James Webb Space Telescope
- A Pristine Star-Forming Complex at z=4.19
- The first GLIMPSE of the faint galaxy population at Cosmic Dawn with JWST: The evolution of the ultraviolet luminosity function across z~9-15
- Explaining the Weak Evolution of the High-Redshift Mass-Metallicity Relation with Galaxy Burst Cycles
- Insights on Metal Enrichment and Environmental Effect at with JWST ASPIRE/EIGER and Chemical Evolution Model
- Very massive stars at low metallicity: evolution, synthetic spectroscopy, and impact on the integrated light of starbursts
- The JWST EXCELS Survey: gas-phase metallicity evolution at 2 < z < 8
- Rapid, out of equilibrium metal enrichment indicated by a flat mass-metallicity relation at z~6 from NIRCam grism spectroscopy
- The mass-metallicity relation at z>3 down to M_*= 10^4 M_Sun. A local perspective using the metallicity distribution of RR Lyrae stars
- The slope and scatter of the star forming main sequence at z~5 : reconciling observations with simulations
- GLIMPSE-D: Metallicity Decline in Faint Galaxies: Implications for [O III]+Hb Luminosity Function and Reionisation Budget
- The implications of overmassive black holes at for quasar and black hole growth
- Power-law Emission-line Wings and Radiation-Driven Superwinds in Local Lyman Continuum Emitters
- Out of oxygen: Extremely metal-poor galaxy candidates identified at with deep JADES medium-band imaging
- KURVS: chemical properties from multiple strong line calibrations for star-forming galaxies at