The SAMI galaxy survey: galaxy size can explain the offset between star-forming and passive galaxies in the mass-metallicity relationship
arXiv:2208.06939 · doi:10.1093/mnras/stac2304
Abstract
In this work, we investigate how the central stellar metallicity ([Z/H]) of 1363 galaxies from the SAMI galaxy survey is related to their stellar mass and a proxy for the gravitational potential, = log10(M/M*) - log10(/kpc). In agreement with previous studies, we find that passive and star-forming galaxies occupy different areas of the [Z/H]-M* plane, with passive galaxies having higher [Z/H] than star-forming galaxies at fixed mass (a difference of 0.23 dex at log10(M/M*)=10.3). We show for the first time that all galaxies lie on the same relation between [Z/H] and , and show that the offset in [Z/H] between passive and star-forming galaxies at fixed is smaller than or equal to the offset in [Z/H] at fixed mass (an average [Z/H] of 0.11 dex at fixed compared to 0.21 dex at fixed mass). We then build a simple model of galaxy evolution to explain and understand our results. By assuming that [Z/H] traces over cosmic time and that the probability that a galaxy quenches depends on both its mass and size, we are able to reproduce these offsets in stellar metallicity with a model containing instantaneous quenching. We therefore conclude that an offset in metallicity at fixed mass cannot by itself be used as evidence of slow quenching processes, in contrast to previous studies. Instead, our model implies that metal-rich galaxies have always been the smallest objects for their mass in a population. Our findings reiterate the need to consider galaxy size when studying stellar populations.
18 pages, 15 figures. Accepted for publication in MNRAS
References in corpus (46)
- The NumPy array: a structure for efficient numerical computation
- Mass and environment as drivers of galaxy evolution in SDSS and zCOSMOS and the origin of the Schechter function
- 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
- A Highly Consistent Framework for the Evolution of the Star-Forming "Main Sequence" from z~0-6
- Improving the full spectrum fitting method: accurate convolution with Gauss-Hermite functions
- 3D-HST+CANDELS: The Evolution of the Galaxy Size-Mass Distribution since
- 3D-HST WFC3-selected Photometric Catalogs in the Five CANDELS/3D-HST Fields: Photometry, Photometric Redshifts and Stellar Masses
- Binary Population and Spectral Synthesis Version 2.1: construction, observational verification and new results
- Strangulation as the primary mechanism for shutting down star formation in galaxies
- Compaction and Quenching of High-z Galaxies in Cosmological Simulations: Blue and Red Nuggets
- The SAMI Galaxy Survey: instrument specification and target selection
- The Atlas3D Project - XXX. Star formation histories and stellar population scaling relations of early-type galaxies
- An Objective Definition for the Main Sequence of Star-Forming Galaxies
- Evolutionary stellar population synthesis with MILES - II. Scaled-solar and α-enhanced models
- Evidence for Mature Bulges and an Inside-out Quenching Phase 3 Billion Years After the Big Bang
- The Size Evolution of Star-forming and Quenched Galaxies in the IllustrisTNG simulation
- Dissecting the Red Sequence--I. Star Formation Histories of Quiescent Galaxies: The Color-Magnitude vs. the Color-Sigma Relation
- Two Conditions for Galaxy Quenching: Compact Centres and Massive Haloes
- SDSS-IV MaNGA: environmental dependence of stellar age and metallicity gradients in nearby galaxies
- The SAMI Galaxy Survey: the third and final data release
- The VANDELS survey: the stellar metallicities of star-forming galaxies at 2.5 < z < 5.0
- The SAMI Galaxy Survey: Spatially Resolving the Main Sequence of Star Formation
- The SAMI Galaxy Survey: Global stellar populations on the size-mass plane
- The SAURON Project - XIV. No escape from V: a global and local parameter in early-type galaxy evolution
- SDSS-IV MaNGA: stellar population gradients as a function of galaxy environment
- The SAMI Galaxy Survey: Quenching of star formation in clusters I. Transition galaxies
- The Dependence of Theoretical Synthetic Spectra on -enhancement in Young, Binary Stellar Populations
- Half-mass radii of quiescent and star-forming galaxies evolve slowly from 0 < z < 2.5: implications for galaxy assembly histories
- The SAMI Galaxy Survey: Revising the Fraction of Slow Rotators in IFS Galaxy Surveys
- Comparison of Stellar Population Model Predictions Using Optical and Infrared Spectroscopy
- Physical interpretation of the near-infrared colours of low redshift galaxies
- The SAMI Galaxy Survey: Satellite galaxies undergo little structural change during their quenching phase
- The SAMI Galaxy Survey: Gas velocity dispersions in low- star-forming galaxies and the drivers of turbulence
- Satellite Quenching, Galaxy Inner Density and the Halo Environment
- The evolution of galaxy metallicity scaling relations in cosmological hydrodynamical simulations
- The SAMI Galaxy Survey: stellar population gradients of central galaxies
- On the Age and Metallicity Estimation of Spiral Galaxies Using Optical and Near-Infrared Photometry
- Gravitational Potential and Surface Density Drive Stellar Populations -- II. Star-Forming Galaxies
- Evolution of the Stellar Mass-Metallicity Relation. II. Constraints on Galactic Outflows from the Mg Abundances of Quiescent Galaxies
- Recovering stellar population parameters via different population models and stellar libraries
- The SAMI Galaxy Survey: mass-kinematics scaling relations
- The Relation between Dynamical Mass-to-Light Ratio and Color for Massive Quiescent Galaxies out to z~2 and Comparison with Stellar Population Synthesis Models
- SHDE: Survey description and mass-kinematics scaling relations for dwarf galaxies
- The SAMI Galaxy Survey: The role of disc fading and progenitor bias in kinematic transitions
- K-CLASH: Strangulation and Ram Pressure Stripping in Galaxy Cluster Members at 0.3 < z < 0.6
- Lick Indices and Spectral Energy Distribution Analysis based on an M31 Star Cluster Sample: Comparisons of Methods and Models
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- The SAMI Galaxy Survey: Using Tidal Streams and Shells to Trace the Dynamical Evolution of Massive Galaxies
- The SAMI Galaxy Survey: galaxy spin is more strongly correlated with stellar population age than mass or environment
- Universal bimodality in kinematic morphology and the divergent pathways to galaxy quenching
- Age-Divided Mean Stellar Populations from Full Spectrum Fitting as the Simplified Star Formation and Chemical Evolution History of a Galaxy: Methodology and Reliability
- The hyperplane of early-type galaxies: using stellar population properties to increase the precision and accuracy of the fundamental plane as a distance indicator
- The SAMI Survey: Evidence for dynamical coupling of ionised gas and young stellar populations
- Measuring the evolution of stellar bars with the host galaxy's spin