A Critical Look at the Mass-Metallicity-SFR Relation in the Local Universe. I. An Improved Analysis Framework and Confounding Systematics
arXiv:1411.7391 · doi:10.1088/0004-637X/797/2/126
Abstract
It has been proposed that the mass-metallicity relation of galaxies exhibits a secondary dependence on star formation rate (SFR), and that the resulting M-Z-SFR relation may be redshift-invariant, i.e., "fundamental." However, conflicting results on the character of the SFR dependence, and whether it exists, have been reported. To gain insight into the origins of the conflicting results, we (a) devise a non-parametric, astrophysically motivated analysis framework based on the offset from the star-forming ("main") sequence at a given stellar mass (relative specific SFR), (b) apply this methodology and perform a comprehensive re-analysis of the local M-Z-SFR relation, based on SDSS, GALEX, and WISE data, and (c) study the impact of sample selection, and of using different metallicity and SFR indicators. We show that metallicity is anti-correlated with specific SFR regardless of the indicators used. We do not find that the relation is spurious due to correlations arising from biased metallicity measurements, or fiber aperture effects. We emphasize that the dependence is weak/absent for massive galaxies (), and that the overall scatter in the M-Z-SFR relation does not greatly decrease from the M-Z relation. We find that the dependence is stronger for the highest SSFR galaxies above the star-forming sequence. This two-mode behavior can be described with a broken linear fit in 12+log(O/H) vs. log (SFR), at a given . Previous parameterizations used for comparative analysis with higher redshift samples that do not account for the more detailed behavior of the local M-Z-SFR relation may incorrectly lead to the conclusion that those samples follow a different relationship.
ApJ. Several minor corrections
References in corpus (26)
- Introducing the Illustris Project: Simulating the coevolution of dark and visible matter in the Universe
- UV Star Formation Rates in the Local Universe
- A Highly Consistent Framework for the Evolution of the Star-Forming "Main Sequence" from z~0-6
- A simple model to interpret the ultraviolet, optical and infrared emission from galaxies
- The Mass-Metallicity Relation at z~2
- Strong Nebular Line Ratios in the Spectra of z~2-3 Star-forming Galaxies: First Results from KBSS-MOSFIRE
- Mass, Metal, and Energy Feedback in Cosmological Simulations
- The Origin of the Galaxy Mass-Metallicity Relation and Implications for Galactic Outflows
- Clues to the Origin of the Mass-Metallicity Relation: Dependence on Star Formation Rate and Galaxy Size
- The Universal Relation of Galactic Chemical Evolution: The Origin of the Mass-Metallicity Relation
- The UV-Optical Color Magnitude Diagram II: Physical Properties and Morphological Evolution On and Off of a Star-Forming Sequence
- The Origin and Evolution of the Mass-Metallicity Relationship for Galaxies: Results from Cosmological N-Body Simulations
- The Metallicity of Galaxy Disks: Infall versus Outflow
- CALIFA: a diameter-selected sample for an integral field spectroscopy galaxy survey
- Dependence of Galaxy Quenching on Halo Mass and Distance from its Centre
- Star formation sustained by gas accretion
- AGN Emission Line Diagnostics and the Mass-Metallicity Relation up to Redshift z~2: the Impact of Selection Effects and Evolution
- Charting the evolution of the ages and metallicities of massive galaxies since z=0.7
- Mid-IR Luminosities and UV/Optical Star Formation Rates at z<1.4
- A Consistent Study of Metallicity Evolution at 0.8 < z < 2.6
- The Diverse Properties of the Most Ultraviolet Luminous Galaxies Discovered by the Galaxy Evolution Explorer
- The Low Mass End of the Fundamental Relation for Gravitationally Lensed Star Forming Galaxies at 1<z<6
- Physical properties of galaxies and their evolution in the VIMOS VLT Deep Survey. I. The evolution of the mass-metallicity relation up to z~0.9
- The mass-metallicity and fundamental metallicity relations at z>2 using VLT and Subaru near-infrared spectroscopy of zCOSMOS galaxies
- Mid infrared properties of distant infrared luminous galaxies
- An empirical prediction for stellar metallicity distributions in nearby galaxies
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- The SAMI Galaxy Survey: Exploring the gas-phase Mass-Metallicity Relation
- The KLEVER Survey: Spatially resolved metallicity maps and gradients in a sample of 1.2 < z < 2.5 lensed galaxies
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- LOSS Revisited - I: Unraveling correlations between supernova rates and galaxy properties, as measured in a reanalysis of the Lick Observatory Supernova Search
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- CLEAR: Emission Line Ratios at Cosmic High Noon
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- ALMaQUEST -- IV. The ALMA-MaNGA QUEnching and STar formation (ALMaQUEST) Survey
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- Metal-poor, Strongly Star-Forming Galaxies in the DEEP2 Survey: The Relationship between Stellar Mass, Temperature-based Metallicity, and Star Formation Rate
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- The MOSDEF Survey: The Mass-Metallicity relationship and the existence of the FMR at z~1.5
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- DEVILS: Cosmic evolution of SED-derived metallicities and their connection to star-formation histories
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- pop-cosmos: A comprehensive picture of the galaxy population from COSMOS data
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- Spatially Resolved Gas-phase Metallicity in FIRE-2 Dwarfs: Late-Time Evolution of Metallicity Relations in Simulations with Feedback and Mergers
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- The fundamental metallicity relation from SDSS (z~0) to VIPERS (z~0.7) Data selection or evolution
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- The origin of correlations between mass, metallicity and morphology in galaxies from the EAGLE simulation
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- The MAGPI survey: The interdependence of the mass, star formation rate, and metallicity in galaxies at z~0.3
- Surface density: a new parameter in the fundamental metallicity relation of star-forming galaxies
- The JWST EXCELS Survey: gas-phase metallicity evolution at 2 < z < 8
- MUSUBI (MegaCam Ultra-deep Survey: -Band Imaging)-Data for the COSMOS and SXDS Fields
- The Stellar Population of Metal-Poor Galaxies at z 0.8 and the Evolution of the Mass-Metallicity Relation
- The ALMaQUEST Survey XVII: Unveiling Multiple Quenching Pathways in Green Valley Galaxies via Molecular Gas and Quenching Timescale Analyses
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- Galaxy And Mass Assembly (GAMA): The Dependence of Star Formation on Surface Brightness in Low Redshift Galaxies
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