Galaxy metallicities depend primarily on stellar mass and molecular gas mass
arXiv:1606.04102 · doi:10.1051/0004-6361/201527918
Abstract
In this work we present an analysis of the behaviour of galaxies in a four-dimensional parameter space defined by stellar mass, metallicity, star formation rate, and molecular gas mass. We analyse a combined sample of 227 galaxies, which draws from a number of surveys across the redshift range 0 < z < 2 (> 90% of the sample at z~0), and covers > 3 decades in stellar mass.Using Principle Component Analysis, we demonstrate that galaxies in our sample lie on a 2-dimensional plane within this 4D parameter space, indicative of galaxies that exist in an equilibrium between gas inflow and outflow. Furthermore, we find that the metallicity of galaxies depends only on stellar mass and molecular gas mass. In other words, gas-phase metallicity has a negligible dependence on star formation rate, once the correlated effect of molecular gas content is accounted for. The well-known `fundamental metallicity relation', which describes a close and tight relationship between metallicity and SFR (at fixed stellar mass) is therefore entirely a by-product of the underlying physical relationship with molecular gas mass (via the Schmidt-Kennicutt relation).
5 pages, 2 figures. Accepted for publication in A&A
References in corpus (5)
- COLD GASS, an IRAM legacy survey of molecular gas in massive galaxies: I. Relations between H2, HI, stellar content and structural properties
- 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
- ALLSMOG: an APEX Low-redshift Legacy Survey for MOlecular Gas. I - molecular gas scaling relations, and the effect of the CO/H2 conversion factor
- The Main Sequence and the Fundamental Metallicity Relation in MaGICC Galaxies: Evolution and Scatter
Cited by in corpus (51)
- De Re Metallica: The cosmic chemical evolution of galaxies
- The Mass-Metallicity and the Fundamental Metallicity Relation revisited on a fully Te-based abundance scale for galaxies
- The MOSDEF Survey: The Evolution of the Mass-Metallicity Relation from to
- The cold interstellar medium of galaxies in the Local Universe
- The MOSDEF survey: a stellar mass-SFR-metallicity relation exists at
- The Mass-Metallicity Relation revisited with CALIFA
- Galaxy metallicity scaling relations in the EAGLE simulations
- Stellar Absorption Line Analysis of Local Star-Forming Galaxies: The Relation Between Stellar Mass, Metallicity, Dust Attenuation and Star Formation Rate
- Similar star formation rate and metallicity evolution timescales drive the fundamental metallicity relation
- Turbulent Gas in Lensed Planck-selected Starbursts at redshifts 1-3.5
- Predictions for the spatial distribution of the dust continuum emission in 1<z<5 star-forming galaxies
- SDSS-IV MaNGA: What Shapes The Distribution Of Metals In Galaxies? Exploring The Roles Of The Local Gas Fraction And Escape Velocity
- The Effect of Galaxy Interactions on Molecular Gas Properties
- The final data release of ALLSMOG: a survey of CO in typical local low-M* star-forming galaxies
- The role of atomic hydrogen in regulating the scatter of the mass-metallicity relation
- The metallicity's fundamental dependence on both local and global galactic quantities
- ALMaQUEST -- IV. The ALMA-MaNGA QUEnching and STar formation (ALMaQUEST) Survey
- Tracing Molecular Gas in z 6 Galaxies with [C]
- The KLEVER survey: Nitrogen abundances at 2 and probing the existence of a fundamental nitrogen relation
- Assessing the sources of reionisation: a spectroscopic case study of a 30 lensed galaxy at with Lyα, CIV, MgII, and [NeIII]
- The mass-metallicity relation of high-z type-2 active galactic nuclei
- SPT0346-52: Negligible AGN Activity in a Compact, Hyper-starburst Galaxy at z = 5.7
- Gas-phase Metallicity as a Diagnostic of the Drivers of Star-formation on Different Spatial Scales
- Revealing the physical properties of gas accreting to haloes in the EAGLE simulations
- Disentangling the physical parameters of gaseous nebulae and galaxies
- Local anti-correlation between star-formation rate and gas-phase metallicity in disk galaxies
- CO Emission, Molecular Gas, and Metallicity in Main-Sequence Star-Forming Galaxies at
- Dissecting the roles of mass and environment quenching in galaxy evolution with EAGLE
- Explaining the scatter in the galaxy mass-metallicity relation with gas flows
- The fundamental metallicity relation emerges from the local anti-correlation between star formation rate and gas-phase metallicity existing in disk galaxies
- The diversity of the circumgalactic medium around z = 0 Milky Way-mass galaxies from the Auriga simulations
- A controlled study of cold dust content in galaxies from
- Neutral carbon and highly excited CO in a massive star-forming main sequence galaxy at z=2.2
- Dust, gas, and metal content in star-forming galaxies at revealed with ALMA and Near-IR spectroscopy
- Evolution of dwarf galaxies hosting GW150914-like events
- Gas Accretion and Galactic Chemical Evolution: Theory and Observations
- HI gas content of SDSS galaxies revealed by ALFALFA: implications for the mass-metallicity relation and the environmental dependence of HI in the local Universe
- The Role of Inner HI Mass in Regulating the Scatter of the Mass-Metallicity Relation
- Which galaxy property is the best gauge of the oxygen abundance?
- Gas Accretion and Star Formation Rates
- De-noising of galaxy optical spectra with autoencoders
- Cold gas mass measurements for the era of large optical spectroscopic surveys
- xCOLDGASS and xGASS: Radial metallicity gradients and global properties on the star-forming main sequence
- The origin of correlations between mass, metallicity and morphology in galaxies from the EAGLE simulation
- Surface density: a new parameter in the fundamental metallicity relation of star-forming galaxies
- The relationship between cluster environment and molecular gas content of star-forming galaxies in the EAGLE simulation
- The [C II] line emission as an interstellar medium probe in the MARIGOLD galaxies
- Low Metallicity Galaxies from the Dark Energy Survey
- Rapid, out of equilibrium metal enrichment indicated by a flat mass-metallicity relation at z~6 from NIRCam grism spectroscopy
- Scaling relations and baryonic cycling in local star-forming galaxies: I. The sample
- The extension of the Fundamental Metallicity Relation beyond the BPT star-forming sequence: evidence for both gas accretion and starvation