Galaxy metallicity scaling relations in the EAGLE simulations
arXiv:1704.00006 · doi:10.1093/mnras/stx2158
Abstract
We quantify the correlations between gas-phase and stellar metallicities and global properties of galaxies, such as stellar mass, halo mass, age and gas fraction, in the Evolution and Assembly of GaLaxies and their Environments (EAGLE) suite of cosmological hydrodynamical simulations. The slope of the correlation between stellar mass and metallicity of star-forming (SF) gas ( relation) depends somewhat on resolution, with the higher-resolution run reproducing a steeper slope. This simulation predicts a non-zero metallicity evolution, increasing by dex at since . The simulated relation between stellar mass, metallicity and star formation rate at agrees remarkably well with the observed fundamental metallicity relation. At and fixed stellar mass, higher metallicities are associated with lower specific star formation rates, lower gas fractions and older stellar populations. On the other hand, at higher , there is a hint of an inversion of the dependence of metallicity on these parameters. The fundamental parameter that best correlates with the metal content, in the simulations, is the gas fraction. The simulated gas fraction-metallicity relation exhibits small scatter and does not evolve significantly since . In order to better understand the origin of these correlations, we analyse a set of lower resolution simulations in which feedback parameters are varied. We find that the slope of the simulated relation is mostly determined by stellar feedback at low stellar masses (), and at high masses () by the feedback from active galactic nuclei.
27 pages, 15 figures. Accepted for publication in MNRAS
References in corpus (35)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- Properties of galaxies reproduced by a hydrodynamic simulation
- The Mass-Metallicity Relation at z~2
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- Strong Nebular Line Ratios in the Spectra of z~2-3 Star-forming Galaxies: First Results from KBSS-MOSFIRE
- 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 dark nemesis of galaxy formation: why hot haloes trigger black hole growth and bring star formation to an end
- 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 Origin and Evolution of the Mass-Metallicity Relationship for Galaxies: Results from Cosmological N-Body Simulations
- The Metallicity of Galaxy Disks: Infall versus Outflow
- The MOSDEF Survey: Mass, Metallicity, and Star-formation Rate at z~2.3
- Simulations of Cosmic Chemical Enrichment
- Charting the evolution of the ages and metallicities of massive galaxies since z=0.7
- The Cosmic Evolution of Metallicity from the SDSS Fossil Record
- A Possible Origin of the Mass-Metallicity Relation of Galaxies
- MUFASA: Galaxy star formation, gas, and metal properties across cosmic time
- The Mass-Metallicity Relation revisited with CALIFA
- A Critical Look at the Mass-Metallicity-SFR Relation in the Local Universe. I. An Improved Analysis Framework and Confounding Systematics
- Non-equilibrium chemistry and cooling in the diffuse interstellar medium - II. Shielded gas
- The mass-metallicity and fundamental metallicity relations at z>2 using VLT and Subaru near-infrared spectroscopy of zCOSMOS galaxies
- Coevolution of metallicity and star formation in galaxies to z=3.7: I. A fundamental plane
- Vortex buoyancy in superfluid and superconducting neutron stars
- Clues for the origin of the fundamental metallicity relations. I: The hierarchical building up of the structure
- Cold-Mode Accretion: Driving the Fundamental Mass-Metallicity Relation at z~2
- The EAGLE simulations of galaxy formation: Public release of particle data
- The Relationship between Stellar Mass, Gas Metallicity, and Star Formation Rate for Halpha-selected Galaxies at z~0.8 from the NewHalpha Survey
- The origin of the enhanced metallicity of satellite galaxies
- On the 3D structure of the mass, metallicity, and SFR space for SF galaxies
- The evolution of galaxy metallicity scaling relations in cosmological hydrodynamical simulations
- The metallicity of galactic winds
- The Dependence of the Mass-Metallicity Relation on Large Scale Environment
Cited by in corpus (99)
- De Re Metallica: The cosmic chemical evolution of galaxies
- Understanding Galaxy Evolution through Emission Lines
- 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
- Introducing the NewHorizon simulation: Galaxy properties with resolved internal dynamics across cosmic time
- The evolution of the mass-metallicity relation in IllustrisTNG
- The MOSDEF Survey: Direct-Method Metallicities and ISM Conditions at
- Both starvation and outflows drive galaxy quenching
- Ultra-faint dwarfs in a Milky Way context: Introducing the Mint Condition DC Justice League Simulations
- The MOSDEF survey: a stellar mass-SFR-metallicity relation exists at
- Hydrodynamical simulations of the galaxy population: enduring successes and outstanding challenges
- The VANDELS survey: the stellar metallicities of star-forming galaxies at 2.5 < z < 5.0
- Simulating galactic dust grain evolution on a moving mesh
- Similar star formation rate and metallicity evolution timescales drive the fundamental metallicity relation
- Fundamental metallicity relation in CALIFA, SDSS-IV MaNGA and high-z galaxies
- The ARTEMIS simulations: stellar haloes of Milky Way-mass galaxies
- Hot dust in Panchromatic SED Fitting: Identification of AGN and improved galaxy properties
- Host galaxies of merging compact objects: mass, star formation rate, metallicity and colours
- Gas-phase metallicity gradients of TNG50 star-forming galaxies
- JADES: Detecting [OIII] Emitters and Testing Strong Line Calibrations in the High- Universe with Ultra-deep JWST/NIRSpec Spectroscopy up to
- Merger-Induced Metallicity Dilution in Cosmological Galaxy Formation Simulations
- The oxygen abundance gradients in the gas discs of galaxies in the EAGLE simulation
- The mass-metallicity relations for gas and stars in star-forming galaxies: strong outflow vs variable IMF
- Evolution of the Mass-Metallicity Relation from Redshift to the Local Universe
- SDSS-IV MaNGA: Modelling the metallicity gradients of gas and stars - radially dependent metal outflow vs IMF
- A Characteristic Mass Scale in the Mass-Metallicity Relation of Galaxies
- L-GALAXIES 2020: The evolution of radial metallicity profiles and global metallicities in disc galaxies
- The metallicity's fundamental dependence on both local and global galactic quantities
- Resolved galaxy scaling relations in the EAGLE simulation: star formation, metallicity and stellar mass on kpc scales
- Chemical abundance scaling relations for multiple elements in z~2-3 star-forming galaxies
- Mass and star formation rate of the host galaxies of compact binary mergers across cosmic time
- The diverse nature and formation paths of slow rotator galaxies in the EAGLE simulations
- On the origin of the mass-metallicity gradient relation in the local Universe
- The evolution of the oxygen abundance gradients in star-forming galaxies in the EAGLE simulations
- 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
- Mass-Metallicity and Star Formation Rate in Galaxies: a complex relation tuned to stellar age
- Where did the globular clusters of the Milky Way form? Insights from the E-MOSAICS simulations
- Revealing the properties of void galaxies and their assembly using the EAGLE simulation
- A novel approach to correcting -based mass-metallicity relations
- Galaxy pairs in the Sloan Digital Sky Survey -- XIV. Galaxy mergers do not lie on the Fundamental Metallicity Relation
- Weak Evolution of the Mass-metallicity Relation at Cosmic Dawn in the FirstLight Simulations
- Gas accretion regulates the scatter of the mass-metallicity relation
- GASP XXVII: Gas-phase metallicity scaling relations in disk galaxies with and without ram-pressure stripping
- Evolution of the Stellar Mass--Metallicity Relation - I: Galaxies in the z~0.4 Cluster Cl0024
- The kinematics of globular cluster populations in the E-MOSAICS simulations and their implications for the assembly history of the Milky Way
- Revealing the physical properties of gas accreting to haloes in the EAGLE simulations
- Star-forming galaxies are predicted to lie on a fundamental plane of mass, star formation rate and α-enhancement
- SDSS-IV MaNGA: drivers of stellar metallicity in nearby galaxies
- The impact of the FMR and starburst galaxies on the (low-metallicity) cosmic star formation history
- First Light And Reionisation Epoch Simulations (FLARES) VII: The Star Formation and Metal Enrichment Histories of Galaxies in the early Universe
- CO Emission, Molecular Gas, and Metallicity in Main-Sequence Star-Forming Galaxies at
- Calibrated, cosmological hydrodynamical simulations with variable IMFs I: Method and effect on global galaxy scaling relations
- Semi-analytic galaxies -- III. The impact of supernova feedback on the mass-metallicity relation
- Study of galaxies on large-scale filaments in simulations
- Stellar mass-metallicity relation throughout the large-scale structure of the Universe: CAVITY mother sample
- The evolution of the mass-metallicity relations from the VANDELS survey and the GAEA Semi-Analytic model
- The effect of gas accretion on the radial gas metallicity profile of simulated galaxies
- An astrophysically motivated ranking criterion for low-latency electromagnetic follow-up of gravitational wave events
- VIS3COS: III. environmental effects on the star formation histories of galaxies at z~0.8 seen in [OII], H, and Dn4000
- DEVILS: Cosmic evolution of SED-derived metallicities and their connection to star-formation histories
- The origin of the relation between metallicity and size in star-forming galaxies
- The SAMI galaxy survey: galaxy size can explain the offset between star-forming and passive galaxies in the mass-metallicity relationship
- The Evolution of Gas-Phase Metallicity and Resolved Abundances in Star-forming Galaxies at
- Explaining the scatter in the galaxy mass-metallicity relation with gas flows
- Cosmic metal density evolution in neutral gas: insights from observations and cosmological simulations
- Scaling relations and baryonic cycling in local star-forming galaxies. III. Outflows, effective yields and metal loading factors
- The model of feedback-regulated galaxy formation
- Are the host galaxies of Long Gamma-Ray Bursts more compact than star-forming galaxies of the field?
- Galaxy properties in the cosmic web of EAGLE simulation
- Environmental dependence of the mass-metallicity relation in cosmological hydrodynamical simulations
- The mass-size plane of EAGLE galaxies
- Azimuthal variations of oxygen abundance profiles in star-forming regions of disc galaxies in the EAGLE simulations
- How Metals Are Transported In And Out Of A Galactic Disk: Dependence On The Hydrodynamic Schemes In Numerical Simulations
- Oxygen yields as a constraint on feedback processes in galaxies
- Diagnosing the interstellar medium of galaxies with far-infrared emission lines I. The [C II] 158 microns line at z~0
- A new perspective on the stellar Mass-Metallicity Relation of quiescent galaxies from the LEGA-C survey
- Diagnosing the interstellar medium of galaxies with far-infrared emission lines II. [C II], [O I], [O III], [N II] and [N III] up to z=6
- MusE GAs FLOw and Wind (MEGAFLOW) IX. The impact of gas flows on the relations between the mass, star formation rate and metallicity of galaxies
- History of the gas fuelling star formation in eagle galaxies
- The origin of correlations between mass, metallicity and morphology in galaxies from the EAGLE simulation
- Constraints on galactic outflows from the metallicity-stellar mass-SFR relation of EAGLE simulation and SDSS galaxies
- Using KCWI to Explore the Chemical Inhomogeneities and Evolution of J1044+0353
- iMaNGA: mock MaNGA galaxies based on IllustrisTNG and MaStar SSPs. -- III. Stellar metallicity drivers in MaNGA and TNG50
- Probing galaxy evolution through HI 21-cm emission and absorption: current status and prospects with the Square Kilometre Array
- Correlations between mass, stellar kinematics and gas metallicity in EAGLE galaxies
- Insights on Metal Enrichment and Environmental Effect at with JWST ASPIRE/EIGER and Chemical Evolution Model
- Aeos: Transport of Metals from Minihalos following Population III Stellar Feedback
- On the variation in stellar -enhancements of star-forming galaxies in the EAGLE simulation
- A comprehensive study on the relation between the metal enrichment of ionised and atomic gas in star-forming galaxies
- 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
- A headless tadpole galaxy: the high gas-phase metallicity of the ultra-diffuse galaxy UGC 2162
- Machine-guided Exploration and Calibration of Astrophysical Simulations
- Gravitational potential drives the concentration dependence of the stellar mass-halo mass relation
- Rapid sinking and efficient mergers of supermassive black holes in compact high-redshift galaxies
- Aligned and misaligned metallicity gradients in young stars and star-forming regions in the EAGLE discs
- The extension of the Fundamental Metallicity Relation beyond the BPT star-forming sequence: evidence for both gas accretion and starvation
- A semi-analytical perspective on massive red galaxies: I. Assembly history, environment & redshift evolution