The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
arXiv:1407.7040 · doi:10.1093/mnras/stu2058
Abstract
We introduce the Virgo Consortium's EAGLE project, a suite of hydrodynamical simulations that follow the formation of galaxies and black holes in representative volumes. We discuss the limitations of such simulations in light of their finite resolution and poorly constrained subgrid physics, and how these affect their predictive power. One major improvement is our treatment of feedback from massive stars and AGN in which thermal energy is injected into the gas without the need to turn off cooling or hydrodynamical forces, allowing winds to develop without predetermined speed or mass loading factors. Because the feedback efficiencies cannot be predicted from first principles, we calibrate them to the z~0 galaxy stellar mass function and the amplitude of the galaxy-central black hole mass relation, also taking galaxy sizes into account. The observed galaxy mass function is reproduced to dex over the full mass range, , a level of agreement close to that attained by semi-analytic models, and unprecedented for hydrodynamical simulations. We compare our results to a representative set of low-redshift observables not considered in the calibration, and find good agreement with the observed galaxy specific star formation rates, passive fractions, Tully-Fisher relation, total stellar luminosities of galaxy clusters, and column density distributions of intergalactic CIV and OVI. While the mass-metallicity relations for gas and stars are consistent with observations for , they are insufficiently steep at lower masses. The gas fractions and temperatures are too high for clusters of galaxies, but for groups these discrepancies can be resolved by adopting a higher heating temperature in the subgrid prescription for AGN feedback. EAGLE constitutes a valuable new resource for studies of galaxy formation.
Accepted for publication in MNRAS. V2: Minor changes. For images and videos, see http://eagle.strw.leidenuniv.nl/ and http://icc.dur.ac.uk/Eagle/
References in corpus (31)
- The propagation of uncertainties in stellar population synthesis modeling I: The relevance of uncertain aspects of stellar evolution and the IMF to the derived physical properties of galaxies
- The effect of photo-ionization on the cooling rates of enriched, astrophysical plasmas
- A unified model for AGN feedback in cosmological simulations of structure formation
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- Chemical enrichment in cosmological, smoothed particle hydrodynamics simulations
- Cosmological Simulations of Intergalactic Medium Enrichment from Galactic Outflows
- PRIMUS: Constraints on Star Formation Quenching and Galaxy Merging, and the Evolution of the Stellar Mass Function From z=0-1
- A primer on hierarchical galaxy formation: the semi-analytical approach
- The Origin of the Galaxy Mass-Metallicity Relation and Implications for Galactic Outflows
- Modelling discontinuities and Kelvin-Helmholtz instabilities in SPH
- Moving mesh cosmology: tracing cosmological gas accretion
- Inviscid SPH
- Molecular Hydrogen and Global Star Formation Relations in Galaxies
- On the onset of galactic winds in quiescent star forming galaxies
- Images, structural properties and metal abundances of galaxy clusters observed with Chandra ACIS-I at 0.1<z<1.3
- A High-Resolution Survey of Low-Redshift QSO Absorption Lines: Statistics and Physical Conditions of O VI Absorbers
- The Low-z Intergalactic Medium. III. HI and Metal Absorbers at z<0.4
- Feedback and metal enrichment in cosmological SPH simulations - II. A multiphase model with supernova energy feedback
- Damped Lyman Alpha Systems in Galaxy Formation Simulations
- The Atomic to Molecular Transition in Galaxies. I: An Analytic Approximation for Photodissociation Fronts in Finite Clouds
- Simulations of AGN feedback in galaxy clusters and groups: impact on gas fractions and the Lx-T scaling relation
- The abundance of (not just) dark matter haloes
- Insights on the stellar mass-metallicity relation from the CALIFA survey
- Through Thick and Thin - HI Absorption in Cosmological Simulations
- Understanding the Structural Scaling Relations of Early-Type Galaxies
- The Extended HST Supernova Survey: The Rate of SNe Ia at z>1.4 Remains Low
- Incorporating the molecular gas phase in galaxy-size numerical simulations: first applications in dwarf galaxies
- On the baryonic, stellar, and luminous scaling relations of disk galaxies
- Chemical mixing in smoothed particle hydrodynamics simulations
- A STIS Survey for OVI Absorption Systems at 0.12 < z < 0.5 I.: The Statistical Properties of Ionized Gas
- Rotation rates, sizes, and star formation efficiencies of a representative population of simulated disc galaxies
Cited by in corpus (36)
- The EAGLE simulations of galaxy formation: calibration of subgrid physics and model variations
- The Illustris simulation: the evolving population of black holes across cosmic time
- The KMOS^3D Survey: design, first results, and the evolution of galaxy kinematics from 0.7<z<2.7
- Compaction and Quenching of High-z Galaxies in Cosmological Simulations: Blue and Red Nuggets
- Baryon effects on the internal structure of LCDM halos in the EAGLE simulations
- The star formation main sequence and stellar mass assembly of galaxies in the Illustris simulation
- A scheme for radiation pressure and photon diffusion with the M1 closure in RAMSES-RT
- The behaviour of dark matter associated with 4 bright cluster galaxies in the 10kpc core of Abell 3827
- A refined sub-grid model for black hole accretion and AGN feedback in large cosmological simulations
- Off the Beaten Path: A New Approach to Realistically Model The Orbital Decay of Supermassive Black Holes in Galaxy Formation Simulations
- Neutral hydrogen in galaxy halos at the peak of the cosmic star formation history
- Dark matter halo properties of GAMA galaxy groups from 100 square degrees of KiDS weak lensing data
- The impact of feedback on cosmological gas accretion
- Lyman-alpha emitters gone missing: evidence for late reionization?
- Galaxies that Shine: radiation-hydrodynamical simulations of disk galaxies
- The equilibrium view on dust and metals in galaxies: Galactic outflows drive low dust-to-metal ratios in dwarf galaxies
- The Impact of Star Formation and Gamma-Ray Burst Rates at High Redshift on Cosmic Chemical Evolution and Reionization
- The SINFONI Nearby Elliptical Lens Locator Survey: Discovery of two new low-redshift strong lenses and implications for the initial mass function in giant early-type galaxies
- Numerical Convergence in Smoothed Particle Hydrodynamics
- The effect of baryons on the inner density profiles of rich clusters
- Storm in a "Teacup": a radio-quiet quasar with ~10kpc radio-emitting bubbles and extreme gas kinematics
- The Effects of AGN Feedback on Present-Day Galaxy Properties in Cosmological Simulations
- The VLT SINFONI Mg ii Program for Line Emitters (SIMPLE) II: background quasars probing z 1 galactic winds
- The Argo Simulation: II. The Early Build-up of the Hubble Sequence
- Evidence for the inside-out growth of the stellar mass distribution in galaxy clusters since z~1
- First results from the VIRIAL survey: the stellar content of -selected quiescent galaxies at from KMOS
- The evolution of galaxy metallicity scaling relations in cosmological hydrodynamical simulations
- Large and small-scale structures and the dust energy balance problem in spiral galaxies
- The metallicity of galactic winds
- Galaxy formation in the PLANCK cosmology - III. The high-redshift universe
- Galactic outflow and diffuse gas properties at z>=1 using different baryonic feedback models
- A cosmological context for compact massive galaxies
- Reconciling Planck cluster counts and cosmology? Chandra/XMM instrumental calibration and hydrostatic mass bias
- Evolution of the luminosity-to-halo mass relation of LRGs from a combined SDSS-DR10+RCS2 analysis
- The Hector Survey: integral field spectroscopy of 100,000 galaxies
- The Star Formation and AGN luminosity relation: Predictions from a semi-analytical model