A semi-analytic model comparison - gas cooling and galaxy mergers
arXiv:1003.3021 · doi:10.1111/j.1365-2966.2010.16806.x
Abstract
We use stripped-down versions of three semi-analytic galaxy formation models to study the influence of different assumptions about gas cooling and galaxy mergers. By running the three models on identical sets of merger trees extracted from high-resolution cosmological N-body simulations, we are able to perform both statistical analyses and halo-by-halo comparisons. Our study demonstrates that there is a good statistical agreement between the three models used here, when operating on the same merger trees, reflecting a general agreement in the underlying framework for semi-analytic models. We also show, however, that various assumptions that are commonly adopted to treat gas cooling and galaxy mergers can lead to significantly different results, at least in some regimes. In particular, we find that the different models adopted for gas cooling lead to similar results for mass scales comparable to that of our own Galaxy. Significant differences, however, arise at larger mass scales. These are largely (but not entirely) due to different treatments of the `rapid cooling' regime, and different assumptions about the hot gas distribution. At this mass regime, the predicted cooling rates can differ up to about one order of magnitude, with important implications on the relative weight that these models give to AGN feedback in order to counter-act excessive gas condensation in relatively massive haloes at low redshift. Different assumptions in the modelling of galaxy mergers can also result in significant differences in the timings of mergers, with important consequences for the formation and evolution of massive galaxies.
21 pages, 14 figures. Accepted for publication in MNRAS.
References in corpus (11)
- The hierarchical formation of the brightest cluster galaxies
- A primer on hierarchical galaxy formation: the semi-analytical approach
- A fitting formula for the merger timescale of galaxies in hierarchical clustering
- The Nearly Universal Merger Rate of Dark Matter Haloes in Lambda-CDM Cosmology
- The MORGANA model for the rise of galaxies and active nuclei
- There's no place like home? Statistics of Milky Way-mass dark matter halos
- Accretion, feedback and galaxy bimodality: a comparison of the GalICS semi-analytic model and cosmological SPH simulations
- The statistical properties of LCDM halo formation
- Reproducing the assembly of massive galaxies within the hierarchical cosmogony
- How does gas cool in DM halos?
- Gas cooling in semi-analytic models and SPH simulations: are results consistent?
Cited by in corpus (49)
- Submillimetre galaxies in a hierarchical universe: number counts, redshift distribution, and implications for the IMF
- A new model of galaxy formation: How sensitive are predicted galaxy luminosities to the choice of SPS model?
- On the formation and physical properties of the Intra-Cluster Light in hierarchical galaxy formation models
- Large-scale dark matter simulations
- What Shapes the Galaxy Mass Function? Exploring the Roles of Supernova-Driven Winds and AGN
- Essential physics of early galaxy formation
- Size Evolution of Spheroids in a Hierarchical Universe
- The population of Milky Way satellites in the LambdaCDM cosmology
- Super-Eddington growth of the first black holes
- Hot gas in massive halos drives both mass quenching and environment quenching
- Approximate Bayesian Computation for Astronomical Model Analysis: A Case Study in Galaxy Demographics and Morphological Transformation at High Redshift
- A Comparison between Semi-Analytic Model Predictions for the CANDELS Survey
- The ATLAS3D Project-- VIII: Modelling the Formation and Evolution of Fast and Slow Rotator Early-Type Galaxies within CDM
- Galaxies in the EAGLE hydrodynamical simulation and in the Durham and Munich semi-analytical models
- Dwarf galaxy populations in present-day galaxy clusters: I. Abundances and red fractions
- Environmental dependence of bulge-dominated galaxy sizes in hierarchical models of galaxy formation. Comparison with the local Universe
- The influence of environment on satellite galaxies in the GAEA semi-analytic model
- Halo Shapes From Weak Lensing: The Impact of Galaxy--Halo Misalignment
- Gemini Observations of Galaxies in Rich Early Environments (GOGREEN) I: Survey Description
- The atomic Hydrogen content of the post-reionization Universe
- The Hierarchical Origins of Observed Galaxy Morphology
- Spin flips I: Evolution of the angular momentum orientation of Milky Way-mass dark matter haloes
- Machine Learning and Cosmological Simulations I: Semi-Analytical Models
- Nature versus nurture: what regulates star formation in satellite galaxies?
- From Discs to Bulges: effect of mergers on the morphology of galaxies
- Structural and Dynamical Properties of Galaxies in a Hierarchical Universe: Sizes and Specific Angular Momenta
- nIFTy Cosmology: the clustering consistency of galaxy formation models
- The New Numerical Galaxy Catalogue (ν^2 GC): Properties of Active Galactic Nuclei and Their Host Galaxies
- Hydrodynamical simulations and semi-analytic models of galaxy formation: two sides of the same coin
- On the algorithms of radiative cooling in semi-analytic models
- Galaxy Zoo: Multi-Mergers and the Millennium Simulation
- Interpreting the possible break in the Black Hole - Bulge mass relation
- The definition of environment and its relation to the quenching of galaxies at z=1-2 in a hierarchical Universe
- The Evolution of Active Galactic Nuclei in Warm Dark Matter Cosmology
- [OII] emitters in MultiDark-Galaxies and DEEP2
- A semi-analytic model comparison: testing cooling models against hydrodynamical simulations
- Luminosity bias: from haloes to galaxies
- Does jackknife scale really matter for accurate large-scale structure covariances?
- On the dependence of galaxy morphologies on galaxy mergers
- Joint galaxy-galaxy lensing and clustering constraints on galaxy formation
- An improved prescription for merger time-scales from controlled simulations
- Compact groups from semi-analytical models of galaxy formation -- I: a comparative study of frequency and nature
- An In-Depth Study of the Abundance Pattern in the Hot Interstellar Medium in NGC 4649
- A new gas cooling model for semi-analytical galaxy formation models
- Modelling the evolution of galaxies as a function of environment
- Starburst galaxies in semi-analytic models of galaxy formation and evolution
- A comparison between semi-analytical gas cooling models and cosmological hydrodynamical simulations
- Anatomy of galactic star formation history: Roles of different modes of gas accretion, feedback, and recycling
- Halo Merger Tree Comparison: Impact on Galaxy Formation Models