Gas cooling in semi-analytic models and SPH simulations: are results consistent?
arXiv:1001.3115 · doi:10.1111/j.1365-2966.2010.16737.x
Abstract
We present a detailed comparison between the galaxy populations within a massive cluster, as predicted by hydrodynamical SPH simulations and by a semi-analytic model (SAM) of galaxy formation. Both models include gas cooling and a simple prescription of star formation, which consists in transforming instantaneously any cold gas available into stars, while neglecting any source of energy feedback. We find that, in general, galaxy populations from SAMs and SPH have similar statistical properties, in agreement with previous studies. However, when comparing galaxies on an object-by-object basis, we find a number of interesting differences: a) the star formation histories of the brightest cluster galaxies (BCGs) from SAM and SPH models differ significantly, with the SPH BCG exhibiting a lower level of star formation activity at low redshift, and a more intense and shorter initial burst of star formation with respect to its SAM counterpart; b) while all stars associated with the BCG were formed in its progenitors in the semi-analytic model used here, this holds true only for half of the final BCG stellar mass in the SPH simulation, the remaining half being contributed by tidal stripping of stars from the diffuse stellar component associated with galaxies accreted on the cluster halo; c) SPH satellites can loose up to 90 per cent of their stellar mass at the time of accretion, due to tidal stripping, a process not included in the semi-analytic model used in this study; d) in the SPH simulation, significant cooling occurs on the most massive satellite galaxies and this lasts for up to 1 Gyr after accretion. This physical process is not included in the semi-analytic model used in our study, as well as in most of the models discussed in the recent literature.
Revised version submitted to MNRAS, 15 pages, 9 figures. A High-resolution version of the paper and figures can be found at this http://adlibitum.oats.inaf.it/saro/SAM2/paper.pdf
References in corpus (11)
- The hierarchical formation of the brightest cluster galaxies
- Cosmological Simulations of Intergalactic Medium Enrichment from Galactic Outflows
- A primer on hierarchical galaxy formation: the semi-analytical approach
- The Importance of Mergers for the Origin of Intracluster Stars in Cosmological Simulations of Galaxy Clusters
- The Formation and Evolution of Intracluster Light
- Accretion, feedback and galaxy bimodality: a comparison of the GalICS semi-analytic model and cosmological SPH simulations
- Substructure in lensing clusters and simulations
- Properties of the galaxy population in hydrodynamical simulations of clusters
- The statistical properties of LCDM halo formation
- Simulating the formation of a proto-cluster at z~2
- How does gas cool in DM halos?
Cited by in corpus (22)
- The environmental history of group and cluster galaxies in a LambdaCDM Universe
- The Three Hundred project: a large catalogue of theoretically modelled galaxy clusters for cosmological and astrophysical applications
- 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
- The satellites of the Milky Way - Insights from semi-analytic modelling in a LambdaCDM cosmology
- Galaxy formation in semi-analytic models and cosmological hydrodynamic zoom simulations
- A semi-analytic model comparison - gas cooling and galaxy mergers
- How to get cool in the heat: comparing analytic models of hot, cold, and cooling gas in haloes and galaxies with EAGLE
- Comparing galaxy formation in semi-analytic models and hydrodynamical simulations
- Validating Semi-Analytic Models of High-Redshift Galaxy Formation using Radiation Hydrodynamical Simulations
- Comparing galaxy formation in the L-GALAXIES semi-analytical model and the IllustrisTNG simulations
- The first Super Massive Black Holes: indications from models for future observations
- Statistics of Substructures in Dark Matter Haloes
- 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
- What do simulations predict for the galaxy stellar mass function and its evolution in different environments?
- Where do galaxies end? Comparing measurement techniques of hydrodynamic-simulation galaxies' integrated properties
- A semi-analytic model comparison: testing cooling models against hydrodynamical simulations
- Modelling the evolution of galaxies as a function of environment
- A comparison between semi-analytical gas cooling models and cosmological hydrodynamical simulations
- How well is angular momentum accretion modelled in semi-analytic galaxy formation models?