The Growth of Central and Satellite Galaxies in Cosmological Smoothed Particle Hydrodynamics Simulations
arXiv:0809.2999 · doi:10.1111/j.1365-2966.2009.15341.x
Abstract
We examine the accretion and merger histories of central and satellite galaxies in a smoothed particle hydrodynamics (SPH) cosmological simulation that resolves galaxies down to 7e9 M[Sun]. Most friends-of-friends halos in the simulation have a distinct central galaxy, typically two to five times more massive than the most massive satellite. As expected, satellites have systematically higher assembly redshifts than central galaxies of the same baryonic mass, and satellites in more massive halos form earlier. However, contrary to the simplest expectations, satellite galaxies continue to accrete gas and convert it to stars; the gas accretion declines steadily over a period of 0.5-1 Gyr after the satellite halo merges with a larger parent halo. Satellites in a cluster mass halo eventually begin to lose baryonic mass. Since z=1, 27% of central galaxies (above 3e10 M[Sun]) and 22% of present-day satellite galaxies have merged with a smaller system above a 1:4 mass ratio; about half of the satellite mergers occurred after the galaxy became a satellite and half before. In effect, satellite galaxies can remain "central" objects of halo substructures, with continuing accretion and mergers, making the transition in assembly histories and physical properties a gradual one. Implementing such a gradual transformation in semi-analytic models would improve their agreement with the observed colour distributions of satellite galaxies in groups and with the observed colour dependence of galaxy clustering.
14 pages, 14 figures, Submitted to MNRAS
References in corpus (17)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- Cosmological Constraints from the SDSS Luminous Red Galaxies
- Galaxies in a simulated CDM Universe I: cold mode and hot cores
- Ram pressure stripping the hot gaseous halos of galaxies in groups and clusters
- Bimodal gas accretion in the Horizon-MareNostrum galaxy formation simulation
- The Colours of Satellite Galaxies in Groups and Clusters
- Natural Downsizing in Hierarchical Galaxy Formation
- The Galaxy Content of SDSS Clusters and Groups
- The DEEP2 Galaxy Redshift Survey: Color and Luminosity Dependence of Galaxy Clustering at z~1
- Environmental Effects on Satellite Galaxies: The Link Between Concentration, Size and Colour Profile
- Properties of Galaxy Groups in the SDSS: II.- AGN Feedback and Star Formation Truncation
- X-ray thermal coronae of galaxies in hot clusters -- ubiquity of embedded mini cooling cores
- Adding Environmental Gas Physics to the Semi-Analytic Method for Galaxy Formation: Gravitational Heating
- Accretion, feedback and galaxy bimodality: a comparison of the GalICS semi-analytic model and cosmological SPH simulations
- The Red-Sequence Luminosity Function in Galaxy Clusters since z~1
- Luminosity dependence of the spatial and velocity distributions of galaxies: Semi-analytic models versus the Sloan Digital Sky Survey
- The Hot Gas Halos of Galaxies in Groups
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- Physical Models of Galaxy Formation in a Cosmological Framework
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- Galaxy evolution in groups and clusters: satellite star formation histories and quenching timescales in a hierarchical Universe
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- A White Paper on keV Sterile Neutrino Dark Matter
- Galaxy Evolution in Cosmological Simulations With Outflows I: Stellar Masses and Star Formation Rates
- The Baryonic Assembly of Dark Matter Halos
- Simulations of the Magellanic Stream in a First Infall Scenario
- Mergers in Lambda-CDM: Uncertainties in Theoretical Predictions and Interpretations of the Merger Rate
- The origin of ultra diffuse galaxies: stellar feedback and quenching
- What determines satellite galaxy disruption?
- Mapping stellar content to dark matter halos. II. Halo mass is the main driver of galaxy quenching
- Cluster Galaxies Die Hard
- Resolving Subhaloes' Lives with the Hierarchical Bound-Tracing Algorithm
- Cluster Galaxy Dynamics and the Effects of Large Scale Environment
- A Bayesian approach to the semi-analytic model of galaxy formation: methodology
- FIREbox: Simulating galaxies at high dynamic range in a cosmological volume
- How is Star Formation Quenched in Massive Galaxies?
- The Growth of Red Sequence Galaxies in a Cosmological Hydrodynamic Simulation
- The environmental dependence of gas accretion onto galaxies: quenching satellites through starvation
- The 10k zCOSMOS: morphological transformation of galaxies in the group environment since z~1
- Mass assembly of galaxies: Smooth accretion versus mergers
- The Hubble Sequence in Groups: The Birth of the Early-Type Galaxies
- Non-linearity and environmental dependence of the star forming galaxies Main Sequence
- The Zurich Environmental Study (ZENS) of Galaxies in Groups along the Cosmic Web. I. Which Environment Affects Galaxy Evolution?
- A new population of recently quenched elliptical galaxies in the SDSS
- Testing Subhalo Abundance Matching in Cosmological Smoothed Particle Hydrodynamics Simulations
- A First Look at Galaxy Flyby Interactions: I. Characterizing the Frequency of Flybys in a Cosmological Context
- Group connectivity in COSMOS: a tracer of mass assembly history
- The effects of assembly bias on cosmological inference from galaxy-galaxy lensing and galaxy clusters
- The galaxy - dark matter halo connection: which galaxy properties are correlated with the host halo mass?
- The 6dF Galaxy Survey: Dependence of halo occupation on stellar mass
- Galaxy subgroups in galaxy clusters
- The role of massive halos in the Star Formation History of the Universe
- The Role of Environment on the Formation of Early-Type Galaxies
- On the algorithms of radiative cooling in semi-analytic models
- The evolution of galaxy star formation activity in massive halos
- ECO and RESOLVE: Galaxy Disk Growth in Environmental Context
- The Effect of Galactic Feedback on Gas Accretion and Wind Recycling
- The Formation History of Subhalos and the Evolution of Satellite Galaxies
- On the Clustering of Faint Red Galaxies
- The strong environmental dependence of black hole scaling relations
- HOD modelling of high redshift galaxies using the BLUETIDES simulation
- Impact of cosmic filaments on the gas accretion rate of dark matter halos
- Timescales for Hi consumption and SFR depletion of satellite galaxies in groups
- Using large galaxy surveys to distinguish z~0.5 quiescent galaxy models
- Detection of Outflowing and Extraplanar Gas in Disks in an Assembling Galaxy Cluster at z=0.37
- Kinematics of MgII Absorbers from the Redshift-space Distortion Around Massive Quiescent Galaxies
- ZFIRE -- The Gas Inflow Inequality for Satellite Galaxies in Cluster and Field Halos at z = 2
- Investigating the relation between environment and internal structure of massive elliptical galaxies using strong lensing