The Distribution of Satellites Around Central Galaxies in a Cosmological Hydrodynamical Simulation
arXiv:1407.6708 · doi:10.1088/2041-8205/791/2/L33
Abstract
Observations have shown that the spatial distribution of satellite galaxies is not random, but rather is aligned with the major axes of central galaxies (CGs). The strength of the alignment is dependent on the properties of both the satellites and centrals. Theoretical studies using dissipationless N-body simulations are limited by their inability to directly predict the shape of CGs. Using hydrodynamical simulations including gas cooling, star formation, and feedback, we carry out a study of galaxy alignment and its dependence on the galaxy properties predicted directly from the simulations.We found that the observed alignment signal is well produced, as is the color dependence: red satellites and red centrals both show stronger alignments than their blue counterparts. The reason for the stronger alignment of red satellites is that most of them stay in the inner region of the dark matter halo where the shape of the CG better traces the dark matter distribution. The dependence of alignment on the color of CGs arises from the halo mass dependence, since the alignment between the shape of the central stellar component and the inner halo increases with halo mass. We also find that the alignment of satellites is most strongly dependent on their metallicity, suggesting that the metallicity of satellites, rather than color, is a better tracer of galaxy alignment on small scales. This could be tested in future observational studies.
ApJ Letter, accepted. Four figures, no table. The resolution of Fig 1 was downgraded due to the limitation of file size. Updated to match the version in press
References in corpus (16)
- A Vast Thin Plane of Co-rotating Dwarf Galaxies Orbiting the Andromeda Galaxy
- The Importance of Satellite Quenching for the Build-Up of the Red Sequence of Present Day Galaxies
- Galaxy Groups in the SDSS DR4: II. halo occupation statistics
- A fitting formula for the merger timescale of galaxies in hierarchical clustering
- The spatial distribution of the Milky Way and Andromeda satellite galaxies
- Downsizing by Shutdown in Red Galaxies
- Galaxy Shapes and Intrinsic Alignments in The MassiveBlack-II Simulation
- Three Different Types of Galaxy Alignment within Dark Matter Halos
- A thousand shadows of Andromeda: rotating planes of satellites in the Millennium-II cosmological simulation
- Satellite Systems around Galaxies in Hydrodynamic Simulations
- Probing the Intrinsic Shape and Alignment of Dark Matter Haloes using SDSS Galaxy Groups
- The Alignment between Satellites and Central Galaxies: Theory vs. Observations
- Properties of the galaxy population in hydrodynamical simulations of clusters
- The Anisotropic Distribution of Satellite Galaxies
- Satellite Alignment: I. Distribution of Substructures and Their Dependence On Assembly History From N-Body Simulations
- Alignments of the Galaxies in and around the Virgo Cluster with the Local Velocity Shear
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- Evolution and Role of Mergers in the BCG-Cluster Alignment. A View from Cosmological Hydro-Simulations
- Brightest Cluster Galaxies Trace Weak Lensing Mass Bias and Halo Triaxiality in The Three Hundred Project
- Evolution of central galaxy alignments in simulations
- Satellite Alignment: III. Satellite Galaxies Spatial Distribution and their Dependence on Redshift with A Novel Galaxy Finder
- Detection of the velocity shear effect on the spatial distributions of the galactic satellites in isolated systems
- The tilting rate of the Milky Way's disc
- Anisotropic correlation functions as tracers of central galaxy alignments in simulations
- Galaxy clusters as intrinsic alignment tracers: present and future
- Living with Neighbors. IV. Dissecting the SpinOrbit Alignment of Dark Matter Halos: Interacting Neighbors and the Local Large-scale Structure
- Accurate dark matter halo elongation from weak-lensing stacking analysis
- Mock Observations: Three Different Types of Galaxy Alignment in TNG100 Simulations
- Halo cluster shapes: Insights from simulated galaxies and ICL with prospects for weak lensing applications
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