Cosmic Ménage à Trois: The Origin of Satellite Galaxies On Extreme Orbits
arXiv:0704.1773 · doi:10.1111/j.1365-2966.2007.12026.x
Abstract
We examine the orbits of satellite galaxies identified in a suite of N-body/gasdynamical simulations of the formation of galaxies in a LCDM universe. Most satellites follow conventional orbits; after turning around, they accrete into their host halo and settle on orbits whose apocentric radii are steadily eroded by dynamical friction. However, a number of outliers are also present, we find that ~1/3 of satellites identified at are on unorthodox orbits, with apocenters that exceed their turnaround radii. This population of satellites on extreme orbits consists typically of the faint member of a satellite pair that has been ejected onto a highly-energetic orbit during its first approach to the primary. Since the concurrent accretion of multiple satellite systems is a defining feature of hierarchical models of galaxy formation, we speculate that this three-body ejection mechanism may be the origin of (i) some of the newly discovered high-speed satellites around M31 (such as Andromeda XIV); (ii) some of the distant fast-receding Local Group members, such as Leo I; and (iii) the oddly isolated dwarf spheroidals Cetus and Tucana in the outskirts of the Local Group. Our results suggest that care must be exercised when using the orbits of the most weakly bound satellites to place constraints on the total mass of the Local Group.
10 pages, 6 figures, MNRAS in press. Accepted version with minor changes. Version with high resolution figures available at: http://www.astro.uvic.ca/~lsales/SatPapers/SatPapers.html
References in corpus (10)
- Cats and Dogs, Hair and A Hero: A Quintet of New Milky Way Companions
- The spatial distribution of the Milky Way and Andromeda satellite galaxies
- Discovery and analysis of three faint dwarf galaxies and a globular cluster in the outer halo of the Andromeda galaxy
- A kinematically selected, metal-poor stellar halo in the outskirts of M31
- Stellar kinematics and metallicities in the Leo I dwarf spheroidal galaxy -- wide field implications for galactic evolution
- Satellites of Simulated Galaxies: survival, merging, and their relation to the dark and stellar halos
- A New Method for Isolating M31 Red Giant Stars: The Discovery of Stars out to a Radial Distance of 165 Kiloparsecs
- Inside the whale: the structure and dynamics of the isolated Cetus dwarf spheroidal
- Strangers in the night: Discovery of a dwarf spheroidal galaxy on its first Local Group infall
- Triaxial vs. Spherical Dark Matter Halo Profiles
Cited by in corpus (47)
- The Tidal Evolution of Local Group Dwarf Spheroidals
- Thin, thick and dark discs in LCDM
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- The Velocity Dispersion Profile of the Remote Dwarf Spheroidal Galaxy Leo I: A Tidal Hit and Run?
- The Unorthodox Orbits of Substructure Halos
- A Dark Core in Abell 520
- The orbital poles of Milky Way satellite galaxies: a rotationally supported disc-of-satellites
- Infall of substructures onto a Milky Way-like dark halo
- A trio of new Local Group galaxies with extreme properties
- Understanding the shape of the halo-mass and galaxy-mass cross-correlation functions
- From galactic bars to the Hubble tension: weighing up the astrophysical evidence for Milgromian gravity
- The Space Motion of Leo I: Hubble Space Telescope Proper Motion and Implied Orbit
- Satellite Dwarf Galaxies in a Hierarchical Universe: The Prevalence of Dwarf-Dwarf Major Mergers
- Satellites of Simulated Galaxies: survival, merging, and their relation to the dark and stellar halos
- An Alternative Origin for Hypervelocity Stars
- Dynamics of the Magellanic Clouds in a LCDM Universe
- Satellite Galaxies and Fossil Groups in the Millennium Simulation
- Quiescent Ultra-diffuse galaxies in the field originating from backsplash orbits
- Infall caustics in dark matter halos?
- Isolated compact elliptical galaxies: Stellar systems that ran away
- Magellanic satellites in CDM cosmological hydrodynamical simulations of the Local Group
- Pericentric passage-driven star formation in satellite galaxies and their hosts: CLUES from Local Group simulations
- Pre-processing, group accretion and the orbital trajectories of associated subhaloes
- Toward an internally consistent astronomical distance scale
- The anatomy of Leo I: how tidal tails affect the kinematics
- The effects of LMC-mass environments on their dwarf satellite galaxies in the FIRE simulations
- A possible common halo of the Magellanic Clouds
- Kinematics of the Tucana Dwarf Galaxy: An Unusually Dense Dwarf in the Local Group
- Living with Neighbors. II. Statistical Analysis of Flybys and Mergers of Dark Matter Halos in Cosmological Simulations
- The SAMI-Fornax Dwarfs Survey III: Evolution of [/Fe] in dwarfs, from Galaxy Clusters to the Local Group
- Discovery of a red backsplash galaxy candidate near M81
- Orbital distribution of infalling satellite halos across cosmic time
- The present-day gas content of simulated field dwarf galaxies
- On the absence of backsplash analogues to NGC 3109 in the CDM framework
- The Tucana dwarf spheroidal: a distant backsplash galaxy of M31?
- A Globular Cluster Toward M87 with a Radial Velocity < -1000 km/s: The First Hypervelocity Cluster
- A Search for Intergalactic Globular Clusters in the Local Group
- Compact elliptical galaxies hosting active galactic nuclei in isolated environment
- An Enigmatic 380 kpc Long Linear Collimated Galactic Tail
- Effects of environment on stellar metallicity profiles of late-type galaxies in the CALIFA survey
- Are early-type galaxies quenched by present-day environment? A study of dwarfs in the Fornax Cluster
- Environmental effects on star formation in dwarf galaxies and star clusters
- A Gravitational Double Scattering Mechanism for Generating High Velocity Objects
- Environmental Quenching of Low Surface Brightness Galaxies near Milky Way mass Hosts
- Perseus cluster in its X-ray entirety with SRG/eROSITA. Merger and Radio-Uroboroses
- Searching for Dark Structures: A Comparison of Weak-lensing Convergence Maps and Lensing-weighted Galaxy Density Maps
- The tidal features of the classical Milky Way satellites: Expected in MOND but inconsistent with cold dark matter models