Satellite decay in flattened dark matter haloes
arXiv:astro-ph/0202250 · doi:10.1046/j.1365-8711.2002.05414.x
Abstract
We carry out a set of self-consistent N-body calculations to compare the decay rates of satellite dwarf galaxies orbiting a disc galaxy embedded in a dark matter halo (DMH). We consider both spherical and oblate axisymmetric DMHs of aspect ratio q_h=0.6. The satellites are given different initial orbital inclinations, orbital periods and mass. The live flattened DMHs with embedded discs and bulges are set-up using a new fast algorithm, MaGalie (Boily, Kroupa and Peñarrubia 2001). We find that the range of survival times of satellites within a flattened DMH becomes of the order of 100% larger than the same satellites within a spherical DMH. In the oblate DMH, satellites on polar orbits have the longest survival time, whereas satellites on coplanar prograde orbits are destroyed most rapidly. The orbital plane of a satellite tilts as a result of anisotropic dynamical friction, causing the satellite's orbit to align with the plane of symmetry of the DMH. Polar orbits are not subjected to alignment. Therefore the decay of a satellites in an axisymmetric DMH may provide a natural explanation for the observed lack of satellites within (0-30) degrees of their host galaxy's disc (Holmberg 1969; Zaritsky and González 1999). The computations furthermore indicate that the evolution of the orbital eccentricity is highly dependent of its initial value e(t=0) and the DMH's shape. We also discuss some implications of flattened DMHs for satellite debris streams.
13 pages, 9 figures. Accepted by MNRAS
References in corpus (3)
Cited by in corpus (50)
- Evidence for Stellar Substructure in the Halo and Outer Disk of M31
- The Tidal Evolution of Local Group Dwarf Spheroidals
- Cold Dark Matter Substructure and Galactic Disks I: Morphological Signatures of Hierarchical Satellite Accretion
- The Anisotropic Distribution of Galactic Satellites
- Dark Matter Substructure in Numerical Simulations: A Tale of Discreteness Noise, Runaway Instabilities, and Artificial Disruption
- On the accretion origin of a vast extended stellar disk around the Andromeda galaxy
- On the Life and Death of Satellite Haloes
- The spatial distribution of the Milky Way and Andromeda satellite galaxies
- A comprehensive model for the Monoceros tidal stream
- The Cold Dark Matter Halos of Local Group Dwarf Spheroidals
- The upper bound on the lowest mass halo
- The Global Dynamical Atlas of the Milky Way mergers: Constraints from Gaia EDR3 based orbits of globular clusters, stellar streams and satellite galaxies
- Anisotropic Distribution of SDSS Satellite Galaxies: Planar (not Polar) Alignment
- Cold Dark Matter Substructure and Galactic Disks II: Dynamical Effects of Hierarchical Satellite Accretion
- Accretion relicts in the solar neighbourhood: debris from omegaCen's parent galaxy
- Anisotropy in the Distribution of Satellite Galaxy Orbits
- Tracing the formation of the Milky Way through ultra metal-poor stars
- Anisotropy in the distribution of satellites around primary galaxies in the 2dFGRS: the Holmberg effect
- The outer halo globular cluster system of M31 - II. Kinematics
- The Observed and Predicted Spatial Distribution of Milky Way Satellite Galaxies
- Discs of Satellites: the new dwarf spheroidals
- The PAndAS Field of Streams: stellar structures in the Milky Way halo toward Andromeda and Triangulum
- On the formation of extended galactic disks by tidally disrupted dwarf galaxies
- The Pristine survey X: a large population of low-metallicity stars permeates the Galactic disk
- Nuclear Star Clusters from Clustered Star Formation
- The Anisotropic Distribution of Satellite Galaxies
- Effects of dynamical evolution on the distribution of substructures
- Large scale inhomogeneity and local dynamical friction
- The effect of a disc on the population of cuspy and cored dark matter substructures in Milky Way-like galaxies
- Tidal disruption of globular clusters in dwarf galaxies with triaxial dark matter haloes
- Exploring the origin of low-metallicity stars in Milky Way-like galaxies with the NIHAO-UHD simulations
- Dynamical friction in flattened systems: A numerical test of Binney's approach
- Are rotating planes of satellite galaxies ubiquitous?
- The large extent of dark matter haloes probed by the formation of tidal dwarf galaxies
- Merging of globular clusters within inner galactic regions. I. Do they survive the tidal interaction?
- Dynamical friction for dark halo satellites: effects of tidal massloss and growing host potential
- The kinematics of local thick discs do not support an accretion origin
- Orbital dynamics and histories of satellite galaxies around Milky Way-mass galaxies in the FIRE simulations
- The intrinsic ellipticity of dwarf spheroidal galaxies: constraints from the Andromeda system
- Dynamical friction and scratches of orbiting satellite galaxies on host systems
- The sense of rotation of subhaloes in cosmological dark matter haloes
- The peculiar velocities of satellites of external disk galaxies
- High resolution simulations of unstable modes in a collisionless disc
- Structures induced by companions in galactic discs
- Satellite survival in cold dark matter cosmology
- Simulating Sinking Satellites with SUPERBOX-10
- The survival of dynamical fossils in dwarf spheroidal galaxies in conventional and modified dynamics
- The structure and evolution of M51-type galaxies
- High resolution in z-direction: The simulation of disc-bulge-halo galaxies using the particle-mesh code SUPERBOX
- An ancient system hidden in the Galactic plane?