Dwarf Spheroidal Satellite Galaxies Without Dark Matter: Results From Two Different Numerical Techniques
arXiv:astro-ph/9711350 · doi:10.1086/305540
Abstract
Self-consistent simulations of the dynamical evolution of a low-mass satellite galaxy without dark matter are reported. The orbits have eccentricities 0.46 <= e <= 0.96 in a Galactic dark halo resembling our Milky Way. For the simulations, a particle-mesh code with nested sub-grids and a direct-summation N-body code running with the special purpose hardware device GRAPE are used. Initially, the satellite is spherical with an isotropic velocity distribution, and has a mass of 10^7 solar masses. Simulations with 1.3x10^5 up to 2x10^6 satellite particles are performed. The calculations proceed for many orbital periods until well after the satellite disrupts. In all cases the dynamical evolution converges to a remnant that contains roughly 1% of the initial satellite mass. The stable remnant results from severe tidal shaping of the initial satellite. To an observer from Earth these remnants look strikingly similar to the Galactic dwarf spheroidal satellite galaxies. Their apparent mass-to-light ratios are very large despite the fact that they contain no dark matter. These computations show that a remnant without dark matter displays larger line-of-sight velocity dispersions, sigma, for more eccentric orbits, which is a result of projection onto the observational plane. Assuming they are not dark matter dominated, it follows that the Galactic dSph satellites with sigma > 6km/s should have orbital eccentricities of e > 0.5. Some remnants have sub-structure along the line-of-sight that may be apparent in the morphology of the horizontal branch.
MPIA: Max Planck Institute for Astronomy (Heidelberg); ITA: Institute for Theoretical Astrophysics (Heidelberg); 36 pages including 19 figures; accepted for publication in ApJ; also available at http://www.mpia-hd.mpg.de/MPIA/Projects/THEORY/klessen/Preprints/p4.ps (1.8MB)
References in corpus (1)
Cited by in corpus (91)
- A 2MASS All-Sky View of the Sagittarius Dwarf Galaxy: I. Morphology of the Sagittarius Core and Tidal Arms
- Building up the Stellar Halo of the Galaxy
- The Metamorphosis of Tidally Stirred Dwarf Galaxies
- The VPOS: a vast polar structure of satellite galaxies, globular clusters and streams around the Milky Way
- Internal Kinematics of the Fornax Dwarf Spheroidal Galaxy
- The dark matter crisis: falsification of the current standard model of cosmology
- Local-Group tests of dark-matter Concordance Cosmology: Towards a new paradigm for structure formation
- The Velocity Dispersion Profile of the Remote Dwarf Spheroidal Galaxy Leo I: A Tidal Hit and Run?
- The Formation of Ultra-Compact Dwarf Galaxies
- Galaxies as simple dynamical systems: observational data disfavor dark matter and stochastic star formation
- Dwarf Galaxy Planes: the discovery of symmetric structures in the Local Group
- The rotationally stabilized VPOS and predicted proper motions of the Milky Way satellite galaxies
- Substructure in Dark Halos: Orbital Eccentricities and Dynamical Friction
- A distance of 13 Mpc resolves the claimed anomalies of the galaxy lacking dark matter
- On the Efficiency of the Tidal Stirring Mechanism for the Origin of Dwarf Spheroidals: Dependence on the Orbital and Structural Parameters of the Progenitor Disky Dwarfs
- The Draco and Ursa Minor dwarf spheroidals. A comparative study
- Exploring Halo Substructure with Giant Stars: I. Survey Description and Calibration of the Photometric Search Technique
- From galactic bars to the Hubble tension: weighing up the astrophysical evidence for Milgromian gravity
- Dark matter distribution in dwarf spheroidal galaxies
- Exploring Halo Substructure with Giant Stars X. Extended Dark Matter or Tidal Disruption?: The Case for the Leo I Dwarf Spheroidal Galaxy
- Measuring Mass Loss Rates from Galactic Satellites
- Stellar kinematics and metallicities in the Leo I dwarf spheroidal galaxy -- wide field implications for galactic evolution
- Exploring Halo Substructure with Giant Stars IV: The Extended Structure of the Ursa Minor Dwarf Spheroidal
- New insights on the Draco dwarf spheroidal galaxy from SDSS: a larger radius and no tidal tails
- The Star Formation History and the Morphological Evolution of the Draco Dwarf Spheroidal Galaxy
- Superbox - An Efficient Code for Collisionless Galactic Dynamics
- Simple dynamical models of the Sagittarius dwarf galaxy
- Modeling The Structure And Dynamics of Dwarf Spheroidal Galaxies with Dark Matter And Tides
- Exploring Halo Substructure with Giant Stars: II. Mapping the Extended Structure of the Carina Dwarf Spheroidal Galaxy
- Tidal debris of dwarf spheroidals as a probe of structure formation models
- Mass modelling of dwarf spheroidal galaxies: the effect of unbound stars from tidal tails and the Milky Way
- The ultra-diffuse galaxy NGC 1052-DF2 with MUSE: I. Kinematics of the stellar body
- Dark matter distribution in the Draco dwarf from velocity moments
- Proper Motions of Dwarf Spheroidal Galaxies from Hubble Space Telescope Imaging. III: Measurement for Ursa Minor
- Non-Baryonic Dark Matter in Cosmology
- Dwarf-spheroidal satellites: are they of tidal origin?
- A tidal extension in the Ursa Minor dwarf spheroidal galaxy
- Making Counter-Orbiting Tidal Debris: The Origin of the Milky Way Disc of Satellites
- Reproducing properties of MW dSphs as descendants of DM-free TDGs
- Interpreting the Morphology of Diffuse Light Around Satellite Galaxies
- Possible Evidence for MeV Dark Matter In Dwarf Spheroidals
- Faint Stars in the Ursa Minor Dwarf Spheroidal Galaxy: Implications for the Low-Mass Stellar Initial Mass Function at High Redshift
- Large scale inhomogeneity and local dynamical friction
- Satellite decay in flattened dark matter haloes
- Draco -- A Failure of the Tidal Model
- The Internal Kinematics of the Leo I Dwarf Spheroidal Galaxy: Dark Matter at the Fringe of the Milky Way
- Palomar 13: An Unusual Stellar System in the Galactic Halo
- HST detection of spiral structure in two Coma Cluster dwarf galaxies
- Hubble Space Telescope survey of the Perseus Cluster - I: The structure and dark matter content of cluster dwarf spheroidals
- Internal Kinematics of the Andromeda II Dwarf Spheroidal Galaxy
- About the morphology of dwarf spheroidal galaxies and their dark matter content
- Dynamical friction in flattened systems: A numerical test of Binney's approach
- The binary fraction of stars in dwarf galaxies: the case of Leo II
- The Absence of Extra-Tidal Structure in the Sculptor Dwarf Spheroidal Galaxy
- Dwarf spheroidal satellites of the Milky Way from dark matter free tidal dwarf galaxy progenitors: maps of orbits
- Galaxy Satellites and the Weak Equivalence Principle
- 3D hydrodynamic simulations for the formation of the Local Group satellite planes
- Using distant globular clusters as a test for gravitational theories
- Scaling up Tides in Numerical Models of Galaxy- and Halo-Formation
- Stars of the Draco Dwarf Spheroidal Galaxy Beyond its Measured Tidal Boundary
- Estimating Dark Matter Distributions
- A census of the expected properties of classical Milky Way dwarfs in Milgromian dynamics
- Exploding Satellites -- The Tidal Debris of the Ultra-Faint Dwarf Galaxy Hercules
- The mass-metallicity relation of tidal dwarf galaxies
- On the absence of dark matter in dwarf galaxies surrounding the Milky Way
- Merging Timescales and Merger Rates of Star Clusters in Dense Star Cluster Complexes
- Structure of the Draco Dwarf Spheroidal Galaxy
- Stellar content, planetary nebulae, and globular clusters of [KKS2000]04 (NGC1052-DF2)
- The Curious Case of Palomar 13: The Influence of the Orbital Phase on the Appearance of Galactic Satellites
- Are dwarf spheroidal galaxies dark matter dominated or remnants of disrupted larger satellite galaxies? -- A possible test
- High resolution simulations of unstable modes in a collisionless disc
- Mass-Metallicity Relation for the Local Group Dwarf Spheroidal Galaxies: A New Picture for the Chemical Enrichment of Galaxies in the Lowest Mass Range
- The Fundamental Line of the Local Group Satellites
- A portrait of the Vast Polar Structure as a young phenomenon: hints from its member satellites
- HSTPROMO Internal Proper Motion Kinematics of Dwarf Spheroidal Galaxies: I. Velocity Anisotropy and Dark Matter Cusp Slope of Draco
- Analysis of a Proper-Motion Selected Sample of Stars in the Ursa Minor Dwarf Spheroidal Galaxy
- Improved photometry of SDSS crowded field images: Structure and dark matter content in the dwarf spheroidal galaxy Leo I
- The Potential of the Dwarf Galaxy Triangulum II for Dark Matter Indirect Detection
- The [alpha/Fe] ratios of very metal-poor stars within the IGIMF theory
- Why Are There Dwarf Spheroidal Galaxies?
- Massive Black Holes in Dwarf Spheroidal Galaxy Haloes?
- Anisotropic gaseous models of tidally limited star clusters -- comparison with other methods
- History of Milky Way Dwarf Spheroidal Galaxies Imprinted on Abundance Patterns of Neutron-Capture Elements
- A modern view of galaxies and their stellar populations
- Simulating Sinking Satellites with SUPERBOX-10
- Satellite survival in cold dark matter cosmology
- The survival of dynamical fossils in dwarf spheroidal galaxies in conventional and modified dynamics
- High resolution in z-direction: The simulation of disc-bulge-halo galaxies using the particle-mesh code SUPERBOX
- A Study of the Properties and Dynamics of the Disk of Satellites in a Milky-Way-like Galaxy System
- Observational Test of Environmental Effects on The Local Group Dwarf Spheroidal Galaxies
- Is the Sgr dSph a dark matter dominated system?