Tidal Dwarf Galaxies and missing baryons
arXiv:0907.3831 · doi:10.1155/2010/735284
Abstract
Tidal dwarf galaxies form during the interaction, collision or merger of massive spiral galaxies. They can resemble "normal" dwarf galaxies in terms of mass, size, and become dwarf satellites orbiting around their massive progenitor. They nevertheless keep some signatures from their origin, making them interesting targets for cosmological studies. In particular, they should be free from dark matter from a spheroidal halo. Flat rotation curves and high dynamical masses may then indicate the presence of an unseen component, and constrain the properties of the "missing baryons", known to exist but not directly observed. The number of dwarf galaxies in the Universe is another cosmological problem that can be significantly impacted if tidal dwarf galaxies formed frequently at high redshift, when the merger rate was high, and many of them survived until today.
Tutorial Review for the special issue "Dwarf galaxies and Cosmology" in Advances in Astronomy. (10 pages, 4 figures)
References in corpus (12)
- Morphological quenching of star formation: making early-type galaxies red
- Thin, thick and dark discs in LCDM
- From Tidal Dwarf Galaxies to Satellite Galaxies
- Tidal dwarf galaxies as a test of fundamental physics
- High-resolution simulations of galaxy mergers: Resolving globular cluster formation
- The mass-metallicity relation of interacting galaxies
- The Dark Disk of the Milky Way
- VCC 2062: an old Tidal Dwarf Galaxy in the Virgo Cluster?
- MOND and the mass discrepancies in tidal dwarf galaxies
- Smooth and Starburst Tidal Tails in the GEMS and GOODS Fields
- Stochastic `Beads on a String' in the Accretion Tail of Arp 285
- A new red giant-based distance modulus of 13.3 Mpc to the Antennae galaxies and its consequences
Cited by in corpus (28)
- The VPOS: a vast polar structure of satellite galaxies, globular clusters and streams around the Milky Way
- Local-Group tests of dark-matter Concordance Cosmology: Towards a new paradigm for structure formation
- "Galaxy," Defined
- Galaxies as simple dynamical systems: observational data disfavor dark matter and stochastic star formation
- Does the dwarf galaxy system of the Milky Way originate from Andromeda?
- Choirs HI Galaxy Groups: The metallicity of dwarf galaxies
- A census of the expected properties of classical Milky Way dwarfs in Milgromian dynamics
- A Formation Scenario for the Disk of Satellites: Accretion of Satellites during Mergers
- Understanding the internal dynamics of elliptical galaxies without non-baryonic dark matter
- The Influence of Ram Pressure on the Evolution of Tidal Dwarf Galaxies
- The number of tidal dwarf satellite galaxies in dependence of bulge index
- On the fundamentality of the radial acceleration relation for late-type galaxy dynamics
- Feedback in Galaxy Formation
- Catching Tidal Dwarf Galaxies at a Later Evolutionary Stage with ALFALFA
- Kinematics and physical properties of the nearby galaxy NGC 4656 and its TDG candidate
- Origin and Evolution of Structure and Nucleosynthesis for Galaxies in the Local Group
- Merge and strip: dark matter-free dwarf galaxies in clusters can be formed by galaxy mergers
- Discovery of a tidal dwarf galaxy in the Leo Triplet
- A modern view of galaxies and their stellar populations
- Star formation and structure formation in galaxy collisions
- Kinematics of dwarf galaxies in gas-rich groups, and the survival and detectability of tidal dwarf galaxies
- UVIT view of NGC 5291: Ongoing star formation in tidal dwarf galaxies at ~ 0.35 kpc resolution
- Lessons from the Local Group (and beyond) on dark matter
- A Study of the Properties and Dynamics of the Disk of Satellites in a Milky-Way-like Galaxy System
- Satellites in the Local Group and Other Nearby Groups
- Modelling the Canes Venatici I dwarf spheroidal galaxy
- Understanding Galaxy Mergers & AGN Feedback with UVIT
- The impact of ISM turbulence, clustered star formation and feedback on galaxy mass assembly through cold flows and mergers