Collisional baryonic dark matter halos
arXiv:astro-ph/9807236 · doi:10.1046/j.1365-8711.1999.02814.x
Abstract
If dark halos are composed of dense gas clouds, as has recently been inferred, then collisions between clouds lead to galaxy evolution. Collisions introduce a core in an initially singular dark matter distribution, and can thus help to reconcile scale-free initial conditions -- such as are found in simulations -- with observed halos, which have cores. A pseudo-Tully-Fisher relation, between halo circular speed and visible mass (not luminosity), emerges naturally from the model: visible mass proportional to V^3.5. Published data conform astonishingly well to this theoretical prediction. For our sample of galaxies, the mass-velocity relationship has much less scatter than the Tully-Fisher relation, and holds as well for dwarf galaxies (where diffuse gas makes a sizeable contribution to the total visible mass) as it does for giants. It seems very likely that this visible-mass/velocity relationship is the underlying physical basis for the Tully-Fisher relation, and this discovery in turn suggests that the dark matter is both baryonic and collisional.
Revised version; 6 pages, 2 figures, to appear in MNRAS
References in corpus (5)
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Cited by in corpus (24)
- The Baryonic Tully-Fisher Relation
- The Baryonic Tully-Fisher Relationship for SG Galaxies and the "Condensed" Baryon Fraction of Galaxies
- The HI Tully-Fisher Relation of Early-Type Galaxies
- Dynamical friction of bodies orbiting in a gaseous sphere
- A Slippery Slope: Systematic Uncertainties in the Line Width Baryonic Tully-Fisher Relation
- Thermal stability of cold clouds in galaxy halos
- A Consistent Set of Empirical Scaling Relations for Spiral Galaxies: The - Relations
- Structural Parameters of Stellar Disks from 2MASS Images of Edge-on Galaxies
- Relations between abundance characteristics and rotation velocity for star-forming MaNGA galaxies
- The Intrinsic Scatter of the Radial Acceleration Relation
- ZOMG III: The effect of Halo Assembly on the Satellite Population
- The scaling relation between baryonic mass and stellar disc size of morphologically late-type galaxies
- Giant disk galaxies : Where environment trumps mass in galaxy evolution
- Constraints on Cold H_2 Clouds from Gravitational Microlensing Searches
- A snowflake's chance in heaven
- The Cloudy Universe
- Dense gas clouds and the Unidentified EGRET sources
- Cosmic snow clouds: self-gravitating gas spheres manifesting hydrogen condensation
- Gamma-ray Spectra due to Cosmic-ray Interactions with Dense Gas Clouds
- Free-floating "planets'' in the macrolensed quasar Q2237+0305
- Cosmological nanolensing by dense gas clouds
- Tidal disruption of "snow clouds" by unassociated stars
- Search for H2 cloudlets in our backyard
- The Tully-Fisher relations of the Eridanus group of galaxies