Do Hot Haloes Around Galaxies Contain the Missing Baryons?
arXiv:1003.3273 · doi:10.1088/0004-637X/714/1/320
Abstract
Galaxies are missing most of their baryons, and many models predict these baryons lie in a hot halo around galaxies. We establish observationally motivated constraints on the mass and radii of these haloes using a variety of independent arguments. First, the observed dispersion measure of pulsars in the Large Magellanic Cloud allows us to constrain the hot halo around the Milky Way: if it obeys the standard NFW profile, it must contain less than 4-5% of the missing baryons from the Galaxy. This is similar to other upper limits on the Galactic hot halo, such as the soft X-ray background and the pressure around high velocity clouds. Second, we note that the X-ray surface brightness of hot haloes with NFW profiles around large isolated galaxies is high enough that such emission should be observed, unless their haloes contain less than 10-25% of their missing baryons. Third, we place constraints on the column density of hot haloes using nondetections of OVII absorption along AGN sightlines: in general they must contain less than 70% of the missing baryons or extend to no more than 40 kpc. Flattening the density profile of galactic hot haloes weakens the surface brightness constraint so that a typical L galaxy may hold half its missing baryons in its halo, but the OVII constraint remains unchanged, and around the Milky Way a flattened profile may only hold of the missing baryons from the Galaxy (). We also show that AGN and supernovae at low to moderate redshift - the theoretical sources of winds responsible for driving out the missing baryons - do not produce the expected correlations with the baryonic Tully-Fisher relationship and so are insufficient to explain the missing baryons from galaxies. We conclude that most of missing baryons from galaxies do not lie in hot haloes around the galaxies, and that the missing baryons never fell into the potential wells of protogalaxies in the first place. They may have been expelled from the galaxies as part of the process of galaxy formation.
accepted for publication in the Astrophysical Journal
References in corpus (18)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Likelihoods and Parameters from the WMAP data
- Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
- The Milky Way's Circular Velocity Curve to 60 kpc and an Estimate of the Dark Matter Halo Mass from Kinematics of ~2400 SDSS Blue Horizontal Branch Stars
- Mass, Metal, and Energy Feedback in Cosmological Simulations
- The Search for the Missing Baryons at Low Redshift
- The Vertical Structure of Warm Ionised Gas in the Milky Way
- Images, structural properties and metal abundances of galaxy clusters observed with Chandra ACIS-I at 0.1<z<1.3
- Diffuse Optical Light in Galaxy Clusters II: Correlations with Cluster Properties
- The Physical Nature of Rest-UV Galaxy Morphology During the Peak Epoch of Galaxy Formation
- The Impact of Feedback on Disk Galaxy Scaling Relations
- X-Ray Absorption from the Milky Way Halo and the Local Group
- A First Attempt to Calibrate the Baryonic Tully-Fisher Relation with Gas Dominated Galaxies
- Discovery of 14 radio pulsars in a survey of the Magellanic Clouds
- Implications of Recent Measurements of the Milky Way Rotation for the Orbit of the Large Magellanic Cloud
- Chandra and XMM-Newton Detection of Large-scale Diffuse X-ray Emission from the Sombrero Galaxy
- The multi-phase gaseous halos of star forming late-type galaxies - II. Statistical analysis of key parameters
- An XMM-Newton Observation of the Massive Edge-on Sb Galaxy NGC 2613
- X-Ray Searches for Emission from the WHIM in the Galactic Halo and the Intergalactic Medium