Is the Milky Way's Hot Halo Convectively Unstable?
arXiv:1401.8016 · doi:10.1088/0004-637X/784/1/54
Abstract
We investigate the convective stability of two popular types of model of the gas distribution in the hot Galactic halo. We first consider models in which the halo density and temperature decrease exponentially with height above the disk. These halo models were created to account for the fact that, on some sight lines, the halo's X-ray emission lines and absorption lines yield different temperatures, implying that the halo is non-isothermal. We show that the hot gas in these exponential models is convectively unstable if , where is the ratio of the temperature and density scale heights. Using published measurements of and its uncertainty, we use Bayes' Theorem to infer posterior probability distributions for , and hence the probability that the halo is convectively unstable for different sight lines. We find that, if these exponential models are good descriptions of the hot halo gas, at least in the first few kiloparsecs from the plane, the hot halo is reasonably likely to be convectively unstable on two of the three sight lines for which scale height information is available. We also consider more extended models of the halo. While isothermal halo models are convectively stable if the density decreases with distance from the Galaxy, a model of an extended adiabatic halo in hydrostatic equilibrium with the Galaxy's dark matter is on the boundary between stability and instability. However, we find that radiative cooling may perturb this model in the direction of convective instability. If the Galactic halo is indeed convectively unstable, this would argue in favor of supernova activity in the Galactic disk contributing to the heating the hot halo gas.
8 pages, 3 figures. Accepted for publication in the Astrophysical Journal
References in corpus (7)
- Turbulent Structure of a Stratified Supernova-Driven Interstellar Medium
- Vertical structure of a supernova-driven turbulent magnetized ISM
- X-ray coronae in simulations of disc galaxy formation
- The Far Ultraviolet Spectroscopic Explorer Survey of OVI Absorption in the Disk of the Milky Way
- OVII and OVIII line emission in the diffuse soft X-ray background: heliospheric and galactic contributions
- X-ray and UV spectroscopy of Galactic diffuse hot gas along the LMC X--3 sight line
- Comments on "A huge reservoir of ionized gas around the Milky Way: accounting for the missing mass?" (2012 ApJL, 756, 8) and "The warm-hot gaseous halo of the Milky Way" (arXiv1211.3137)
Cited by in corpus (6)
- Explosive Nucleosynthesis in Near-Chandrasekhar Mass White Dwarf Models for Type Ia Supernovae: Dependence on Model Parameters
- Evidence for a Massive, Extended Circumgalactic Medium Around the Andromeda Galaxy
- On the Verge of an Astronomy CubeSat Revolution
- The Magellanic Stream: break up and accretion onto the hot Galactic corona
- Mass, Morphing, Metallicities: The Evolution of Infalling High Velocity Clouds
- The Origin of the Hot Gas in the Galactic Halo: Testing Galactic Fountain Models' X-ray Emission