The Magellanic Stream: break up and accretion onto the hot Galactic corona
arXiv:1505.01587 · doi:10.1088/0004-637X/813/2/94
Abstract
The Magellanic HI Stream (~2x10^9 Msun [d/55 kpc]^2) encircling the Galaxy at a distance 'd' is arguably the most important tracer of what happens to gas accreting onto a disk galaxy. Recent observations reveal that the Stream's mass is in fact dominated (3:1) by its ionised component. Here we revisit the origin of the mysterious H-alpha recombination emission observed along much of its length that is overly bright (~150-200 milli-Rayleigh) for the known Galactic ultraviolet background (~20-40 mR / [d/55 kpc]^2). In an earlier model, we proposed that a slow shock cascade was operating along the Stream due to its interaction with the extended Galactic hot corona. We find that, for a smooth coronal density profile, this model can explain the bright H-alpha emission if the coronal density satisfies 2 < (n / 10^{-4} cm^{-3}) < 4 at d = 55 kpc. But in view of updated parameters for the Galactic halo and mounting evidence that most of the Stream must lie far beyond the Magellanic Clouds (d>55 kpc), we revisit the shock cascade model in detail. At lower densities, the HI gas is broken down by the shock cascade but mostly mixes with the hot corona without significant recombination. At higher densities, the hot coronal mass (including the other baryonic components) exceeds the baryon budget of the Galaxy. If the H-alpha emission arises from the shock cascade, the upper limit on the smooth coronal density constrains the Stream's mean distance to < 75 kpc. If, as some models indicate, the Stream is even further out, either the shock cascade is operating in a regime where the corona is substantially mass-loaded with recent gas debris, or an entirely different ionization mechanism is responsible.
Significant expansion of the parameter space explored in response to referee's comments. ApJ accepted
References in corpus (18)
- Giant Gamma-ray Bubbles from Fermi-LAT: AGN Activity or Bipolar Galactic Wind?
- The COS-Halos Survey: Physical Conditions and Baryonic Mass in the Low-Redshift Circumgalactic Medium
- Are the Magellanic Clouds on their First Passage about the Milky Way?
- The redshift dependence of the structure of massive LCDM halos
- The Structure of the Milky Way's Bar Outside the Bulge
- The Origin of the Magellanic Stream and Its Leading Arm
- Constraining the Milky Way's Hot Gas Halo with OVII and OVII Emission Lines
- On the Shoulders of Giants: Properties of the Stellar Halo and the Milky Way Mass Distribution
- Do Hot Haloes Around Galaxies Contain the Missing Baryons?
- Interactions of a Light Hypersonic Jet with a Non-Uniform Interstellar Medium
- The COS/UVES Absorption Survey of the Magellanic Stream. III: Ionization, Total Mass, and Inflow Rate onto the Milky Way
- The Source of Ionization along the Magellanic Stream
- Probing the Fermi Bubbles in Ultraviolet Absorption: A Spectroscopic Signature of the Milky Way's Biconical Nuclear Outflow
- Smith's Cloud: A High-velocity Cloud Colliding with the Milky Way
- A Genetic Approach to the History of the Magellanic Clouds
- The Smith Cloud and its dark matter halo: Survival of a Galactic disc passage
- A New Computational Fluid Dynamics Code I: Fyris Alpha
- X-Ray Searches for Emission from the WHIM in the Galactic Halo and the Intergalactic Medium
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- The Galactic Halo Contribution to the Dispersion Measure of Extragalactic Fast Radio Bursts
- The SAMI Galaxy Survey: extraplanar gas, galactic winds, and their association with star formation history
- Deviations from hydrostatic equilibrium in the circumgalactic medium: spinning hot haloes and accelerating flows
- The large-scale ionization cones in the Galaxy
- The Magellanic Corona and the formation of the Magellanic Stream
- The Magellanic Stream at 20 kpc: A New Orbital History for the Magellanic Clouds
- Models of Tidally Induced Gas Filaments in the Magellanic Stream
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- Magnetized High Velocity Clouds in the Galactic Halo: A New Distance Constraint
- Revealing the Ionization Properties of the Magellanic Stream using Optical Emission
- Models of rotating coronae
- Kinematics of the Magellanic Stream and Implications for its Ionization
- An Introduction to Gas Accretion onto Galaxies
- Hydrodynamic Shielding and the Survival of Cold Streams
- New constraints on the nature and origin of the Leading Arm of the Magellanic Stream
- The Smith Cloud: surviving a high speed transit of the Galactic disc
- Radiative Turbulent Mixing Layers and the Survival of Magellanic Debris
- New detections of embedded clusters in the Galactic halo
- The role of the halo magnetic field on accretion through High-Velocity Clouds
- H Distances to the Leading Arm of the Magellanic Stream
- Exploring Hydrodynamic Instabilities along the Infalling High-Velocity Cloud Complex A
- The Evolution of Magellanic-like Galaxy Pairs and The Production of Magellanic Stream Analogues in Simulations with Tides, Ram Pressure, and Stellar Feedback