Storm fronts over galaxy discs: Models of how waves generate extraplanar gas and its anomalous kinematics
arXiv:0808.3564 · doi:10.1111/j.1365-2966.2009.15035.x
Abstract
The existence of partially ionized, diffuse gas and dust clouds at kiloparsec scale distances above the central planes of edge-on, galaxy discs was an unexpected discovery about 20 yrs ago. Subsequent observations showed that this EDIG (extended or extraplanar diffuse interstellar gas) has rotation velocities approximately 10-20% lower than those in the central plane, and have been hard to account for. Here we present results of hydrodynamic models, with radiative cooling and heating from star formation. We find that in models with star formation generated stochastically across the disc an extraplanar gas layer is generated as long as the star formation is sufficiently strong. However, this gas rotates at nearly the same speed as the mid-plane gas. We then studied a range of models with imposed spiral or bar waves in the disc. EDIG layers were also generated in these models, but primarily over the wave regions, not over the entire disc. Because of this partial coverage, the EDIG clouds move radially, as well as vertically, with the result that observed kinematic anomalies are reproduced. The implication is that the kinematic anomalies are the result of three-dimensional motions when the cylindrical symmetry of the disc is broken. Thus, the kinematic anomalies are the result of bars or strong waves, and more face-on galaxies with such waves should have an asymmetric EDIG component. The models also indicate that the EDIG can contain a significant fraction of cool gas, and that some star formation can be triggered at considerable heights above the disc midplane. We expect all of these effects to be more prominent in young, forming discs, to play a role in rapidly smoothing disc asymmetries, and in working to self-regulate disc structure.
30 pages, 9 figs., accepted for MNRAS with additional referee corrections
References in corpus (25)
- Star Formation and Feedback in Smoothed Particle Hydrodynamic Simulations--I. Isolated Galaxies
- The Statistics of Supersonic Isothermal Turbulence
- Resolved Galaxies in the Hubble Ultra Deep Field: Star Formation in Disks at High Redshift
- The cold gaseous halo of NGC 891
- Molecular Hydrogen and Global Star Formation Relations in Galaxies
- Turbulent Structure of a Stratified Supernova-Driven Interstellar Medium
- From the warm magnetized atomic medium to molecular clouds
- Toward first-principle simulations of galaxy formation: I. How should we choose star formation criteria in high-resolution simulations of disk galaxies?
- Density structure of the interstellar medium and the star formation rate in galactic disks
- The Generation and Dissipation of Interstellar Turbulence - Results from Large Scale High Resolution Simulations
- Chandra Observation of the Edge-on Spiral NGC 5775: Probing the Hot Galactic Disk/Halo Connection
- The Effect of the Interstellar Model on Star Formation Properties in Galactic Disks
- Integral Field Unit Observations of NGC 891: Kinematics of the Diffuse Ionized Gas Halo
- Integral Field Unit Observations of NGC 4302: Kinematics of the Diffuse Ionized Gas Halo
- Pressure Relations and Vertical Equilibrium in the Turbulent, Multiphase ISM
- Hydrodynamical simulations of Galactic fountains I: evolution of single fountains
- On the hydrodynamics of the matter reinserted within superstellar clusters
- Lopsided galaxies: the case of NGC 891
- On the feedback from super stellar clusters. I. The structure of giant HII regions and HII galaxies
- Dependence of radio halo properties on star formation activity and galaxy mass
- HI Clouds in the Lower Halo: I. The Galactic All-Sky Survey Pilot Region
- PAHs in the Halo of NGC 5529
- Molecular cloud regulated star formation in galaxies
- Vertically Extended Neutral Gas in the Massive Edge-on Spiral NGC 5746
- Neutral hydrogen in galactic fountains
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- Dawes Review 4: Spiral Structures in Disc Galaxies
- The Westerbork Hydrogen Accretion in Local Galaxies (HALOGAS) Survey I. Survey Description and Pilot Observations
- Galactic fountains and the rotation of disc-galaxy coronae
- The origin of the high-velocity cloud complex C
- On the origin of the warm-hot absorbers in the Milky Way's halo
- Shrinking Galaxy Disks with Fountain-Driven Accretion from the Halo
- How can star formation be sustained?
- Extraplanar H II Regions in Spiral Galaxies. I. Low-Metallicity Gas Accreting through the Disk-Halo Interface of NGC 4013
- 2D kinematics of the edge-on spiral galaxy ESO 379-G006
- Extraplanar H II Regions in Spiral Galaxies. II. In Situ Star Formation in the Interstellar Thick Disk of NGC 4013
- An X-ray View of Star Formation in the Central 3 kpc of NGC 2403