Three-Dimensional Simulations of Parker, Magneto-Jeans, and Swing Instabilities in Shearing Galactic Gas Disks
arXiv:astro-ph/0208414 · doi:10.1086/344367
Abstract
We use 3D MHD simulations to investigate nonlinear development of the Parker, magneto-Jeans (MJI), and swing mechanisms in galactic disks. The model disks are local, isothermal, and begin from a vertically-stratified equilibrium. We first construct axisymmetric equilibria and examine their stability. Finite disk thickness reduces the critical Toomre Q parameter below unity; we find Q_c \~ 0.75, 0.72, and 0.57 for β=\infty, 10, and 1 cases, respectively. We then pursue fully 3D models. In non-self-gravitating cases, the peak density enhancement from the `pure' Parker instability is less a factor of two. The dominant growing modes have radial wavelengths comparable to the disk scale height H, much shorter than the azimuthal wavelength (~10-20 H). Shearing disks, being more favorable to midplane-symmetric modes, have somewhat different late-time magnetic field profiles from nonshearing disks, but otherwise saturated states are similar. Late-time velocity fluctuations at 10% of the sound speed persist, but no characteristic structural signatures of Parker modes remain in the new equilibria. In self-gravitating cases, the development of density structure is qualitatively similar to our previous results from thin-disk simulations. The Parker instability, although it may help seed structure or tip the balance under marginal conditions, appears to play a secondary role. In shearing disks with Q less than a threshold level ~ 1, swing amplification can produce bound clouds of a few times the local Jeans mass. The most powerful cloud-condensing mechanism appears to be the MJI. Our simulations show that condensations of a local Jeans mass (~3\times 10^7 M_sun) grow very rapidly, supporting the idea that MJI is at least partly responsible for the formation of bound cloud complexes in spiral galaxies.
36 pages, 15 figures, Accepted for publication in ApJ; better postscript figures available from http://www.astro.umd.edu/~kimwt/FIGURE3/ ; for associated Animated GIF movies, see http://www.astro.umd.edu/~kimwt/MOVIES/3DLocal
Cited by in corpus (98)
- Theory of Star Formation
- A General Theory of Turbulence-Regulated Star Formation, From Spirals to ULIRGs
- Magnetic Fields in Spiral Galaxies
- Maximally Star-Forming Galactic Disks I. Starburst Regulation Via Feedback-Driven Turbulence
- Simulating the formation of molecular clouds. I. Slow formation by gravitational collapse from static initial conditions
- Molecular Hydrogen and Global Star Formation Relations in Galaxies
- Dawes Review 4: Spiral Structures in Disc Galaxies
- The Central Region of Barred Galaxies: Molecular Environment, Starbursts, and Secular Evolution
- Three-phase Interstellar medium in Galaxies Resolving Evolution with Star formation and Supernova feedback (TIGRESS): Algorithms, Fiducial model, and Convergence
- Kinematic Distances to Molecular Clouds identified in the Galactic Ring Survey
- Giant Molecular Clouds in M33 - I. BIMA All Disk Survey
- On the Rapid Collapse and Evolution of Molecular Clouds
- Three Dimensional Hydrodynamic Simulations of Multiphase Galactic Disks with Star Formation Feedback: I. Regulation of Star Formation Rates
- The Global Evolution of Giant Molecular Clouds. I: Model Formulation and Quasi-Equilibrium Behavior
- A sub-parsec resolution simulation of the Milky Way: Global structure of the ISM and properties of molecular clouds
- Filaments in Simulations of Molecular Cloud Formation
- Regulation of Star Formation Rates in Multiphase Galactic Disks: Numerical Tests of the Thermal/Dynamical Equilibrium Model
- The Magnetic Rayleigh-Taylor Instability in Three Dimensions
- A General Theory of Turbulent Fragmentation
- Formation of Spiral-Arm Spurs and Bound Clouds in Vertically Stratified Galactic Gas Disks
- Properties of gravitoturbulent accretion disks
- GMC formation by agglomeration and self gravity
- First results from SMAUG: Characterization of Multiphase Galactic Outflows from a Suite of Local Star-Forming Galactic Disk Simulations
- Large scale galactic turbulence: can self-gravity drive the observed HI velocity dispersions?
- The Global Evolution of Giant Molecular Clouds II: The Role of Accretion
- Global Modeling of Spur Formation in Spiral Galaxies
- Convective cooling and fragmentation of gravitationally unstable disks
- Magnetorotationally-Driven Galactic Turbulence and the Formation of Giant Molecular Clouds
- Radial Profiles of Star Formation in the Far Outer Regions of Galaxy Disks
- Gravitational Instabilities in Two-Component Galaxy Disks with Gas Dissipation
- Bar quenching in gas-rich galaxies
- Dense core formation in supersonic turbulent converging flows
- An Excursion-Set Model for the Structure of GMCs and the ISM
- Saturated-State Turbulence and Structure from Thermal and Magnetorotational Instability in the ISM: Three-Dimensional Numerical Simulations
- Gravitational Runaway and Turbulence Driving in Star-Gas Galactic Disks
- Pressure Relations and Vertical Equilibrium in the Turbulent, Multiphase ISM
- Cloud and Star Formation in Disk Galaxy Models with Feedback
- High accretion rates in magnetised Keplerian discs mediated by a Parker instability driven dynamo
- Magnetic fields in the nearby spiral galaxy IC 342: A multi-frequency radio polarization study
- Supergiant Shells and Molecular Cloud Formation in the LMC
- From diffuse gas to dense molecular cloud cores
- PHANGS-JWST First Results: A statistical view on bubble evolution in NGC628
- Incorporation of cosmic ray transport into the ZEUS MHD code. Application for studies of Parker instability in the ISM
- Branch, Spur, and Feather Formation in Spiral Galaxies
- Unbound Young Stellar Systems: Star Formation on the loose
- Making a supermassive star by stellar bombardment
- Giant Molecular clouds: what are they made from, and how do they get there?
- Gas Properties and Implications for Galactic Star Formation in Numerical Models of the Turbulent, Multiphase ISM
- Equilibrium Initialization and Stability of Three-Dimensional Gas Disks
- Protostellar discs formed from turbulent cores
- The fragmentation criteria in local vertically stratified self-gravitating disk simulations
- Structure Formation in Gas-Rich Galactic Discs with Finite Thickness: From Discs to Rings
- Magnetic fields and the dynamics of spiral galaxies
- Orbital Advection by Interpolation: A Fast and Accurate Numerical Scheme for Super-Fast MHD Flows
- Gaseous Spiral Structure and Mass Drift in Spiral Galaxies
- Impact of galactic shear and stellar feedback on star formation
- Resolved magnetic structures in the disk-halo interface of NGC 628
- The Parker Instability in Disk Galaxies
- Jumping the Gap: The Formation Conditions and Mass Function of Pebble-Pile Planetesimals
- 3D Radiation Hydrodynamic Simulations of Gravitational Instability in AGN Accretion Disks: Effects of Radiation Pressure
- Nonlinear Evolution of Gravitational Fragmentation Regulated by Magnetic Fields and Ambipolar Diffusion
- Properties of the Magneto-ionic Medium in the Halo of M51 revealed by Wide-band Polarimetry
- On the evolution of gas clouds exposed to AGN radiation. I. Three-dimensional radiation hydrodynamic simulations
- Parker-Jeans Instability of Gaseous Disks Including the Effect of Cosmic Rays
- Formation of Interstellar Clouds: Parker Instability with Phase Transitions
- Global dynamics of the interstellar medium in magnetised disc galaxies
- Galactic Spiral Shocks with Thermal Instability in Vertically Stratified Galactic Disks
- A Young GMC Formed at the Interface of Two Colliding Supershells: Observations Meet Simulations
- Field topologies in ideal and near ideal magnetohydrodynamics and vortex dynamics
- The Detection of Molecular Gas in the Outskirts of NGC 6946
- The Supershell-Molecular Cloud Connection: Large-Scale Stellar Feedback and the Formation of the Molecular ISM
- Embedded Star Formation in S4G Galaxy Dust Lanes
- Galaxy Outflows Without Supernovae
- Magnetic field evolution and reversals in spiral galaxies
- A Numerical Study of Brown Dwarf Formation via Encounters of Protostellar Disks
- Globular Clusters and Spur Clusters in NGC 4921, the Brightest Spiral Galaxy in the Coma Cluster
- The Origin of Filamentary Star Forming Clouds in Magnetised Galaxies
- Similarity between the Molecular Loops in the Galactic Center and the Solar Chromospheric Arch Filaments
- Highly Embedded 8 micron Cores of Star Formation in the Spiral Arms and Filaments of 15 Nearby Disk Galaxies
- Hierarchical fragmentation in high redshift galaxies revealed by hydrodynamical simulations
- On Vertically Global, Horizontally Local Models for Astrophysical Disks
- Star Formation on Galactic Scales: Empirical Laws
- Spiral-arm instability - II: magnetic destabilisation
- Effects of Magnetic Fields on Gas Dynamics and Star Formation in Nuclear Rings
- Gravitational Instability of Rotating, Pressure-Confined, Polytropic Gas Disks With Vertical Stratification
- Proto-Brown Dwarf Disks as Products of Protostellar Disk Encounters
- A Search for correlations between turbulence and star formation in THINGS galaxies
- What triggers star formation in galaxies?
- Magnetohydrodynamic instabilities in a self-gravitating rotating cosmic plasma
- Local gravitational instability of stratified rotating fluids: 3D criteria for gaseous discs
- First results from SMAUG: Insights into star formation conditions from spatially-resolved ISM properties in TNG50
- Giant molecular clouds: star factories of the galaxy
- The magnetic field of the Radcliffe Wave: starlight polarization at nearest approach to the Sun
- Radially Magnetized Protoplanetary Disk: Vertical Profile
- Observing the Earliest Stages of Star Formation in Galaxies: 8 micron Cores in Three Edge-on Disks
- The generation of low-energy cosmic rays in molecular clouds
- Global non-axisymmetric perturbation configurations in a composite disc system with an isopedic magnetic field: relation between dark matter halo and magnetic field
- Turbulent Structure of the Interstellar Medium