Filament formation in wind-cloud interactions. I. Spherical clouds in uniform magnetic fields
arXiv:1510.05356 · doi:10.1093/mnras/stv2405
Abstract
Filamentary structures are ubiquitous in the interstellar medium, yet their formation, internal structure, and longevity have not been studied in detail. We report the results from a comprehensive numerical study that investigates the characteristics, formation, and evolution of filaments arising from magnetohydrodynamic interactions between supersonic winds and dense clouds. Here we improve on previous simulations by utilising sharper density contrasts and higher numerical resolutions. By following multiple density tracers, we find that material in the envelopes of the clouds is removed and deposited downstream to form filamentary tails, while the cores of the clouds serve as footpoints and late-stage outer layers of these tails. Aspect ratios >12, subsonic velocity dispersions ~0.1-0.3 of the wind sound speed, and magnetic field amplifications ~100 are found to be characteristic of these filaments. We also report the effects of different magnetic field strengths and orientations. The magnetic field strength regulates vorticity production: sinuous filamentary towers arise in non-magnetic environments, while strong magnetic fields inhibit small-scale perturbations at boundary layers making tails less turbulent. Magnetic field components aligned with the direction of the flow favour the formation of pressure-confined flux ropes inside the tails, whilst transverse components tend to form current sheets. Softening the equation of state to nearly isothermal leads to suppression of dynamical instabilities and further collimation of the tail. Towards the final stages of the evolution, we find that small cloudlets and distorted filaments survive the break-up of the clouds and become entrained in the winds, reaching velocities ~0.1 of the wind speed.
Accepted for publication in MNRAS, 27 pages, 15 figures
References in corpus (21)
- PLUTO: a Numerical Code for Computational Astrophysics
- An Unsplit Godunov Method for Ideal MHD via Constrained Transport in Three Dimensions
- Inefficient star formation through turbulence, magnetic fields and feedback
- Draping of Cluster Magnetic Fields over Bullets and Bubbles -- Morphology and Dynamic Effects
- Giant Magnetized Outflows from the Centre of the Milky Way
- The Fractal Density Structure in Supersonic Isothermal Turbulence: Solenoidal versus Compressive Energy Injection
- Interactions of a Light Hypersonic Jet with a Non-Uniform Interstellar Medium
- The Magnetic Rayleigh-Taylor Instability in Three Dimensions
- The importance of magnetic-field-oriented thermal conduction in the interaction of SNR shocks with interstellar clouds
- The Magnetohydrodynamics of Shock-Cloud Interaction in Three Dimensions
- The Galactic Positron Annihilation Radiation & The Propagation of Positrons in the Interstellar Medium
- Spitzer spectral line mapping of supernova remnants: I. Basic data and principal component analysis
- The turbulent destruction of clouds - I. A k-epsilon treatment of turbulence in 2D models of adiabatic shock-cloud interactions
- On the feedback from super stellar clusters. I. The structure of giant HII regions and HII galaxies
- Numerical simulations of shocks encountering clumpy regions
- The effect of clouds in a galactic wind on the evolution of gas-rich dwarf galaxies
- Crushing of interstellar gas clouds in supernova remnants II. X-ray emission
- Numerical Simulations of a Shock Interacting with Multiple Magnetized Clouds
- The formation of filamentary structures in radiative cluster winds
- Evolution of Magnetic Fields and Cosmic Ray Acceleration in Supernova Remnants
- Detailed molecular observations toward the Double Helix Nebula
Cited by in corpus (58)
- Cool Outflows in Galaxies and their Implications
- A Characteristic Scale for Cold Gas
- Relativistic jet feedback III: feedback on gas disks
- Hydrodynamical Coupling of Mass and Momentum in Multiphase Galactic Winds
- Interaction of a cold cloud with a hot wind: the regimes of cloud growth and destruction and the impact of magnetic fields
- Quasar Feedback in the Ultraluminous Infrared Galaxy F11119+3257: Connecting the Accretion Disk Wind with the Large-Scale Molecular Outflow
- On the Survival of Cool Clouds in the Circum-Galactic Medium
- Growth and structure of multiphase gas in the cloud-crushing problem with cooling
- Blowing in the Milky Way wind: neutral hydrogen clouds tracing the Galactic nuclear outflow
- Filament formation in wind-cloud interactions. II. Clouds with turbulent density, velocity, and magnetic fields
- The Survival of Multiphase Dusty Clouds in Hot Winds
- Magnetic fields in the Galactic halo restrict fountain-driven recycling and accretion
- On the dynamics and survival of fractal clouds in galactic winds
- Shock-multicloud interactions in galactic outflows -- II. Radiative fractal clouds and cold gas thermodynamics
- The Launching of Cold Clouds by Galaxy Outflows III: The Influence of Magnetic Fields
- GASKAP-HI Pilot Survey Science I: ASKAP Zoom Observations of HI Emission in the Small Magellanic Cloud
- The Magellanic System: the puzzle of the leading gas stream
- Cosmic-ray driven outflow from the galactic center and the origin of magnetized radio filaments
- Shock-multicloud interactions in galactic outflows -- I. Cloud layers with log-normal density distributions
- The in situ formation of molecular and warm ionised gas triggered by hot outflows
- Magnetized High Velocity Clouds in the Galactic Halo: A New Distance Constraint
- Structure and kinematics of shocked gas in Sgr B2: further evidence of a cloud-cloud collision from SiO emission maps
- Better Together: The Complex Interplay Between Radiative Cooling and Magnetic Draping
- Efficiency of Thermal Conduction in a Magnetised Circumgalactic Medium
- Exploring the Dust Content of Galactic Winds With Herschel. II. Nearby Dwarf Galaxies
- Hydrodynamic Shielding and the Survival of Cold Streams
- The Characteristic Momentum of Radiatively Cooling Energy-Driven Galactic Winds
- The Launching of Cold Clouds by Galaxy Outflows V: The Role of Anisotropic Thermal Conduction
- A Supernova-driven, Magnetically-collimated Outflow as the Origin of the Galactic Center Radio Bubbles
- The observable properties of cool winds from galaxies, AGN, and star clusters -- II. 3D models for the multiphase wind of M82
- A comparison of shock-cloud and wind-cloud interactions: The longer survival of clouds in winds
- Characterising the turbulent multiphase halos with periodic box simulations
- The interaction of a magnetohydrodynamical shock with a filament
- Populations of Magnetized Filaments in the Intracluster Medium and the Galactic Center
- Chandra large-scale mapping of the Galactic center: Probing high-energy structures around the central molecular zone
- Magnetic field draping around clumpy high-velocity clouds in galactic halo
- Galactic Winds across the Gas-Rich Merger Sequence: I. Highly Ionized N V and O VI Outflows in the QUEST Quasars
- Statistical Properties of the Population of the Galactic Center Filaments II: The Spacing Between Filaments
- A comparison of shock-cloud and wind-cloud interactions: effect of increased cloud density contrast on cloud evolution
- The role of the halo magnetic field on accretion through High-Velocity Clouds
- Zooming in on the Circumgalactic Medium with GIBLE: the Topology and Draping of Magnetic Fields around Cold Clouds
- Crepuscular Rays from the Highly Inclined Active Galactic Nucleus in IC 5063
- Exploring Hydrodynamic Instabilities along the Infalling High-Velocity Cloud Complex A
- Jet-Feedback on kpc scales: a review
- Dusty Cloud Acceleration with Multiband Radiation
- Simulations of Weakly Magnetized Turbulent Mixing Layers
- Zooming in on the Circumgalactic Medium with GIBLE: Tracing the Origin and Evolution of Cold Clouds
- Charge exchange emission and cold clumps in multi-phase galactic outflows
- The isothermal evolution of a shock-filament interaction
- The G2+G2t complex as a fast and massive outflow?
- The interaction of multiple stellar winds in stellar clusters: potential flow
- Not gone with the Wind: Survival of High-Velocity Molecular Clouds in the Galactic center
- Distant probes of RM structure -- Where is the Faraday Rotation towards the Magellanic Leading Arm?
- SOFIA/HAWC+ Far-Infrared Polarimetric Large Area CMZ Exploration Survey. V. The Magnetic Field Strength and Morphology in the Sagittarius C Complex
- Shock waves in Interstellar Cloud-Cloud and Wind-Cloud Collisions
- Absorption spectra from galactic wind models: a framework to link PLUTO simulations to TRIDENT
- The imprint of magnetic fields on absorption spectra from circumgalactic wind-cloud systems
- A New High-latitude H I Cloud Complex Entrained in the Northern Fermi Bubble