The role of magnetic fields in the structure and interaction of supershells
arXiv:1701.03696 · doi:10.1051/0004-6361/201629268
Abstract
Large-scale shocks formed by clustered feedback of young OB stars are considered an important source of mechanical energy for the ISM and a trigger of molecular cloud formation. Their interaction sites are locations where kinetic energy and magnetic fields are redistributed between ISM phases. In this work we study the effect of the magnetic field on the expansion and fragmentation of supershells and look for the signatures of supershell collisions on dense structures and on the kinetic and magnetic energy distribution of the ISM. We performed a series of high-resolution, three-dimensional simulations of colliding supershells. The shocks are created by time-dependent feedback and evolve in a diffuse turbulent environment that is either unmagnetized or has different initial magnetic field configurations. In the hydrodynamical situation, the expansion law of the superbubbles is consistent with the radius-time relation that is theoretically predicted for wind-blown bubbles. The supershells fragment over their entire surface into small dense clumps that carry more than half of the total kinetic energy in the volume. However, this is not the case when a magnetic field is introduced, either in the direction of the collision or perpendicular to the collision. In magnetized situations, the shell surfaces are more stable to dynamical instabilities. When the magnetic field opposes the collision, the expansion law of the supershells also becomes significantly flatter than in the hydrodynamical case. Although a two-phase medium arises in all cases, in the MHD simulations the cold phase is limited to lower densities.
to appear in A&A Section 6: Interstellar and circumstellar matter
References in corpus (13)
- A High Order Godunov Scheme with Constrained Transport and Adaptive Mesh Refinement for Astrophysical MHD
- Molecular Cloud Evolution II. From cloud formation to the early stages of star formation in decaying conditions
- From the warm magnetized atomic medium to molecular clouds
- The Birth of Molecular Clouds: Formation of Atomic Precursors in Colliding Flows
- Dependence of Interstellar Turbulent Pressure on Supernova Rate
- Planck intermediate results. XX. Comparison of polarized thermal emission from Galactic dust with simulations of MHD turbulence
- The Generation and Dissipation of Interstellar Turbulence - Results from Large Scale High Resolution Simulations
- Supergiant Shells and Molecular Cloud Formation in the LMC
- Three-Dimensional Simulations of Magnetized Superbubbles: New Insights into the Importance of MHD Effects on Observed Quantities
- A Young GMC Formed at the Interface of Two Colliding Supershells: Observations Meet Simulations
- The Supershell-Molecular Cloud Connection: Large-Scale Stellar Feedback and the Formation of the Molecular ISM
- First Investigation of the Combined Impact of Ionizing Radiation and Momentum Winds from a Massive Star on a Self-Gravitating Core
- Dense Molecular Clumps associated with the LMC Supergiant Shells LMC 4 \& LMC 5
Cited by in corpus (17)
- The role of Galactic HII regions in the formation of filaments. High-resolution submilimeter imaging of RCW 120 with ArTéMiS
- Compressed magnetized shells of atomic gas and the formation of the Corona Australis molecular cloud
- JCMT BISTRO Observations: Magnetic Field Morphology of Bubbles Associated with NGC 6334
- Magnetic fields do not suppress global star formation in low metallicity dwarf galaxies
- Bimodal Behavior and Convergence Requirement in Macroscopic Properties of the Multiphase Interstellar Medium Formed by Atomic Converging Flows
- HI-H transition: exploring the role of the magnetic field
- First look at the multiphase interstellar medium with synthetic observations of low-frequency Faraday tomography
- Giant Molecular Cloud Formation at the Interface of Colliding Supershells in the Large Magellanic Cloud
- The "C": The large Chameleon-Musca-Coalsack cloud
- The Origin of the Cluster of Local Interstellar Clouds
- The Orion-Taurus ridge: a synchrotron radio loop at the edge of the Orion-Eridanus superbubble
- Properties of star formation of the Large Magellanic Cloud as probed by young stellar objects
- Associating LOFAR Galactic Faraday structures with the warm neutral medium
- The role of shocks and the velocity gradient in the relative orientation of the magnetic field and dense gas clouds
- Galactic magnetic fields II. Applying the model to nearby galaxies
- The JCMT BISTRO Survey: The magnetised evolution of star-forming cores in the Ophiuchus Molecular Cloud interpreted using Histograms of Relative Orientation
- A complete survey of filaments in Cygnus X