Mutual influence of supernovae and molecular clouds
arXiv:1410.7972 · doi:10.1051/0004-6361/201424556
Abstract
Context. Molecular clouds are known to be turbulent and strongly affected by stellar feedback. Moreover, stellar feedback is believed to drive turbulence at large scales in galaxies. Aims. We study the role played by supernovae in molecular clouds and the influence of the magnetic field on this process. Methods. We performed three-dimensional numerical simulations of supernova explosions, in and near turbulent self-gravitating molecular clouds. In order to study the influence of the magnetic field, we performed both hydrodynamical and magnetohydrodynamical simulations. We also ran a series of simple uniform density medium simulations and developed a simple analytical model. Results. We find that the total amount of momentum that is delivered during supernova explosions typically varies by a factor of about 2, even when the gas density changes by 3 orders of magnitude. However, the amount of momentum delivered to the dense gas varies by almost a factor of 10 if the supernova explodes within or outside the molecular cloud. The magnetic field has little influence on the total amount of momentum injected by the supernova explosions but increases the momentum injected into the dense gas. Conclusions. Supernovae that explode inside molecular clouds remove a significant fraction of the cloud mass. Supernovae that explode outside have a limited influence on the cloud. It is thus essential to know sufficiently well the correlation between supernovae and the surrounding dense material in order to know whether supernovae can regulate star formation effectively.
12 pages, 14 figures, to be published in A&A
References in corpus (10)
- A High Order Godunov Scheme with Constrained Transport and Adaptive Mesh Refinement for Astrophysical MHD
- Turbulent Structure of a Stratified Supernova-Driven Interstellar Medium
- On the onset of galactic winds in quiescent star forming galaxies
- On the Density Distribution in Star-forming Interstellar Clouds
- Before the first supernova: combined effects of HII regions and winds on molecular clouds
- Discovery of 35 New Supernova Remnants in the Inner Galaxy
- Vertical structure of a supernova-driven turbulent magnetized ISM
- Simulations of magnetized multiphase galactic disk regulated by supernovae explosions
- The supernova-regulated ISM. I. The multi-phase structure
- Supernova Remnants Interacting with Molecular Clouds: X-ray and Gamma-ray Signatures
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- The role of galactic dynamics in shaping the physical properties of giant molecular clouds in Milky Way-like galaxies
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- Numerical Simulations of Turbulent Molecular Clouds Regulated by Radiation Feedback Forces II: Radiation-Gas Interactions and Outflows
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- Carina's Pillars of Destruction: the view from ALMA
- How do supernova remnants cool? -- I. Morphology, optical emission lines, and shocks
- Impact of the external radiation field on the structure and evolution of supernova remnants
- Cloud fragmentation cascades and feedback: on reconciling an unfettered inertial range with a low star formation rate
- From Stellar Nurseries to Old Stellar Populations: A Multi-wavelength Case of NGC 1055
- On the scale-height of the molecular gas disc in Milky Way-like galaxies