A new method for spatially resolving the turbulence driving mixture in the ISM with application to the Small Magellanic Cloud
arXiv:2309.10755 · doi:10.1093/mnras/stad2718
Abstract
Turbulence plays a crucial role in shaping the structure of the interstellar medium. The ratio of the three-dimensional density contrast () to the turbulent sonic Mach number () of an isothermal, compressible gas describes the ratio of solenoidal to compressive modes in the turbulent acceleration field of the gas, and is parameterised by the turbulence driving parameter: . The turbulence driving parameter ranges from (purely solenoidal) to (purely compressive), with characterising the natural mixture (1/3~compressive, 2/3~solenoidal) of the two driving modes. Here we present a new method for recovering , , and , from observations on galactic scales, using a roving kernel to produce maps of these quantities from column density and centroid velocity maps. We apply our method to high-resolution HI emission observations of the Small Magellanic Cloud (SMC) from the GASKAP-HI survey. We find that the turbulence driving parameter varies between and within the main body of the SMC, but the median value converges to , suggesting that the turbulence is overall driven more compressively (). We observe no correlation between the parameter and HI or H intensity, indicating that compressive driving of HI turbulence cannot be determined solely by observing HI or H emission density, and that velocity information must also be considered. Further investigation is required to link our findings to potential driving mechanisms such as star-formation feedback, gravitational collapse, or cloud-cloud collisions.
20 pages, 16 figures, accepted to MNRAS
References in corpus (32)
- Theory of Star Formation
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- The Statistics of Supersonic Isothermal Turbulence
- The Density Probability Distribution in Compressible Isothermal Turbulence: Solenoidal versus Compressive Forcing
- Science with ASKAP - the Australian Square Kilometre Array Pathfinder
- On the Star Formation Efficiency of Turbulent Magnetized Clouds
- The Fractal Density Structure in Supersonic Isothermal Turbulence: Solenoidal versus Compressive Energy Injection
- The link between turbulence, magnetic fields, filaments, and star formation in the Central Molecular Zone cloud G0.253+0.016
- Cooling, Gravity and Geometry: Flow-driven Massive Core Formation
- Magnetic field amplification in turbulent astrophysical plasmas
- The sonic scale revealed by the world's largest supersonic turbulence simulation
- Unfolding the Laws of Star Formation: The Density Distribution of Molecular Clouds
- The density structure and star formation rate of non-isothermal polytropic turbulence
- Turbulence sets the initial conditions for star formation in high-pressure environments
- Scaling Relations of Compressible MHD Turbulence
- The Physical Nature of Neutral Hydrogen Intensity Structure
- GASKAP-HI Pilot Survey Science I: ASKAP Zoom Observations of HI Emission in the Small Magellanic Cloud
- Thermal and turbulent properties of the Warm Neutral Medium in the solar neighborhood
- The density structure of supersonic self-gravitating turbulence
- Testing Star Formation Laws on Spatially Resolved Regions in a Starburst Galaxy
- Relationship between turbulence energy and density variance in the Solar neighbourhood molecular clouds
- Molecular cloud formation by compression of magnetized turbulent gas subjected to radiative cooling
- Mapping Spatial Variations of HI Turbulent Properties in the Small and Large Magellanic Cloud
- The relation between the turbulent Mach number and observed fractal dimensions of turbulent clouds
- First extragalactic measurement of the turbulence driving parameter: ALMA observations of the star-forming region N159E in the Large Magellanic Cloud
- A Radio Polarisation Study of Magnetic Fields in the Small Magellanic Cloud
- The link between solenoidal turbulence and slow star formation in G0.253+0.016
- Centroid Velocity Statistics of Molecular Clouds
- Nature of supersonic turbulence and density distribution function in the multiphase interstellar medium
- Spatial variations of turbulent properties of neutral hydrogen gas in the Small Magellanic Cloud using structure function analysis
- The Nature of Turbulence in the LITTLE THINGS Dwarf Irregular Galaxies
- The turbulence driving parameter of molecular clouds in disc galaxies