Diagnosing Turbulence in the Neutral and Molecular Interstellar Medium of Galaxies
arXiv:2106.02239 · doi:10.1088/1538-3873/ac25cf
Abstract
Magnetohydrodynamic (MHD) turbulence is a crucial component of the current paradigms of star formation, dynamo theory, particle transport, magnetic reconnection and evolution of structure in the interstellar medium (ISM) of galaxies. Despite the importance of turbulence to astrophysical fluids, a full theoretical framework based on solutions to the Navier-Stokes equations remains intractable. Observations provide only limited line-of-sight information on densities, temperatures, velocities and magnetic field strengths and therefore directly measuring turbulence in the ISM is challenging. A statistical approach has been of great utility in allowing comparisons of observations, simulations and analytic predictions. In this review article we address the growing importance of MHD turbulence in many fields of astrophysics and review statistical diagnostics for studying interstellar and interplanetary turbulence. In particular, we will review statistical diagnostics and machine learning algorithms that have been developed for observational data sets in order to obtain information about the turbulence cascade, fluid compressibility (sonic Mach number), and magnetization of fluid (Alfvénic Mach number). These techniques have often been tested on numerical simulations of MHD turbulence, which may include the creation of synthetic observations, and are often formulated on theoretical expectations for compressible magnetized turbulence. We stress the use of multiple techniques, as this can provide a more accurate indication of the turbulence parameters of interest. We conclude by describing several open-source tools for the astrophysical community to use when dealing with turbulence.
submitted as a review to Publications of the Astronomical Society of the Pacific; comments welcome
References in corpus (73)
- Theory of Star Formation
- Rotation-invariant convolutional neural networks for galaxy morphology prediction
- The Statistics of Supersonic Isothermal Turbulence
- The Density Probability Distribution in Compressible Isothermal Turbulence: Solenoidal versus Compressive Forcing
- Tracing Magnetic Fields with Aligned Grains
- On the Star Formation Efficiency of Turbulent Magnetized Clouds
- Compressible Turbulence in Galaxy Clusters: Physics and Stochastic Particle Re-acceleration
- What is Driving the HI Velocity Dispersion?
- A new Jeans resolution criterion for (M)HD simulations of self-gravitating gas: Application to magnetic field amplification by gravity-driven turbulence
- On the Density Distribution in Star-forming Interstellar Clouds
- Magnetic Fields in Dark Cloud Cores: Arecibo OH Zeeman Observations
- The Thermal Regulation of Gravitational Instabilities in Protoplanetary Disks III. Simulations with Radiative Cooling and Realistic Opacities
- Direct simulations of a supernova-driven galactic dynamo
- Nonhelical inverse transfer of a decaying turbulent magnetic field
- The sonic scale revealed by the world's largest supersonic turbulence simulation
- Formation of Spiral-Arm Spurs and Bound Clouds in Vertically Stratified Galactic Gas Disks
- Magnetically Aligned Velocity Anisotropy in the Taurus Molecular Cloud
- Large scale galactic turbulence: can self-gravity drive the observed HI velocity dispersions?
- Molecular clouds have power-law probability distribution functions
- The Turbulent Warm Ionized Medium: Emission Measure Distribution and MHD Simulations
- Velocity centroids as tracers of the turbulent velocity statistics
- Simulations of Electron Magnetohydrodynamic Turbulence
- Velocity Gradients as a Tracer for Magnetic Fields
- A cluster in the making: ALMA reveals the initial conditions for high-mass cluster formation
- The density structure and star formation rate of non-isothermal polytropic turbulence
- The Power Spectrum of Supersonic Turbulence in Perseus
- Gone With the Wind: Where is the Missing Stellar Wind Energy from Massive Star Clusters?
- Tracing interstellar magnetic field using velocity gradient technique: Application to Atomic Hydrogen data
- Unveiling the Role of the Magnetic Field at the Smallest Scales of Star Formation
- Moving mesh simulations of star forming cores in magneto-gravo-turbulence
- Radiative torques alignment in the presence of pinwheel torques
- Scaling Relations of Compressible MHD Turbulence
- The shapes of column density PDFs - The importance of the last closed contour
- Probing interstellar turbulence in cirrus with deep optical imaging: no sign of energy dissipation at 0.01 pc scale
- The Physical Nature of Neutral Hydrogen Intensity Structure
- Density probability distribution functions of diffuse gas in the Milky Way
- Structure analysis of interstellar clouds: I. Improving the Delta-variance method
- Studying Turbulence from Doppler-broadened Absorption Lines: Statistics of Logarithms of Intensity
- The Razor's Edge of Collapse: The Transition Point from Lognormal to Powerlaw in Molecular Cloud PDFs
- Larson's scaling laws, and the gravitational instability of clumpy discs at high redshift
- Time Varying Dynamical Star Formation Rate
- Measuring the Alfvenic Nature of the Interstellar Medium: Velocity Anisotropy Revisited
- Numerical simulations of current generation and dynamo excitation in a mechanically-forced, turbulent flow
- Intermittent magnetic field excitation by a turbulent flow of liquid sodium
- Stochastic Optics: A Scattering Mitigation Framework for Radio Interferometric Imaging
- Topology of Neutral Hydrogen Within the Small Magellanic Cloud
- On the parallel spectrum in MHD Turbulence
- The HI Probability Distribution Function and the Atomic-to-Molecular Transition in Molecular Clouds
- The effect of ISM turbulence on the gravitational instability of galactic discs
- TurbuStat: Turbulence Statistics in Python
- Structure analysis of interstellar clouds: II. Applying the Delta-variance method to interstellar turbulence
- Compressible turbulence in the interstellar medium: New insights from a high-resolution supersonic turbulence simulation
- Turbulence in the Ionized Gas of the Orion Nebula
- Turbulence and Energetic Particles in Radiative Shock Waves in the Cygnus Loop I: Shock Properties
- Relationship between turbulence energy and density variance in the Solar neighbourhood molecular clouds
- Anisotropies in the HI gas distribution toward 3C196
- The onset of large scale turbulence in the interstellar medium of spiral galaxies
- Properties and selected implications of magnetic turbulence for interstellar medium, Local Bubble and solar wind
- The relative orientation between the magnetic field and gradients of surface brightness within thin velocity slices of 12CO and 13CO emission from the Taurus molecular cloud
- Identifying Tools for Comparing Simulations and Observations of Spectral-line Data Cubes
- Magnetic Field Orientation in Self-Gravitating Turbulent Molecular Clouds
- Application of Convolutional Neural Networks to Identify Stellar Feedback Bubbles in CO Emission
- Centroid Velocity Statistics of Molecular Clouds
- An Exploration of the Statistical Signatures of Stellar Feedback
- Probing the Turbulence Dissipation Range and Magnetic Field Strengths in Molecular Clouds. II. Directly Probing the Ion-neutral Decoupling Scale
- Studying the local magnetic field and anisotropy of magnetic turbulence by synchrotron polarization derivative
- Spatial variations of turbulent properties of neutral hydrogen gas in the Small Magellanic Cloud using structure function analysis
- Evidence of large scale energy cascade in the spiral galaxy NGC 5236
- Turbulent power distribution in the local interstellar medium
- Probes of turbulent driving mechanisms in molecular clouds from fluctuations in synchrotron intensity
- Turbulent dynamo in a weakly ionized medium
- The Nature of Turbulence in the LITTLE THINGS Dwarf Irregular Galaxies
- Effects of the magnetic field direction on the Tsallis statistic