The Turbulence Power Spectrum in Optically Thick Interstellar Clouds
arXiv:1305.3619 · doi:10.1088/0004-637X/771/2/123
Abstract
The Fourier power spectrum is one of the most widely used statistical tools to analyze the nature of magnetohydrodynamic turbulence in the interstellar medium. Lazarian & Pogosyan (2004) predicted that the spectral slope should saturate to -3 for an optically thick medium and many observations exist in support of their prediction. However, there have not been any numerical studies to-date testing these results. We analyze the spatial power spectrum of MHD simulations with a wide range of sonic and Alfvénic Mach numbers, which include radiative transfer effects of the CO transition. We confirm numerically the predictions of Lazarian & Pogosyan (2004) that the spectral slope of line intensity maps of an optically thick medium saturates to -3. Furthermore, for very optically thin supersonic CO gas, where the density or CO abundance values are too low to excite emission in all but the densest shock compressed gas, we find that the spectral slope is shallower than expected from the column density. Finally, we find that mixed optically thin/thick CO gas, which has average optical depths on order of unity, shows mixed behavior: for super-Alfvénic turbulence, the integrated intensity power spectral slopes generally follow the same trend with sonic Mach number as the true column density power spectrum slopes. However, for sub-Alfvénic turbulence the spectral slopes are steeper with values near -3 which are similar to the very optically thick regime.
accepted to ApJ
References in corpus (8)
- Theory of Star Formation
- Density Fluctuations in MHD Turbulence: Spectra, Intermittency and Topology
- The Turbulent Warm Ionized Medium: Emission Measure Distribution and MHD Simulations
- The Power Spectrum of Supersonic Turbulence in Perseus
- Comparison of spectral slopes of magnetohydrodynamic and hydrodynamic turbulence and measurements of alignment effects
- Studying Turbulence from Doppler-broadened Absorption Lines: Statistics of Logarithms of Intensity
- Power spectrum of HI intensity fluctuations in DDO 210
- Turbulence Spectra from Spectral Lines: Tests of the Velocity Channel Analysis and Velocity Coordinate Spectrum Techniques
Cited by in corpus (43)
- A sub-parsec resolution simulation of the Milky Way: Global structure of the ISM and properties of molecular clouds
- Astrophysical hydromagnetic turbulence
- SEDIGISM: Structure, excitation, and dynamics of the inner Galactic interstellar medium
- A cluster in the making: ALMA reveals the initial conditions for high-mass cluster formation
- The CARMA-NRO Orion Survey
- The Razor's Edge of Collapse: The Transition Point from Lognormal to Powerlaw in Molecular Cloud PDFs
- Star Clusters in Evolving Galaxies
- The Lognormal Probability Distribution Function of the Perseus Molecular Cloud: A Comparison of HI and Dust
- Measuring the Alfvenic Nature of the Interstellar Medium: Velocity Anisotropy Revisited
- Extending Velocity Channel Analysis for Studying Turbulence Anisotropies
- Impact of Winds from Intermediate-Mass Stars on Molecular Cloud Structure and Turbulence
- How well does CO emission measure the H mass of MCs?
- The Multi-phase Turbulence Density Power Spectra in the Perseus Molecular Cloud
- Study of velocity centroids based on the theory of fluctuations in position-position-velocity space
- Synthetic observations of star formation and the interstellar medium
- Magnetic field strength from turbulence theory (I): Using differential measure approach (DMA)
- TurbuStat: Turbulence Statistics in Python
- Turbulence and Energetic Particles in Radiative Shock Waves in the Cygnus Loop I: Shock Properties
- Developing the 3-Point Correlation Function For the Turbulent Interstellar Medium
- Do Androids Dream of Magnetic Fields? Using Neural Networks to Interpret the Turbulent Interstellar Medium
- Measuring the filamentary structure of interstellar clouds through wavelets
- Identifying Tools for Comparing Simulations and Observations of Spectral-line Data Cubes
- Signatures of fast and slow magnetohydrodynamic shocks in turbulent molecular clouds
- Statistical properties of Faraday rotation measure in external galaxies -- I: intervening disc galaxies
- Centroid Velocity Statistics of Molecular Clouds
- The Cygnus Allscale Survey of Chemistry and Dynamical Environments: CASCADE: Overview and first results toward DR20 from the Max Planck IRAM Observatory program (MIOP)
- An Exploration of the Statistical Signatures of Stellar Feedback
- The structure and characteristic scales of the HI gas in galactic disks
- Opacity Broadening of CO Linewidths and its Effect on the Variance-Sonic Mach Number Relation
- Velocity centroid gradients for absorbing media
- Principal Component Analysis studies of turbulence in optically thick gas
- High-resolution HI and CO observations of high-latitude intermediate-velocity clouds
- Assessing the Impact of Astrochemistry on Molecular Cloud Turbulence Statistics
- CMB foreground measurements through broad-band radio spectro-polarimetry: prospects of the SKA-MPG telescope
- Neutral hydrogen filaments in interstellar media: Are they physical?
- The CARMA-NRO Orion Survey: Statistical Signatures of Feedback in the Orion A Molecular Cloud
- Effects of the magnetic field direction on the Tsallis statistic
- Characteristic scale of star formation. I. Clump formation efficiency on local scales
- Understanding biases in measurements of molecular cloud kinematics using line emission
- Power spectra of outflow-driven turbulence
- HI column density statistics of the cold neutral medium from absorption studies
- Measuring the spectral index of turbulent gas with deep learning from projected density maps
- Diagnosing Turbulence in the Neutral and Molecular Interstellar Medium of Galaxies