Observational Diagnostics of Self-Gravitating MHD Turbulence in Giant Molecular Clouds
arXiv:1505.03855 · doi:10.1088/0004-637X/808/1/48
Abstract
We study the observable signatures of self-gravitating MHD turbulence by applying the probability density functions (PDFs) and the spatial density power spectrum to synthetic column density maps. We find that there exists three characterizable stages of the evolution of the collapsing cloud which we term "early," "intermediate," and "advanced." At early times, i.e. , the column density has a power spectral slope similar to nongravitating supersonic turbulence and a lognormal distribution. At an intermediate stage, i.e. , there exists signatures of the prestellar cores in the shallower PDF and power spectrum power law slopes. The column density PDF power law tails at these times have line of sight averaged slopes ranging from -2.5 to -1.5 with shallower values belonging to simulations with lower magnetic field strength. The density power spectrum slope becomes shallow and can be characterized by , where describes the amplitude, describes the classical power law behavior and the scale characterizes the turn over from turbulence dominated to self-gravity dominated. At advanced stages of collapse, i.e. , the power spectral slope is positive valued, and a dramatic increase is observed in the PDF moments and the Tsallis incremental PDF parameters, which gives rise to deviations between PDF-sonic Mach number relations. Finally, we show that the imprint of gravity on the density power spectrum can be replicated in non-gravitating turbulence by introducing a delta-function with amplitude equivalent to the maximum valued point in a given self-gravitating map. We find that the turbulence power spectrum restored through spatial filtering of the high density material.
Accepted to ApJ
References in corpus (18)
- Theory of Star Formation
- Analytical theory for the initial mass function: CO clumps and prestellar cores
- The Density Probability Distribution in Compressible Isothermal Turbulence: Solenoidal versus Compressive Forcing
- On the Star Formation Efficiency of Turbulent Magnetized Clouds
- Numerical Tests of Fast Reconnection in Weakly Stochastic Magnetic Fields
- What determines the density structure of molecular clouds ? A case study of Orion B with Herschel
- On the Density Distribution in Star-forming Interstellar Clouds
- Density Fluctuations in MHD Turbulence: Spectra, Intermittency and Topology
- The Initial Mass Function of the Massive Star-forming Region NGC 3603 from Near-Infrared Adaptive Optics observations
- Unfolding the Laws of Star Formation: The Density Distribution of Molecular Clouds
- The Turbulent Warm Ionized Medium: Emission Measure Distribution and MHD Simulations
- Velocity centroids as tracers of the turbulent velocity statistics
- Understanding star formation in molecular clouds I. Effects of line-of-sight contamination on the column density structure
- Comparison of spectral slopes of magnetohydrodynamic and hydrodynamic turbulence and measurements of alignment effects
- Scaling Relations of Compressible MHD Turbulence
- Measuring the Alfvenic Nature of the Interstellar Medium: Velocity Anisotropy Revisited
- The Spitzer Survey of Interstellar Clouds in the Gould Belt. VI. The Auriga-California Molecular Cloud observed with IRAC and MIPS
- Detection of Star Formation in the Unusually Cold Giant Molecular Cloud G216
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- The Velocity Statistics of Turbulent Clouds in the Presence of Gravity, Magnetic fields, Radiation, and Outflow Feedback
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- Dense Gas in a Giant Molecular Filament
- The role of the turbulence driving mode for the Initial Mass Function
- Magnetic Field Orientation in Self-Gravitating Turbulent Molecular Clouds
- Low Mass Stars as Tracers of Star and Cluster Formation
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- How do velocity structure functions trace gas dynamics in simulated molecular clouds?
- GMC Collisions as Triggers of Star Formation. VII. The Effect of Magnetic Field Strength on Star Formation
- GMC Collisions as Triggers of Star Formation. VI. Collision-Induced Turbulence
- Atomic and molecular gas properties during cloud formation
- The Cygnus Allscale Survey of Chemistry and Dynamical Environments: CASCADE: Overview and first results toward DR20 from the Max Planck IRAM Observatory program (MIOP)
- Constructing multi-scale gravitational energy spectra from molecular cloud surface density PDF -- Interplay between turbulence and gravity
- Molecular gas and star formation in nearby starburst galaxy mergers
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- Probing the multi-scale interplay between gravity and turbulence - Power-law like gravitational energy spectra of the Orion Complex
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- Characteristic scale of star formation. I. Clump formation efficiency on local scales
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- Quantitative Morphology of Galactic Cirrus in Deep Optical Imaging
- Diagnosing Turbulence in the Neutral and Molecular Interstellar Medium of Galaxies