A method for reconstructing the PDF of a 3D turbulent density field from 2D observations
arXiv:1003.4151 · doi:10.1111/j.1745-3933.2010.00858.x
Abstract
We introduce a method for calculating the probability density function (PDF) of a turbulent density field in three dimensions using only information contained in the projected two-dimensional column density field. We test the method by applying it to numerical simulations of hydrodynamic and magnetohydrodynamic turbulence in molecular clouds. To a good approximation, the PDF of log(normalised column density) is a compressed, shifted version of the PDF of log(normalised density). The degree of compression can be determined observationally from the column density power spectrum, under the assumption of statistical isotropy of the turbulence.
5 pages, 2 figures, accepted for publication in MNRAS Letters
References in corpus (11)
- Analytical theory for the initial mass function: CO clumps and prestellar cores
- The Density Probability Distribution in Compressible Isothermal Turbulence: Solenoidal versus Compressive Forcing
- Probing the evolution of molecular cloud structure: From quiescence to birth
- The Relationship Between Molecular Gas Tracers and Kennicutt-Schmidt Laws
- Analytical theory for the initial mass function: II. Properties of the flow
- Variations in Stellar Clustering with Environment: Dispersed Star Formation and the Origin of Faint Fuzzies
- Turbulent Driving Scales in Molecular Clouds
- NICEST, a near-infrared color excess method tailored for small-scale structures
- Inefficient star formation: The combined effects of magnetic fields and radiative feedback
- A method for reconstructing the variance of a 3D physical field from 2D observations: Application to turbulence in the ISM
- Turbulent Mixing in the Interstellar Medium -- an application for Lagrangian Tracer Particles
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- On the Star Formation Efficiency of Turbulent Magnetized Clouds
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- Modeling CO Emission: I. CO as a Column Density Tracer and the X-Factor in Molecular Clouds
- A robust numerical scheme for highly compressible magnetohydrodynamics: Nonlinear stability, implementation and tests
- On the evolution of the density pdf in strongly self-gravitating systems
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- Unfolding the Laws of Star Formation: The Density Distribution of Molecular Clouds
- Understanding star formation in molecular clouds I. Effects of line-of-sight contamination on the column density structure
- The density structure and star formation rate of non-isothermal polytropic turbulence
- Turbulence sets the initial conditions for star formation in high-pressure environments
- Analytical theory for the initial mass function: III time dependence and star formation rate
- Lyman Radiation Hydrodynamics of Turbulent H II Regions in Molecular Clouds: A Physical Origin of LyC Leakage and the Associated Ly Spectra
- The Turbulence Spectrum of Molecular Clouds in the Galactic Ring Survey: A Density-Dependent PCA Calibration
- Probing the evolution of molecular cloud structure II: From chaos to confinement
- Sub-Eddington Star-Forming Regions are Super-Eddington: Momentum Driven Outflows from Supersonic Turbulence
- Herschel's view of the large-scale structure in the Chamaeleon dark clouds
- Supernova-blast waves in wind-blown bubbles, turbulent, and power-law ambient media
- Properties of Interstellar Turbulence from Gradients of Linear Radio Polarization Maps
- The dynamics and star-forming potential of the massive Galactic centre cloud G0.253+0.016
- A Survey of the Mon R2 Giant Molecular Cloud: Analysis of the Gas Column Density Probability Density Function
- The Anatomy of the Column Density Probability Distribution Function (N-PDF)
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- Synthetic observations of star formation and the interstellar medium
- Thermal and turbulent properties of the Warm Neutral Medium in the solar neighborhood
- Turbulence in simulated HII regions
- The density structure of supersonic self-gravitating turbulence
- On the compressive nature of turbulence driven by ionising feedback in the pillars of the Carina Nebula
- Filaments and striations: anisotropies in observed, supersonic, highly-magnetised turbulent clouds
- Turbulence in the Ionized Gas of the Orion Nebula
- Relationship between turbulence energy and density variance in the Solar neighbourhood molecular clouds
- An Observational Method to Measure the Relative Fractions of Solenoidal and Compressible Modes in Interstellar Clouds
- The driving of turbulence in simulations of molecular cloud formation and evolution
- Characterizing the structure of diffuse emission in Hi-GAL maps
- Dimensional argument for the impact of turbulent support on the stellar initial mass function
- Driven Multifluid MHD Molecular Cloud Turbulence
- Can Sgr A* flares reveal the molecular gas density PDF?
- The link between solenoidal turbulence and slow star formation in G0.253+0.016
- The relation between the true and observed fractal dimensions of turbulent clouds
- The density distribution and physical origins of intermittency in supersonic, highly magnetised turbulence with diverse modes of driving
- A new method for measuring the 3D turbulent velocity dispersion of molecular clouds
- Energy balance and Alfvén Mach numbers in compressible magnetohydrodynamic turbulence with a large-scale magnetic field
- Constructing multi-scale gravitational energy spectra from molecular cloud surface density PDF -- Interplay between turbulence and gravity
- The driving mode of shock-driven turbulence
- On the probability distribution function of the mass surface density of molecular clouds I
- On the probability distribution function of the mass surface density of molecular clouds. II
- Entropy and Mass Distribution in Disc Galaxies
- Does the HCN/CO ratio trace the star-forming fraction of gas? I. A comparison with analytical models of star formation
- The Spatial Power Spectrum and Derived Turbulent Properties of Isolated Galaxies
- Does the HCN/CO ratio trace the star-forming fraction of gas? II. Variations in CO and HCN Emissivity
- On volume density and star formation in nearby molecular clouds
- Resolving the formation of cold HI filaments in the high velocity cloud complex C
- From 2D to 3D: Recovering Turbulent Density Dispersions from Noisy Data