Velocity Modification of Power Spectrum from Absorbing Medium
arXiv:astro-ph/0405461 · doi:10.1086/422462
Abstract
Quantitative description of the statistics of intensity fluctuations within spectral line data cubes introduced in our earlier work is extended to the absorbing media. A possibility of extracting 3D velocity and density statistics from both integrated line intensity as well as from the individual channel maps is analyzed. We find that absorption enables the velocity effects to be seen even if the spectral line is integrated over frequencies. This regime that is frequently employed in observations is characterized by a non-trivial relation between the spectral index of velocities and the spectral index of intensity fluctuations. For instance when density is dominated by fluctuations at large scales, i.e. when correlations scale as r^{-γ}, γ<0, the intensity fluctuations exhibit a universal spectrum of fluctuations ~K^{-3} over a range of scales. When small scale fluctuations of density contain most of the energy, i.e. when correlations scale as r^{-γ}, γ>0, the resulting spectrum of the integrated lines depends on the scaling of the underlying density and scales as K^{-3+γ}. We show that if we take the spectral line slices that are sufficiently thin we recover our earlier results for thin slice data without absorption. As the result we extend the Velocity Channel Analysis (VCA) technique to optically thick lines enabling studies of turbulence in molecular clouds. In addition, the developed mathematical machinery enables a quantitative approach to solving other problems that involved statistical description of turbulence within emitting and absorbing gas.
51 page, 3 figures. Accepted to Astrophysical Journal
References in corpus (3)
Cited by in corpus (108)
- Theory of Star Formation
- 3D Turbulent Reconnection: Theory, Tests and Astrophysical Implications
- Velocity Field of Compressible MHD Turbulence: Wavelet Decomposition and Mode Scalings
- Turbulent Driving Scales in Molecular Clouds
- Characterizing Magnetohydrodynamic Turbulence in the Small Magellanic Cloud
- Astrophysical hydromagnetic turbulence
- The Turbulent Warm Ionized Medium: Emission Measure Distribution and MHD Simulations
- Velocity centroids as tracers of the turbulent velocity statistics
- Studying Turbulence using Doppler-broadened lines: Velocity Coordinate Spectrum
- Velocity Gradients as a Tracer for Magnetic Fields
- Turbulence, Magnetic Reconnection in Turbulent Fluids and Energetic Particle Acceleration
- Tracing magnetic fields with spectroscopic channel maps
- A cluster in the making: ALMA reveals the initial conditions for high-mass cluster formation
- Quantifying Observational Projection Effects Using Molecular Cloud Simulations
- Obtaining Spectra of Turbulent Velocity from Observations
- Statistical Description of Synchrotron Intensity Fluctuations: Studies of Astrophysical Magnetic Turbulence
- Tsallis statistics as a tool for studying interstellar turbulence
- Spectrum and Anisotropy of Turbulence from Multi-Frequency Measurement of Synchrotron Polarization
- Particle Acceleration by MHD Turbulence
- Distribution of velocity gradient orientations: Mapping magnetization with the Velocity Gradient Technique
- Dust and gas power-spectrum in M33 (HERM33ES)
- Properties of Interstellar Turbulence from Gradients of Linear Radio Polarization Maps
- Studying Turbulence from Doppler-broadened Absorption Lines: Statistics of Logarithms of Intensity
- The Turbulence Power Spectrum in Optically Thick Interstellar Clouds
- Power spectrum of HI intensity fluctuations in DDO 210
- The Turbulence Velocity Power Spectrum of Neutral Hydrogen in the Small Magellanic Cloud
- Hierarchical Structure of Magnetohydrodynamic Turbulence In Position-Position-Velocity Space
- Turbulence Spectra from Spectral Lines: Tests of the Velocity Channel Analysis and Velocity Coordinate Spectrum Techniques
- Measuring the Alfvenic Nature of the Interstellar Medium: Velocity Anisotropy Revisited
- Scatter broadening of pulsars and implications on the interstellar medium turbulence
- Extending Velocity Channel Analysis for Studying Turbulence Anisotropies
- Gradients of Synchrotron Polarization: Tracing 3D distribution of magnetic fields
- Atomic and Ionized Microstructures in the Diffuse Interstellar Medium
- Measuring turbulence in the ISM by comparing N(HI;Lya) and N(HI;21cm)
- Interpretation of the structure function of rotation measure in the interstellar medium
- On the origin of the scatter broadening of fast radio burst pulses and astrophysical implications
- Impact of Winds from Intermediate-Mass Stars on Molecular Cloud Structure and Turbulence
- Interstellar Sonic and Alfvénic Mach Numbers and the Tsallis Distribution
- A Case Study of Low-Mass Star Formation
- Dust polarization and ISM turbulence
- Spatial and Temporal Variations in Small-Scale Galactic HI Structure Toward 3C~138
- The Multi-phase Turbulence Density Power Spectra in the Perseus Molecular Cloud
- Topology of Neutral Hydrogen Within the Small Magellanic Cloud
- Synthetic observations of star formation and the interstellar medium
- Study of velocity centroids based on the theory of fluctuations in position-position-velocity space
- Faraday Rotation Measure Variations of Repeating Fast Radio Burst Sources
- Magnetic field strength from turbulence theory (I): Using differential measure approach (DMA)
- Technique for separating velocity and density contributions in spectroscopic data and its application to studying turbulence and magnetic fields
- TurbuStat: Turbulence Statistics in Python
- Intensity Gradients Technique: Synergy with Velocity Gradients and Polarization Studies
- Velocity Gradient in the Presence of Self-Gravity: Identifying Gravity-induced Inflow and Determining Collapsing Stage
- Turbulent Magnetic Field Amplification by the Interaction of Shock Wave and Inhomogeneous Medium
- Linewidth Differences of Neutrals and Ions Induced by MHD Turbulence
- Polarimetric studies of magnetic turbulence with interferometer
- Curvature of magnetic field lines in compressible magnetized turbulence: Statistics, magnetization predictions, gradient curvature, modes and self-gravitating media
- Probing interstellar turbulence in spiral galaxies using HI power spectrum analysis
- Developing the 3-Point Correlation Function For the Turbulent Interstellar Medium
- Studying Magnetohydrodynamic Turbulence with Synchrotron Polarization Dispersion
- Galactic foregrounds: Spatial fluctuations and a procedure of removal
- HI anisotropies associated with radio-polarimetric filaments. Steep power spectra associated with cold gas
- Mapping Spatial Variations of HI Turbulent Properties in the Small and Large Magellanic Cloud
- Do Androids Dream of Magnetic Fields? Using Neural Networks to Interpret the Turbulent Interstellar Medium
- Producing Synthetic Maps of Dust Polarization using Velocity Channel Gradient Technique
- Measuring the filamentary structure of interstellar clouds through wavelets
- Probing Magnetic Field Morphology in Galaxy Clusters with the Gradient Technique
- Characterizing the Turbulent Properties of the Starless Molecular Cloud MBM16
- Nonuniversal interstellar density spectra probed by pulsars
- Predictions of Cosmic Microwave Background Foregrounds Dust Polarization Using Velocity Gradients
- Identifying Tools for Comparing Simulations and Observations of Spectral-line Data Cubes
- Anisotropic Turbulence in Position-Position-Velocity Space: Probing Three-Dimensional Magnetic Fields
- Spectral properties of magnetohydrodnamic turbulence revealed by polarization synchrotron emission with Faraday rotation
- Shock acceleration with oblique and turbulent magnetic fields
- Probing the intergalactic turbulence with fast radio bursts
- Study Turbulence and Probe Magnetic Field Using Gradients Technique: Application to HI-to-H2 Transition Regions
- Achieving Fast Reconnection in Resistive MHD Models via Turbulent Means
- Centroid Velocity Statistics of Molecular Clouds
- Magnetic Reconnection in Astrophysical Environments
- Nature of Striation in 21 cm Channel Maps: Velocity Caustics
- Projected velocity statistics of interstellar turbulence
- 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
- Anomalous compressible mode generation by global frame projections of pure Alfven mode
- Spatial variations of turbulent properties of neutral hydrogen gas in the Small Magellanic Cloud using structure function analysis
- Principal Component Analysis of Molecular Clouds: Can CO reveal the dynamics?
- Opacity Broadening of CO Linewidths and its Effect on the Variance-Sonic Mach Number Relation
- Evidence of large scale energy cascade in the spiral galaxy NGC 5236
- Sub-Alfvenic Non-Ideal MHD Turbulence Simulations with Ambipolar Diffusion: III. Implications for Observations and Turbulent Enhancement
- G-virial: Gravity-based structure analysis of molecular clouds
- Observational Diagnostics for Two-Fluid Turbulence in Molecular Clouds As Suggested by Simulations
- Theory and Applications of Non-Relativistic and Relativistic Turbulent Reconnection
- Principal Component Analysis studies of turbulence in optically thick gas
- Structure analysis of simulated molecular clouds with the Delta-variance
- Comparing Simulated Emission from Molecular Clouds Using Experimental Design
- A Synergy of the Velocity Gradients Technique and the Probability Density Functions for Identifying Gravitational Collapse in Self-Absorbing Media
- Assessing the Impact of Astrochemistry on Molecular Cloud Turbulence Statistics
- The CARMA-NRO Orion Survey: Statistical Signatures of Feedback in the Orion A Molecular Cloud
- Neutral hydrogen filaments in interstellar media: Are they physical?
- Visibility moments and power spectrum of turbulence velocity
- Characteristic scale of star formation. I. Clump formation efficiency on local scales
- Probing the Physics of Star-Formation (ProPStar) III. No evidence for dissipation of turbulence down to 20 mpc (4 000 au) scale
- Studying the properties of compressible MHD turbulence by synchrotron fluctuation statistics
- Measurement of the scaling slope of compressible magnetohydrodynamic turbulence by synchrotron radiation statistics
- 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
- Sub-kpc scale gas density histogram of the Galactic molecular gas: a new statistical method to characterise galactic-scale gas structures
- Tiny-Scale Properties within the Interstellar Medium towards PSR J16444559: I. Observational Evidence of Turbulence-induced Tiny Scale Atomic Structures
- On the technique for the recovery of the spectrum of turbulence in astrophysical disks
- Diagnosing Turbulence in the Neutral and Molecular Interstellar Medium of Galaxies