A Fractal Origin for the Mass Spectrum of Interstellar Clouds: II. Cloud Models and Power Law Slopes
arXiv:astro-ph/0112528 · doi:10.1086/324384
Abstract
Three-dimensional fractal models on grids of 200**3 pixels are generated from the inverse Fourier transform of noise with a power law cutoff, exponentiated to give a log normal distribution of density. The fractals are clipped at various intensity levels and the mass and size distribution functions of the clipped peaks and their subpeaks are determined. These distribution functions are analogous to the cloud mass functions determined from maps of the fractal interstellar medium using various thresholds for the definition of a cloud. The model mass functions are found to be power laws with powers ranging from -1.6 to -2.4 in linear mass intervals as the clipping level increases from 0.03 to 0.3 of the peak intensity. The low clipping value gives a cloud filling factor of 0.1 and should be a good model for molecular cloud surveys. The agreement between the mass spectrum of this model and the observed cloud and clump mass spectra suggests that a pervasively fractal interstellar medium can be interpreted as a cloud/intercloud medium if the peaks of the fractal intensity distribution are taken to be clouds. Their mass function is a power law even though the density distribution function in the gas is a log-normal. This is because the size distribution function of the clipped clouds is a power law, and with clipping, each cloud has about the same average density. A similar result would apply to projected clouds that are clipped fractals, giving nearly constant column densities for power law mass functions. The steepening of the mass function for higher clip values suggests a partial explanation for the steeper slope of the mass functions for star clusters and OB associations, which sample denser regions of interstellar gas.
accepted for ApJ 564, January 10, 2002, 8 figures
References in corpus (1)
Cited by in corpus (91)
- Control of star formation by supersonic turbulence
- Cold Dark Clouds: The Initial Conditions for Star Formation
- The Infrared Spectral Energy Distribution of Normal Star-Forming Galaxies: Calibration at Far-Infrared and Submillimeter Wavelengths
- The Formation of a Star Cluster: Predicting the Properties of Stars and Brown Dwarfs
- The Spatial Distribution of Star Formation in the Solar Neighbourhood: Do all stars form in clusters?
- Star Formation from Galaxies to Globules
- The stellar mass spectrum from non-isothermal gravoturbulent fragmentation
- Dispersal of molecular clouds by ionising radiation
- Star Cluster Formation and Evolution in Nearby Starburst Galaxies: II. Initial Conditions
- Stellar Clusters in M83: Formation, evolution, disruption and the influence of environment
- A General Theory of Turbulent Fragmentation
- Variations in Stellar Clustering with Environment: Dispersed Star Formation and the Origin of Faint Fuzzies
- Modelling the Pan-Spectral Energy Distribution of Starburst Galaxies: II. Control of the \HII Region Parameters
- Simulating star formation in molecular cores II. The effects of different levels of turbulence
- A Model for (Non-Lognormal) Density Distributions in Isothermal Turbulence
- The X-factor in Galaxies: I. Dependence on Environment and Scale
- Hierarchical Star Formation in the Spiral Galaxy NGC 628
- The Fractal Dimension of Projected Clouds
- Morphological analysis of the cm-wave continuum in the dark cloud LDN1622
- On the Similarity between Cluster and Galactic Stellar Initial Mass Functions
- An Excursion-Set Model for the Structure of GMCs and the ISM
- Statistical properties of dust far-infrared emission
- New Tests for Disruption Mechanisms of Star Clusters: Methods and Application to the Antennae Galaxies
- Does Magnetic Levitation or Suspension Define the Masses of Forming Stars?
- Cygnus OB2 DANCe: A high precision proper motion study of the Cygnus OB2 association
- On the Disruption of Star Clusters in a Hierarchical Interstellar Medium
- Radiative Transfer Model of Dust Attenuation Curves in Clumpy, Galactic Environments
- Modeling the Dust Properties of z ~ 6 Quasars with ART^2 -- All-wavelength Radiative Transfer with Adaptive Refinement Tree
- On the Power-Law Tail in the Mass Function of Protostellar Condensations and Stars
- Star Cluster Catalogs for the LEGUS Dwarf Galaxies
- The structure of molecular clouds and the universality of the clump mass function
- Physical regimes for feedback in galaxy formation
- First Predicted Cosmic Ray Spectra, Primary-to-Secondary Ratios, and Ionization Rates from MHD Galaxy Formation Simulations
- Universal Scaling Relations in Scale-Free Structure Formation
- Testing the Randomness in the Sky-Distribution of Gamma-Ray Bursts
- The Gaia-ESO Survey: Asymmetric expansion of the Lagoon Nebula cluster NGC 6530 from GES and Gaia DR2
- The Effect of Star Formation History on the Inferred Initial Stellar Mass Function
- From cusps to cores: a stochastic model
- CO excitation, molecular gas density and interstellar radiation field in local and high-redshift galaxies
- Effects of the dissolution of low-concentration globular clusters on the evolution of globular cluster systems
- Feedback from quasars in star-forming galaxies and the triggering of massive galactic winds
- The Most Metal-Poor Stars. V. The CEMP-no Stars in 3D and Non-LTE
- Relations Between the Luminosity, Mass, and Age Distributions of Young Star Clusters
- Young star cluster populations in the E-MOSAICS simulations
- Three-dimensional extinction mapping using Gaussian random fields
- The Panchromatic Hubble Andromeda Treasury IV. A Probabilistic Approach to Inferring the High Mass Stellar Initial Mass Function and Other Power-law Functions
- On the spatial distributions of dense cores in Orion B
- Pre-supernova feedback sets the star cluster mass function to a power law and reduces the cluster formation efficiency
- The initial mass distribution of the M82 star cluster system
- Revisiting the dust destruction efficiency of supernovae
- The density structure of supersonic self-gravitating turbulence
- Analytical core mass function (CMF) from filaments: Under which circumstances can filament fragmentation reproduce the CMF?
- A Turbulent Origin for Flocculent Spiral Structure in Galaxies: II. Observations and Models of M33
- The Kennicutt-Schmidt Star Formation Relation at z~2
- Ionizing stellar population in the disk of NGC 3310 I. The impact of a minor merger on galaxy evolution
- Small-scale structure of the galactic cirrus emission
- Characterizing the structure of diffuse emission in Hi-GAL maps
- Properties of the cluster population of NGC 1566 and their implications
- Hierarchy and size distribution function of star formation regions in the spiral galaxy NGC 628
- The relation between the true and observed fractal dimensions of turbulent clouds
- The Star Formation Law in a Multifractal ISM
- Mass Functions in Fractal Clouds: The Role of Cloud Structure in the Stellar Initial Mass Function
- Parameters of the brightest star formation regions in the two principal spiral arms of NGC 628
- Extracting Galaxy Cluster Gas Inhomogeneity from X-ray Surface Brightness: A Statistical Approach and Application to Abell 3667
- Dark Dust and single-cloud sightlines in the ISM
- The Spectral Energy Distribution of Self-gravitating Interstellar Clouds I. Spheres
- Statistical link between the structure of molecular clouds and their density distribution
- Physical properties of a very diffuse HI structure at high Galactic latitude
- Spatially associated clump populations in Rosette from CO and dust maps
- Kinematic signatures of cluster formation from cool collapse in the Lagoon Nebula cluster NGC 6530
- On the destruction of star-forming clouds
- Identification of molecular clouds in emission maps: a comparison between methods in the \ce{^{13}CO}/\ce{C^{18}O} () Heterodyne Inner Milky Way Plane Survey
- The Column Density Variance in Turbulent Interstellar Media: A Fractal Model Approach
- On the properties of fractal cloud complexes
- Solar System formation
- The Dependence of Prestellar Core Mass Distributions on the Structure of the Parental Cloud
- Dust Scattering In Turbulent Media: Correlation Between The Scattered Light and Dust Column Density
- The apparent anti-correlation between the mass opacity of interstellar dust and the surface-density of interstellar gas
- Numerical Simulation of Star Formation by the Bow Shock of the Centaurus A Jet
- Lognormal intensity distribution of the FUV continuum background shortward of Ly-alpha
- Propagation of star formation at sub-kiloparsec scales
- Explaining the stellar initial mass function with the theory of spatial networks
- ALMAGAL V. Relations between the core populations and the parent clump physical properties
- Characterising lognormal fractional-Brownian-motion density fields with a Convolutional Neural Network
- Clump formation in ram-pressure stripped galaxies: evidence from mass function
- Physical parameters of stellar population in star formation regions of galaxies
- Starbirth in Galaxy Collisions
- Gas flows, star formation and galaxy evolution
- Star cluster evolution in the Magellanic Clouds revisited
- Comparing the morphology of molecular clouds without supervision
- Do All Stars in the Solar Neighbourhood Form in Clusters?