On the evolution of the density pdf in strongly self-gravitating systems
arXiv:1310.4346 · doi:10.1088/0004-637X/781/2/91
Abstract
The time evolution of the probability density function (PDF) of the mass density is formulated and solved for systems in free-fall using a simple appoximate function for the collapse of a sphere. We demonstrate that a pressure-free collapse results in a power-law tail on the high-density side of the PDF. The slope quickly asymptotes to the functional form for the (volume-weighted) PDF and for the corresponding mass-weighted distribution. From the simple approximation of the PDF we derive analytic descriptions for mass accretion, finding that dynamically quiet systems with narrow density PDFs lead to retarded star formation and low star formation rates. Conversely, strong turbulent motions that broaden the PDF accelerate the collapse causing a bursting mode of star formation. Finally, we compare our theoretical work with observations. The measured star formation rates are consistent with our model during the early phases of the collapse. Comparison of observed column density PDFs with those derived from our model suggests that observed star-forming cores are roughly in free-fall.
accepted for publication, 13 pages
References in corpus (9)
- Theory of Star Formation
- Cold Dark Clouds: The Initial Conditions for Star Formation
- The Statistics of Supersonic Isothermal Turbulence
- 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 Density Distribution in Star-forming Interstellar Clouds
- Density Probability Distribution Functions in Supersonic Hydrodynamic and MHD Turbulence
- The Nature of the Velocity Field in Molecular Clouds. I. The Non-Magnetic Case
- A measurement of the turbulence-driven density distribution in a non-star-forming molecular cloud
Cited by in corpus (128)
- The SILCC (SImulating the LifeCycle of molecular Clouds) project: I. Chemical evolution of the supernova-driven ISM
- Global Hierarchical Collapse In Molecular Clouds. Towards a Comprehensive Scenario
- The link between turbulence, magnetic fields, filaments, and star formation in the Central Molecular Zone cloud G0.253+0.016
- Multi-temperature mapping of dust structures throughout the Galactic Plane using the PPMAP tool with Herschel Hi-GAL data
- Unfolding the Laws of Star Formation: The Density Distribution of Molecular Clouds
- A census of dense cores in the Taurus L1495 cloud from the Herschel Gould Belt Survey
- The Star Formation Rate in the Gravoturbulent Interstellar Medium
- Understanding star formation in molecular clouds I. Effects of line-of-sight contamination on the column density structure
- Class 0 Protostars in the Perseus Molecular Cloud: A Correlation Between the Youngest Protostars and the Dense Gas Distribution
- Simulations of the star-forming molecular gas in an interacting M51-like galaxy
- Detection of two power-law tails in the probability distribution functions of massive GMCs
- Star Formation in Self-Gravitating Turbulent Fluids
- High-mass Star Formation through Filamentary Collapse and Clump-fed Accretion in G22
- Understanding star formation in molecular clouds II. Signatures of gravitational collapse of IRDCs
- The ATLASGAL survey: distribution of cold dust in the Galactic plane. Combination with Planck data
- Physical Processes in Star Formation
- CO line emission from galaxies in the Epoch of Reionization
- From parallel to perpendicular -- On the orientation of magnetic fields in molecular clouds
- Understanding star formation in molecular clouds III. Probability distribution functions of molecular lines in Cygnus X
- Herschel's view of the large-scale structure in the Chamaeleon dark clouds
- The SILCC project - V. The impact of magnetic fields on the chemistry and the formation of molecular clouds
- The Razor's Edge of Collapse: The Transition Point from Lognormal to Powerlaw in Molecular Cloud PDFs
- Stellar mass spectrum within massive collapsing clumps I. Influence of the initial conditions
- Time Varying Dynamical Star Formation Rate
- The Self-gravitating Gas Fraction and The Critical Density for Star Formation
- The dense cores and filamentary structure of the molecular cloud in Corona Australis. Herschel SPIRE and PACS observations from the Herschel Gould Belt Survey
- Universal Scaling Relations in Scale-Free Structure Formation
- Cloud Structure of Galactic OB Cluster Forming Regions from Combining Ground and Space Based Bolometric Observations
- On the Appearance of Thresholds in the Dynamical Model of Star Formation
- Understanding star formation in molecular clouds IV. Column density PDFs from quiescent to massive molecular clouds
- The Anatomy of the Column Density Probability Distribution Function (N-PDF)
- Magnetic Fields in the Formation of the First Stars. I. Theory vs. Simulation
- Scale-free gravitational collapse as the origin of density profile -- a possible role of turbulence in regulating gravitational collapse
- Star formation from dense shocked regions in supersonic isothermal magneto-turbulence
- ALMA-IMF VI -- Investigating the origin of stellar masses: Core mass function evolution in the W43-MM2&MM3 mini-starburst
- Impact of X-rays on CO emission from high-z galaxies
- The FRIGG project: From intermediate galactic scales to self-gravitating cores
- Hierarchical star formation across the grand design spiral NGC1566
- The reliability of observational measurements of column density probability distribution functions
- On the shape and completeness of the column density probability distribution function of molecular clouds
- 3D chemical structure of diffuse turbulent ISM. I. Statistics of the HI-to-H transition
- The HI Probability Distribution Function and the Atomic-to-Molecular Transition in Molecular Clouds
- Revealing Gravitational Collapse in Serpens G3-G6 Molecular Cloud using Velocity Gradients
- Evolution of the density PDF in star forming clouds: the role of gravity
- Dense molecular gas properties on 100 pc scales across the disc of NGC 3627
- The ALMOND Survey: Molecular cloud properties and gas density tracers across 25 nearby spiral galaxies with ALMA
- The Supersonic Project: Shining Light on SIGOs - a New Formation Channel for Globular Clusters
- On the compressive nature of turbulence driven by ionising feedback in the pillars of the Carina Nebula
- The density structure of supersonic self-gravitating turbulence
- The in situ formation of molecular and warm ionised gas triggered by hot outflows
- An Observational Method to Measure the Relative Fractions of Solenoidal and Compressible Modes in Interstellar Clouds
- Power-law tails in probability density functions of molecular cloud column density
- PDFchem: A new fast method to determine ISM properties and infer environmental parameters using probability distributions
- Herschel observations of the Galactic HII region RCW 79
- A comparison between grid and particle methods on the small-scale dynamo in magnetised supersonic turbulence
- The Effects of Magnetic Fields and Outflow Feedback on the Shape and Evolution of the Density PDF in Turbulent Star-Forming Clouds
- On the accuracy of HI observations in molecular clouds -- More cold HI than thought?
- The structure and characteristic scales of molecular clouds
- Nonlinear turbulent dynamo during gravitational collapse
- Relationship between the column density distribution and evolutionary class of molecular clouds as viewed by ATLASGAL
- The evolution of temperature and density structures of OB cluster-forming molecular clumps
- Star-forming filament models
- First extragalactic measurement of the turbulence driving parameter: ALMA observations of the star-forming region N159E in the Large Magellanic Cloud
- Dense Gas in a Giant Molecular Filament
- Molecular Cloud Evolution VI. Measuring cloud ages
- Alignment of the magnetic field in star forming regions and why it might be difficult to observe
- Magnetic Field Orientation in Self-Gravitating Turbulent Molecular Clouds
- Molecular Gas Properties in M83 from CO PDFs
- SOFIA observations of 30 Doradus: II -- Magnetic fields and large scale gas kinematics
- Density distribution function of a self-gravitating isothermal compressible turbulent fluid in the context of Molecular Clouds ensembles
- Gas Column Density Distribution of Molecular Clouds in the Third Quadrant of the Milky Way
- Can Sgr A* flares reveal the molecular gas density PDF?
- Simultaneous evolution of the virial parameter and star formation rate in molecular clumps undergoing global hierarchical collapse
- The density distribution and physical origins of intermittency in supersonic, highly magnetised turbulence with diverse modes of driving
- On the extraction of power-law parts of the probability density functions in star-forming clouds
- Squeezed between shells? On the origin of the Lupus I molecular cloud. APEX/LABOCA, Herschel, and Planck observations
- The small and the beautiful: How the star formation law affects galactic disk structure
- Mass-size scaling M~ r^1.67 of massive star-forming clumps -- evidences of turbulence-regulated gravitational collapse
- The Probability Distribution Function of Gas Surface Density in M33
- The VMC Survey XXVII. Young Stellar Structures in the LMCs Bar Star-Forming Complex
- An Exploration of the Statistical Signatures of Stellar Feedback
- Constructing multi-scale gravitational energy spectra from molecular cloud surface density PDF -- Interplay between turbulence and gravity
- Statistical link between the structure of molecular clouds and their density distribution
- The driving mode of shock-driven turbulence
- The "Maggie" filament: Physical properties of a giant atomic cloud
- The Supersonic Project: To cool or not to cool Supersonically Induced Gas Objects (SIGOs)?
- Formation of hub-filament structure triggered by cloud-cloud collision in W33 complex
- Unravelling the structure of magnetised molecular clouds with SILCC-Zoom: sheets, filaments and fragmentation
- Modelling the structure of molecular clouds: I. A multi-scale energy equipartition
- Quantifying the interplay between gravity and magnetic field in molecular clouds - a possible multi-scale energy equipartition in NGC6334
- A Synergy of the Velocity Gradients Technique and the Probability Density Functions for Identifying Gravitational Collapse in Self-Absorbing Media
- Taking off the edge -- simultaneous filament and end core formation
- Star formation in evolving molecular clouds
- Tracing the general structure of Galactic molecular clouds using Planck data: I. The Perseus region as a test case
- The link between magnetic fields and filamentary clouds II: Bimodal linear mass distributions
- X-raying molecular clouds with a short flare: probing statistics of gas density and velocity fields
- Probing the initial conditions of high-mass star formation. III. Fragmentation and triggered star formation
- HYACINTH: HYdrogen And Carbon chemistry in the INTerstellar medium in Hydro simulations
- Spatially resolved [CII]-gas conversion factor in early galaxies
- An ALMA search for substructure and fragmentation in starless cores in Orion B North
- The influence of the cloud virial parameter on the initial mass function
- Reconciling extragalactic star formation efficiencies with theory: insights from PHANGS
- Escaping the maze: a statistical sub-grid model for cloud-scale density structures in the interstellar medium
- A two-phase model of galaxy formation: III. The formation of globular clusters
- The impact of cosmic ray heating on the cooling of the low-metallicity interstellar medium
- Molecular Cloud Matching in CO and Dust in M33 I. High-Resolution Hydrogen Column Density Maps from Herschel
- Characterising lognormal fractional-Brownian-motion density fields with a Convolutional Neural Network
- A new parameterization of the star formation rate-dense gas mass relation: embracing gas density gradients
- Density Exponent Analysis: Gravity-driven steepening of the density profiles of star-forming regions
- Extraction of a second power-law tail of the density distribution in simulated clouds
- Reconstructing the genesis of a globular cluster system at a look-back time of 9.1 Gyr with the JWST
- Finite shock model of density in supersonic turbulence
- Density distribution function of a self-gravitating isothermal turbulent fluid in the context of molecular clouds ensembles -- III. Virial analysis
- From Cavitation to Astrophysics: Explicit Solution of the Spherical Collapse Equation
- Density profile of a self-gravitating polytropic turbulent fluid in a rotating disk near to the cloud core
- Shocks in the warm neutral medium II -- Origin of neutral carbon at high pressure
- SIGAME v3: Gas Fragmentation in Post-processing of Cosmological Simulations for More Accurate Infrared Line Emission Modeling
- A Probabilistic Model to Estimate Number Densities from Column Densities in Molecular Clouds
- Structure of iso-density sets in supersonic isothermal turbulence
- Cold atomic gas identified by HI self-absorption. Cold atomic clouds toward giant molecular filaments
- Linear filament and nested cluster evolution tomography (LANCET) I. Capture the evolution of dense gas in 14-parsec filament G316.8
- CO mapping of Cygnus-X -- volume density distribution
- Diagnosing Turbulence in the Neutral and Molecular Interstellar Medium of Galaxies
- Statistical mass function of prestellar cores from the density distribution of their natal clouds
- The IRAM M33 CO(2-1) Survey - A complete census of the molecular gas out to 7 kpc
- From 2D to 3D: Recovering Turbulent Density Dispersions from Noisy Data
- Star Formation at the Periphery of a Molecular Superbubble: The Case of G12.79+0.43
- Density profile of a self-gravitating polytropic turbulent fluid in the context of ensembles of molecular clouds