Gravity or turbulence? II. Evolving column density PDFs in molecular clouds
arXiv:1105.5411 · doi:10.1111/j.1365-2966.2011.19141.x
Abstract
It has been recently shown that molecular clouds do not exhibit a unique shape for the column density probability distribution function (Npdf). Instead, clouds without star formation seem to possess a lognormal distribution, while clouds with active star formation develope a power-law tail at high column densities. The lognormal behavior of the Npdf has been interpreted in terms of turbulent motions dominating the dynamics of the clouds, while the power-law behavior occurs when the cloud is dominated by gravity. In the present contribution we use thermally bi-stable numerical simulations of cloud formation and evolution to show that, indeed, these two regimes can be understood in terms of the formation and evolution of molecular clouds: a very narrow lognormal regime appears when the cloud is being assembled. However, as the global gravitational contraction occurs, the initial density fluctuations are enhanced, resulting, first, in a wider lognormal Npdf, and later, in a power-law Npdf. We thus suggest that the observed Npdf of molecular clouds are a manifestation of their global gravitationally contracting state. We also show that, contrary to recent suggestions, the exact value of the power-law slope is not unique, as it depends on the projection in which the cloud is being observed.
9 pages, 4 figures. MNRAS, accepted
References in corpus (12)
- Molecular Cloud Evolution II. From cloud formation to the early stages of star formation in decaying conditions
- The COMPLETE Survey of Star-Forming Regions: Phase I Data
- On the Density Distribution in Star-forming Interstellar Clouds
- Gravity or Turbulence? The velocity dispersion-size relation
- The Birth of Molecular Clouds: Formation of Atomic Precursors in Colliding Flows
- Rapid Molecular Cloud and Star Formation: Mechanisms and Movies
- Six Myths on the Virial Theorem for Interstellar Clouds
- Probing the evolution of molecular cloud structure II: From chaos to confinement
- The Nature of the Velocity Field in Molecular Clouds. I. The Non-Magnetic Case
- A large scale extinction map of the Galactic Anticenter from 2MASS
- Do Lognormal Column-Density Distributions in Molecular Clouds Imply Supersonic Turbulence?
- Molecular Cloud Evolution
Cited by in corpus (134)
- The Star Formation Rate of Turbulent Magnetized Clouds: Comparing Theory, Simulations, and Observations
- On the Star Formation Efficiency of Turbulent Magnetized Clouds
- Global Hierarchical Collapse In Molecular Clouds. Towards a Comprehensive Scenario
- Cluster-formation in the Rosette molecular cloud at the junctions of filaments
- The Structure of the Interstellar Medium of Star Forming Galaxies
- What determines the density structure of molecular clouds ? A case study of Orion B with Herschel
- The Magellanic Mopra Assessment (MAGMA). I. The Molecular Cloud Population of the Large Magellanic Cloud
- Dispersal of molecular clouds by ionising radiation
- The ALMA Survey of 70 m dark High-mass clumps in Early Stages (ASHES). I. Pilot Survey: Clump Fragmentation
- The Meaning and Consequences of Star Formation Criteria in Galaxy Models with Resolved Stellar Feedback
- Partially Ionized Plasmas in Astrophysics
- High-dynamic-range extinction mapping of infrared dark clouds: Dependence of density variance with sonic Mach number in molecular clouds
- A General Theory of Turbulent Fragmentation
- 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 X-factor in Galaxies: I. Dependence on Environment and Scale
- Class 0 Protostars in the Perseus Molecular Cloud: A Correlation Between the Youngest Protostars and the Dense Gas Distribution
- Gravity or turbulence? -III. Evidence of pure thermal Jeans fragmentation at ~0.1 pc scale
- Turbulence sets the initial conditions for star formation in high-pressure environments
- An Excursion-Set Model for the Structure of GMCs and the ISM
- The Physical Properties of Large-Scale Galactic Filaments
- The Panchromatic Hubble Andromeda Treasury VIII: A Wide-Area, High-Resolution Map of Dust Extinction in M31
- Detection of two power-law tails in the probability distribution functions of massive GMCs
- Numerical Simulations of Turbulent, Molecular Clouds Regulated by Radiation Feedback Forces I: Star Formation Rate and Efficiency
- A supersonic turbulence origin of Larson's laws
- Using Herschel and Planck observations to delineate the role of magnetic fields in molecular cloud structure
- 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
- 3D simulations of globules and pillars formation around HII regions: turbulence and shock curvature
- Herschel's view of the large-scale structure in the Chamaeleon dark clouds
- The shapes of column density PDFs - The importance of the last closed contour
- From diffuse gas to dense molecular cloud cores
- An Evolutionary Model for Collapsing Molecular Clouds and Their Star Formation Activity
- The dynamics and star-forming potential of the massive Galactic centre cloud G0.253+0.016
- The Razor's Edge of Collapse: The Transition Point from Lognormal to Powerlaw in Molecular Cloud PDFs
- Time Varying Dynamical Star Formation Rate
- On the structure of molecular clouds
- Universal Scaling Relations in Scale-Free Structure Formation
- Understanding star formation in molecular clouds IV. Column density PDFs from quiescent to massive molecular clouds
- 2MASS wide field extinction maps: V. Corona Australis
- The HI/OH/Recombination line survey of the inner Milky Way (THOR)
- The Anatomy of the Column Density Probability Distribution Function (N-PDF)
- Gravity or turbulence? IV. Collapsing cores in out-of-virial disguise
- An Evolutionary Model for Collapsing Molecular Clouds and Their Star Formation Activity. II. Mass Dependence of the Star Formation Rate
- The Dependence of Star Formation Efficiency on Gas Surface Density
- Herschel Observations of the W3 GMC: Clues to the Formation of Clusters of High-Mass Stars
- Mapping the core mass function to the initial mass function
- Cloud structure of three Galactic infrared dark star-forming regions from combining ground and space based bolometric observations
- ALMA-IMF VI -- Investigating the origin of stellar masses: Core mass function evolution in the W43-MM2&MM3 mini-starburst
- Evolving Molecular Cloud Structure and the Column Density Probability Distribution Function
- On the shape and completeness of the column density probability distribution function of molecular clouds
- The ALMA Survey of 70 μm Dark High-mass Clumps in Early Stages (ASHES). VIII. Dynamics of Embedded Dense Cores
- Eventful Evolution of Giant Molecular Clouds in Dynamically Evolving Spiral Arms
- Filaments in the Lupus 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
- Velocity Gradient in the Presence of Self-Gravity: Identifying Gravity-induced Inflow and Determining Collapsing Stage
- Cloud formation in the atomic and molecular phase: HI self absorption (HISA) towards a Giant Molecular Filament
- Numerical Simulations of Turbulent Molecular Clouds Regulated by Radiation Feedback Forces II: Radiation-Gas Interactions and Outflows
- The Density Distribution in Turbulent Bi-stable Flows
- A Simple Perspective on the Mass-Area Relationship in Molecular Clouds
- Turbulence in the Ionized Gas of the Orion Nebula
- Kiloparsec-Scale Simulations of Star Formation in Disk Galaxies III. Structure and Dynamics of Filaments and Clumps in Giant Molecular Clouds
- Power-law tails in probability density functions of molecular cloud column density
- A semi-analytic model of the turbulent multi-phase interstellar medium
- Gravity Versus Magnetic Fields in Forming Molecular Clouds
- Young cluster Berkeley 59 : Properties, evolution and star formation
- The Effects of Magnetic Fields and Outflow Feedback on the Shape and Evolution of the Density PDF in Turbulent Star-Forming Clouds
- The evolution of temperature and density structures of OB cluster-forming molecular clumps
- Relationship between the column density distribution and evolutionary class of molecular clouds as viewed by ATLASGAL
- Dense Gas in a Giant Molecular Filament
- The role of the turbulence driving mode for the Initial Mass Function
- Molecular Cloud Evolution VI. Measuring cloud ages
- What is the physics behind the Larson mass-size relation?
- Density distribution function of a self-gravitating isothermal compressible turbulent fluid in the context of Molecular Clouds ensembles
- Low Mass Stars as Tracers of Star and Cluster Formation
- How do velocity structure functions trace gas dynamics in simulated molecular clouds?
- Gas Column Density Distribution of Molecular Clouds in the Third Quadrant of the Milky Way
- Herschel Observations of the W3 GMC (II): Clues to the Formation of Clusters of High-Mass Stars
- On the extraction of power-law parts of the probability density functions in star-forming clouds
- Dense Regions in Supersonic Isothermal Turbulence
- Squeezed between shells? On the origin of the Lupus I molecular cloud. APEX/LABOCA, Herschel, and Planck observations
- Synthetic Large-Scale Galactic Filaments -- on their Formation, Physical Properties, and Resemblance to Observations
- Time-dependent nonextensivity arising from the rotational evolution of solar-type stars
- Galactic Cold Cores. VIII. Filament formation and evolution: Filament properties in context with evolutionary models
- 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
- Molecular cloud formation as seen in synthetic Hi and molecular gas observations
- The Effect of Magnetic Fields and Ambipolar Diffusion on the Column Density Probability Distribution Function in Molecular Clouds
- Fast Molecular Cloud Destruction Requires Fast Cloud Formation
- Multiscale Dynamical Scenario of High-mass Star Formation in an IRDC Filament G34
- Characterizing three-dimensional magnetic field, turbulence, and self-gravity in the star-forming region L1688
- The Properties of Bound and Unbound Molecular Cloud Populations Formed in Galactic Disc Simulations
- The Panchromatic Hubble Andromeda Treasury. VI. The reliability of far-ultraviolet flux as a star formation tracer on sub-kpc scales
- The Clump Mass Function of the Dense Clouds in the Carina Nebula Complex
- Modelling the structure of molecular clouds: I. A multi-scale energy equipartition
- On the Diagnostic Power of FIR/Sub-mm SED Fitting in Massive Galactic Molecular Clumps
- On the probability distribution function of the mass surface density of molecular clouds I
- Properties of the dense cores and filamentary structures in the Vela C molecular cloud
- Density distribution function of a self-gravitating isothermal compressible turbulent fluid in the context of Molecular Clouds ensembles II: the contribution of the turbulent term and the potential of the outer shells
- The Column Density Structure of Orion A Depicted by N-PDF
- Magnetic Field of Molecular Gas Measured with the Velocity Gradient Technique I. Orion A
- On the probability distribution function of the mass surface density of molecular clouds. II
- 25 years of XMM-Newton observations of the Sgr A complex: 3D distribution and internal structure of the clouds
- Applying a one-dimensional PDR model to the Taurus molecular cloud and its atomic envelope
- HYACINTH: HYdrogen And Carbon chemistry in the INTerstellar medium in Hydro simulations
- Geometry-Independent Determination of Radial Density Distributions in Molecular Cloud Cores and Other Astronomical Objects
- Multiscale Analysis of the Gradient of Linear Polarisation
- Testing assumptions and predictions of star-formation theories
- Rotation of Two Micron All Sky Survey Clumps in Molecular Clouds
- An ALMA archival study of the clump mass function in the Large Magellanic Cloud
- Reconciling extragalactic star formation efficiencies with theory: insights from PHANGS
- The Transition from a Lognormal to a Power-Law Column Density Distribution in Molecular Clouds: An Imprint of the Initial Magnetic Field and Turbulence
- Does the HCN/CO ratio trace the star-forming fraction of gas? I. A comparison with analytical models of star formation
- Multi log-normal density structure in Cygnus-X molecular clouds: A fitting for N-PDF without power-law
- Gravitational Collapse and Disk Formation in Magnetized Cores
- Constraining cloud parameters using high density gas tracers in galaxies
- Molecular Cloud Matching in CO and Dust in M33 I. High-Resolution Hydrogen Column Density Maps from Herschel
- Extraction of a second power-law tail of the density distribution in simulated clouds
- Generalised transport equation of the Autocovariance Function of the density field and mass invariant in star-forming clouds
- Dark Matter as an active gravitational agent in cloud complexes
- Robustness of Synthetic Observations in Producing Observed Core Properties: Predictions for the TolTEC Clouds to Cores Legacy Survey
- Touching the Stars: Using High-Resolution 3D Printing to Visualize Stellar Nurseries
- Density profile of a self-gravitating polytropic turbulent fluid in a rotating disk near to the cloud core
- Impeding Turbulence Decay in Self-gravitating Cloud Cores
- Does the HCN/CO ratio trace the star-forming fraction of gas? II. Variations in CO and HCN Emissivity
- Formation of prestellar cores via non-isothermal gas fragmentation
- CO mapping of Cygnus-X -- volume density distribution
- Cloud fragmentation cascades and feedback: on reconciling an unfettered inertial range with a low star formation rate
- Sub-kpc scale gas density histogram of the Galactic molecular gas: a new statistical method to characterise galactic-scale gas structures
- Systematic Investigation of Dust and Gaseous CO in 12 Nearby Molecular Clouds
- Density profile of a self-gravitating polytropic turbulent fluid in the context of ensembles of molecular clouds
- Why most molecular clouds are gravitationally dominated
- Contour Analysis Tool: an interactive tool for background and morphology analysis