A supersonic turbulence origin of Larson's laws
arXiv:1309.5926 · doi:10.1093/mnras/stt1805
Abstract
We revisit the origin of Larson's scaling laws describing the structure and kinematics of molecular clouds. Our analysis is based on recent observational measurements and data from a suite of six simulations of the interstellar medium, including effects of self-gravity, turbulence, magnetic field, and multiphase thermodynamics. Simulations of isothermal supersonic turbulence reproduce observed slopes in linewidth-size and mass-size relations. Whether or not self-gravity is included, the linewidth-size relation remains the same. The mass-size relation, instead, substantially flattens below the sonic scale, as prestellar cores start to form. Our multiphase models with magnetic field and domain size 200 pc reproduce both scaling and normalization of the first Larson law. The simulations support a turbulent interpretation of Larson's relations. This interpretation implies that: (i) the slopes of linewidth-size and mass-size correlations are determined by the inertial cascade; (ii) none of the three Larson laws is fundamental; (iii) instead, if one is known, the other two follow from scale invariance of the kinetic energy transfer rate. It does not imply that gravity is dynamically unimportant. The self-similarity of structure established by the turbulence breaks in star-forming clouds due to the development of gravitational instability in the vicinity of the sonic scale. The instability leads to the formation of prestellar cores with the characteristic mass set by the sonic scale. The high-end slope of the core mass function predicted by the scaling relations is consistent with the Salpeter power-law index.
17 pages, 8 figures, MNRAS, in press
References in corpus (20)
- Theory of Star Formation
- The Statistics of Supersonic Isothermal Turbulence
- Analytical theory for the initial mass function: CO clumps and prestellar cores
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- Turbulent Structure of a Stratified Supernova-Driven Interstellar Medium
- What determines the density structure of molecular clouds ? A case study of Orion B with Herschel
- On the Density Distribution in Star-forming Interstellar Clouds
- Numerical simulations of compressively driven interstellar turbulence: I. Isothermal gas
- The Fractal Density Structure in Supersonic Isothermal Turbulence: Solenoidal versus Compressive Energy Injection
- Comparing Numerical Methods for Isothermal Magnetized Supersonic Turbulence
- Six Myths on the Virial Theorem for Interstellar Clouds
- The Generation and Dissipation of Interstellar Turbulence - Results from Large Scale High Resolution Simulations
- The supernova-regulated ISM. I. The multi-phase structure
- Is the Scaling of Supersonic Turbulence Universal?
- Scaling Relations of Compressible MHD Turbulence
- Energy cascade and scaling in supersonic isothermal turbulence
- Can We Trust the Dust? Evidence of Dust Segregation in Molecular Clouds
- The effect of ISM turbulence on the gravitational instability of galactic discs
- Dissipative Structures in Supersonic Turbulence
- Flux Correlations in Supersonic Isothermal Turbulence
Cited by in corpus (73)
- The Big Problems in Star Formation: the Star Formation Rate, Stellar Clustering, and the Initial Mass Function
- The PdBI Arcsecond Whirlpool Survey (PAWS): Environmental Dependence of Giant Molecular Cloud Properties in M51
- Supernova Driving. I. The Origin of Molecular Cloud Turbulence
- Chains of dense cores in the Taurus L1495/B213 complex
- Star cluster formation in cosmological simulations. I. Properties of young clusters
- SILCC-Zoom: The dynamical and chemical evolution of molecular clouds
- Variations of the stellar initial mass function in the progenitors of massive early-type galaxies and in extreme starburst environments
- Infall-Driven Protostellar Accretion and the Solution to the Luminosity Problem
- Non-universal star formation efficiency in turbulent ISM
- A Portrait of Cold Gas in Galaxies at 60pc Resolution and a Simple Method to Test Hypotheses That Link Small-Scale ISM Structure to Galaxy-Scale Processes
- A Model for the Onset of Self-gravitation and Star Formation in Molecular Gas Governed by Galactic Forces: I. Cloud-scale Gas Motions
- Large turbulent reservoirs of cold molecular gas around high-redshift starburst galaxies
- Gravitational contraction versus Supernova driving and the origin of the velocity dispersion-size relation in molecular clouds
- Testing Larson's relationships in massive clumps
- Physical Processes in Star Formation
- Herschel's view of the large-scale structure in the Chamaeleon dark clouds
- The structure and statistics of interstellar turbulence
- Observational Diagnostics of Self-Gravitating MHD Turbulence in Giant Molecular Clouds
- The Spatial Distribution of the Young Stellar Clusters in the Star Forming Galaxy NGC 628
- MHD Turbulence
- Scaling Laws of Passive-Scalar Diffusion in the Interstellar Medium
- Morphology and Kinematics of Filaments in the Serpens and Perseus Molecular Clouds
- The Necessity of Feedback Physics in Setting the Peak of the Initial Mass Function
- Hierarchical Star Formation in Nearby LEGUS Galaxies
- Larson's scaling laws, and the gravitational instability of clumpy discs at high redshift
- The Self-gravitating Gas Fraction and The Critical Density for Star Formation
- From the Top Down and Back Up Again: Star Cluster Structure from Hierarchical Star Formation
- Universal Scaling Relations in Scale-Free Structure Formation
- Hierarchical Star Formation in Turbulent Media: Evidence from Young Star Clusters
- Characterizing gravitational instability in turbulent multi-component galactic discs
- Star formation from dense shocked regions in supersonic isothermal magneto-turbulence
- Relations Between Molecular Cloud Structure Sizes and Line Widths in the Large Magellanic Cloud
- Turbulent stagnation in a z-pinch plasma
- ALMA Observations of a Quiescent Molecular Cloud in the Large Magellanic Cloud
- Simulations of the star-forming molecular gas in an interacting M51-like galaxy: cloud population statistics
- GMCs scaling relations: role of the cloud definition
- Accretion driven turbulence in filaments II: Effects of self-gravity
- Exact relations for energy transfer in self-gravitating isothermal turbulence
- Kinematics of the molecular interstellar medium probed by Gaia: steep velocity dispersion-size relation, isotropic turbulence, and location-dependent energy dissipation
- A New Method for Constraining Molecular Cloud Thickness: A study of Taurus, Perseus and Ophiuchus
- Resolving Giant Molecular Clouds in NGC 300: A First Look with the Submillimeter Array
- How do velocity structure functions trace gas dynamics in simulated molecular clouds?
- The relation between the true and observed fractal dimensions of turbulent clouds
- The Bolocam Galactic Plane Survey. XIII. Physical Properties and Mass Functions of Dense Molecular Cloud Structures
- Over-sized gas clumps in an extremely-metal-poor molecular cloud revealed by ALMA's pc-scale maps
- Constructing multi-scale gravitational energy spectra from molecular cloud surface density PDF -- Interplay between turbulence and gravity
- WISDOM Project XII. Clump properties and turbulence regulated by clump-clump collisions in the dwarf galaxy NGC404
- Fractal dimension of optical cirrus in Stripe82
- Accretion driven turbulence in filaments I: Non-gravitational accretion
- Effects of Galactic Disc Inclination and Resolution on Observed GMC Properties and Larson's Scaling Relations
- Emergence of the Kennicutt-Schmidt Relation from the Small-Scale SFR-Density Relation
- Turbulence decay and cloud core relaxation in molecular clouds
- Modelling the structure of molecular clouds: I. A multi-scale energy equipartition
- Gas kinematics around filamentary structures in the Orion B cloud
- Physics of Non-Universal Larson's Relation
- Star-forming regions of the Aquila rift cloud complex. II. Turbulence in molecular cores probed by NH3 emission
- G.A.S. I: A prescription for turbulence-regulated star formation and its impact on galaxy properties
- Connecting the Cosmic Star Formation Rate with the Local Star Formation
- A lower bound on adiabatic heating of compressed turbulence for simulation and model validation
- Taking off the edge -- simultaneous filament and end core formation
- A Tale of Two Clump Masses: A New Way to Study Clump Formation in Simulations
- Magnetic ionization-thermal instability
- A stochastic and analytical model of hierarchical fragmentation: The fragmentation of gas structures into young stellar objects in the interstellar medium
- Characterising lognormal fractional-Brownian-motion density fields with a Convolutional Neural Network
- Scales of Stability and Turbulence in the Molecular ISM
- Fragmented atomic shell around S187 HII region and its interaction with molecular and ionized gas
- The Hierarchical Dynamical State of Molecular Gas from 3 to 300 pc in NGC 253
- Magnetic fields in Bok globules: Multi-wavelength polarimetry as tracer across large spatial scales
- Power spectra of outflow-driven turbulence
- Clumpy shocks as the driver of velocity dispersion in molecular clouds: the effects of self-gravity and magnetic fields
- Cloud fragmentation cascades and feedback: on reconciling an unfettered inertial range with a low star formation rate
- Accuracy requirements to test the applicability of the random cascade model to supersonic turbulence
- Collapsing Index: A New Method to Identify Star-forming Cores Based on ALMA Images