On the universality of interstellar filaments: theory meets simulations and observations
arXiv:1510.05654 · doi:10.1093/mnras/stv2880
Abstract
Filaments are ubiquitous in the universe. Recent observations have revealed that stars and star clusters form preferentially along dense filaments. Understanding the formation and properties of filaments is therefore a crucial step in understanding star formation. Here we perform three-dimensional high-resolution magnetohydrodynamical simulations that follow the evolution of molecular clouds and the formation of filaments and stars. We apply a filament detection algorithm and compare simulations with different combinations of physical ingredients: gravity, turbulence, magnetic fields and jet/outflow feedback. We find that gravity-only simulations produce significantly narrower filament profiles than observed, while simulations that include turbulence produce realistic filament properties. For these turbulence simulations, we find a remarkably universal filament width of 0.10 +/- 0.02 pc, which is independent of the star formation history of the clouds. We derive a theoretical model that provides a physical explanation for this characteristic filament width, based on the sonic scale (lambda_sonic) of molecular cloud turbulence. Our derivation provides lambda_sonic as a function of the cloud diameter L, the velocity dispersion sigma_v, the gas sound speed c_s, and the ratio of thermal to magnetic pressure, plasma beta. For typical cloud conditions in the Milky Way spiral arms, we find lambda_sonic = 0.04-0.16 pc, in excellent agreement with the filament width of 0.05-0.15 pc from observations. Consistent with the theoretical model assumptions, we find that the velocity dispersion inside the filaments is subsonic and supersonic outside. We further explain the observed p=2 scaling of the filament density profile, rho ~ r^(-p) with the collision of two planar shocks forming a filament at their intersection.
14 pages, 10 figures, MNRAS, in press
References in corpus (22)
- Theory of Star Formation
- The Statistics of Supersonic Isothermal Turbulence
- Modeling Collapse and Accretion in Turbulent Gas Clouds: Implementation and Comparison of Sink Particles in AMR and SPH
- A new Jeans resolution criterion for (M)HD simulations of self-gravitating gas: Application to magnetic field amplification by gravity-driven turbulence
- Inefficient star formation through turbulence, magnetic fields and feedback
- Numerical simulations of compressively driven interstellar turbulence: I. Isothermal gas
- Magnetic Fields in High-Mass Infrared Dark Clouds
- A census of dense cores in the Aquila cloud complex: SPIRE/PACS observations from the Herschel Gould Belt survey
- On the nature of star-forming filaments: I. Filament morphologies
- Modeling jet and outflow feedback during star cluster formation
- A robust numerical scheme for highly compressible magnetohydrodynamics: Nonlinear stability, implementation and tests
- Large-scale filaments associated with Milky Way spiral arms
- On the nature of star-forming filaments: II. Sub-filaments and velocities
- A Direct Multigrid Poisson Solver for Oct-Tree Adaptive Meshes
- The impact of turbulence and magnetic field orientation on star forming filaments
- The Musca cloud: A 6 pc-long velocity-coherent, sonic filament
- A possible link between the power spectrum of interstellar filaments and the origin of the prestellar core mass function
- The Role of Turbulence and Magnetic Fields in Simulated Filamentary Structure
- Properties of Cosmological Filaments extracted from Eulerian Simulations
- Filaments in the Lupus molecular clouds
- The Giant Molecular Cloud Environments of Infrared Dark Clouds
- Kiloparsec-Scale Simulations of Star Formation in Disk Galaxies III. Structure and Dynamics of Filaments and Clumps in Giant Molecular Clouds
Cited by in corpus (144)
- Relativistic jet feedback in high-redshift galaxies I: Dynamics
- Characterizing the properties of nearby molecular filaments observed with Herschel
- The link between turbulence, magnetic fields, filaments, and star formation in the Central Molecular Zone cloud G0.253+0.016
- Partially Ionized Plasmas in Astrophysics
- The impact of the metallicity and star formation rate on the time-dependent galaxy-wide stellar initial mass function
- Magnetic field amplification in turbulent astrophysical plasmas
- The sonic scale revealed by the world's largest supersonic turbulence simulation
- Cloud-cloud collisions and triggered star formation
- Slingshot Mechanism in Orion: Kinematic Evidence For Ejection of Protostars by Filaments
- SEDIGISM: Structure, excitation, and dynamics of the inner Galactic interstellar medium
- Filamentary fragmentation in a turbulent medium
- ATLASGAL -- A Galaxy-wide sample of dense filamentary structures
- Characterizing filaments in regions of high-mass star formation: High-resolution submilimeter imaging of the massive star-forming complex NGC 6334 with ArTéMiS
- A closer look at the "characteristic" width of molecular cloud filaments
- Opacity broadening and interpretation of suprathermal CO linewidths: Macroscopic Turbulence and Tangled Molecular Clouds
- A holistic perspective on the dynamics of G035.39-00.33: the interplay between gas and magnetic fields
- Alignment Between Protostellar Outflows and Filamentary Structure
- A Census of Large-Scale ( 10 pc), Velocity-Coherent, Dense Filaments in the Northern Galactic Plane: Automated Identification Using Minimum Spanning Tree
- From diffuse gas to dense molecular cloud cores
- On the formation of density filaments in the turbulent interstellar medium
- The TOP-SCOPE survey of Planck Galactic Cold Clumps: Survey overview and results of an exemplar source, PGCC G26.53+0.17
- Unveiling the Early-Stage Anatomy of a Protocluster Hub with ALMA
- Rotation in young massive star clusters
- Interstellar filaments and star formation
- Morphology and Kinematics of Filaments in the Serpens and Perseus Molecular Clouds
- Evidence for feedback and stellar-dynamically regulated bursty star cluster formation: the case of the Orion Nebula Cluster
- The Self-gravitating Gas Fraction and The Critical Density for Star Formation
- The JCMT BISTRO Survey: Magnetic Fields Associated with a Network of Filaments in NGC 1333
- Classification of Filament Formation Mechanisms in Magnetized Molecular Clouds
- Dense gas kinematics and a narrow filament in the Orion A OMC1 region using NH3
- Formation of HI Clouds in Shock-compressed Interstellar Medium: Physical Origin of Angular Correlation Between Filamentary Structure and Magnetic Field
- Extending Velocity Channel Analysis for Studying Turbulence Anisotropies
- The Anatomy of the Column Density Probability Distribution Function (N-PDF)
- Self-gravitating Filament Formation from Shocked Flows: Velocity Gradients across Filaments
- Formation of the Musca filament: Evidence for asymmetries in the accretion flow due to a cloud-cloud collision
- Origin of hydrogen isotopic variations in chondritic water and organics
- Magnetized interstellar molecular clouds: II. The Large-Scale Structure and Dynamics of Filamentary Molecular Clouds
- SEDIGISM: The kinematics of ATLASGAL filaments
- Shock Waves and Energy Dissipation in Magnetohydrodynamic Turbulence
- Star formation from dense shocked regions in supersonic isothermal magneto-turbulence
- Formation of the Hub-Filament System G33.92+0.11: Local Interplay between Gravity, Velocity, and Magnetic Field
- The width of Herschel filaments varies with distance
- On the typical width of Herschel filaments
- The distribution of density in supersonic turbulence
- Magnetic Seismology of Interstellar Gas Clouds: Unveiling a Hidden Dimension
- Isothermal Fragmentation: Is there a low-mass cut-off?
- A stellar relic filament in the Orion star forming region
- On the effective turbulence driving mode of molecular clouds formed in disc galaxies
- A detailed framework to incorporate dust in hydrodynamical simulations
- Magnetic field fluctuations in anisotropic, supersonic turbulence
- A dynamically young, gravitationally stable network of filaments in Orion B
- Multi-scale dynamics in star-forming regions: the interplay between gravity and turbulence
- KFPA Examinations of Young STellar Object Natal Environments (KEYSTONE): Hierarchical Ammonia Structures in Galactic Giant Molecular Clouds
- Magnetic buoyancy in simulated galactic discs with a realistic circum galactic medium
- Measuring Turbulence with Young Stars in the Orion Complex
- Fragmentation of star-forming filaments in the X-shape Nebula of the California molecular cloud
- The role of Galactic HII regions in the formation of filaments. High-resolution submilimeter imaging of RCW 120 with ArTéMiS
- Analytical core mass function (CMF) from filaments: Under which circumstances can filament fragmentation reproduce the CMF?
- Compressible turbulence in the interstellar medium: New insights from a high-resolution supersonic turbulence simulation
- Filaments and striations: anisotropies in observed, supersonic, highly-magnetised turbulent clouds
- A multi-shock model for the density variance of anisotropic, highly-magnetised, supersonic turbulence
- The effect of photoionising feedback on star formation in isolated and colliding clouds
- Developing the 3-Point Correlation Function For the Turbulent Interstellar Medium
- Gas velocity structure of the Orion A Integral Shaped Filament
- Dense gas formation in the Musca filament due to the dissipation of a supersonic converging flow
- Kinematics and Structure of Star-forming Regions: Insights from Cold Collapse Models
- On the fragmentation of filaments in a molecular cloud simulation
- Probing the cold magnetized Universe with SPICA-POL (B-BOP)
- SHOCKFIND - An algorithm to identify magnetohydrodynamic shock waves in turbulent clouds
- A comparison between grid and particle methods on the small-scale dynamo in magnetised supersonic turbulence
- A Magnetic Ribbon Model for Star-Forming Filaments
- The relation between the turbulent Mach number and observed fractal dimensions of turbulent clouds
- Does turbulence determine the initial mass function?
- The Effects of Magnetic Fields and Outflow Feedback on the Shape and Evolution of the Density PDF in Turbulent Star-Forming Clouds
- Filament rotation in the California L1482 cloud
- Measuring the filamentary structure of interstellar clouds through wavelets
- How magnetic field and stellar radiative feedback influences the collapse and the stellar mass spectrum of a massive star forming clump
- Accretion driven turbulence in filaments II: Effects of self-gravity
- First extragalactic measurement of the turbulence driving parameter: ALMA observations of the star-forming region N159E in the Large Magellanic Cloud
- Witnessing the fragmentation of a filament into prestellar cores in Orion B/NGC 2024
- Magnetic tension and instabilities in the Orion A integral shaped filament
- Probing the structure of a massive filament: ArTeMiS 350 and 450 micron mapping of the integral-shaped filament in Orion A
- Rotating filament in Orion B: Do cores inherit their angular momentum from their parent filament?
- The relation between the true and observed fractal dimensions of turbulent clouds
- The density distribution and physical origins of intermittency in supersonic, highly magnetised turbulence with diverse modes of driving
- The straight and isolated G350.54+0.69 filament: density profile and star formation content
- Dense Regions in Supersonic Isothermal Turbulence
- TRAO Survey of Nearby Filamentary Molecular clouds, the Universal Nursery of Stars (TRAO FUNS) I. Dynamics and Chemistry of L1478 in the California Molecular Cloud
- How the power spectrum of dust continuum images may hide the presence of a characteristic filament width
- Large-scale magnetic field in the Monoceros OB-1 East molecular cloud
- The spectrum of magnetized turbulence in the interstellar medium
- The widths of magnetised filaments in molecular clouds
- The interaction of a magnetohydrodynamical shock with a filament
- A new method for probing magnetic field strengths from striations in the interstellar medium
- Turbulent power distribution in the local interstellar medium
- Unravelling the structure of magnetised molecular clouds with SILCC-Zoom: sheets, filaments and fragmentation
- Accretion driven turbulence in filaments I: Non-gravitational accretion
- Morphology of prestellar cores in pressure confined filaments
- Hyperbolic Self-Gravity Solver for Large Scale Hydrodynamical Simulations
- The origin of a universal filament width in molecular clouds
- Turbulence and Accretion: a High-resolution Study of the B5 Filaments
- Dynamical origin of non-thermal states in galactic filaments
- Synthetic line and continuum observations of simulated turbulent clouds: the apparent widths of filaments
- A Census of Outflow to Magnetic Field Orientations in Nearby Molecular Clouds
- Gas kinematics around filamentary structures in the Orion B cloud
- The Effect of Shock Wave Duration on Star Formation and the Initial Condition of Massive Cluster Formation
- Spinning Bar and a Star-formation Inefficient Repertoire: Turbulence in Hickson Compact Group NGC7674
- Taking off the edge -- simultaneous filament and end core formation
- The initial mass function of stars and the star-formation rates of galaxies
- The CARMA-NRO Orion Survey: Filament Formation via Collision-Induced Magnetic Reconnection -- The Stick in Orion A
- Do simulated molecular clouds look like real ones?
- X-raying molecular clouds with a short flare: probing statistics of gas density and velocity fields
- HI filaments as potential compass needles? Comparing the magnetic field structure of the Small Magellanic Cloud to the orientation of GASKAP-HI filaments
- Fates of the dense cores formed by fragmentation of filaments: do they fragment again or not?
- Multiline observations of hydrogen, helium, and carbon radio-recombination lines toward Orion A: A detailed dynamical study and direct determination of physical conditions
- The Musca molecular cloud: The perfect "filament" is still a sheet
- Gravitational instability of filamentary molecular clouds, including ambipolar diffusion; Non-isothermal filament
- MaLeFiSenta: Machine Learning for FilamentS Identification and orientation in the ISM
- Filamentary Hierarchies and Superbubbles I: Characterizing filament properties across a simulated spiral galaxy
- Statistical properties and correlation length in star-forming molecular clouds: I. Formalism and application to observations
- Generalised transport equation of the Autocovariance Function of the density field and mass invariant in star-forming clouds
- Decaying turbulence in molecular clouds: how does it affect filament networks and star formation?
- Bimodal orientation distribution and head-tail asymmetry of a sample of filamentary molecular clouds
- Emergence of high-mass stars in complex fiber networks (EMERGE) IV. Environmental dependence of the fiber widths
- Length-scales and Dynamics of Carina's Western Wall
- Effects of Forcing on Shocks and Energy Dissipation in Interstellar and Intracluster Turbulences
- Line emission from filaments in molecular clouds
- Star Cluster Formation in Clouds with Externally Driven Turbulence
- A systematic bias in fitting the surface-density profiles of interstellar filaments
- Ionisation in Turbulent Magnetic Molecular Clouds I. Effect on Density and Mass-to-Flux Ratio Structures
- Comparison of Herschel and ArTéMiS observations of massive filaments
- Wind of Change: Faraday Rotation in a Simulated Large Magellanic Cloud
- Analytic growth rate of gravitational instability in self-gravitating planar polytropes
- Scale-dependent surface and volume density properties of filaments in molecular clouds
- Rebounding Cores to Build Star Cluster Multiple Populations
- Impact of the shape of the prestellar density fluctuations on the core mass function
- Statistical properties and correlation length in star-forming molecular clouds: II. Gravitational potential and virial parameter
- Sutra : An integrated framework for identification and characterization of filaments in the interstellar medium
- Diagnosing Turbulence in the Neutral and Molecular Interstellar Medium of Galaxies
- Magnetic field of a ring-like shape molecular cloud
- Interstellar filament detection and characterization: methods and implications for studies of magnetized interstellar medium
- Star Formation
- Loose threads: parsec-scale filamentation in the high Galactic latitude molecular clouds MBM 3 and MBM 16
- Revealing the Connection Between the Filamentary Hierarchy and Star Cluster Formation in a Simulated NGC 628 Galaxy