Gravitational Collapse and Filament Formation: Comparison with the Pipe Nebula
arXiv:0909.2018 · doi:10.1088/0004-637X/704/2/1735
Abstract
Recent models of molecular cloud formation and evolution suggest that such clouds are dynamic and generally exhibit gravitational collapse. We present a simple analytic model of global collapse onto a filament and compare this with our numerical simulations of the flow-driven formation of an isolated molecular cloud to illustrate the supersonic motions and infall ram pressures expected in models of gravity-driven cloud evolution. We apply our results to observations of the Pipe Nebula, an especially suitable object for our purposes as its low star formation activity implies insignifcant perturbations from stellar feedback. We show that our collapsing cloud model can explain the magnitude of the velocity dispersions seen in the CO filamentary structure by Onishi et al. and the ram pressures required by Lada et al. to confine the lower-mass cores in the Pipe nebula. We further conjecture that higher-resolution simulations will show small velocity dispersions in the densest core gas, as observed, but which are infall motions and not supporting turbulence. Our results point out the inevitability of ram pressures as boundary conditions for molecular cloud filaments, and the possibility that especially lower-mass cores still can be accreting mass at significant rates, as suggested by observations.
10 pages, 4 figures, accepted by ApJ
References in corpus (28)
- Molecular Cloud Evolution II. From cloud formation to the early stages of star formation in decaying conditions
- The Nature of the Dense Core Population in the Pipe Nebula: Thermal Cores Under Pressure
- 2MASS wide field extinction maps - I. The Pipe nebula
- From the warm magnetized atomic medium to molecular clouds
- On the Rapid Collapse and Evolution of Molecular Clouds
- The Birth of Molecular Clouds: Formation of Atomic Precursors in Colliding Flows
- Cooling, Gravity and Geometry: Flow-driven Massive Core Formation
- On the Structure of the Orion A Cloud and the Formation of the Orion Nebula Cluster
- Kinematics of the Orion Nebula Cluster: Velocity Substructure and Spectroscopic Binaries
- Dynamics of Dense Cores in the Perseus Molecular Cloud
- Rapid Molecular Cloud and Star Formation: Mechanisms and Movies
- Magnetically Aligned Velocity Anisotropy in the Taurus Molecular Cloud
- Inefficient star formation: The combined effects of magnetic fields and radiative feedback
- Six Myths on the Virial Theorem for Interstellar Clouds
- Fragmentation in Molecular Clouds and its connection to the IMF
- Fragmentation of Shocked Flows: Gravity, Turbulence and Cooling
- Clump Lifetimes and the Initial Mass Function
- Dense cores in the Pipe Nebula: An improved core mass function
- The Nature of the Velocity Field in Molecular Clouds. I. The Non-Magnetic Case
- A Large Scale Survey of NGC1333
- Protostar Formation in Supersonic Flows: Growth and Collapse of Spherical Cores
- TMC-1C: an accreting starless core
- The nature of the dense core population in the pipe nebula: core and cloud kinematics from C18O observations
- Formation and Collapse of Quiescent Cloud Cores Induced by Dynamic Compressions
- Tidal foces as a regulator of star formation in Taurus
- On the gravitational content of molecular clouds and their cores
- The Interplay of Turbulence & Magnetic Fields in Star-Forming Regions: Simulations and Observations
- Cloud Dispersal in Turbulent Flows
Cited by in corpus (67)
- Star Clusters Across Cosmic Time
- Global Hierarchical Collapse In Molecular Clouds. Towards a Comprehensive Scenario
- Turbulent molecular clouds
- Gravity or Turbulence? The velocity dispersion-size relation
- Filaments and ridges in Vela C revealed by Herschel: from low-mass to high-mass star-forming sites
- Dispersal of molecular clouds by ionising radiation
- Direct observation of a sharp transition to coherence in Dense Cores
- A Comparative Study of Giant Molecular Clouds in M51, M33 and the Large Magellanic Cloud
- Gravity or turbulence? II. Evolving column density PDFs in molecular clouds
- Filaments in Simulations of Molecular Cloud Formation
- The identification of filaments on far infrared and submillimiter images. Morphology, physical conditions and relation with star formation of filamentary structure
- The Pipe Nebula as seen with Herschel: Formation of filamentary structures by large-scale compression ?
- The Physics of Star Cluster Formation and Evolution
- The Herschel view of massive star formation in G035.39--00.33: Dense and cold filament of W48 undergoing a mini-starburst
- Star Formation in Disk Galaxies. II. The Effect of Star Formation and Photoelectric Heating on the Formation and Evolution of Giant Molecular Clouds
- Gravitational Infall onto Molecular Filaments
- Molecular Cloud Evolution V. Cloud Destruction by Stellar Feedback
- Disruption of giant molecular clouds and formation of bound star clusters under the influence of momentum stellar feedback
- Rapid Star Formation and Global Gravitational Collapse
- From diffuse gas to dense molecular cloud cores
- Was a cloud-cloud collision the trigger of the recent star formation in Serpens?
- The Free-Fall time of finite Sheets and Filaments
- Morphology and Kinematics of Filaments in the Serpens and Perseus Molecular Clouds
- Interstellar filaments and star formation
- Velocity-coherent Filaments in NGC 1333: Evidence for Accretion Flow?
- An Ammonia Spectral Map of the L1495-B218 Filaments in the Taurus Molecular Cloud : I. Physical Properties of Filaments and Dense cores
- Gravity or turbulence? IV. Collapsing cores in out-of-virial disguise
- Self-gravitating Filament Formation from Shocked Flows: Velocity Gradients across Filaments
- SEDIGISM: The kinematics of ATLASGAL filaments
- The effect of photoionising feedback on the shaping of hierarchically-forming stellar clusters
- Gravitational Infall onto Molecular Filaments II. Externally Pressurized Cylinders
- ALMA observations of NGC 6334S I: Forming massive stars and cluster in subsonic and transonic filamentary clouds
- The effect of ambipolar diffusion on low-density molecular ISM filaments
- The molecular gas content of the Pipe Nebula I. Direct evidence of outflow-generated turbulence in B59?
- A molecular line study of the filamentary infrared dark cloud G304.74+01.32
- Star Formation and Young Population of the HII Complex Sh2-294
- ALMA observations of NGC 6334S. II. Subsonic and Transonic Narrow Filaments in a High-mass Star Formation Cloud
- Kiloparsec-Scale Simulations of Star Formation in Disk Galaxies III. Structure and Dynamics of Filaments and Clumps in Giant Molecular Clouds
- Star formation in the filament of S254-S258 OB complex: a cluster in the process of making
- Accretion driven turbulence in filaments II: Effects of self-gravity
- LABOCA mapping of the infrared dark cloud MSXDC G304.74+01.32
- SiO emission as a probe of Cloud-Cloud Collisions in Infrared Dark Clouds
- Accretion and Diffusion Timescales in Sheets and Filaments
- The Effects of Inhomogeneities within Colliding Flows on the Formation and Evolution of Molecular Clouds
- Local Molecular Gas toward the Aquila Rift Region
- The Herschel/PACS view of the Cep OB2 region: Global protoplanetary disk evolution and clumpy star formation
- Origin of the dense core mass function in contracting filaments
- Galactic Cold Cores. VIII. Filament formation and evolution: Filament properties in context with evolutionary models
- Variation in GMC Association Properties Across Bars, Spiral Arms, Inter-Arms, and Circumnuclear Region of M100 (NGC 4321) Extracted from ALMA Observations
- The Herschel View of Star Formation
- Molecular cloud formation as seen in synthetic Hi and molecular gas observations
- Accretion driven turbulence in filaments I: Non-gravitational accretion
- Turbulence and Accretion: a High-resolution Study of the B5 Filaments
- Young starless cores embedded in the magnetically dominated Pipe Nebula. II. Extended dataset
- Stability of filaments in star-forming clouds and the formation of prestellar cores in them
- A Dynamically Collapsing Core and a Precursor of a Core in a Filament Supported by Turbulent and Magnetic Pressures
- The role of theta Oph in the formation and evolution of the Pipe Nebula - is star formation ever isolated?
- Observational studies of pre-stellar cores and infrared dark clouds
- Testing assumptions and predictions of star-formation theories
- The kinetic and magnetic energy budget of hub-filament systems during the gravitational fragmentation of molecular clouds
- Impact of Radiation Feedback on the Formation of Globular Cluster Candidates during Cloud-Cloud Collisions
- Dynamical Properties of Molecular-forming Gas Clumps in Galaxies at the Epoch of Reionization
- Widespread subsonic turbulence in Ophiuchus North 1
- Inverse Hubble Flows in Molecular Clouds
- ATLASGAL-selected high-mass clumps in the inner Galaxy: XI. Morphology and kinematics of warm inner envelopes
- Investigating the physical conditions in extended system hosting mid-infrared bubble N14
- SiO emission in the filamentary Infrared Dark Cloud G035.39-00.33: An ALMA view