Molecular Cloud Evolution III. Accretion vs. stellar feedback
arXiv:1001.0802 · doi:10.1088/0004-637X/715/2/1302
Abstract
We numerically investigate the effect of feedback from the ionizing radiation heating from massive stars on the evolution of giant molecular clouds (GMCs) and their star formation efficiency (SFE). We find that the star-forming regions within the GMCs are invariably formed by gravitational contraction. After an initial period of contraction, the collapsing clouds begin forming stars, whose feedback evaporates part of the clouds' mass, opposing the continuing accretion from the infalling gas. The competition of accretion against dense gas consumption by star formation (SF) and evaporation by the feedback, regulates the clouds' mass and energy balance, as well as their SFE. We find that, in the presence of feedback, the clouds attain levels of the SFE that are consistent at all times with observational determinations for regions of comparable SF rates (SFRs). However, we observe that the dense gas mass is larger in general in the presence of feedback, while the total (dense gas + stars) is nearly insensitive to the presence of feedback, suggesting that the total mass is determined by the accretion, while the feedback inhibits mainly the conversion of dense gas to stars. The factor by which the SFE is reduced upon the inclusion of feedback is a decreasing function of the cloud's mass, for clouds of size ~ 10 pc. This naturally explains the larger observed SFEs of massive-star forming regions. We also find that the clouds may attain a pseudo-virialized state, with a value of the virial mass very similar to the actual cloud mass. However, this state differs from true virialization in that the clouds are the center of a large-scale collapse, continuously accreting mass, rather than being equilibrium entities.
Submitted to ApJ (abstract abridged)
References in corpus (17)
- Slow Star Formation in Dense Gas: Evidence and Implications
- The Density Probability Distribution in Compressible Isothermal Turbulence: Solenoidal versus Compressive Forcing
- Outflow Feedback Regulated Massive Star Formation in Parsec-Scale Cluster Forming Clumps
- Molecular Cloud Evolution II. From cloud formation to the early stages of star formation in decaying conditions
- The role of stellar feedback in the formation of galaxies
- Equilibrium Star Cluster Formation
- On the Rapid Collapse and Evolution of Molecular Clouds
- The Birth of Molecular Clouds: Formation of Atomic Precursors in Colliding Flows
- The Global Evolution of Giant Molecular Clouds. I: Model Formulation and Quasi-Equilibrium Behavior
- On the Structure of the Orion A Cloud and the Formation of the Orion Nebula Cluster
- Turbulent Driving Scales in Molecular Clouds
- The young population of the Chamaeleon II dark cloud
- The Power Spectrum of Turbulence in NGC 1333: Outflows or Large-Scale Driving?
- Molecular clouds and clumps in the Boston University-Five College Radio Astronomy Observatory Galactic Ring Survey
- Probing the formation of intermediate- to high-mass stars in protoclusters II. Comparison between millimeter interferometric observations of NGC 2264-C and SPH simulations of a collapsing clump
- The Nature of the Velocity Field in Molecular Clouds. I. The Non-Magnetic Case
- Molecular Cloud Evolution
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- The Global Evolution of Giant Molecular Clouds II: The Role of Accretion
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- The Three-mm Ultimate Mopra Milky Way Survey. I. Survey Overview, Initial Data Releases, and First Results
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- Numerical Simulations of Turbulent, Molecular Clouds Regulated by Radiation Feedback Forces I: Star Formation Rate and Efficiency
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- Modes of Star Formation in Finite Molecular Clouds
- Evidence For Cloud-Cloud Collision and Parsec-Scale Stellar Feedback Within the L1641-N Region
- An Evolutionary Model for Collapsing Molecular Clouds and Their Star Formation Activity
- The formation of the W43 complex: constraining its atomic-to-molecular transition and searching for colliding clouds
- Star formation efficiency as a function of metallicity: from star clusters to galaxies
- On The Nature of Variations in the Measured Star Formation Efficiency of Molecular Clouds
- The Free-Fall time of finite Sheets and Filaments
- Radiation hydrodynamics simulations of massive star cluster formation in giant molecular clouds
- H2 distribution during formation of multiphase molecular clouds
- Ionization--induced star formation V: Triggering in partially unbound clusters
- Shocks, cooling and the origin of star formation rates in spiral galaxies
- A 500 pc filamentary gas wisp in the disk of the Milky Way
- Time Varying Dynamical Star Formation Rate
- On the Indeterministic Nature of Star Formation on the Cloud Scale
- Star cluster formation and cloud dispersal by radiative feedback: dependence on metallicity and compactness
- SILCC-ZOOM: The early impact of ionizing radiation on forming molecular clouds
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- Supernova Feedback in Molecular Clouds: Global Evolution and Dynamics
- Cosmological simulations of dwarfs: the need for ISM physics beyond SN feedback alone
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- The Dynamical State of The Serpens South Filamentary Infrared Dark Cloud
- Numerical Simulations of Turbulent Molecular Clouds Regulated by Radiation Feedback Forces II: Radiation-Gas Interactions and Outflows
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- The Elephant in the Room: The Importance of Where and When Massive Stars Form in Molecular Clouds
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- The Early Stage of Molecular Cloud Formation by Compression of Two-phase Atomic Gases
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- The Effects of Inhomogeneities within Colliding Flows on the Formation and Evolution of Molecular Clouds
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- Gravity or turbulence? VII. The Schmidt-Kennicutt law, the star formation efficiency, and the mass density of clusters from gravitational collapse rather than turbulent support
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