Star formation in turbulent molecular clouds with colliding flow
arXiv:1412.5741 · doi:10.1088/0004-637X/801/2/77
Abstract
Using self-gravitational hydrodynamical numerical simulations, we investigated the evolution of high-density turbulent molecular clouds swept by a colliding flow. The interaction of shock waves due to turbulence produces networks of thin filamentary clouds with a sub-parsec width. The colliding flow accumulates the filamentary clouds into a sheet cloud and promotes active star formation for initially high-density clouds. Clouds with a colliding flow exhibit a finer filamentary network than clouds without a colliding flow. The probability distribution functions (PDFs) for the density and column density can be fitted by lognormal functions for clouds without colliding flow. When the initial turbulence is weak, the column density PDF has a power-law wing at high column densities. The colliding flow considerably deforms the PDF, such that the PDF exhibits a double peak. The stellar mass distributions reproduced here are consistent with the classical initial mass function with a power-law index of when the initial clouds have a high density. The distribution of stellar velocities agrees with the gas velocity distribution, which can be fitted by Gaussian functions for clouds without colliding flow. For clouds with colliding flow, the velocity dispersion of gas tends to be larger than the stellar velocity dispersion. The signatures of colliding flows and turbulence appear in channel maps reconstructed from the simulation data. Clouds without colliding flow exhibit a cloud-scale velocity shear due to the turbulence. In contrast, clouds with colliding flow show a prominent anti-correlated distribution of thin filaments between the different velocity channels, suggesting collisions between the filamentary clouds.
21 pages, 18 figures, accepted for publication in ApJ
References in corpus (14)
- Theory of Star Formation
- Modeling Collapse and Accretion in Turbulent Gas Clouds: Implementation and Comparison of Sink Particles in AMR and SPH
- On the Star Formation Efficiency of Turbulent Magnetized Clouds
- Molecular Cloud Evolution II. From cloud formation to the early stages of star formation in decaying conditions
- 2MASS wide field extinction maps - I. The Pipe nebula
- Herschel-Planck dust optical-depth and column-density maps: I. Method description and results for Orion
- Magnetically Regulated Star Formation in 3D: The Case of Taurus Molecular Cloud Complex
- Kinematic Structure of the Orion Nebula Cluster and its Surroundings
- Formation of Magnetized Prestellar Cores with Ambipolar Diffusion and Turbulence
- Driven and Decaying Turbulence Simulations of Low-Mass Star Formation: From Clumps to Cores to Protostars
- Cluster Formation Triggered by Filament Collisions in Serpens South
- Massive-Star Forming Infrared Loop around the Crab-like Supernova Remnant G54.1+0.3: Post Main-Sequence Triggered Star Formation?
- Colliding Filaments and a Massive Dense Core in the Cygnus OB 7 Molecular Cloud
- NGC 346 in The Small Magellanic Cloud. IV. Triggered Star Formation in the HII Region N66
Cited by in corpus (15)
- Star cluster formation and cloud dispersal by radiative feedback: dependence on metallicity and compactness
- Cloud-cloud collision in the DR 21 cloud as a trigger of massive star formation
- Discovery of CCS Velocity-Coherent Substructures in the Taurus Molecular Cloud 1
- The role of collision speed, cloud density, and turbulence in the formation of young massive clusters via cloud-cloud collisions
- Structure of a protobinary system: an asymmetric circumbinary disk and spiral arms
- Amplification of turbulence in contracting prestellar cores in primordial minihalos
- Nature of supersonic turbulence and density distribution function in the multiphase interstellar medium
- Far and extreme UV radiation feedback in molecular clouds and its influence on the mass and size of star clusters
- Squeezed between shells? On the origin of the Lupus I molecular cloud. - II. APEX CO and GASS HI observations
- Discovery of Infalling Motion with Rotation of the Cluster-Forming Clump S235AB and Its Implication to the Clump Structures
- Molecular Gas Structures traced by CO Emission in the 18,190 CO Molecular Clouds from the MWISP Survey
- FOREST unbiased Galactic plane imaging survey with the Nobeyama 45 m telescope (FUGIN): Possible evidence of cloud-cloud collisions triggering high-mass star formation in the giant molecular cloud M16 (Eagle Nebula)
- A survey of molecular cores in M17 SWex
- Three-dimensional radiation hydrodynamics simulations of wandering intermediate-mass black holes considering the anisotropic radiation and dust sublimation
- Shock-Cloud Interaction in the Solar Corona