Sheets, filaments and clumps - high resolution simulations of how the thermal instability can form molecular clouds
arXiv:1812.09051 · doi:10.1093/mnras/stz768
Abstract
This paper describes 3D simulations of the formation of collapsing cold clumps via thermal instability inside a larger cloud complex. The initial condition was a diffuse atomic, stationary, thermally unstable, 200pc diameter spherical cloud in pressure equilibrium with low density surroundings. This was seeded with 10% density perturbations at the finest initial grid level (0.29pc) around n_H = 1.1cm^{-3} and evolved with self-gravity included. No magnetic field was imposed. Resimulations at a higher resolution of a region extracted from this simulation (down to 0.039pc), show that the thermal instability forms sheets, then filaments and finally clumps. The width of the filaments increases over time, in one particular case from 0.26 to 0.56pc. Thereafter clumps with sizes of around 5pc grow at the intersections of filaments. 21 distinct clumps, with properties similar to those observed in molecular clouds, are found by using the FellWalker algorithm to find minima in the gravitational potential. Not all of these are gravitationally bound, but the convergent nature of the flow and increasing central density suggest they are likely to form stars. Further simulation of the most massive clump shows the gravitational collapse to a density >10^6 cm^{-3}. These results provide realistic initial conditions that can be used to study feedback in individual clumps, interacting clumps and the entire molecular cloud complex.
19 pages, 10 figures. MNRAS accepted. Moderate revision and extension
References in corpus (26)
- Cold Dark Clouds: The Initial Conditions for Star Formation
- Molecular Cloud Evolution II. From cloud formation to the early stages of star formation in decaying conditions
- The Dynamics of Radiation Pressure-Dominated HII Regions
- From the warm magnetized atomic medium to molecular clouds
- Characterizing the properties of nearby molecular filaments observed with Herschel
- On the nature of star-forming filaments: I. Filament morphologies
- Modelling the supernova-driven ISM in different environments
- Compression and ablation of the photo-irradiated cloud the Orion Bar
- FellWalker - a Clump Identification Algorithm
- The JCMT BISTRO Survey: The magnetic field strength in the Orion A filament
- The supernova-regulated ISM. I. The multi-phase structure
- The Power Spectrum of Supersonic Turbulence in Perseus
- A closer look at the "characteristic" width of molecular cloud filaments
- Testing Larson's relationships in massive clumps
- Gravity or turbulence? IV. Collapsing cores in out-of-virial disguise
- The Role of Turbulence and Magnetic Fields in Simulated Filamentary Structure
- Atomic and Ionized Microstructures in the Diffuse Interstellar Medium
- The Multi-phase Turbulence Density Power Spectra in the Perseus Molecular Cloud
- Striations in molecular clouds: Streamers or MHD waves?
- Forward and inverse cascades in decaying two-dimensional electron magnetohydrodynamic turbulence
- Feedback from Winds and Supernovae in Massive Stellar Clusters - II. X-Ray Emission
- Turbulence in simulated HII regions
- A new mechanical stellar wind feedback model for the Rosette Nebula
- Hydrodynamic simulations of mechanical stellar feedback in a molecular cloud formed by thermal instability
- Catching the Birth of a Dark Molecular Cloud for the First Time
- Gaia: Orion's Integral Shaped Filament is a Standing Wave
Cited by in corpus (14)
- Global Hierarchical Collapse In Molecular Clouds. Towards a Comprehensive Scenario
- The Physics of Star Cluster Formation and Evolution
- ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions -- XV. Steady Accretion from Global Collapse to Core Feeding in Massive Hub-filament System SDC335
- The SOFIA FEEDBACK Legacy Survey: Dynamics and mass ejection in the bipolar HII region RCW 36
- Evidence of Core Growth in the Dragon Infrared Dark Cloud: A Path for Massive Star Formation
- Cooling flows around cold clouds in the circumgalactic medium: steady-state models & comparison with TNG50
- Thermal instability revisited
- Turbulent power distribution in the local interstellar medium
- Interactions of a shock with a molecular cloud at various stages of its evolution due to thermal instability and gravity
- The Role of Magnetic Fields in the Formation of the Filamentary Infrared Dark Cloud G11.11-0.12
- The physical and the geometrical properties of simulated cold HI structures
- Shocking interactions of supernova remnants with atomic and molecular clouds -- the interplay between shocks, thermal instability and gravity in the large cloud regime
- Striations, integrals, hourglasses and collapse -- thermal instability driven magnetic simulations of molecular clouds
- Investigations of MWISP Filaments. I. Filament Identification and Analysis Algorithms, and Source Catalogue