Comparing simulations of ionisation triggered star formation and observations in RCW 120
arXiv:1109.3478 · doi:10.1093/mnras/stv1427
Abstract
Massive clumps within the swept-up shells of bubbles, like that surrounding the galactic HII region RCW 120, have been interpreted in terms of the Collect and Collapse (C&C) mechanism for triggered star formation. The cold, dusty clumps surrounding RCW 120 are arranged in an almost spherical shell and harbour many young stellar objects. By performing high-resolution, three-dimensional SPH simulations of HII regions expanding into fractal molecular clouds, we investigate whether the formation of massive clumps in dense, swept-up shells necessarily requires the C&C mechanism. In a second step, we use RADMC-3D to compute the synthetic dust continuum emission from our simulations, in order to compare them with observations of RCW 120 made with APEX-LABOCA at 870 micron. We show that a distribution of clumps similar to the one seen in RCW 120 can readily be explained by a non-uniform initial molecular cloud structure. Hence, a shell-like configuration of massive clumps does not imply that the C&C mechanism is at work. Rather, we find a hybrid form of triggering, which combines elements of C&C and Radiatively Driven Implosion (RDI). In addition, we investigate the reliability of deriving clump masses from their 870 micron emission. We find that for clumps with more than 100 M_sun the observational estimates are accurate to within a factor of two and that, even at these long wavelengths, it is important to account for the radiative heating from triggered, embedded protostars.
10 pages, 7 figures, submitted to MNRAS
References in corpus (17)
- SPLASH: An interactive visualisation tool for Smoothed Particle Hydrodynamics simulations
- The Density Probability Distribution in Compressible Isothermal Turbulence: Solenoidal versus Compressive Forcing
- Dispersal of molecular clouds by ionising radiation
- The Fractal Density Structure in Supersonic Isothermal Turbulence: Solenoidal versus Compressive Energy Injection
- Star formation around RCW 120, the perfect bubble
- Driving Turbulence and Triggering Star Formation by Ionizing Radiation
- Ionisation-induced star formation I: The collect and collapse model
- Understanding Spatial and Spectral Morphologies of Ultracompact H II Regions
- Radiation driven implosion and triggered star formation
- The Dust Properties of Bubble HII Regions as seen by Herschel
- Clumps and triggered star formation in ionised molecular clouds
- Smoothed Particle Hydrodynamics simulations of expanding HII regions. I. Numerical methods and tests
- Radiation hydrodynamics of triggered star formation: the effect of the diffuse radiation field
- 3D simulations of globules and pillars formation around HII regions: turbulence and shock curvature
- An improved sink particle algorithm for SPH simulations
- Main-sequence stars masquerading as Young Stellar Objects in the central molecular zone
- The influence of the turbulent perturbation scale on prestellar core fragmentation and disk formation
Cited by in corpus (39)
- Understanding Galaxy Evolution through Emission Lines
- Unifying low and high mass star formation through density amplified hubs of filaments
- Cosmic-ray induced destruction of CO in star-forming galaxies
- Theoretical ISM pressure and electron density diagnostics for local and high-redshift galaxies
- StarBench: The D-type expansion of an HII region
- Simulating the Formation of Massive Protostars: I. Radiative Feedback and Accretion Disks
- FEEDBACK: a SOFIA Legacy Program to Study Stellar Feedback in Regions of Massive Star Formation
- New places and phases of CO-poor/CI-rich molecular gas in the Universe
- Triggered Star Formation Inside the Shell of a Wolf-Rayet Bubble as the origin of the Solar System
- GMC Collisions as Triggers of Star Formation. V. Observational Signatures
- Star formation towards the Galactic HII region RCW120
- Detecting stellar-wind bubbles through infrared arcs in HII regions
- Synthetic observations of star formation and the interstellar medium
- Spatial distribution of star formation related to ionized regions throughout the inner Galactic plane
- Molecular envelope around the HII region RCW 120
- RCW 120: A possible case of hit and run, elucidated by multi temperature dust mapping
- High-mass star formation in Orion possibly triggered by cloud-cloud collision III, NGC2068 and NGC2071
- ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions -XIII. Ongoing triggered star formation within clump-fed scenario found in the massive ( ) clump
- J plots: a new method for characterizing structures in the interstellar medium
- Denser Sampling of the Rosette Nebula with Faraday Rotation Measurements: Improved Estimates of Magnetic Fields in HII Regions
- Unveiling molecular clouds toward bipolar HII region G8.14+0.23
- Squeezed between shells? On the origin of the Lupus I molecular cloud. - II. APEX CO and GASS HI observations
- Factories of CO-dark gas: molecular clouds with limited star formation efficiencies by FUV feedback
- APEX CO observations towards the photodissociation region of RCW120
- The Role of Magnetic Fields in Triggered Star Formation of RCW 120
- Uncovering distinct environments in an extended physical system around the W33 complex
- Correlation of HI shells and CO clumps in the outer Milky Way
- NH Observations of the S235 Star Forming Region: Dense Gas in Inter-core Bridges
- A Comprehensive Study of the Young Cluster IRAS 05100+3723: Properties, Surrounding Interstellar Matter, and Associated Star Formation
- Ionising feedback from an O star formed in a shock-compressed layer
- The shocked molecular layer in RCW 120
- Does slow and steady win the race? Investigating feedback processes in giant molecular clouds
- Physical characterization of S169: A prototypical IR bubble associated with the massive star-forming region IRAS12326-6245
- Colliding interstellar bubbles in the direction of l=54°
- Galactic chimney sweeping: the effect of 'gradual' stellar feedback mechanisms on the evolution of dwarf galaxies
- Investigating the physical conditions in extended system hosting mid-infrared bubble N14
- Stellar feedback and triggered star formation in the prototypical bubble RCW 120
- ALMAGAL VIII. Early phases of triggered star formation in source AG286.07161.8229
- Star formation toward the H~II region IRAS 10427-6032