Ionisation-induced star formation III: Effects of external triggering on the IMF in clusters
arXiv:1202.1417 · doi:10.1111/j.1365-2966.2012.20709.x
Abstract
We report on Smoothed Particle Hydrodynamics (SPH) simulations of the impact on a turbulent M star--forming molecular cloud of irradiation by an external source of ionizing photons. We find that the ionizing radiation has a significant effect on the gas morphology, but a less important role in triggering stars. The rate and morphology of star formation are largely governed by the structure in the gas generated by the turbulent velocity field, and feedback has no discernible effect on the stellar initial mass function. Although many young stars are to be found in dense gas located near an ionization front, most of these objects also form when feedback is absent. Ionization has a stronger effect in diffuse regions of the cloud by sweeping up low--density gas that would not otherwise form stars into gravitationally--unstable clumps. However, even in these regions, dynamical interactions between the stars rapidly erase the correlations between their positions and velocities and that of the ionization front.
12 pages, 16 figures (some downgraded to fit on astro-ph), accepted for publication in MNRAS
References in corpus (10)
- Driving Turbulence and Triggering Star Formation by Ionizing Radiation
- Clustered and Triggered Star Formation in W5: Observations with Spitzer
- Ionisation-induced star formation I: The collect and collapse model
- The Jeans mass and the origin of the knee in the IMF
- Triggered massive-star formation on the borders of Galactic HII regions. IV- Star formation at the periphery of Sh2-212
- iVINE - Ionization in the parallel tree/SPH code VINE: First results on the observed age-spread around O-stars
- Ionisation-induced star formation II: External irradiation of a turbulent molecular cloud
- Observational study of sites of triggered star formation: CO and mid-infrared observations
- Triggered massive-star formation on the borders of Galactic HII regions. III. Star formation at the periphery of Sh2-219
- Spitzer Observations of the HII Region NGC 2467: An Analysis of Triggered Star Formation
Cited by in corpus (20)
- The modelling of feedback in star formation simulations
- Gas expulsion in massive star clusters? Constraints from observations of young and gas-free objects
- Star Cluster Formation in a Turbulent Molecular Cloud Self-Regulated by Photo-Ionisation Feedback
- Ionization--induced star formation IV: Triggering in bound clusters
- Ionization--induced star formation V: Triggering in partially unbound clusters
- Unbound Young Stellar Systems: Star Formation on the loose
- An improved sink particle algorithm for SPH simulations
- Star formation in W3 - AFGL333: Young stellar content, properties and roles of external feedback
- Young stellar clusters in the Rosette molecular cloud. Arguments against triggered star formation
- Dynamical histories of the IC348 and NGC1333 star-forming regions in Perseus
- On the relative importance of different microphysics on the D-type expansion of galactic HII regions
- Formation of stellar clusters
- Testing diagnostics of triggered star formation
- Assessing molecular line diagnostics of triggered star formation using synthetic observations
- Did the Solar System form in a sequential triggered star formation event?
- A Herschel and BIMA study of the sequential star formation near the W48A HII region
- On the mass segregation of cores and stars
- No preferential spatial distribution for massive stars expected from their formation
- Probing the Dragonfish star-forming complex: the ionizing population of the young massive cluster Mercer 30
- On the evolution of irradiated turbulent clouds: A comparative study between modes of triggered star-formation