Radiation-Hydrodynamic Simulations of the Formation of Orion-Like Star Clusters II. The Initial Mass Function from Winds, Turbulence, and Radiation
arXiv:1203.2620 · doi:10.1088/0004-637X/754/1/71
Abstract
[abridged] We report a series of simulations of the formation of a star cluster similar to the Orion Nebula Cluster (ONC), including both radiative transfer and protostellar outflows, and starting from both smooth and self-consistently turbulent initial conditions. Each simulation forms >150 stars and brown dwarfs, yielding a stellar mass distribution from < 0.1 to > 10 Msun. We show that a simulation that begins with self-consistently turbulence embedded in a larger turbulent volume, and that includes protostellar outflows, produces an initial mass function (IMF) consistent both with that of the ONC and the Galactic field. This is the first simulation published to date that reproduces the observed IMF in a cluster large enough to contain massive stars, and where the result is determined by a fully self-consistent calculation of gas thermodynamics. This simulation also produces a star formation rate that, while still somewhat too high, is much closer to observed values than if we omit either the larger turbulent volume or the outflows. Moreover, we show that the combination of outflows, self-consistently turbulent initial conditions, and turbulence continually fed by motions on scales larger than that of the protocluster yields an IMF that is in agreement with observations and invariant with time, resolving the "overheating" problem in which simulations without these features have an IMF peak that shifts to progressively higher masses over time. The simulation that matches the observed IMF also reproduces the observed trend of stellar multiplicity strongly increasing with mass. We show that this simulation produces massive stars from distinct massive cores whose properties are consistent with those of observed massive cores. However, the stars formed in these cores also undergo dynamical interactions that naturally produce Trapezium-like hierarchical multiple systems.
18 pages, 16 figures, emulateapj format, accepted to ApJ. For movies of the results, see http://www.ucolick.org/~krumholz/downloads.html
References in corpus (23)
- Theory of Star Formation
- Slow Star Formation in Dense Gas: Evidence and Implications
- Analytical theory for the initial mass function: CO clumps and prestellar cores
- The High Angular Resolution Multiplicity of Massive Stars
- Stellar, brown dwarf and multiple star properties from a radiation hydrodynamical simulation of star cluster formation
- A Universal, Local Star Formation Law in Galactic Clouds, Nearby Galaxies, High-Redshift Disks, and Starbursts
- Radiation-Hydrodynamic Simulations of Collapse and Fragmentation in Massive Protostellar Cores
- Star formation through gravitational collapse and competitive accretion
- Modelling discontinuities and Kelvin-Helmholtz instabilities in SPH
- A Minimum Column Density of 1 g cm^-2 for Massive Star Formation
- The Effects of Radiative Transfer on Low-Mass Star Formation
- The Importance of Radiative Feedback for the Stellar Initial Mass Function
- Magnetic processes in a collapsing dense core. II Fragmentation. Is there a fragmentation crisis ?
- The Initial Mass Function of the Orion Nebula Cluster across the H-burning limit
- Equations and Algorithms for Mixed Frame Flux-Limited Diffusion Radiation Hydrodynamics
- A Survey for Spectroscopic Binaries Among Very Low-Mass Stars
- The Jeans mass and the origin of the knee in the IMF
- Feedback Effects on Low-Mass Star Formation
- On the Origin of Stellar Masses
- The high-mass star-forming region IRAS18182-1433
- Metallicity and the Universality of the IMF
- Observing Turbulent Fragmentation in Simulations: Predictions for CARMA and ALMA
- A multigroup diffusion solver using pseudo transient continuation for a radiation-hydrodynamic code with patch-based AMR
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- Protostellar Feedback in Turbulent Fragmentation: Consequences for Stellar Clustering and Multiplicity
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- The Formation and Evolution of Small Star Clusters
- A pilot survey of the binarity of Massive Young Stellar Objects with band adaptive optics
- Effects of the environment on the multiplicity properties of stars in the STARFORGE simulations
- The ALMA Early Science View of FUor/EXor objects. III. The Slow and Wide Outflow of V883 Ori
- The role of low-mass star clusters in massive star formation. The Orion Case
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