The Simultaneous Formation of Massive Stars and Stellar Clusters
arXiv:0908.3910 · doi:10.1111/j.1365-2966.2009.15621.x
Abstract
We show that massive stars and stellar clusters are formed simultaneously, the global evolution of the forming cluster is what allows the central stars to become massive. We predict that massive star forming clumps, such as those observed in Motte et al. 2007, contract and grow in mass leading to the formation of massive stars. This occurs as mass is continually channeled from large radii onto the central proto-stars, which can become massive through accretion. Using SPH simulations of massive star forming clumps in a Giant Molecular Cloud, we show that clumps are initially diffuse and filamentary, and become more concentrated as they collapse. Simulated interferometry observations of our data provide an explanation as to why young massive star forming regions show more substructure than older ones. The most massive stars in our model are found within the most bound cluster. Most of the mass accreted by the massive stars was originally distributed throughout the clump at low densities, and was later funneled to the star due to global in-fall. Even with radiative feedback no massive pre-stellar cores are formed. The original cores are of intermediate mass and gain their additional mass in the proto-stellar stage. We also find that cores which form low mass stars exist within the volume from which the high mass stars accrete, but are largely unaffected by this process.
Accepted for publication in MNRAS. 11 pages, 9 figures and 3 tables
References in corpus (16)
- Cold Dark Clouds: The Initial Conditions for Star Formation
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- A Minimum Column Density of 1 g cm^-2 for Massive Star Formation
- The earliest phases of high-mass star formation: a 3 square degree millimeter continuum mapping of Cygnus X
- Equilibrium Star Cluster Formation
- Gravitational fragmentation and the formation of brown dwarfs in stellar clusters
- On the Structure of the Orion A Cloud and the Formation of the Orion Nebula Cluster
- Kinematics of the Orion Nebula Cluster: Velocity Substructure and Spectroscopic Binaries
- Kinematic Structure of the Orion Nebula Cluster and its Surroundings
- Radiation Feedback and Fragmentation in Massive Protostellar Cores
- Fragmentation in Molecular Clouds and its connection to the IMF
- Probing the formation of intermediate- to high-mass stars in protoclusters II. Comparison between millimeter interferometric observations of NGC 2264-C and SPH simulations of a collapsing clump
- The structure of molecular clouds and the universality of the clump mass function
- First 450-micron dust continuum mapping of the massive star-forming region NGC 3576 with the P-ArTeMiS bolometer camera
- On the fidelity of the core mass functions derived from dust column density data
- Evolution of massive protostars: the IRAS 18151-1208 region
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- The ALMA Survey of 70 m dark High-mass clumps in Early Stages (ASHES). I. Pilot Survey: Clump Fragmentation
- Radiation-Hydrodynamic Simulations of the Formation of Orion-Like Star Clusters II. The Initial Mass Function from Winds, Turbulence, and Radiation
- Fragmentation and mass segregation in the massive dense cores of Cygnus X
- On the nature of star-forming filaments: I. Filament morphologies
- The Origin of Massive Stars: The Inertial-Inflow Model
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- G0.253+0.016: a molecular cloud progenitor of an Arches-like cluster
- Candidate super star cluster progenitor gas clouds possibly triggered by close passage to Sgr A*
- A Massive Prestellar Clump Hosting no High-Mass Cores
- CO outflows from high-mass Class 0 protostars in Cygnus-X
- Radiation-Hydrodynamic Simulations of the Formation of Orion-Like Star Clusters I. Implications for the Origin of the Initial Mass Function
- The mmax-Mecl relation, the IMF and IGIMF: probabilistically sampled functions?
- The efficiency of star formation in clustered and distributed regions
- Dynamics of cluster-forming hub-filament systems: The case of the high-mass star-forming complex Monoceros R2
- Young Stellar Groups and Their Most Massive Stars
- Filamentary Fragmentation and Accretion in High-Mass Star-Forming Molecular Clouds
- From the Convergence of Filaments to Disk-Outflow Accretion: Massive-Star Formation in W33A
- Analytical theory for the initial mass function: III time dependence and star formation rate
- The Cloud Factory I: Generating resolved filamentary molecular clouds from galactic-scale forces
- The Bolocam Galactic Plane Survey. XIV. Physical Properties of Massive Starless and Star Forming Clumps
- The VLT-FLAMES Tarantula Survey. XXIX. Massive star formation in the local 30 Doradus starburst
- Fragmentation of massive dense cores down to ~1000 AU: Relation between fragmentation and density structure
- Impact of Protostellar Outflows on Turbulence and Star Formation Efficiency in Magnetized Dense Cores
- ALMA-IMF I -- Investigating the origin of stellar masses: Introduction to the Large Program and first results
- Importance of the Initial Conditions for Star Formation - II. Fragmentation Induced Starvation and Accretion Shielding
- Bipolar Molecular Outflows and Hot Cores in GLIMPSE Extended Green Objects (EGOs)
- Is protostellar heating sufficient to halt fragmentation? A case study of the massive protocluster G8.68-0.37
- Filament Fragmentation in High-Mass Star Formation
- MUSCLE W49 : A Multi-Scale Continuum and Line Exploration of the Most Luminous Star Formation Region in the Milky Way. I. Data and The Mass Structure of the Giant Molecular Cloud
- Line Profiles of Cores within Clusters: I. The Anatomy of a Filament
- 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
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- Line Profiles of Cores within Clusters: II Signatures of Dynamical Collapse during High Mass Star Formation
- Simultaneous low- and high-mass star formation in a massive protocluster: ALMA observations of G11.92-0.61
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- G11.92-0.61-MM2: A Bonafide Massive Prestellar Core?
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- An Evolutionary Model for Collapsing Molecular Clouds and Their Star Formation Activity. II. Mass Dependence of the Star Formation Rate
- ALMA-IMF. V. Prestellar and protostellar core populations in the W43 cloud complex
- What Physics Determines the Peak of the IMF? Insights from the Structure of Cores in Radiation-Magnetohydrodynamic Simulations
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- Detection of a high-mass prestellar core candidate in W43-MM1
- Massive Star Formation via the Collapse of Subvirial and Virialized Turbulent Massive Cores
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- H2O Southern Galactic Plane Survey (HOPS): Paper III - Properties of Dense Molecular Gas across the Inner Milky Way
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- The JCMT Gould Belt Survey: Dense Core Clusters in Orion A
- The core population and kinematics of a massive clump at early stages: an ALMA view
- New insights in the HII region G18.88-0.49: hub-filament system and accreting filaments
- The SQUALO project (Star formation in QUiescent And Luminous Objects) I: clump-fed accretion mechanism in high-mass star-forming objects
- Mass and luminosity evolution of young stellar objects
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- Identification of prestellar cores in high-mass star forming clumps via observations with ALMA
- Evidence for Inflow in High-Mass Star-Forming Clumps
- Molecular analysis of a high-mass prestellar core candidate in W43-MM1
- The influence of stellar-dynamical ejections and collisions on the relation between the maximum-star and star-cluster-mass
- Deep near-infrared imaging of W3 Main: constraints on stellar cluster formation
- Dynamical Accretion Flows -- ALMAGAL: Flows along filamentary structures in high-mass star-forming clusters
- The relation between accretion rates and the initial mass function in hydrodynamical simulations of star formation
- The accretion history of high-mass stars: An ArTéMiS pilot study of Infrared Dark Clouds
- The Balloon-Borne Large Aperture Submillimeter Telescope (BLAST) 2005: A 10 deg^2 Survey of Star Formation in Cygnus X
- Probing the cold magnetized Universe with SPICA-POL (B-BOP)
- Digging into the Interior of Hot Cores with ALMA (DIHCA). II. Exploring the Inner Binary (Multiple) System Embedded in G335 MM1 ALMA1
- The Small-Scale Physical Structure and Fragmentation Difference of Two Embedded Intermediate Mass Protostars in Orion
- Formation of stellar clusters
- The evolution of temperature and density structures of OB cluster-forming molecular clumps
- A Statistical Study of Massive Cluster-Forming Clumps
- Protostar mass functions in young clusters
- The role of low-mass star clusters in forming the massive stars in DR 21
- Physical and chemical complexity in high-mass star-forming regions with ALMA. I. Overview and evolutionary trends of physical properties
- Evidence of Core Growth in the Dragon Infrared Dark Cloud: A Path for Massive Star Formation
- Spectral classification of B stars: The empirical sequence using SDSS-IV/APOGEE near-IR data
- Origin of the dense core mass function in contracting filaments
- ALMA-IMF X -- The core population in the evolved W33-Main (G012.80) protocluster
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- ATOMS: ALMA Three-millimeter Observations of Massive Star-forming regions -- VI. On the formation of the "L" type filament in G286.21+0.17
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- The CARMA-NRO Orion Survey: Core Emergence and Kinematics in the Orion A Cloud
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