Massive star cluster formation I. High star formation efficiency while resolving feedback of individual stars
arXiv:2312.06509 · doi:10.1051/0004-6361/202348840
Abstract
The mode of star formation that results in the formation of globular clusters and young massive clusters is difficult to constrain through observations. We present models of massive star cluster formation using the Torch framework, which uses AMUSE to couple distinct multi-physics codes that handle star formation, stellar evolution and dynamics, radiative transfer, and magnetohydrodynamics. We upgrade Torch by implementing the N-body code PeTar, thereby enabling Torch to handle massive clusters forming from clouds with individual stars. We present results from Torch simulations of star clusters forming from , and turbulent, spherical gas clouds (named M4, M5, M6) of radius pc. We find that star formation is highly efficient and becomes more so at higher cloud mass and surface density. For M4, M5, and M6 with initial surface densities , after a free-fall time of Myr, we find that 30%, 40%, and 60% of the cloud mass has formed into stars, respectively. The final integrated star formation efficiency is 32%, 65%, and 85% for M4, M5, and M6. Observations of nearby clusters similar to M4 have similar integrated star formation efficiencies of 30%. The M5 and M6 models represent a different regime of cluster formation that is more appropriate for the conditions in starburst galaxies and gas-rich galaxies at high redshift, and that leads to a significantly higher efficiency of star formation. We argue that young massive clusters build up through short efficient bursts of star formation in regions that are sufficiently dense () and massive (). In such environments, the dynamical time of the cloud becomes short enough that stellar feedback cannot act quickly enough to slow star formation.
Published in A&A
References in corpus (94)
- Theory of Star Formation
- The Spitzer c2d Legacy Results: Star Formation Rates and Efficiencies; Evolution and Lifetimes
- Young massive star clusters
- Extragalactic Globular Clusters and Galaxy Formation
- Star Clusters Across Cosmic Time
- Galaxy Pairs in the Sloan Digital Sky Survey I: Star Formation, AGN Fraction, and the Luminosity/Mass-Metallicity Relation
- The effect of galaxy mass ratio on merger--driven starbursts
- The Evolution of the Star-forming Interstellar Medium across Cosmic Time
- Modeling Collapse and Accretion in Turbulent Gas Clouds: Implementation and Comparison of Sink Particles in AMR and SPH
- Low Virial Parameters in Molecular Clouds: Implications for High Mass Star Formation and Magnetic Fields
- Efficient Formation of Massive Galaxies at Cosmic Dawn by Feedback-Free Starbursts
- Inefficient star formation through turbulence, magnetic fields and feedback
- Protostellar Turbulence Driven by Collimated Outflows
- Gravity or Turbulence? The velocity dispersion-size relation
- Modeling UV Radiation Feedback from Massive Stars: II. Dispersal of Star-Forming Giant Molecular Clouds by Photoionization and Radiation Pressure
- The Age Distribution of Massive Star Clusters in the Antennae Galaxies
- The relation between the most-massive star and its parental star cluster mass
- The Interplay of Magnetic Fields, Fragmentation and Ionization Feedback in High-Mass Star Formation
- Photoionising feedback in star cluster formation
- A Uniform Catalog of Molecular Clouds in the Milky Way
- The Origin of OB Runaway Stars
- STARFORGE: Toward a comprehensive numerical model of star cluster formation and feedback
- When Feedback Fails: The Scaling and Saturation of Star Formation Efficiency
- Star Formation in Massive Clusters via the Wilkinson Microwave Anisotropy Probe and the Spitzer Glimpse Survey
- The effect of magnetic fields on star cluster formation
- Observational Evidence of Dynamic Star Formation Rate in Milky Way Giant Molecular Clouds
- PeTar: a high-performance N-body code for modeling massive collisional stellar systems
- Implementation and performance of FDPS: A Framework Developing Parallel Particle Simulation Codes
- Star clusters near and far; tracing star formation across cosmic time
- BRIDGE: A Direct-tree Hybrid N-body Algorithm for Fully Self-consistent Simulations of Star Clusters and their Parent Galaxies
- JWST/NIRCam Probes Young Star Clusters in the Reionization Era Sunrise Arc
- The Physics of Star Cluster Formation and Evolution
- Star formation at the smallest scales; A JWST study of the clump populations in SMACS0723
- The origin of the Milky Way globular clusters
- Massive Star cluster formation under the microscope at z=6
- Molecular Cloud Populations in the Context of Their Host Galaxy Environments: A Multiwavelength Perspective
- The modelling of feedback in star formation simulations
- ALMA Observations of the Antennae Galaxies: I. A New Window on a Prototypical Merger
- Forming Super Star Clusters in the Central Starburst of NGC 253
- Efficiently Cooled Stellar Wind Bubbles in Turbulent Clouds I. Fractal Theory and Application to Star-Forming Clouds
- Molecular Cloud Evolution V. Cloud Destruction by Stellar Feedback
- Simulations of the star-forming molecular gas in an interacting M51-like galaxy
- High star cluster formation efficiency in the strongly lensed Sunburst Lyman-continuum galaxy at z=2.37
- Disruption of giant molecular clouds and formation of bound star clusters under the influence of momentum stellar feedback
- Highly efficient star formation in NGC 5253 possibly from stream-fed accretion
- STARFORGE: The effects of protostellar outflows on the IMF
- Star Cluster Formation in Cosmological Simulations. II. Effects of Star Formation Efficiency and Stellar Feedback
- The Physical Conditions in a Pre Super Star Cluster Molecular Cloud in the Antennae Galaxies
- The formation of low metallicity globular clusters in dwarf galaxy mergers
- Physical Processes in Star Formation
- Effects of the environment and feedback physics on the initial mass function of stars in the STARFORGE simulations
- WARPFIELD 2.0: Feedback-regulated minimum star formation efficiencies of giant molecular clouds
- Two Populations of Molecular Clouds in the Antennae Galaxies
- 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
- On The Nature of Variations in the Measured Star Formation Efficiency of Molecular Clouds
- Radiation hydrodynamics simulations of massive star cluster formation in giant molecular clouds
- Interpreting the Star Formation Efficiency of Molecular Clouds with Ionising Feedback
- Simulating Star Clusters Across Cosmic Time: I. Initial Mass Function, Star Formation Rates and Efficiencies
- A slow-down time-transformed symplectic integrator for solving the few-body problem
- A universal route for the formation of massive star clusters in giant molecular clouds
- Early results from GLASS-JWST. VII: evidence for lensed, gravitationally bound proto-globular clusters at z=4 in the Hubble Frontier Field A2744
- A simple method to convert sink particles into stars
- Fervent: Chemistry-coupled, ionising and non-ionising radiative feedback in magnetohydrodynamical simulations
- Modeling UV Radiation Feedback from Massive Stars: I. Implementation of Adaptive Ray Tracing Method and Tests
- Cloud Structure of Galactic OB Cluster Forming Regions from Combining Ground and Space Based Bolometric Observations
- Kinetic energy from supernova feedback in high-resolution galaxy simulations
- The most massive stars in very young star clusters with a limited mass: Evidence favours significant self-regulation in the star formation processes
- Modelling of the Effects of Stellar Feedback during Star Cluster Formation Using a Hybrid Gas and N-Body Method
- An Evolutionary Model for Collapsing Molecular Clouds and Their Star Formation Activity. II. Mass Dependence of the Star Formation Rate
- Collisional N-Body Dynamics Coupled to Self-Gravitating Magnetohydrodynamics Reveals Dynamical Binary Formation
- Outflows Driven by Direct and Reprocessed Radiation Pressure in Massive Star Clusters
- PHANGS-JWST First Results: Massive Young Star Clusters and New Insights from JWST Observations of NGC 1365
- Super Hot Cores in NGC 253: Witnessing the formation and early evolution of Super Star Clusters
- Super Star Clusters in the Central Starburst of NGC 4945
- Simulating radiative feedback and star cluster formation in GMCs: II. Mass dependence of cloud destruction and cluster properties
- A diversity of starburst-triggering mechanisms in interacting galaxies and their signatures in CO emission
- A systematic study of the escape of LyC and Ly photons from star-forming, magnetized turbulent clouds
- Relations Between the Luminosity, Mass, and Age Distributions of Young Star Clusters
- Simulations predict intermediate-mass black hole formation in globular clusters
- SIRIUS Project. III. Star-by-star simulations of star cluster formation using a direct N-body integrator with stellar feedback
- Implementing Primordial Binaries in Simulations of Star Cluster Formation with a Hybrid MHD and Direct N-Body Method
- Pre-supernova feedback sets the star cluster mass function to a power law and reduces the cluster formation efficiency
- New Insights into the Physical Conditions and Internal Structure of a Candidate Proto-Globular Cluster
- The growth of H II regions around massive stars: the role of metallicity and dust
- Radiation shielding of protoplanetary discs in young star-forming regions
- Accelerated FDPS --- Algorithms to Use Accelerators with FDPS
- The Effects of Magnetic Fields and Outflow Feedback on the Shape and Evolution of the Density PDF in Turbulent Star-Forming Clouds
- Early-Forming Massive Stars Suppress Star Formation and Hierarchical Cluster Assembly
- Early Evolution and 3D Structure of Embedded Star Clusters
- The Ages and Metallicities of the Globular Clusters in the Sparkler
- Star clusters forming in a low metallicity starburst -- rapid self-enrichment by (very) massive stars
- Wind-Blown Bubbles around Evolved Stars
- SIRIUS Project. IV. The formation history of the Orion Nebula Cluster driven by clump mergers
- SIRIUS Project. V. Formation of off-center ionized bubbles associated with Orion Nebula Cluster
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- Redshift-dependent galaxy formation efficiency at in the FirstLight simulations
- Massive star cluster formation II. Runaway stars as fossils of sub-cluster mergers
- SIEGE III: The formation of dense stellar clusters in sub-parsec resolution cosmological simulations with individual star feedback
- A rapid channel for the collisional formation and gravitational wave driven mergers of supermassive black hole seeds at high redshift
- ΛCDM is still not broken: empirical constraints on the star formation efficiency at z ~ 12-30
- Mergers all the way down: stellar collisions and kinematics of a dense hierarchically forming massive star cluster in a dwarf starburst
- MOCCA: Effects of pristine gas accretion and cluster migration on globular cluster evolution, global parameters, and multiple stellar populations
- Massive star cluster formation III. Early mass segregation during cluster assembly
- Oort Cloud Ecology. III. The Sun left the parent star cluster shortly after the giant planets formed
- Centrally concentrated star formation in young clusters
- The Star Formation Factory revisited I. The impact of metallicity on collapsing star-forming clouds
- The first stars
- Shells and bubbles around compact clusters of massive stars: 3D MHD simulations
- Massive star clusters detected by JWST as natural birth places to form intermediate-mass black holes
- Right round: onset and long-term evolution of rotation in star clusters