The Star Formation Factory revisited I. The impact of metallicity on collapsing star-forming clouds
arXiv:2604.00126 · doi:10.1051/0004-6361/202558083
Abstract
Context. Stellar feedback regulates star formation and shapes the interstellar medium, yet its role during the collapse of molecular clouds remains uncertain over a wide range of initial conditions. Aims. We explore how stellar winds and supernovae influence star formation in collapsing gas clouds that span a broad parameter space in mass, size, and metallicity. Methods. Using a one-dimensional numerical model, we follow the evolution of feedback-driven bubbles produced by embedded clusters, incorporating time-dependent energy and mass injection, self-gravity, integrated cloud collapse, radiative cooling, shell instabilities, and triggered star formation. Our treatment of gas cooling in the hot bubble explicitly accounts for heat transfer across the bubble-shell interface. Results. We find that metallicity acts as a key regulator of feedback, comparable in importance to cloud mass and radius. In low-metallicity clouds, reduced radiative cooling is offset by weaker stellar winds, leading to prolonged star formation and higher efficiencies. Across a substantial portion of parameter space, the expanding shell undergoes a stalling phase that further enhances the star formation efficiency, an outcome that is not observed at higher metallicities. Conclusions. Our results suggest that the diverse properties of star clusters across cosmic time may arise from the metallicity-dependent interplay between stellar feedback and gas cooling.
Accepted for publication in A&A
References in corpus (66)
- Array Programming with NumPy
- Cold streams in early massive hot haloes as the main mode of galaxy formation
- Slow Star Formation in Dense Gas: Evidence and Implications
- The Evolution of the Star-forming Interstellar Medium across Cosmic Time
- The lifecycle of molecular clouds in nearby star-forming disc galaxies
- Efficient Formation of Massive Galaxies at Cosmic Dawn by Feedback-Free Starbursts
- Fast and inefficient star formation due to short-lived molecular clouds and rapid feedback
- STARFORGE: Toward a comprehensive numerical model of star cluster formation and feedback
- On the nature of massive helium star winds and Wolf-Rayet-type mass loss
- Observational Evidence of Dynamic Star Formation Rate in Milky Way Giant Molecular Clouds
- The dynamics and outcome of star formation with jets, radiation, winds, and supernovae in concert
- Cloud Scale ISM Structure and Star Formation in M51
- The molecular cloud lifecycle
- ALMA Observations of the Antennae Galaxies: I. A New Window on a Prototypical Merger
- Pressure-Regulated, Feedback-Modulated Star Formation In Disk Galaxies
- Star Formation Relations in the Milky Way
- Star Formation Laws and Efficiencies across 80 Nearby Galaxies
- The Spatial Relation between Young Star Clusters and Molecular Clouds in M 51 with LEGUS
- Efficiently Cooled Stellar Wind Bubbles in Turbulent Clouds II. Validation of Theory with Hydrodynamic Simulations
- Feedback-Free Starbursts at Cosmic Dawn: Observable Predictions for JWST
- Highly efficient star formation in NGC 5253 possibly from stream-fed accretion
- The formation of low metallicity globular clusters in dwarf galaxy mergers
- An extremely metal poor star complex in the reionization era: Approaching Population III stars with JWST
- H Morphologies of Star Clusters: A LEGUS study of HII region evolution timescales and stochasticity in low mass clusters
- Radiation hydrodynamics simulations of massive star cluster formation in giant molecular clouds
- The Formation of Stellar Clusters in Magnetized, Filamentary Infrared Dark Clouds
- Bonn Optimized Stellar Tracks (BoOST). Simulated Populations of Massive and Very Massive Stars for Astrophysical Applications
- A Framework for Multiphase Galactic Wind Launching using TIGRESS
- Nitrogen-enriched, highly-pressurized nebular clouds surrounding a super star cluster at cosmic noon
- Cloud Structure of Galactic OB Cluster Forming Regions from Combining Ground and Space Based Bolometric Observations
- The Single-Cloud Star Formation Relation
- Outflows Driven by Direct and Reprocessed Radiation Pressure in Massive Star Clusters
- Gas expulsion vs gas retention: what process dominates in young massive clusters?
- Super Hot Cores in NGC 253: Witnessing the formation and early evolution of Super Star Clusters
- The formation of secondary stellar generations in massive young star clusters from rapidly cooling shocked stellar winds
- Super Star Clusters in the Central Starburst of NGC 4945
- A systematic study of the escape of LyC and Ly photons from star-forming, magnetized turbulent clouds
- How fast do young star clusters expel their natal gas?: Estimating the upper limit of the gas expulsion time-scale
- Slow Star Formation in the Milky Way: Theory Meets Observations
- Density profile evolution during prestellar core collapse: Collapse starts at the large scale
- Simulations predict intermediate-mass black hole formation in globular clusters
- Forming clusters within clusters: How 30 Doradus recollapsed and gave birth again
- Spatial Decorrelation of Young Stars and Dense Gas as a Probe of the Star Formation-Feedback Cycle in Galaxies
- RIGEL: Simulating dwarf galaxies at solar mass resolution with radiative transfer and feedback from individual massive stars
- Pre-supernova feedback sets the star cluster mass function to a power law and reduces the cluster formation efficiency
- New mass-loss rates of B supergiants from global wind models
- Low-metallicity star formation: Relative impact of metals and magnetic fields
- Massive star cluster formation I. High star formation efficiency while resolving feedback of individual stars
- New Insights into the Physical Conditions and Internal Structure of a Candidate Proto-Globular Cluster
- On the impact of radiation pressure on the dynamics and inner structure of dusty wind-driven shells
- Density modulated star formation efficiency: implications for the observed abundance of ultra-violet luminous galaxies at z>10
- Infrared Radiation Feedback Does Not Regulate Star Cluster Formation
- PHANGS: Constraining Star Formation Timescales Using the Spatial Correlations of Star Clusters and Giant Molecular Clouds
- Star clusters forming in a low metallicity starburst -- rapid self-enrichment by (very) massive stars
- The physical properties of Cluster Chains
- On the Onset of Secondary Stellar Generations in Giant Star Forming Regions and Massive Star Clusters
- Connecting stellar and galactic scales: Energetic feedback from stellar wind bubbles to supernova remnants
- SNe and their impact during the early evolution of Type I Globular Clusters
- On the universality of star formation efficiency in galaxies
- Simulations of pre-supernova feedback in spherical clouds
- Duration and properties of the embedded phase of star formation in 37 nearby galaxies from PHANGS-JWST
- Globular Cluster formation in a collapsing supershell
- Gravity or turbulence? VII. The Schmidt-Kennicutt law, the star formation efficiency, and the mass density of clusters from gravitational collapse rather than turbulent support
- On the formation of globular clusters: comparison with observations
- The evolution of velocity dispersion in the Sco-Cen OB association
- RIGEL: Feedback-regulated cloud-scale star formation efficiency in a simulated dwarf galaxy merger