SIEGE III: The formation of dense stellar clusters in sub-parsec resolution cosmological simulations with individual star feedback
arXiv:2411.02502 · doi:10.1051/0004-6361/202452876
Abstract
Star clusters stand at the crossroads between galaxies and single stars. Resolving the formation of star clusters in cosmological simulations represents an ambitious and challenging goal, since modelling their internal properties requires very high resolution. This paper is the third of a series within the SImulating the Environment where Globular clusters Emerged (SIEGE) project, where we conduct zoom-in cosmological simulations with sub-parsec resolution that include the feedback of individual stars, aimed to model the formation of star clusters in high-redshift proto-galaxies. We investigate the role of three fundamental quantities in shaping the intrinsic properties of star clusters, i. e., i) pre-supernova stellar feedback (continuous or instantaneous ejection of mass and energy through stellar winds); ii) star formation efficiency, defined as the fraction of gas converted into stars per freefall time, for which we test 2 different values (epsi_ff=0.1 and 1), and iii) stellar initial mass function (IMF, standard vs top-heavy). All our simulations are run down to z=10.5, which is sufficient for investigating some structural properties of the emerging clumps and clusters. [Abridged] The prescription for a continuous, low-intensity feedback, along with the adoption of epsi_ff=1, produces star clusters with maximum stellar density values up to 10^4 M_sun pc^(-2), in good agreement with the surface density-size relation observed in local young star clusters (YSCs). Therefore, a realistic stellar wind description and a high star formation effiency are the key ingredients that allow us to achieve realistic star clusters characterised by properties comparable to those of local YSCs. In contrast, the other models produce too diffuse clusters, in particular the one with a top-heavy IMF.
A&A, accepted. 20 pages, 14 figures
References in corpus (50)
- A comprehensive set of simulations studying the influence of gas expulsion on star cluster evolution
- Gas expulsion and the destruction of massive young clusters
- Evidence for the Strong Effect of Gas Removal on the Internal Dynamics of Young Stellar Clusters
- Fast and inefficient star formation due to short-lived molecular clouds and rapid feedback
- A census of the Wolf-Rayet content in Westerlund 1 from near-infrared imaging and spectroscopy
- Legacy ExtraGalactic UV Survey (LEGUS) with The Hubble Space Telescope. I. Survey Description
- On the interplay between star formation and feedback in galaxy formation simulations
- A scheme for radiation pressure and photon diffusion with the M1 closure in RAMSES-RT
- Paving the way for the JWST: witnessing globular cluster formation at z>3
- Observational Evidence of Dynamic Star Formation Rate in Milky Way Giant Molecular Clouds
- A Detailed Study of Feedback from a Massive Star
- The origin of the Milky Way globular clusters
- The GRIFFIN project -- Formation of star clusters with individual massive stars in a simulated dwarf galaxy starburst
- Gone With the Wind: Where is the Missing Stellar Wind Energy from Massive Star Clusters?
- Star Formation Relations in the Milky Way
- Numerical Simulations of Turbulent, Molecular Clouds Regulated by Radiation Feedback Forces I: Star Formation Rate and Efficiency
- Feedback in Clouds II: UV Photoionisation and the first supernova in a massive cloud
- Snap, Crackle, Pop: sub-grid supernova feedback in AMR simulations of disk galaxies
- Radii of Young Star Clusters in Nearby Galaxies
- Highly efficient star formation in NGC 5253 possibly from stream-fed accretion
- The Sparkler: Evolved High-Redshift Globular Clusters Captured by JWST
- Electron Excitation of High Dipole Moment Molecules Reexamined
- Nitrogen-enriched, highly-pressurized nebular clouds surrounding a super star cluster at cosmic noon
- A simple method to convert sink particles into stars
- Impact of a star formation efficiency profile on the evolution of open clusters
- Dynamical Evolution of Multiple-Population Globular Clusters
- Dense CO in Mrk 71-A: Superwind Suppressed in a Young Super Star Cluster
- How runaway stars boost galactic outflows
- On the Observed Diversity of Star Formation Efficiencies in Giant Molecular Clouds
- On the time variability of the star formation efficiency
- Code Comparison in Galaxy Scale Simulations with Resolved Supernova Feedback: Lagrangian vs. Eulerian Methods
- Pre-supernova feedback sets the star cluster mass function to a power law and reduces the cluster formation efficiency
- RIGEL: Simulating dwarf galaxies at solar mass resolution with radiative transfer and feedback from individual massive stars
- Massive star cluster formation I. High star formation efficiency while resolving feedback of individual stars
- Formation of star clusters and enrichment by massive stars in simulations of low-metallicity galaxies with a fully sampled initial stellar mass function
- Molecular gas cloud properties at revealed by the superb angular resolution achieved with ALMA and gravitational lensing
- Structures of Local Galaxies Compared to High Redshift Star-forming Galaxies
- Anatomy of a z=6 Lyman-α emitter down to parsec scales: extreme UV slopes, metal-poor regions and possibly leaking star clusters
- Monte Carlo simulations of multiple populations in globular clusters: constraints on the cooling flow vs. accretion scenario using million bodies simulations
- Star Cluster Formation and Survival in the First Galaxies
- When efficient star formation drives cluster formation
- On the role of Type Ia supernovae in the second generation star formation in globular clusters
- Extreme Variation in Star Formation Efficiency Across a Compact, Starbursting Disk Galaxy
- Second generation star formation in globular clusters of different masses
- Multiple stellar population mass loss in massive Galactic globular clusters
- Hierarchical star formation in nearby galaxies
- Testing Feedback from Star Clusters in Simulations of the Milky Way Formation
- Mechanical feedback from stellar winds with an application to galaxy formation at high redshift
- SIEGE IV: compact star clusters in cosmological simulations with high star formation efficiency and sub-parsec resolution
- Initial sizes of star clusters: implications for cluster dissolution during galaxy evolution
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- JWST spectroscopic confirmation of the Cosmic Gems arc at z=9.625 -- Insights into the small scale structure of a post-burst system
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- The z = 9.625 Cosmic Gems Galaxy was a "Compact Blue Monster" Propelled by Massive Star Clusters
- MOCCA: Effects of pristine gas accretion and cluster migration on globular cluster evolution, global parameters, and multiple stellar populations
- Great Balls of FIRE IV. The contribution of massive star clusters to the astrophysical population of merging binary black holes
- The dynamical evolution of the stellar clumps in the Sparkler galaxy
- Massive Star Clusters in the Semi-Analytical Galaxy Formation Model L-Galaxies 2020
- Massive star clusters detected by JWST as natural birth places to form intermediate-mass black holes
- Imladris: a detailed and flexible model for galaxy simulations with individual stars