On the initial mass-radius relation of stellar clusters
arXiv:1912.05560 · doi:10.1093/mnras/stab2514
Abstract
Young stellar clusters across nearly five orders of magnitude in mass appear to follow a power-law mass-radius relationship (MRR), , with . We develop a simple analytic model for the cluster mass-radius relation. We consider a galaxy disc in hydrostatic equilibrium, which hosts a population of molecular clouds that fragment into clumps undergoing cluster formation and feedback-driven expansion. The model predicts a mass-radius relation of and a dependence on the kpc-scale gas surface density , which results from the formation of more compact clouds (and cluster-forming clumps within) at higher gas surface densities. This environmental dependence implies that the high-pressure environments in which the most massive clusters can form also induce the formation of clusters with the smallest radii, thereby shallowing the observed MRR at high-masses towards the observed . At low cluster masses, relaxation-driven expansion induces a similar shallowing of the MRR. We combine our predicted MRR with a simple population synthesis model and apply it to a variety of star-forming environments, finding good agreement. Our model predicts that the high-pressure formation environments of globular clusters at high redshift naturally led to the formation of clusters that are considerably more compact than those in the local Universe, thereby increasing their resilience to tidal shock-driven disruption and contributing to their survival until the present day.
Accepted to MNRAS. Revised model incorporates a new dependence on Toomre Q
References in corpus (45)
- The ACS Virgo Cluster Survey. XII. The Luminosity Function of Globular Clusters in Early Type Galaxies
- The lifecycle of molecular clouds in nearby star-forming disc galaxies
- The Dynamical Evolution of Stellar Black Holes in Globular Clusters
- Fast and inefficient star formation due to short-lived molecular clouds and rapid feedback
- ATLASGAL --- towards a complete sample of massive star forming clumps
- The mass function of young star clusters in spiral galaxies
- On the Star Formation Rate - Brightest Cluster Relation: Estimating the peak SFR in post-merger galaxies
- PHANGS-ALMA Data Processing and Pipeline
- Paving the way for the JWST: witnessing globular cluster formation at z>3
- The life cycle of star cluster in a tidal field
- Probing the role of the galactic environment in the formation of stellar clusters; using M83 as a test bench
- Gravitational fragmentation and the formation of brown dwarfs in stellar clusters
- Lifetimes of tidally limited star clusters with different radii
- PHANGS CO kinematics: disk orientations and rotation curves at 150 pc resolution
- Giant Molecular Cloud Catalogues for PHANGS-ALMA: Methods and Initial Results
- A Wide-field High Resolution HI Mosaic of Messier 31: I. Opaque Atomic Gas and Star Formation Rate Density
- Molecular Gas Properties on Cloud Scales Across the Local Star-forming Galaxy Population
- A complete 12CO 2-1 map of M51 with HERA: I. Radial averages of CO, HI, and radio continuum
- Star cluster formation in cosmological simulations. I. Properties of young clusters
- The E-MOSAICS project: tracing galaxy formation and assembly with the age-metallicity distribution of globular clusters
- Star clusters near and far; tracing star formation across cosmic time
- The molecular cloud lifecycle
- Modeling the Formation of Globular Cluster Systems in the Virgo Cluster
- Super Star Cluster Velocity Dispersions and Virial Masses in the M82 Nuclear Starburst
- On the mass-radius relation of hot stellar systems
- ACS imaging of star clusters in M51. I. Identification and radius distribution
- On the duration of the embedded phase of star formation
- Numerical Simulations of Turbulent, Molecular Clouds Regulated by Radiation Feedback Forces I: Star Formation Rate and Efficiency
- Disruption of giant molecular clouds and formation of bound star clusters under the influence of momentum stellar feedback
- A model for the formation of stellar associations and clusters from giant molecular clouds
- The formation of low metallicity globular clusters in dwarf galaxy mergers
- Star cluster formation in the most extreme environments: Insights from the HiPEEC survey
- PHAT Stellar Cluster Survey. II. Andromeda Project Cluster Catalog
- Formation histories of stars, clusters and globular clusters in the E-MOSAICS simulations
- Sizes and Shapes of Young Star Cluster Light Profiles in M83
- A prescription and fast code for the long-term evolution of star clusters - III. Unequal masses and stellar evolution
- HST/ACS imaging of M82: A comparison of mass and size distribution functions of the younger nuclear and older disk clusters
- Where did the globular clusters of the Milky Way form? Insights from the E-MOSAICS simulations
- A model for the minimum mass of bound stellar clusters and its dependence on the galactic environment
- The Effects of Protostellar Jet Feedback on Turbulent Collapse
- Formation of stellar clusters
- The Quintuplet Cluster: Extended Structure and Tidal Radius
- PHANGS-ALMA: Arcsecond CO(2-1) Imaging of Nearby Star-Forming Galaxies
- Pre-supernova feedback mechanisms drive the destruction of molecular clouds in nearby star-forming disc galaxies
- Accretion-driven core collapse and the collisional formation of massive stars
Cited by in corpus (14)
- The Physics of Star Cluster Formation and Evolution
- Radii of Young Star Clusters in Nearby Galaxies
- A model for the formation of stellar associations and clusters from giant molecular clouds
- Introducing EMP-Pathfinder: modelling the simultaneous formation and evolution of stellar clusters in their host galaxies
- Great Balls of FIRE I: The formation of star clusters across cosmic time in a Milky Way-mass galaxy
- Creation/destruction of ultra-wide binaries in tidal streams
- Rapid formation of a very massive star >50000 and subsequently an IMBH from runaway collisions. Direct N-body and Monte Carlo simulations of dense star clusters
- Spatial and Kinematic Clustering of Stars in the Galactic Disk
- An Unexplained Origin for the Unusual Globular Cluster System in the Ultra-diffuse Galaxy FCC 224
- Variation in the Stellar Mass Function Along Stellar Streams
- Initial sizes of star clusters: implications for cluster dissolution during galaxy evolution
- The Initial Properties of Young Star Clusters in M83
- On the formation of globular clusters: comparison with observations
- Massive Star Clusters in the Semi-Analytical Galaxy Formation Model L-Galaxies 2020