Comparing Young Massive Clusters and their Progenitor Clouds in the Milky Way
arXiv:1602.02762 · doi:10.1093/mnras/stw313
Abstract
Young massive clusters (YMCs) have central stellar mass surface densities exceeding . It is currently unknown whether the stars formed at such high (proto)stellar densities. We compile a sample of gas clouds in the Galaxy which have sufficient gas mass within a radius of a few parsecs to form a YMC, and compare their radial gas mass distributions to the stellar mass distribution of Galactic YMCs. We find that the gas in the progenitor clouds is distributed differently than the stars in YMCs. The mass surface density profiles of the gas clouds are generally shallower than the stellar mass surface density profiles of the YMCs, which are characterised by prominent dense core regions with radii ~ 0.1 pc, followed by a power-law tail. On the scale of YMC core radii, we find that there are no known clouds with significantly more mass in their central regions when compared to Galactic YMCs. Additionally, we find that models in which stars form from very dense initial conditions require surface densities that are generally higher than those seen in the known candidate YMC progenitor clouds. Our results show that the quiescent, less evolved clouds contain less mass in their central regions than in the highly star-forming clouds. This suggests an evolutionary trend in which clouds continue to accumulate mass towards their centres after the onset of star formation. We conclude that a conveyor-belt scenario for YMC formation is consistent with the current sample of Galactic YMCs and their progenitor clouds.
11 pages, 4 figures, 4 tables. Accepted for publication in MNRAS
References in corpus (20)
- Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
- MAMBO Mapping of Spitzer c2d Small Clouds and Cores
- A comprehensive set of simulations studying the influence of gas expulsion on star cluster evolution
- The SCUBA Legacy Catalogue: Continuum Objects Detected by SCUBA
- Evidence for the Strong Effect of Gas Removal on the Internal Dynamics of Young Stellar Clusters
- The mass function of young star clusters in spiral galaxies
- A massive cluster of Red Supergiants at the base of the Scutum-Crux arm
- The Initial Mass Function of the Massive Star-forming Region NGC 3603 from Near-Infrared Adaptive Optics observations
- Variations in Stellar Clustering with Environment: Dispersed Star Formation and the Origin of Faint Fuzzies
- Intermediate to low-mass stellar content of Westerlund 1
- A cluster in the making: ALMA reveals the initial conditions for high-mass cluster formation
- Turbulence sets the initial conditions for star formation in high-pressure environments
- G0.253+0.016: A centrally condensed, high-mass protocluster
- The formation of NGC 3603 young starburst cluster: "prompt" hierarchical assembly or monolithic starburst?
- The dynamics and star-forming potential of the massive Galactic centre cloud G0.253+0.016
- Tracing the Conversion of Gas into Stars in Young Massive Cluster Progenitors
- A multi-wavelength view of the Galactic center dust ridge reveals little star formation
- A perfect starburst cluster made in one go: the NGC 3603 young cluster
- Is the Escape Velocity in Star Clusters Linked to Extended Star Formation Histories? Using NGC 7252: W3 as a Test Case
- The orbital motion of the Quintuplet cluster - a common origin for the Arches and Quintuplet clusters?
Cited by in corpus (39)
- Star Clusters Across Cosmic Time
- Concurrent formation of supermassive stars and globular clusters: implications for early self-enrichment
- Star formation rates and efficiencies in the Galactic Centre
- Star clusters near and far; tracing star formation across cosmic time
- The Dawes Review 8: Measuring the Stellar Initial Mass Function
- The Physics of Star Cluster Formation and Evolution
- Distributed star formation throughout the Galactic Center cloud Sgr B2
- An uncertainty principle for star formation - II. A new method for characterising the cloud-scale physics of star formation and feedback across cosmic history
- Not all stars form in clusters -- -DR2 uncovers the origin of OB associations
- How Galactic Environment affects the Dynamical State of Molecular Clouds and their Star Formation Efficiency
- The formation of low metallicity globular clusters in dwarf galaxy mergers
- Not all stars form in clusters - measuring the kinematics of OB associations with
- Thermal Feedback in the high-mass star and cluster forming region W51
- Which feedback mechanisms dominate in the high-pressure environment of the Central Molecular Zone?
- Toward gas exhaustion in the W51 high-mass protoclusters
- A universal route for the formation of massive star clusters in giant molecular clouds
- How do bound star clusters form?
- Formation of proto-cluster: a virialized structure from gravo-turbulent collapse I. Simulation of cluster formation in collapsing molecular cloud
- Star formation in a high-pressure environment: An SMA view of the Galactic centre dust ridge
- ALMA Observations of Massive Clouds in the Central Molecular Zone: Jeans Fragmentation and Cluster Formation
- Globular Cluster Formation at High Density: A model for Elemental Enrichment with Fast Recycling of Massive-Star Debris
- H2O Southern Galactic Plane Survey (HOPS): Paper III - Properties of Dense Molecular Gas across the Inner Milky Way
- When H II Regions are Complicated: Considering Perturbations from Winds, Radiation Pressure, and Other Effects
- Young massive star cluster formation in the Galactic Centre is driven by global gravitational collapse of high-mass molecular clouds
- Star formation in 'the Brick': ALMA reveals an active proto-cluster in the Galactic centre cloud G0.253+0.016
- ALMA Observations of Massive Clouds in the Central Molecular Zone: Ubiquitous Protostellar Outflows
- Two Thresholds for Globular Cluster Formation and their Dominance of Star Formation in the Early-Universe
- Young Stellar Objects in the Massive Star-Forming Regions W51 and W43
- The role of collision speed, cloud density, and turbulence in the formation of young massive clusters via cloud-cloud collisions
- CMZoom II: Catalog of Compact Submillimeter Dust Continuum Sources in the Milky Way's Central Molecular Zone
- Low Mass Stars as Tracers of Star and Cluster Formation
- A Centimeter-wave Study of Methanol and Ammonia Isotopologues in Sgr B2(N): Physical and chemical differentiation between two hot cores
- Star Cluster Formation from Turbulent Clumps. I. The Fast Formation Limit
- On the early evolution of massive star clusters: the case of cloud D1 and its embedded cluster in NGC 5253
- JWST reveals widespread CO ice and gas absorption in the Galactic Center cloud G0.253+0.016
- The initial conditions for young massive cluster formation in the Galactic Centre: convergence of large-scale gas flows
- Probing the Global Dust Properties and Cluster Formation Potential of the Giant Molecular Cloud G148.24+00.41
- G337.342-0.119 (the "Pebble"): A Cold, Dense, High-Mass Molecular Cloud with Unusually Large Linewidths and a Candidate High-Mass Star Cluster Progenitor
- Towards a multi-scale understanding of the gas-star formation cycle in the Central Molecular Zone