A unified model for the maximum mass-scales of molecular clouds, stellar clusters, and high-redshift clumps
arXiv:1704.00732 · doi:10.1093/mnras/stx790
Abstract
We present a simple, self-consistent model to predict the maximum masses of giant molecular clouds (GMCs), stellar clusters and high-redshift clumps as a function of the galactic environment. Recent works have proposed that these maximum masses are set by shearing motions and centrifugal forces, but we show that this idea is inconsistent with the low masses observed across an important range of local-Universe environments, such as low-surface density galaxies and galaxy outskirts. Instead, we propose that feedback from young stars can disrupt clouds before the global collapse of the shear-limited area is completed. We develop a shear-feedback hybrid model that depends on three observable quantities: the gas surface density, the epicylic frequency, and the Toomre parameter. The model is tested in four galactic environments: the Milky Way, the Local Group galaxy M31, the spiral galaxy M83, and the high-redshift galaxy zC406690. We demonstrate that our model simultaneously reproduces the observed maximum masses of GMCs, clumps and clusters in each of these environments. We find that clouds and clusters in M31 and in the Milky Way are feedback-limited beyond radii of 8.4 and 4 kpc, respectively, whereas the masses in M83 and zC406690 are shear-limited at all radii. In zC406690, the maximum cluster masses decrease further due to their inspiral by dynamical friction. These results illustrate that the maximum masses change from being shear-limited to being feedback-limited as galaxies become less gas-rich and evolve towards low shear. This explains why high-redshift clumps are more massive than GMCs in the Local Universe.
17 pages, 12 figures; accepted by MNRAS (March 27, 2017)
References in corpus (22)
- Formation of Massive Galaxies at High Redshift: Cold Streams, Clumpy Disks and Compact Spheroids
- Physical properties of molecular clouds for the entire Milky Way disk
- The ACS Virgo Cluster Survey. XII. The Luminosity Function of Globular Clusters in Early Type Galaxies
- The dynamical evolution of molecular clouds near the Galactic Centre - I. Orbital structure and evolutionary timeline
- 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
- The Galaxy and its stellar halo: insights on their formation from a hybrid cosmological approach
- Probing the role of the galactic environment in the formation of stellar clusters; using M83 as a test bench
- A Wide-field High Resolution HI Mosaic of Messier 31: I. Opaque Atomic Gas and Star Formation Rate Density
- Star Clusters in M31: I. A Catalog and a Study of the Young Clusters
- The Panchromatic Hubble Andromeda Treasury XI: The Spatially-Resolved Recent Star Formation History of M31
- A Portrait of Cold Gas in Galaxies at 60pc Resolution and a Simple Method to Test Hypotheses That Link Small-Scale ISM Structure to Galaxy-Scale Processes
- DYNAMO-HST Survey: Clumps in Nearby Massive Turbulent Disks and the Effects of Clump Clustering on Kiloparsec Scale Measurements of Clumps
- Panchromatic Hubble Andromeda Treasury XVIII. The High-mass Truncation of the Star Cluster Mass Function
- The Size Evolution of Star-forming Galaxies Since z~7 Using ZFOURGE
- The Varying Mass Distribution of Molecular Clouds Across M83
- Seeding the Galactic Centre gas stream: gravitational instabilities set the initial conditions for the formation of protocluster clouds
- On the stellar masses of giant clumps in distant star-forming galaxies
- Tracing the Conversion of Gas into Stars in Young Massive Cluster Progenitors
- Physical Properties of Sub-galactic Clumps at 0.5 1.5 in the UVUDF
- Connecting Clump Sizes in Turbulent Disk Galaxies to Instability Theory
- Structure Formation in Gas-Rich Galactic Discs with Finite Thickness: From Discs to Rings
Cited by in corpus (80)
- Star Clusters Across Cosmic Time
- The formation and assembly history of the Milky Way revealed by its globular cluster population
- The E-MOSAICS Project: simulating the formation and co-evolution of galaxies and their star cluster populations
- Giant Molecular Cloud Catalogues for PHANGS-ALMA: Methods and Initial Results
- The E-MOSAICS project: tracing galaxy formation and assembly with the age-metallicity distribution of globular clusters
- Globular Cluster Formation and Evolution in the Context of Cosmological Galaxy Assembly: Open Questions
- Star clusters near and far; tracing star formation across cosmic time
- Stochastic modelling of star-formation histories II: star-formation variability from molecular clouds and gas inflow
- The molecular cloud lifecycle
- The GRIFFIN project -- Formation of star clusters with individual massive stars in a simulated dwarf galaxy starburst
- An uncertainty principle for star formation - II. A new method for characterising the cloud-scale physics of star formation and feedback across cosmic history
- A model for the formation of stellar associations and clusters from giant molecular clouds
- High-energy particles and radiation in star-forming regions
- A general theory for the lifetimes of giant molecular clouds under the influence of galactic dynamics
- Star cluster formation in the most extreme environments: Insights from the HiPEEC survey
- The integrated properties of the molecular clouds from the JCMT CO(3-2) High Resolution Survey
- Cold Filamentary Accretion and the Formation of Metal Poor Globular Clusters and Halo Stars
- Formation histories of stars, clusters and globular clusters in the E-MOSAICS simulations
- From diffuse gas to dense molecular cloud cores
- ELVES II: GCs and Nuclear Star Clusters of Dwarf Galaxies; The Importance of Environment
- The young star cluster population of M51 with LEGUS - II. Testing environmental dependencies
- NGC5846-UDG1: A galaxy formed mostly by star formation in massive, extremely dense clumps of gas
- Origins of scaling relations of globular cluster systems
- The Distance of the Dark Matter Deficient Galaxy NGC1052-DF2
- A universal route for the formation of massive star clusters in giant molecular clouds
- PHANGS-HST: Star Cluster Spectral Energy Distribution Fitting with CIGALE
- The EDGE-CALIFA survey: the influence of galactic rotation on the molecular depletion time across the Hubble sequence
- Prevalent externally-driven protoplanetary disc dispersal as a function of the galactic environment
- Introducing EMP-Pathfinder: modelling the simultaneous formation and evolution of stellar clusters in their host galaxies
- The role of galactic dynamics in shaping the physical properties of giant molecular clouds in Milky Way-like galaxies
- The difference in metallicity distribution functions of halo stars and globular clusters as a function of galaxy type: A tracer of globular cluster formation and evolution
- Fossil stellar streams and their globular cluster populations in the E-MOSAICS simulations
- The origin of the 'blue tilt' of globular cluster populations in the E-MOSAICS simulations
- The minimum metallicity of globular clusters and its physical origin -- implications for the galaxy mass-metallicity relation and observations of proto-globular clusters at high redshift
- Dynamical cluster disruption and its implications for multiple population models in the E-MOSAICS simulations
- Predicting accreted satellite galaxy masses and accretion redshifts based on globular cluster orbits in the E-MOSAICS simulations
- Great Balls of FIRE I: The formation of star clusters across cosmic time in a Milky Way-mass galaxy
- Young star cluster populations in the E-MOSAICS simulations
- The headlight cloud in NGC 628: An extreme giant molecular cloud in a typical galaxy disk
- Where did the globular clusters of the Milky Way form? Insights from the E-MOSAICS simulations
- Clearing the hurdle: The mass of globular cluster systems as a function of host galaxy mass
- A high cluster formation efficiency in the Sagittarius B2 complex
- The emergence of dark matter-deficient ultra-diffuse galaxies driven by scatter in the stellar mass-halo mass relation and feedback from globular clusters
- Globular clusters as tracers of the dark matter halo: insights from the E-MOSAICS simulations
- Two Thresholds for Globular Cluster Formation and their Dominance of Star Formation in the Early-Universe
- The [α/Fe]-[Fe/H] relation in the E-MOSAICS simulations: its connection to the birth place of globular clusters and the fraction of globular cluster field stars in the bulge
- Spiral-arm instability: giant clump formation via fragmentation of a galactic spiral arm
- Disentangling the formation mechanisms of nuclear star clusters
- Formation of Globular Cluster Systems II: Impact of the Cutoff of the Cluster Initial Mass Function
- The kinematics of globular cluster populations in the E-MOSAICS simulations and their implications for the assembly history of the Milky Way
- The mass fraction of halo stars contributed by the disruption of globular clusters in the E-MOSAICS simulations
- Constraining the formation of NGC1052-DF2 from its unusual globular cluster population
- Linking globular cluster formation at low and high redshift through the age-metallicity relation in E-MOSAICS
- A model for the minimum mass of bound stellar clusters and its dependence on the galactic environment
- The Panchromatic Hubble Andromeda Treasury: Triangulum Extended Region (PHATTER). III. The Mass Function of Young Star Clusters in M33
- A tight relation between the age distributions of stellar clusters and the properties of the interstellar medium in the host galaxy
- Deriving ages and horizontal branch properties of integrated stellar populations
- Empirically-motivated early feedback: momentum input by stellar feedback in galaxy simulations inferred through observations
- On the Origin of Multiple Populations During Massive Star Cluster Formation
- The evolution of the UV luminosity function of globular clusters in the E-MOSAICS simulations
- Is There a Fundamental Upper Limit to the Mass of a Star Cluster?
- The survival of globular clusters in a cuspy Fornax
- The Dependence of the Hierarchical Distribution of Star Clusters on Galactic Environment
- On the initial mass-radius relation of stellar clusters
- Structure and stability of high-redshift galaxies in cosmological simulations
- ALMA Resolves Giant Molecular Clouds in a Tidal Dwarf Galaxy
- Clumps as multiscale structures in cosmic noon galaxies
- Globular cluster metallicity distributions in the E-MOSAICS simulations
- On the link between nuclear star cluster and globular cluster system mass, nucleation fraction and environment
- A panchromatic view of star cluster formation in a simulated dwarf galaxy starburst
- The physics governing the upper truncation mass of the globular cluster mass function
- What to expect when using globular clusters as tracers of the total mass distribution in Milky Way-mass galaxies
- A Tale of Two Clump Masses: A New Way to Study Clump Formation in Simulations
- Initial sizes of star clusters: implications for cluster dissolution during galaxy evolution
- The formation and disruption of globular cluster populations in simulations of present-day galaxies with controlled assembly histories
- Fire and Ice in the Whirlpool: Spatially Resolved Scaling Relations between X-ray Emitting Hot Gas and Cold Molecular Gas in M51
- Mass Distribution of Binary Black Hole Mergers from Young and Old Dense Star Clusters
- The present-day globular cluster kinematics of lenticular galaxies from the E-MOSAICS simulations and their relation to the galaxy assembly histories
- Massive Star Clusters in the Semi-Analytical Galaxy Formation Model L-Galaxies 2020
- PHANGS-MUSE: the HII region luminosity function of local star-forming galaxies