Giant Molecular Cloud Formation in Disk Galaxies: Characterizing Simulated versus Observed Cloud Catalogues
arXiv:1308.0339 · doi:10.1088/0004-637X/776/1/23
Abstract
We present the results of a study of simulated Giant Molecular Clouds (GMCs) formed in a Milky Way-type galactic disk with a flat rotation curve. This simulation, which does not include star formation or feedback, produces clouds with masses ranging between 10^4 Msun and 10^7 Msun. We compare our simulated cloud population to two observational surveys; The Boston University- Five College Radio Astronomy Observatory Galactic Ring Survey and the BIMA All-Disk Survey of M33. An analysis of the global cloud properties as well as a comparison of Larson's scaling relations is carried out. We find that simulated cloud properties agree well with the observed cloud properties, with the closest agreement occurring between the clouds at comparable resolution in M33. Our clouds are highly filamentary - a property that derives both from their formation due to gravitational instability in the sheared galactic environment, as well as to cloud- cloud gravitational encounters. We also find that the rate at which potentially star forming gas accumulates within dense regions - wherein n_{thresh} > 10^4 cm^{-3} - is 3% per 10 Myr, in clouds of roughly 10^6 Msun. This suggests that star formation rates in observed clouds are related to the rates at which gas can be accumulated into dense subregions within GMCs via filamentary flows. The most internally well-resolved clouds are chosen for listing in a catalogue of simulated GMCs; the first of its kind. The catalogued clouds are available as an extracted data set from the global simulation.
13 pages, 11 figures, 1 table; Accepted for publication in ApJ
References in corpus (13)
- Theory of Star Formation
- Slow Star Formation in Dense Gas: Evidence and Implications
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- The Density Probability Distribution in Compressible Isothermal Turbulence: Solenoidal versus Compressive Forcing
- A new Jeans resolution criterion for (M)HD simulations of self-gravitating gas: Application to magnetic field amplification by gravity-driven turbulence
- Star Formation in Disk Galaxies. I. Formation and Evolution of Giant Molecular Clouds via Gravitational Instability and Cloud Collisions
- Cooling, Gravity and Geometry: Flow-driven Massive Core Formation
- GMC formation by agglomeration and self gravity
- Large scale galactic turbulence: can self-gravity drive the observed HI velocity dispersions?
- Giant Molecular Clouds in M31: I - Molecular Cloud Properties
- Molecular clouds and clumps in the Boston University-Five College Radio Astronomy Observatory Galactic Ring Survey
- Connection between dense gas mass fraction, turbulence driving, and star formation efficiency of molecular clouds
- Introducing Enzo, an AMR Cosmology Application
Cited by in corpus (24)
- Gasoline2: A Modern SPH Code
- Giant Molecular Cloud Catalogues for PHANGS-ALMA: Methods and Initial Results
- Magnetic field amplification in turbulent astrophysical plasmas
- Isolating signatures of major cloud-cloud collisions using position-velocity diagrams
- Molecular Cloud Populations in the Context of Their Host Galaxy Environments: A Multiwavelength Perspective
- Do Giant Molecular Clouds Care About the Galactic Structure?
- Formation of Massive, Dense Cores by Cloud-Cloud Collisions
- Star Clusters in Evolving Galaxies
- The role of galactic dynamics in shaping the physical properties of giant molecular clouds in Milky Way-like galaxies
- Stellar Granulation as the Source of High-Frequency Flicker in Kepler Light Curves
- The anatomy of a star-forming galaxy: Pressure-driven regulation of star formation in simulated galaxies
- On the effective turbulence driving mode of molecular clouds formed in disc galaxies
- Spatial Decorrelation of Young Stars and Dense Gas as a Probe of the Star Formation-Feedback Cycle in Galaxies
- Regularly Spaced Infrared Peaks in the Dusty Spirals of Messier 100
- Star Formation in Disk Galaxies. III. Does stellar feedback result in cloud death?
- GMCs scaling relations: role of the cloud definition
- Bird's eye view of molecular clouds in the Milky Way: I. Column density and star formation from sub-pc to kpc scales
- Large-eddy simulations of isolated disc galaxies with thermal and turbulent feedback
- The link between solenoidal turbulence and slow star formation in G0.253+0.016
- GMC Evolution in a Barred Spiral Galaxy with Star Formation and Thermal Feedback
- The Anatomy of a Star-Forming Galaxy II: the role of FUV heating via dust
- Numerical dependencies of the galactic dynamo in isolated galaxies with SPH
- AMOEBA: Automated Molecular Excitation Bayesian Line-Fitting Algorithm
- Cloud angular momentum and effective viscosity in global SPH simulations with feedback