What can simulated molecular clouds tell us about real molecular clouds?
arXiv:1603.02470 · doi:10.1093/mnras/stw469
Abstract
We study the properties of giant molecular clouds (GMCs) from a smoothed particle hydrodynamics simulation of a portion of a spiral galaxy, modelled at high resolution, with robust representations of the physics of the interstellar medium. We examine the global molecular gas content of clouds, and investigate the effect of using CO or H2 densities to define the GMCs. We find that CO can reliably trace the high-density H2 gas, but misses less dense H2 clouds. We also investigate the effect of using 3D CO densities versus CO emission with an observer's perspective, and find that CO-emission clouds trace well the peaks of the actual GMCs in 3D, but can miss the lower density molecular gas between density peaks which is often CO-dark. Thus, the CO emission typically traces smaller clouds within larger GMC complexes. We also investigate the effect of the galactic environment (in particular the presence of spiral arms), on the distribution of GMC properties, and we find that the mean properties are similar between arm and inter-arm clouds, but the tails of some distributions are indicative of intrinsic differences in the environment. We find highly filamentary clouds (similar to the giant molecular filaments of our Galaxy) exclusively in the inter-arm region, formed by galactic shear. We also find that the most massive GMC complexes are located in the arm, and that as a consequence of more frequent cloud interactions/mergers in the arm, arm clouds are more sub-structured and have higher velocity dispersions than inter-arm clouds.
19 pages, 16 figures, MNRAS
References in corpus (22)
- Trigonometric Parallaxes of Massive Star Forming Regions: VI. Galactic Structure, Fundamental Parameters and Non-Circular Motions
- SPLASH: An interactive visualisation tool for Smoothed Particle Hydrodynamics simulations
- Structural Analysis of Molecular Clouds: Dendrograms
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- ALMA Reveals the Molecular Medium Fueling the Nearest Nuclear Starburst
- CO-dark gas and molecular filaments in Milky Way type galaxies
- Dynamically Driven Evolution of the Interstellar Medium in M51
- Large-scale filaments associated with Milky Way spiral arms
- The Bones of the Milky Way
- FellWalker - a Clump Identification Algorithm
- GMC formation by agglomeration and self gravity
- The frequency and nature of `cloud-cloud collisions' in galaxies
- Spurs and feathering in spiral galaxies
- 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
- The morphology of the Milky Way - I. Reconstructing CO maps from simulations in fixed potentials
- Tracing the Conversion of Gas into Stars in Young Massive Cluster Progenitors
- The Interstellar Medium and star formation on kpc size scales
- The Onset of Massive Star Formation: The Evolution of Temperature and Density Structure in an Infrared Dark Cloud
- Synthetic CO, H2 and HI surveys of the Galactic 2nd Quadrant, and the properties of molecular gas
- A Synthetic 21-cm Galactic Plane Survey of an SPH Galaxy Simulation
- Connecting the Dots: Analyzing Synthetic Observations of Star-Forming Clumps in Molecular Clouds
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- The Cloud Factory I: Generating resolved filamentary molecular clouds from galactic-scale forces
- The Physical Properties of Large-Scale Galactic Filaments
- On the Three-Dimensional Structure of Local Molecular Clouds
- The Hi-GAL catalogue of dusty filamentary structures in the Galactic Plane
- A Census of Large-Scale ( 10 pc), Velocity-Coherent, Dense Filaments in the Northern Galactic Plane: Automated Identification Using Minimum Spanning Tree
- The integrated properties of the molecular clouds from the JCMT CO(3-2) High Resolution Survey
- The Varying Mass Distribution of Molecular Clouds Across M83
- The CARMA-NRO Orion Survey: The filamentary structure as seen in CO emission
- The SEDIGISM survey: Molecular clouds in the inner Galaxy
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- CHIMPS: Physical properties of molecular clumps across the inner Galaxy
- Massive 70 micron quiet clumps II: non-thermal motions driven by gravity in massive star formation?
- Physical properties and scaling relations of molecular clouds: the effect of stellar feedback
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- The evolution of Giant Molecular Filaments
- Magnetized interstellar molecular clouds: II. The Large-Scale Structure and Dynamics of Filamentary Molecular Clouds
- Simulations of the flocculent spiral M33: what drives the spiral structure?
- Eventful Evolution of Giant Molecular Clouds in Dynamically Evolving Spiral Arms
- Synthetic observations of star formation and the interstellar medium
- Synthetic [CII] emission maps of a simulated molecular cloud in formation
- Multi-scale dynamics in star-forming regions: the interplay between gravity and turbulence
- Regularly Spaced Infrared Peaks in the Dusty Spirals of Messier 100
- Simulations of the star-forming molecular gas in an interacting M51-like galaxy: cloud population statistics
- Recovering interstellar gas properties with HI spectral lines: A comparison between synthetic spectra and 21-SPONGE
- How do different spiral arm models impact the ISM and GMC population?
- The role of collision speed, cloud density, and turbulence in the formation of young massive clusters via cloud-cloud collisions
- All-sky census of Galactic high-latitude molecular intermediate-velocity clouds
- Photoionising feedback in spiral arm molecular clouds
- The SEDIGISM survey: The influence of spiral arms on the molecular gas distribution of the inner Milky Way
- Comparing the Properties of GMCs in M33 from Simulations and Observations
- Chemical evolution of giant molecular clouds in simulations of galaxies
- OGHReS: Large-scale filaments in the outer Galaxy
- Synthetic Large-Scale Galactic Filaments -- on their Formation, Physical Properties, and Resemblance to Observations
- Atomic and molecular gas properties during cloud formation
- Large-scale Velocity-coherent Filaments in the SEDIGISM Survey: Association with Spiral Arms and Fraction of Dense Gas
- The changing GMC population in galaxy interactions
- Classifying and modelling spiral structures in hydrodynamic simulations of astrophysical discs
- The "Maggie" filament: Physical properties of a giant atomic cloud
- Modeling of Spiral Structure in a Multi-Component Milky~Way-Like Galaxy
- Dependence of Molecular Cloud Samples on Angular Resolution, Sensitivity, and Algorithms
- The complete census of molecular hydrogen in a simulated disc galaxy
- Synthetic line and continuum observations of simulated turbulent clouds: the apparent widths of filaments
- The discovery of the largest gas filament in our Galaxy, or a new spiral arm?
- Do simulated molecular clouds look like real ones?
- The SEDIGISM survey: Molecular cloud morphology. II. Integrated source properties
- Effects of stellar feedback on cores in STARFORGE
- A Herschel study of G214.5-1.8: a young, cold and quiescent giant molecular filament on the shell of a HI superbubble
- The Cassiopeia Filament: A Blown Spur of the Local Arm
- Reconciling extragalactic star formation efficiencies with theory: insights from PHANGS
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- Autonomous Gaussian decomposition of the Galactic Ring Survey. II. The Galactic distribution of 13CO
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- Star Cluster Formation in Clouds with Externally Driven Turbulence
- Cloud populations versus galactic environment in NGC4689, NGC628, NGC1566, and NGC4321
- High resolution observations of 12CO and 13CO(3--2) toward the NGC 6334 extended filament
- Molecular cloud matching in CO and dust in M33 II. Physical properties of giant molecular clouds
- Spatial offsets between interstellar bone-like filaments, radio masers, and cold diffuse CO gas, in the Scutum spiral arm
- Why most molecular clouds are gravitationally dominated