A Simple Perspective on the Mass-Area Relationship in Molecular Clouds
arXiv:1204.2557 · doi:10.1111/j.1365-2966.2012.21061.x
Abstract
Despite over 30 years of study, the mass-area relationship within and among clouds is still poorly understood both observationally and theoretically. Modern extinction datasets should have sufficient resolution and dynamic range to characterize this relationship for nearby molecular clouds, although recent papers using extinction data seem to yield different interpretations regarding the nature and universality of this aspect of cloud structure. In this paper we try to unify these various results and interpretations by accounting for the different ways cloud properties are measured and analyzed. We interpret the mass-area relationship in terms of the column density distribution function and its possible variation within and among clouds. We quantitatively characterize regional variations in the column density PDF. We show that structures both within and among clouds possess the same degree of "universality", in that their PDF means do not systematically scale with structure size. Because of this, mass scales linearly with area.
10 pages, 8 figures, MNRAS in press
References in corpus (5)
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- Bias-free Measurement of Giant Molecular Cloud Properties
- The Nature of the Dense Core Population in the Pipe Nebula: Thermal Cores Under Pressure
- NICEST, a near-infrared color excess method tailored for small-scale structures
- Deep Near-Infrared Survey of the Pipe Nebula II: Data, Methods, and Dust Extinction Maps
Cited by in corpus (29)
- Physical properties of molecular clouds for the entire Milky Way disk
- The linewidth-size relationship in the dense ISM of the Central Molecular Zone
- Molecular clouds have power-law probability distribution functions
- The Panchromatic Hubble Andromeda Treasury VIII: A Wide-Area, High-Resolution Map of Dust Extinction in M31
- An Alternative Accurate Tracer of Molecular Clouds: The "-Factor"
- The shapes of column density PDFs - The importance of the last closed contour
- From diffuse gas to dense molecular cloud cores
- Larson's scaling laws, and the gravitational instability of clumpy discs at high redshift
- On the structure of molecular clouds
- The Interstellar Medium and star formation on kpc size scales
- 2MASS wide field extinction maps: V. Corona Australis
- Gravity or turbulence? IV. Collapsing cores in out-of-virial disguise
- Characterizing gravitational instability in turbulent multi-component galactic discs
- Evolving Molecular Cloud Structure and the Column Density Probability Distribution Function
- The simulation of molecular clouds formation in the Milky Way
- Energy budget of forming clumps in numerical simulations of collapsing clouds
- The effect of ISM turbulence on the gravitational instability of galactic discs
- What is the physics behind the Larson mass-size relation?
- A Parsec-Scale Catalog of Molecular Clouds in the Solar Neighborhood Based on 3D Dust Mapping: Implications for the Mass-Size Relation
- Physics of Non-Universal Larson's Relation
- Modelling the structure of molecular clouds: I. A multi-scale energy equipartition
- Gravity or turbulence V: Star forming regions undergoing violent relaxation
- Cloud properties across spatial scales in simulations of the interstellar medium
- Tracing the general structure of Galactic molecular clouds using Planck data: I. The Perseus region as a test case
- Unbound Star-forming Molecular Clouds
- The Solar System's passage through the Radcliffe wave during the middle Miocene
- Revisiting The Mass-Size Relation Of Structures In Molecular Clouds
- The effect of viewing angle on the Kennicutt-Schmidt relation of the local molecular clouds
- Systematic Investigation of Dust and Gaseous CO in 12 Nearby Molecular Clouds