The Effect of Projection on Derived Mass-Size and Linewidth-Size Relationships
arXiv:1001.4549 · doi:10.1088/0004-637X/712/2/1049
Abstract
Power law mass-size and linewidth-size correlations, two of "Larson's laws," are often studied to assess the dynamical state of clumps within molecular clouds. Using the result of a hydrodynamic simulation of a molecular cloud, we investigate how geometric projection may affect the derived Larson relationships. We find that large scale structures in the column density map have similar masses and sizes to those in the 3D simulation (PPP). Smaller scale clumps in the column density map are measured to be more massive than the PPP clumps, due to the projection of all emitting gas along lines of sight. Further, due to projection effects, structures in a synthetic spectral observation (PPV) may not necessarily correlate with physical structures in the simulation. In considering the turbulent velocities only, the linewidth-size relationship in the PPV cube is appreciably different from that measured from the simulation. Including thermal pressure in the simulated linewidths imposes a minimum linewidth, which results in a better agreement in the slopes of the linewidth-size relationships, though there are still discrepancies in the offsets, as well as considerable scatter. Employing commonly used assumptions in a virial analysis, we find similarities in the computed virial parameters of the structures in the PPV and PPP cubes. However, due to the discrepancies in the linewidth- and mass- size relationships in the PPP and PPV cubes, we caution that applying a virial analysis to observed clouds may be misleading due to geometric projection effects. We speculate that consideration of physical processes beyond kinetic and gravitational pressure would be required for accurately assessing whether complex clouds, such as those with highly filamentary structure, are bound.
25 pages, including 7 Figures; Accepted for publication in ApJ
References in corpus (3)
Cited by in corpus (61)
- Modeling CO Emission: I. CO as a Column Density Tracer and the X-Factor in Molecular Clouds
- A Uniform Catalog of Molecular Clouds in the Milky Way
- Why are most molecular clouds not gravitationally bound?
- Modeling CO Emission: II. The Physical Characteristics that Determine the X factor in Galactic Molecular Clouds
- The Mass-Size Relation from Clouds to Cores. II. Solar Neighborhood Clouds
- The linewidth-size relationship in the dense ISM of the Central Molecular Zone
- Maximally Star-Forming Galactic Disks II. Vertically-Resolved Hydrodynamic Simulations of Starburst Regulation
- Quantifying Observational Projection Effects Using Molecular Cloud Simulations
- Graph-based interpretation of the Molecular Interstellar Medium Segmentation
- A Model for the Onset of Self-gravitation and Star Formation in Molecular Gas Governed by Galactic Forces: I. Cloud-scale Gas Motions
- A supersonic turbulence origin of Larson's laws
- The Mass-Size Relation from Clouds to Cores. I. A new Probe of Structure in Molecular Clouds
- Gravitational contraction versus Supernova driving and the origin of the velocity dispersion-size relation in molecular clouds
- Importance of the Initial Conditions for Star Formation - III: Statistical Properties of Embedded Protostellar Clusters
- Accuracy of core mass estimates in simulated observations of dust emission
- The Angular Momentum of Magnetized Molecular Cloud Cores: A 2D-3D Comparison
- What can simulated molecular clouds tell us about real molecular clouds?
- Line Profiles of Cores within Clusters: I. The Anatomy of a Filament
- Mass and Magnetic distributions in Self Gravitating Super Alfvenic Turbulence with AMR
- The fractal dimension of star-forming regions at different spatial scales in M33
- Observational constraints on star cluster formation theory - I. The mass-radius relation
- Interpreting the sub-linear Kennicutt-Schmidt relationship: The case for diffuse molecular gas
- Giant molecular clouds in the non-grand design spiral galaxy NGC 6946
- Synthetic observations of star formation and the interstellar medium
- Sub-parsec resolution cosmological simulations of star-forming clumps at high redshift with feedback of individual stars
- The Lesser Role of Shear in Star Formation: Insight from the Galactic Ring Survey
- Relations Between Molecular Cloud Structure Sizes and Line Widths in the Large Magellanic Cloud
- ALMA Observations of a Quiescent Molecular Cloud in the Large Magellanic Cloud
- The Effects of Radiative Transfer on the PDFs of Molecular MHD Turbulence
- APEX/SABOCA observations of small-scale structure of infrared-dark clouds I. Early evolutionary stages of star-forming cores
- How galactic environment regulates star formation
- What is the physics behind the Larson mass-size relation?
- Stellar and substellar initial mass function: a model that implements gravoturbulent fragmentation and accretion
- Hydrodynamic simulations of an isolated star-forming gas cloud in the Virgo cluster
- The highly variable time evolution of star-forming cores identified with dendrograms
- The turbulent gas structure in the centers of NGC253 and the Milky Way
- The JCMT Gould Belt Survey: SCUBA-2 Data-Reduction Methods and Gaussian Source Recovery Analysis
- Variation in GMC Association Properties Across Bars, Spiral Arms, Inter-Arms, and Circumnuclear Region of M100 (NGC 4321) Extracted from ALMA Observations
- SIEGE III: The formation of dense stellar clusters in sub-parsec resolution cosmological simulations with individual star feedback
- Probing the clumping structure of Giant Molecular Clouds through the spectrum, polarisation and morphology of X-ray Reflection Nebulae
- A Parsec-Scale Catalog of Molecular Clouds in the Solar Neighborhood Based on 3D Dust Mapping: Implications for the Mass-Size Relation
- WISDOM Project -- XV. Giant Molecular Clouds in the Central Region of the Barred Spiral Galaxy NGC 5806
- Principal Component Analysis of Molecular Clouds: Can CO reveal the dynamics?
- G-virial: Gravity-based structure analysis of molecular clouds
- Mass-density relationship in molecular cloud clumps
- Spatially associated clump populations in Rosette from CO and dust maps
- Connecting the Dots: Analyzing Synthetic Observations of Star-Forming Clumps in Molecular Clouds
- Effects of Galactic Disc Inclination and Resolution on Observed GMC Properties and Larson's Scaling Relations
- Dependence of Molecular Cloud Samples on Angular Resolution, Sensitivity, and Algorithms
- Clump mass function at an early stage of molecular cloud evolution: I. A statistical approach
- Modelling the structure of molecular clouds: I. A multi-scale energy equipartition
- Clump mass function at an early stage of molecular cloud evolution: II. Galactic cloud complexes
- Connecting the Cosmic Star Formation Rate with the Local Star Formation
- Tracing the general structure of Galactic molecular clouds using Planck data: I. The Perseus region as a test case
- Cloud properties across spatial scales in simulations of the interstellar medium
- The Solar System's passage through the Radcliffe wave during the middle Miocene
- Dynamical Properties of Molecular-forming Gas Clumps in Galaxies at the Epoch of Reionization
- Planck Galactic Cold Clumps in Two Regions: the First Quadrant and the Anti-Center Direction Region
- The Hierarchical Dynamical State of Molecular Gas from 3 to 300 pc in NGC 253
- Galactic cold cores II. Herschel study of the extended dust emission around the first Planck detections
- Molecular Clouds at the Edge of the Galaxy II. Physical properties and scaling relations