On the Three-Dimensional Structure of Local Molecular Clouds
arXiv:2109.09765 · doi:10.3847/1538-4357/ac1f96
Abstract
We leverage the 1 pc spatial resolution of the Leike et al. 2020 3D dust map to characterize the three-dimensional structure of nearby molecular clouds ( pc). We start by "skeletonizing" the clouds in 3D volume density space to determine their "spines," which we project on the sky to constrain cloud distances with uncertainty. For each cloud, we determine an average radial volume density profile around its 3D spine and fit the profiles using Gaussian and Plummer functions. The radial volume density profiles are well-described by a two-component Gaussian function, consistent with clouds having broad, lower-density outer envelopes and narrow, higher-density inner layers. The ratio of the outer to inner envelope widths is . We hypothesize that these two components may be tracing a transition between atomic and diffuse molecular gas or between the unstable and cold neutral medium. Plummer-like models can also provide a good fit, with molecular clouds exhibiting shallow power-law wings with density, , falling off like at large radii. Using Bayesian model selection, we find that parameterizing the clouds' profiles using a single Gaussian is disfavored. We compare our results with 2D dust extinction maps, finding that the 3D dust recovers the total cloud mass from integrated approaches with fidelity, deviating only at higher levels of extinction ( mag). The 3D cloud structure described here will enable comparisons with synthetic clouds generated in simulations, offering unprecedented insight into the origins and fates of molecular clouds in the interstellar medium.
Published in ApJ. For data behind the figures see https://dataverse.harvard.edu/dataverse/3D_cloud_structure . For interactive gallery of local clouds see https://faun.rc.fas.harvard.edu/czucker/Paper_Figures/3D_Cloud_Topologies/gallery.html . Companion paper to Bialy et al. 2021 (arXiv:2109.09763). For press see https://www.cfa.harvard.edu/news/gigantic-cavity-space-sheds-new-light-how-stars-form
References in corpus (29)
- Array Programming with NumPy
- scikit-image: Image processing in Python
- Structural Analysis of Molecular Clouds: Dendrograms
- The Atomic to Molecular Transition in Galaxies. II: HI and H_2 Column Densities
- Gaia-2MASS 3D maps of Galactic interstellar dust within 3 kpc
- A Large Catalog of Accurate Distances to Local Molecular Clouds: The Gaia DR2 Edition
- A Compendium of Distances to Molecular Clouds in the Star Formation Handbook
- HI-to-H2 Transitions and H I Column Densities in Galaxy Star-Forming Regions
- The Atomic to Molecular Transition in Galaxies. I: An Analytic Approximation for Photodissociation Fronts in Finite Clouds
- On the nature of star-forming filaments: I. Filament morphologies
- The Gould's Belt Distances Survey (GOBELINS) I. Trigonometric parallax distances and depth of the Ophiuchus complex
- A Galactic-scale gas wave in the Solar Neighborhood
- A Spitzer census of the IC 348 nebula
- NICEST, a near-infrared color excess method tailored for small-scale structures
- The Cloud Factory I: Generating resolved filamentary molecular clouds from galactic-scale forces
- A 3D extinction map of the Northern Galactic Plane based on IPHAS photometry
- A closer look at the "characteristic" width of molecular cloud filaments
- The shapes of column density PDFs - The importance of the last closed contour
- Reconstruction of signals with unknown spectra in information field theory with parameter uncertainty
- A large catalogue of molecular clouds with accurate distances within 4 kpc of the Galactic disk
- Cold and warm atomic gas around the Perseus molecular cloud I: Basic Properties
- Corona-Australis DANCe. I. Revisiting the census of stars with Gaia-DR2 data
- The Distances to Molecular Clouds at High Galactic Latitudes based on GAIA DR2
- Unified Radio Interferometric Calibration and Imaging with Joint Uncertainty Quantification
- Inferring the three-dimensional distribution of dust in the Galaxy with a non-parametric method: Preparing for Gaia
- HI-to-H2 Transition Layers in the Star-Forming Region W43
- Dynamical cloud formation traced by atomic and molecular gas
- FEDReD II : 3D Extinction Map with 2MASS and Gaia DR2 data
- Herschel 158m [CII] Observations of "CO-dark" Gas in the Perseus Giant Molecular Cloud
Cited by in corpus (7)
- Star formation near the Sun is driven by expansion of the Local Bubble
- The Per-Tau Shell: A Giant Star-Forming Spherical Shell Revealed by 3D Dust Observations
- 3D magnetic field morphology of the Perseus molecular cloud
- A train of shocks at 3000 au scale? Exploring the clash of an expanding bubble into the NGC 1333 IRAS 4 region. SOLIS XIV
- 3D shape explains star formation mystery of California and Orion A
- Three-dimensional magnetic fields of molecular clouds
- Systematic Investigation of Dust and Gaseous CO in 12 Nearby Molecular Clouds