Three-dimensional dust density structure of the Orion, Cygnus X,Taurus, and Perseus star-forming regions
arXiv:2111.06672 · doi:10.1051/0004-6361/202141298
Abstract
Interstellar dust affects astronomical observations through absorption and reddening, yet this extinction is also a powerful tool for studying interstellar matter in galaxies. 3D reconstructions of dust extinction and density in the Milky Way have suffered from artefacts such as the fingers-of-god effect and negative densities, and have been limited by large computational costs. Here we aim to overcome these issues with a novel algorithm that derives the 3D extinction density of dust in the Milky Way using a latent variable Gaussian Process and variational inference. Our model maintains non-negative density and hence monotonically non-decreasing extinction along all lines-of-sight, and performs inference within a reasonable computational time. Using extinctions for hundreds of thousands of stars computed from optical and near-IR photometry, together with distances based on Gaia parallaxes, we use our algorithm to infer the structure of the Orion, Taurus, Perseus, and Cygnus X star-forming regions. A number of features superimposed in 2D extinction maps are clearly deblended in 3D dust extinction density maps. We find a large filament on the edge of Orion, identify filament that in the Taurus and Perseus regions, and show that Cygnus X is located at 1300-1500pc. We compute dust masses of the regions and find these to be slightly higher than previous estimates, likely a consequence of our input data recovering the highest column densities more effectively. Comparing our predicted extinctions to Planck data, we find that known relationships between density and dust processing, where high extinction lines of sight have the most processed grains, hold up in resolved observations when density is included, and that they exist at smaller scales than previously suggested. This can be used to study the changes in size or composition of dust as they are processed in molecular clouds. (Abridged)
Accepted by A&A; Our code is available at https://github.com/Thavisha/Dustribution and the latest results are available from www.mwdust.com; 12 Pages, 15 figures; Appendix: 21 Pages, 9 figures
References in corpus (17)
- The distance to the Orion Nebula
- Improving PARSEC models for very low mass stars
- Gaia-2MASS 3D maps of Galactic interstellar dust within 3 kpc
- Composable Effects for Flexible and Accelerated Probabilistic Programming in NumPyro
- A Compendium of Distances to Molecular Clouds in the Star Formation Handbook
- Herschel-Planck dust optical-depth and column-density maps: I. Method description and results for Orion
- A 3D extinction map of the Northern Galactic Plane based on IPHAS photometry
- On the Three-Dimensional Structure of Local Molecular Clouds
- The Distances to Molecular Clouds at High Galactic Latitudes based on GAIA DR2
- Overview of the Orion Complex
- Three-dimensional extinction mapping using Gaussian random fields
- 3D Dust Mapping Reveals that Orion Forms Part of a Large Ring of Dust
- Inferring the three-dimensional distribution of dust in the Galaxy with a non-parametric method: Preparing for Gaia
- Astrophysical Parameters from Gaia DR2, 2MASS & AllWISE
- The substructure of the Perseus star forming region: A survey with Gaia DR2
- Dust in three dimensions in the Galactic Plane
- FEDReD I: 3D extinction and stellar maps by Bayesian deconvolution
Cited by in corpus (17)
- The wide-field, multiplexed, spectroscopic facility WEAVE: Survey design, overview, and simulated implementation
- A parsec-scale Galactic 3D dust map out to 1.25 kpc from the Sun
- Gaia Data Release 3: Apsis II -- Stellar Parameters
- PHANGS-JWST First Results: The Dust Filament Network of NGC 628 and its Relation to Star Formation Activity
- Astrophysical Parameters from Gaia DR2, 2MASS & AllWISE
- A 3D View of Orion: I. Barnard's Loop
- A global view on star formation: The GLOSTAR Galactic plane survey VIII. Formaldehyde absorption in Cygnus~X
- The three-dimensional structure of Galactic molecular cloud complexes out to 2.5 kpc
- Extinction of Taurus, Orion, Perseus and California Molecular Clouds Based on the LAMOST, 2MASS and Gaia surveys I: Three-dimensional Extinction and Structure
- A Parsec-Scale Catalog of Molecular Clouds in the Solar Neighborhood Based on 3D Dust Mapping: Implications for the Mass-Size Relation
- Kinetic tomography of the Galactic plane within 1.25 kiloparsecs from the Sun. The interstellar flows revealed by HI and CO line emission and 3D dust
- A global view on star formation: The GLOSTAR Galactic plane survey X. Galactic HII region catalog using radio recombination lines
- The "C": The large Chameleon-Musca-Coalsack cloud
- SRG/eROSITA 3D mapping of the ISM using X-ray absorption spectroscopy
- Improved source classification and performance analysis using Gaia DR3
- A Probabilistic Model to Estimate Number Densities from Column Densities in Molecular Clouds
- Investigating the Period-Luminosity Relations of delta Scuti Stars: A Pathway to Distance and 3-D Dust Map Inference