Spatially Coherent 3D Distributions of HI and CO in the Milky Way
arXiv:2407.02859 · doi:10.1051/0004-6361/202451361
Abstract
The spatial distribution of the gaseous components of the Milky Way is of great importance for a number of different fields, for example, Galactic structure, star formation, and cosmic rays. However, obtaining distance information to gaseous clouds in the interstellar medium from Doppler-shifted line emission is notoriously difficult given our vantage point in the Galaxy. It requires spatial knowledge of gas velocities and generally suffers from distance ambiguities. Previous works often assumed the optically thin limit, had a fixed velocity field, and lacked resolution overall. We aim to overcome these issues and improve previous reconstructions of the gaseous constituents of the interstellar medium of the Galaxy. We used 3D Gaussian processes to model correlations in the interstellar medium, including correlations between different lines of sight, and enforce a spatially coherent structure in the prior. For modelling the transport of radiation from the emitting gas to us as observers, we took absorption effects into account. A special numerical grid ensures that there is high resolution nearby. We inferred the spatial distributions of atomic hydrogen (HI), carbon monoxide (CO), their emission line widths, and the Galactic velocity field in a joint Bayesian inference. We further constrained these fields with complementary data from Galactic masers and young stellar object clusters. Our main result consists of a set of samples that implicitly contain statistical uncertainties. The resulting maps are spatially coherent and reproduce the data with high fidelity. We confirm previous findings regarding the warping and flaring of the Galactic disc. A comparison with 3D dust maps reveals a good agreement on scales larger than approximately 400 pc. While our results are not free of artefacts, they present a big step forward in obtaining high-quality 3D maps of the interstellar medium.
20 pages, 22 figures, accepted by A&A
References in corpus (33)
- Gaia Data Release 3: Summary of the content and survey properties
- HI4PI: A full-sky HI survey based on EBHIS and GASS
- Trigonometric Parallaxes Of High-Mass Star Forming Regions: Our View Of The Milky Way
- Improving the open cluster census. II. An all-sky cluster catalogue with Gaia DR3
- The Vertical Structure of Warm Ionised Gas in the Milky Way
- The Vertical Structure of the Outer Milky Way HI Disk
- The Spiral Structure of the Outer Milky Way in Hydrogen
- FOREST Unbiased Galactic plane Imaging survey with the Nobeyama 45-m telescope (FUGIN) I: Project Overview and Initial Results
- A Galactic-scale gas wave in the Solar Neighborhood
- A parsec-scale Galactic 3D dust map out to 1.25 kpc from the Sun
- GASS: The Parkes Galactic All-Sky Survey. Update: improved correction for instrumental effects and new data release
- Direct Measurement of the Ratio of Carbon Monoxide to Molecular Hydrogen in the Diffuse Interstellar Medium
- Improving the open cluster census. I. Comparison of clustering algorithms applied to Gaia DR2 data
- 3D Distribution of Molecular Gas in the Barred Milky Way
- Detection of the Keplerian decline in the Milky Way rotation curve
- On the Three-Dimensional Structure of Local Molecular Clouds
- A new all-sky map of Galactic high-velocity clouds from the 21-cm HI4PI survey
- Evidence of a dynamically evolving Galactic warp
- The Circular Velocity Curve of the Milky Way from 5 to 25 kpc using luminous red giant branch star
- Is the dust-to-gas ratio constant in molecular clouds?
- Mapping the Milky Way Disk with Gaia DR3: 3D extended kinematic maps and rotation curve to kpc
- Distribution and kinematics of atomic and molecular gas inside the Solar circle
- Geometric variational inference
- Tracing the Spiral Structure of the Outer Milky Way with Dense Atomic Hydrogen Gas
- A Tilted Dark Halo Origin of the Galactic Disk Warp and Flare
- Mass models of the Milky Way and estimation of its mass from the GAIA DR3 data-set
- Mapping Spatial Variations of HI Turbulent Properties in the Small and Large Magellanic Cloud
- Re-Envisioning Numerical Information Field Theory (NIFTy.re): A Library for Gaussian Processes and Variational Inference
- Kinetic Tomography I: A Method for Mapping the Milky Way's Interstellar Medium in Four Dimensions
- Bayesian inference of three-dimensional gas maps: II. Galactic HI
- A panoptic view of the Taurus molecular cloud I. The cloud dynamics revealed by gas emission and 3D dust
- Bayesian inference of three-dimensional gas maps: I. Galactic CO
- Highest-Resolution Rotation Curve of the Inner Milky Way proving the Galactic Shock Wave
Cited by in corpus (5)
- Local dark matter density from Gaia DR3 K-dwarfs using Gaussian processes
- Painting a Family Portrait of the Yellow Super- and Hypergiants in the Milky Way I. Constraining the Distances and Luminosities
- The Warm-Hot Disk-Halo Interface Below the Perseus Spiral Arm
- TeV-PeV Gamma-ray and Neutrino Emission in the Galactic Plane
- Stochastic modelling of cosmic-ray sources for Galactic diffuse emissions