The Galactic dynamics revealed by the filamentary structure in atomic hydrogen emission
arXiv:2205.10426 · doi:10.1051/0004-6361/202243334
Abstract
We present a study of the filamentary structure in the atomic hydrogen (HI) emission at the 21 cm wavelength toward the Galactic plane using the observations in the HI4PI survey. Using the Hessian matrix method across radial velocity channels, we identified the filamentary structures and quantified their orientations using circular statistics. We found that the regions of the Milky Way's disk beyond 10 kpc and up to roughly 18 kpc from the Galactic center display HI filamentary structures predominantly parallel to the Galactic plane. For regions at lower Galactocentric radii, we found that the HI filaments are mostly perpendicular or do not have a preferred orientation with respect to the Galactic plane. We interpret these results as the imprint of supernova feedback in the inner Galaxy and Galactic rotation in the outer Milky Way. We found that the HI filamentary structures follow the Galactic warp and that they highlight some of the variations interpreted as the effect of the gravitational interaction with satellite galaxies. In addition, the mean scale height of the filamentary structures is lower than that sampled by the bulk of the HI emission, thus indicating that the cold and warm atomic hydrogen phases have different scale heights in the outer galaxy. Finally, we found that the fraction of the column density in HI filaments is almost constant up to approximately 18 kpc from the Galactic center. This is possibly a result of the roughly constant ratio between the cold and warm atomic hydrogen phases inferred from the HI absorption studies. Our results indicate that the HI filamentary structures provide insight into the dynamical processes shaping the Galactic disk. Their orientations record how and where the stellar energy input, the Galactic fountain process, the cosmic ray diffusion, and the gas accretion have molded the diffuse interstellar medium in the Galactic plane.
33 pages. 39 figures. Accepted for publication in Astronomy & Astrophysics (06MAY2022)
References in corpus (28)
- 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
- Physical properties of molecular clouds for the entire Milky Way disk
- Turbulent Structure of a Stratified Supernova-Driven Interstellar Medium
- The Vertical Structure of the Outer Milky Way HI Disk
- The Spiral Structure of the Outer Milky Way in Hydrogen
- HI holes and high-velocity clouds in the spiral galaxy NGC 6946
- Dark matter in the Milky Way, II. the HI gas distribution as a tracer of the gravitational potential
- Modelling the supernova-driven ISM in different environments
- The identification of filaments on far infrared and submillimiter images. Morphology, physical conditions and relation with star formation of filamentary structure
- First results from SMAUG: Characterization of Multiphase Galactic Outflows from a Suite of Local Star-Forming Galactic Disk Simulations
- Milky Way Kinematics: Measurements at the Subcentral Point of the Fourth Quadrant
- Simulations of magnetized multiphase galactic disk regulated by supernovae explosions
- SILCC VI -- Multi-phase ISM structure, stellar clustering, and outflows with supernovae, stellar winds, ionising radiation and cosmic rays
- The Cloud Factory I: Generating resolved filamentary molecular clouds from galactic-scale forces
- Simulations of the star-forming molecular gas in an interacting M51-like galaxy
- A Possible Extension of the Scutum-Centaurus Arm into the Outer Second Quadrant
- An application of an optimal statistic for characterising relative orientations
- From diffuse gas to dense molecular cloud cores
- The Physical Nature of Neutral Hydrogen Intensity Structure
- Cold and warm atomic gas around the Perseus molecular cloud I: Basic Properties
- The HI/OH/Recombination line survey of the inner Milky Way (THOR): data release 2 and HI overview
- Formation of HI Clouds in Shock-compressed Interstellar Medium: Physical Origin of Angular Correlation Between Filamentary Structure and Magnetic Field
- Tracing the Spiral Structure of the Outer Milky Way with Dense Atomic Hydrogen Gas
- Cloud formation in the atomic and molecular phase: HI self absorption (HISA) towards a Giant Molecular Filament
- The filamentary structures in the CO emission toward the Milky Way disk
- The discovery of the largest gas filament in our Galaxy, or a new spiral arm?
- Burton's Curse: The Impact of Bulk Flows on the Galactic Longitude-Velocity Diagram and the Illusion of a Continuous Perseus Arm
Cited by in corpus (19)
- The Star Formation Rate of the Milky Way as seen by Herschel
- PHANGS-JWST First Results: Tracing the Diffuse ISM with JWST Imaging of Polycyclic Aromatic Hydrocarbon Emission in Nearby Galaxies
- Testing kinematic distances under a realistic Galactic potential
- PHANGS--JWST First Results: ISM structure on the turbulent Jeans scale in four disk galaxies observed by JWST and ALMA
- Prospects for future studies using deep imaging: Analysis of individual Galactic cirrus filaments
- Large-scale Velocity-coherent Filaments in the SEDIGISM Survey: Association with Spiral Arms and Fraction of Dense Gas
- Probing the cold neutral medium through HI emission morphology with the scattering transform
- Peering into the Milky Way by FAST: I. Exquisite HI structures in the inner Galactic disk from the piggyback line observations of the FAST GPPS survey
- Distance of PSR B0458+46 indicated by FAST HI absorption observations
- On the distribution of the Cold Neutral Medium in galaxy discs
- Necessary conditions for the formation of filaments and star clusters in the cold neutral medium
- HI filaments as potential compass needles? Comparing the magnetic field structure of the Small Magellanic Cloud to the orientation of GASKAP-HI filaments
- Aspect ratios of far-infrared and H i filaments in the diffuse interstellar medium at high Galactic latitudes
- HP2 Survey V. Ophiuchus: Filament formation in a dispersing cloud complex
- Filamentary Hierarchies and Superbubbles I: Characterizing filament properties across a simulated spiral galaxy
- The magnetic field of the Radcliffe Wave: starlight polarization at nearest approach to the Sun
- Properties of 3D HI Filaments in the Smith High Velocity Cloud
- Anisotropy in the carbon monoxide (CO) line emission across the Milky Way's disk
- Analysis of Galactic cirrus filaments in HSC-SSP high-resolution deep images using artificial neural networks