The structure and characteristic scales of the HI gas in galactic disks
arXiv:2107.13567 · doi:10.1051/0004-6361/202141803
Abstract
The spatial distribution of the HI gas in galaxies holds important clues on the physical processes that shape the structure and dynamics of the interstellar medium (ISM). In this work, we quantify the structure of the HI gas in a sample of 33 nearby galaxies taken from the THINGS Survey using the delta-variance spectrum. The THINGS galaxies display a large diversity in their spectra, however, there are a number of recurrent features. In many galaxies, we observe a bump in the spectrum on scales of a few to several hundred pc. We find the characteristic scales associated with the bump to be correlated with galactic SFR for values of the SFR > 0.5 M yr and also with the median size of the HI shells detected in those galaxies. On larger scales, we observe the existence of two self-similar regimes. The first one, on intermediate scales is shallow and the power law that describes this regime has an exponent in the range [0.1-1] with a mean value of 0.55 which is compatible with the density field being generated by supersonic turbulence in the cold phase of the HI gas. The second power law is steeper, with a range of exponents between [0.5-1.5] and a mean value of 1.5. These values are associated with subsonic turbulence which is characteristic of the warm phase of the HI gas. The spatial scale at which the transition between the two regimes occurs is found to be which is similar to the size of the molecular disk in the THINGS galaxies. Overall, our results suggest that on scales < , the structure of the ISM is affected by the effects of supernova explosions. On larger scales (> 0.5 ), stellar feedback has no significant impact, and the structure of the ISM is determined by large scale processes that govern the dynamics of the gas in the warm neutral medium such as the flaring of the HI disk and the effects of ram pressure stripping.
Accepted to A&A. Matches the published version
References in corpus (41)
- High-Resolution Rotation Curves and Galaxy Mass Models from THINGS
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- The Density Probability Distribution in Compressible Isothermal Turbulence: Solenoidal versus Compressive Forcing
- The Atomic to Molecular Transition in Galaxies. II: HI and H_2 Column Densities
- Density Fluctuations in MHD Turbulence: Spectra, Intermittency and Topology
- On the interplay between star formation and feedback in galaxy formation simulations
- HI holes and high-velocity clouds in the spiral galaxy NGC 6946
- VINTERGATAN I: The origins of chemically, kinematically and structurally distinct discs in a simulated Milky Way-mass galaxy
- Radial distribution of dust, stars, gas, and star-formation rate in DustPedia face-on galaxies
- The supernova-regulated ISM. I. The multi-phase structure
- Hierarchical Star Formation in the Spiral Galaxy NGC 628
- SILCC VI -- Multi-phase ISM structure, stellar clustering, and outflows with supernovae, stellar winds, ionising radiation and cosmic rays
- Chemical Rates on Small Grains and PAHs: C^+ Recombination and H_2 Formation
- Particularly Efficient Star Formation in M33
- The Spatial Relation between Young Star Clusters and Molecular Clouds in M 51 with LEGUS
- Cloud and Star Formation in Disk Galaxy Models with Feedback
- VINTERGATAN II: the history of the Milky Way told by its mergers
- Evidence for supernova feedback sustaining gas turbulence in nearby star-forming galaxies
- Structure analysis of interstellar clouds: I. Improving the Delta-variance method
- VINTERGATAN III: how to reset the metallicity of the Milky Way
- Power spectrum of HI intensity fluctuations in DDO 210
- Core Mass Function: The Role of Gravity
- The Molecular Interstellar Medium of the Local Group Dwarf NGC6822
- The Effect of Ram-Pressure Stripping on Dwarf Galaxies
- Star-formation rates from young-star counts and the structure of the ISM across the NGC346/N66 complex in the SMC
- On the 3D structure of the mass, metallicity, and SFR space for SF galaxies
- A Catalog of Holes and Shells in the Interstellar Medium of the LITTLE THINGS Dwarf Galaxies
- Supernovae feedback propagation: the role of turbulence
- Probing interstellar turbulence in spiral galaxies using HI power spectrum analysis
- Mapping Spatial Variations of HI Turbulent Properties in the Small and Large Magellanic Cloud
- The molecular gas mass of M33
- The structure and characteristic scales of molecular clouds
- Detection of metallicity correlations in 100 nearby galaxies
- Spatial Power Spectra of Dust across the Local Group: No Constraint on Disc Scale Height
- Topology of HI in the Large Magellanic Cloud
- Evidence of large scale energy cascade in the spiral galaxy NGC 5236
- A High-Velocity Cloud Impact Forming a Supershell in the Milky Way
- Coupling local to global star formation in spiral galaxies: the effect of differential rotation
- Description of turbulent dynamics in the interstellar medium: multifractal/microcanonical analysis I. Application to Herschel observations of the Musca filament
- Galactic HI supershells: Kinetic energies and possible origin
- Spiral Density Waves in M81. II. Hydrodynamic Simulations for Gas Response to Stellar Spiral Density Waves
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- The Galactic dynamics revealed by the filamentary structure in atomic hydrogen emission
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- The galaxy-wide stellar initial mass function in the presence of cluster-to-cluster IMF variations
- Metal-THINGS: The association and optical characterization of SNRs with HI holes in NGC 6946
- The evolution of the internal structure of massive star forming regions in the Milky Way as revealed by ALMA
- Stellar collisions in globular clusters: Constraints on the initial mass function of the first generation of stars