Estimating the Oblateness Of Dark Matter Halos Using Neutral Hydrogen Velocity Dispersion
arXiv:2303.05104 · doi:10.3847/2041-8213/acc10e
Abstract
We derive the oblateness parameter q of the dark matter halo of a sample of gas rich, face-on disk galaxies. We have assumed that the halos are triaxial in shape but their axes in the disk plane (a and b) are equal, so that q=c/a measures the halo flattening. We have used the HI velocity dispersion, derived from the stacked HI emission lines and the disk surface density to determine the disk potential and the halo shape at the R25 and 1.5R25 radii. We have applied our model to 20 nearby galaxies, of which 6 are large disk galaxies with M(stellar)>10^10 solar mass, 8 have moderate stellar masses and 6 are low surface brightness dwarf galaxies. Our most important result is that gas rich galaxies that have M(gas)/M(baryons)>0.5 have oblate halos (q < 0.55), whereas stellar dominated galaxies have a range of q values, ranging from 0.21+-0.07 in NGC4190 to 1.27+-0.61 in NGC5194. Our results also suggest a positive correlation between the stellar mass and the halo oblateness q, which indicates that galaxies with massive stellar disks have a higher probability of having halos that are spherical or slightly prolate, whereas low mass galaxies have oblate halos (q < 0.55).
9 pages, 4 figures. Accepted for publication in ApJL
References in corpus (15)
- Array Programming with NumPy
- SPARC: Mass Models for 175 Disk Galaxies with Spitzer Photometry and Accurate Rotation Curves
- Color--Mass-to-Light Ratio Relations for Disk Galaxies
- The role of mergers and halo spin in shaping galaxy morphology
- The shape of the inner Milky Way halo from observations of the Pal 5 and GD-1 stellar streams
- Radial distribution of dust, stars, gas, and star-formation rate in DustPedia face-on galaxies
- Geometrically Derived Timescales for Star Formation in Spiral Galaxies
- The Flattened Dark Matter Halo of M31 as Deduced from the Observed HI Scale Heights
- Dark matter halo shapes in the Auriga simulations
- Stellar Mass-to-light Ratios: Composite Bulge+Disk Models and the Baryonic Tully-Fisher Relation
- Tracing the Dynamical Mass in Galaxy Disks Using HI Velocity Dispersion and its Implications for the Dark Matter Distribution in Galaxies
- The nature of late-type spiral galaxies: structural parameters, optical and near-infrared colour profiles, and dust extinction
- The impact of galactic feedback on the shapes of dark-matter haloes
- The Effect of Dark Matter Halo Shape on Bar Buckling and Boxy/Peanut Bulges
- HI Clouds in LITTLE THINGS Dwarf Irregular Galaxies
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