The Parsec-Scale Relationship Between I_CO and A_V in Local Molecular Clouds
arXiv:1710.08435 · doi:10.1093/mnras/stx2760
Abstract
We measure the parsec-scale relationship between integrated CO intensity (I_CO) and visual extinction (A_V) in 24 local molecular clouds using maps of CO emission and dust optical depth from Planck. This relationship informs our understanding of CO emission across environments, but clean Milky Way measurements remain scarce. We find uniform I_CO for a given A_V, with the results bracketed by previous studies of the Pipe and Perseus clouds. Our measured I_CO-A_V relation broadly agrees with the standard Galactic CO-to-H2 conversion factor, the relation found for the Magellanic clouds at coarser resolution, and numerical simulations by Glover & Clark (2016). This supports the idea that CO emission primarily depends on shielding, which protects molecules from dissociating radiation. Evidence for CO saturation at high A_V and a threshold for CO emission at low A_V varies remains uncertain due to insufficient resolution and ambiguities in background subtraction. Resolution of order 0.1 pc may be required to measure these features. We use this I_CO-AV relation to predict how the CO-to-H2 conversion factor (X_CO) would change if the Solar Neighborhood clouds had different dust-to-gas ratio (metallicity). The calculations highlight the need for improved observations of the CO emission threshold and HI shielding layer depth. They are also sensitive to the shape of the column density distribution. Because local clouds collectively show a self-similar distribution, we predict a shallow metallicity dependence for X_CO down to a few tenths of solar metallicity. However, our calculations also imply dramatic variations in cloud-to-cloud X_CO at subsolar metallicity.
Accepted for publication in MNRAS, 16 pages, 9 figures in main text, manuscript also includes a 24 page atlas showing each cloud. Full resolution available here: http://www.astronomy.ohio-state.edu/~leroy.42/MW_Planck_ICO_AV.pdf
References in corpus (14)
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- The Atomic to Molecular Transition in Galaxies. II: HI and H_2 Column Densities
- CO Isotopologues in the Perseus Molecular Cloud Complex: the X-Factor and Regional Variations
- Ultraviolet Survey of CO and H_2 in Diffuse Molecular Clouds: The Reflection of Two Photochemistry Regimes in Abundance Relationships
- The relation between gas and dust in the Taurus Molecular Cloud
- 2MASS wide field extinction maps - I. The Pipe nebula
- HI-to-H2 Transitions and H I Column Densities in Galaxy Star-Forming Regions
- A Large Catalog of Accurate Distances to Molecular Clouds from PS1 Photometry
- Molecular line intensities as measures of cloud masses - I. Sensitivity of CO emissions to physical parameter variations
- Understanding star formation in molecular clouds I. Effects of line-of-sight contamination on the column density structure
- 2MASS wide field extinction maps: II. The Ophiuchus and the Lupus cloud complexe
- Physical Properties of Molecular Clouds at 2 parsec Resolution in the Low-Metallicity Dwarf Galaxy NGC 6822 and the Milky Way
- The Structure of a Low-Metallicity Giant Molecular Cloud Complex
- The Relationship between CO Emission and Visual Extinction Traced by Dust Emission in the Magellanic Clouds
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- The Environments of CO Cores and Star Formation in the Dwarf Irregular Galaxy WLM
- Herschel 158m [CII] Observations of "CO-dark" Gas in the Perseus Giant Molecular Cloud
- Physical conditions in the gas phases of the giant HII region LMC-N11: II. Origin of [CII] and fraction of CO-dark gas
- Weak CS Emission in an Extremely Metal-poor Galaxy DDO 70