Effects of CO-dark Gas on Measurements of Molecular Cloud Stability and the Size-Linewidth Relationship
arXiv:2205.13533 · doi:10.3847/1538-4357/ac745f
Abstract
Stars form within molecular clouds, so characterizing the physical states of molecular clouds is key in understanding the process of star formation. Cloud structure and stability is frequently assessed using metrics including the virial parameter and Larson (1981) scaling relationships between cloud radius, velocity dispersion, and surface density. Departures from the typical Galactic relationships between these quantities have been observed in low-metallicity environments. The amount of H gas in cloud envelopes without corresponding CO emission is expected to be high under these conditions; therefore, this "CO-dark" gas could plausibly be responsible for the observed variations in cloud properties. We derive simple corrections that can be applied to empirical clump properties (mass, radius, velocity dispersion, surface density, and virial parameter) to account for CO-dark gas in clumps following power-law and Plummer mass density profiles. We find that CO-dark gas is not likely to be the cause of departures from Larson's relationships in low-metallicity regions, but that virial parameters may be systematically overestimated. We demonstrate that correcting for CO-dark gas is critical for accurately comparing the dynamical state and evolution of molecular clouds across diverse environments.
19 pages, 5 figures, accepted for publication in ApJ
References in corpus (25)
- Array Programming with NumPy
- The Resolved Properties of Extragalactic Giant Molecular Clouds
- The COMPLETE Survey of Star-Forming Regions: Phase I Data
- What determines the density structure of molecular clouds ? A case study of Orion B with Herschel
- CO-dark gas and molecular filaments in Milky Way type galaxies
- Tracing the total molecular gas in galaxies: [CII] and the CO-dark gas
- Dynamical Equilibrium in the Molecular ISM in 28 Nearby Star-Forming Galaxies
- Revisiting the Integrated Star Formation Law. Paper I: Non-Starbursting Galaxies
- The VMC Survey - XIV. First results on the look-back time star-formation rate tomography of the Small Magellanic Cloud
- The molecular cloud lifecycle
- Molecular clouds in the Cosmic Snake normal star-forming galaxy 8 billion years ago
- Physical Properties of Molecular Clouds at 2 parsec Resolution in the Low-Metallicity Dwarf Galaxy NGC 6822 and the Milky Way
- On the Three-Dimensional Structure of Local Molecular Clouds
- The Structure of a Low-Metallicity Giant Molecular Cloud Complex
- How Galactic Environment affects the Dynamical State of Molecular Clouds and their Star Formation Efficiency
- The environmental dependence of the X_CO conversion factor
- Time Varying Dynamical Star Formation Rate
- The Interstellar Medium and star formation on kpc size scales
- The CO-dark molecular gas mass in 30 Doradus
- The evolution of temperature and density structures of OB cluster-forming molecular clumps
- ALMA observations of N83C in the early stage of star formation in the Small Magellanic Cloud
- Resolved star formation in the metal poor star-forming region Magellanic Bridge C
- ALMA resolves molecular clouds in the metal poor Magellanic Bridge A
- A new parameterization of the star formation rate-dense gas mass relation: embracing gas density gradients
- Molecular clumps disguising their star formation efficiency per freefall time: What we can do not to be fooled
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- Sequential Star Formation in the Young SMC Region NGC 602: Insights from ALMA
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- Molecular Clouds at the Edge of the Galaxy II. Physical properties and scaling relations