The HI-to-H2 Transition in a Turbulent Medium
arXiv:1703.08549 · doi:10.3847/1538-4357/aa7854
Abstract
We study the effect of density fluctuations induced by turbulence on the HI/H structure in photodissociation regions (PDRs) both analytically and numerically. We perform magnetohydrodynamic numerical simulations for both subsonic and supersonic turbulent gas, and chemical HI/H balance calculations. We derive atomic-to-molecular density profiles and the HI column density probability density function (PDF) assuming chemical equilibrium. We find that while the HI/H density profiles are strongly perturbed in turbulent gas, the mean HI column density is well approximated by the uniform-density analytic formula of Sternberg et al. (2014). The PDF width depends on (a) the radiation intensity to mean density ratio, (b) the sonic Mach number and (c) the turbulence decorrelation scale, or driving scale. We derive an analytic model for the HI PDF and demonstrate how our model, combined with 21 cm observations, can be used to constrain the Mach number and driving scale of turbulent gas. As an example, we apply our model to observations of HI in the Perseus molecular cloud. We show that a narrow observed HI PDF may imply small scale decorrelation, pointing to the potential importance of subcloud-scale turbulence driving.
14 pages, 11 figures, including Appendix. Accepted for publication in ApJ
References in corpus (22)
- Theory of Star Formation
- The Density Probability Distribution in Compressible Isothermal Turbulence: Solenoidal versus Compressive Forcing
- Numerical Tests of Fast Reconnection in Weakly Stochastic Magnetic Fields
- Molecular Hydrogen and Global Star Formation Relations in Galaxies
- Simulating the formation of molecular clouds. II. Rapid formation from turbulent initial conditions
- Density Fluctuations in MHD Turbulence: Spectra, Intermittency and Topology
- The outer scale of turbulence in the magneto-ionized Galactic interstellar medium
- The Atomic to Molecular Transition in Galaxies. I: An Analytic Approximation for Photodissociation Fronts in Finite Clouds
- HI-to-H2 Transitions and H I Column Densities in Galaxy Star-Forming Regions
- The Turbulent Warm Ionized Medium: Emission Measure Distribution and MHD Simulations
- The density structure and star formation rate of non-isothermal polytropic turbulence
- Incorporating the molecular gas phase in galaxy-size numerical simulations: first applications in dwarf galaxies
- The Transition from Atomic to Molecular Hydrogen in Interstellar Clouds: 21cm Signature of the Evolution of Cold Atomic Hydrogen in Dense Clouds
- Cold and warm atomic gas around the Perseus molecular cloud I: Basic Properties
- Turbulence Spectra from Spectral Lines: Tests of the Velocity Channel Analysis and Velocity Coordinate Spectrum Techniques
- Molecular hydrogen absorption systems in Sloan Digital Sky Survey
- The HI Probability Distribution Function and the Atomic-to-Molecular Transition in Molecular Clouds
- HI-to-H2 Transition Layers in the Star-Forming Region W43
- The elusive HI-> H2 transition in high-z damped Lyman-alpha systems
- Simulating the H2 content of high-redshift galaxies
- HD/H2 as a probe of the roles of gas, dust, light, metallicity and cosmic rays in promoting the growth of molecular hydrogen in the diffuse interstellar medium
- The Nature of Turbulence in the LITTLE THINGS Dwarf Irregular Galaxies
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- The role of neutral hydrogen in setting the abundances of molecular species in the Milky Way's diffuse interstellar medium. I. Observational constraints from ALMA and NOEMA
- Study Turbulence and Probe Magnetic Field Using Gradients Technique: Application to HI-to-H2 Transition Regions
- HyGAL: Characterizing the Galactic ISM with observations of hydrides and other small molecules -- I. Survey description and a first look toward W3(OH), W3 IRS5 and NGC 7538 IRS1
- Spatial Power Spectra of Dust across the Local Group: No Constraint on Disc Scale Height
- The KOSMA- PDR Model -- I. Recent updates to the numerical model of photo-dissociated regions
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- The "Maggie" filament: Physical properties of a giant atomic cloud
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- Cosmic-ray-induced H line emission: Astrochemical modeling and implications for JWST observations
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- HyGAL: Characterizing the Galactic ISM with observations of hydrides and other small molecules II. The absorption line survey with the IRAM 30 m telescope
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- Studying Interstellar Turbulence Driving Scales using the Bispectrum
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- From Stellar Nurseries to Old Stellar Populations: A Multi-wavelength Case of NGC 1055
- One H2 molecule per ten million H-atoms reveals sub-pc scale cold overdensities at z~4
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- Systematic Investigation of Dust and Gaseous CO in 12 Nearby Molecular Clouds
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