UV-driven chemistry in simulations of the interstellar medium. I. Post-processed chemistry with the Meudon PDR code
arXiv:1205.5689 · doi:10.1051/0004-6361/201218865
Abstract
Our main purpose is to estimate the effect of assuming uniform density on the line-of-sight in PDR chemistry models, compared to a more realistic distribution for which total gas densities may well vary by several orders of magnitude. A secondary goal of this paper is to estimate the amount of molecular hydrogen which is not properly traced by the CO (J = 1 -> 0) line, the so-called "dark molecular gas". We use results from a magnetohydrodynamical (MHD) simulation as a model for the density structures found in a turbulent diffuse ISM with no star-formation activity. The Meudon PDR code is then applied to a number of lines of sight through this model, to derive their chemical structures. It is found that, compared to the uniform density assumption, maximal chemical abundances for H2, CO, CH and CN are increased by a factor 2 to 4 when taking into account density fluctuations on the line of sight. The correlations between column densities of CO, CH and CN with respect to those of H2 are also found to be in better overall agreement with observations. For instance, at N(H2) > 2.10^{20} cm-2, while observations suggest that d[log N(CO)]=d[log N(H2)] = 3.07 +/- 0.73, we find d[log N(CO)]=d[log N(H2)] =14 when assuming uniform density, and d[log N(CO)]=d[log N(H2)] = 5.2 when including density fluctuations.
14 pages, 16 figures, accepted for publication in Astronomy & Astrophysics
References in corpus (10)
- A High Order Godunov Scheme with Constrained Transport and Adaptive Mesh Refinement for Astrophysical MHD
- Molecular Cloud Evolution II. From cloud formation to the early stages of star formation in decaying conditions
- Ultraviolet Survey of CO and H_2 in Diffuse Molecular Clouds: The Reflection of Two Photochemistry Regimes in Abundance Relationships
- Simulating the formation of molecular clouds. II. Rapid formation from turbulent initial conditions
- From the warm magnetized atomic medium to molecular clouds
- The Spitzer Survey of the Small Magellanic Cloud: FIR Emission and Cold Gas in the SMC
- Abundances and Behavior of 12CO, 13CO, and C2 in Translucent Sight Lines
- Models of turbulent dissipation regions in the diffuse interstellar medium
- The penetration of FUV radiation into molecular clouds
- A New FUSE Survey of Interstellar HD
Cited by in corpus (36)
- The CO-to-H2 Conversion Factor
- Turbulent molecular clouds
- The Big Problems in Star Formation: the Star Formation Rate, Stellar Clustering, and the Initial Mass Function
- Photodissociation and X-Ray Dominated Regions
- Planck intermediate results. XX. Comparison of polarized thermal emission from Galactic dust with simulations of MHD turbulence
- Ubiquitous argonium (ArH) in the diffuse interstellar medium -- a molecular tracer of almost purely atomic gas
- [CII] absorption and emission in the diffuse interstellar medium across the Galactic Plane
- Chemical probes of turbulence in the diffuse medium: the TDR model
- SILCC-Zoom: H and CO-dark gas in molecular clouds -- The impact of feedback and magnetic fields
- From diffuse gas to dense molecular cloud cores
- Cosmic rays, gas and dust in nearby anticentre clouds : I -- CO-to-H2 conversion factors and dust opacities
- Structure distribution and turbulence in self-consistently supernova-driven ISM of multiphase magnetized galactic discs
- H2 distribution during formation of multiphase molecular clouds
- The HI-to-H2 Transition in a Turbulent Medium
- Histogram of oriented gradients: a technique for the study of molecular cloud formation
- Chemistry and radiative shielding in star forming galactic disks
- Modelling clumpy PDRs in 3D - Understanding the Orion Bar stratification
- TORUS-3DPDR: A self-consistent code treating three-dimensional photoionization and photodissociation regions
- Planck intermediate results. XXVIII. Interstellar gas and dust in the Chamaeleon clouds as seen by Fermi LAT and Planck
- Modeling the Atomic-to-Molecular Transition and Chemical Distributions of Turbulent Star-Forming Clouds
- Spatially resolved physical conditions of molecular gas and potential star formation tracers in M83, revealed by the Herschel SPIRE FTS
- Unveiling the chemistry of interstellar CH: Spectroscopy of the 2 THz ground state line
- Herschel/HIFI Spectral Mapping of C, CH, and CH in Orion BN/KL: The Prevailing Role of Ultraviolet Irradiation in CH Formation
- Cosmic-rays, gas, and dust in nearby anticentre clouds : II -- Interstellar phase transitions and the Dark Neutral Medium
- A Herschel/HIFI Legacy Survey of HF and H2O in the Galaxy: Probing Diffuse Molecular Cloud Chemistry
- CH as a Molecular Gas Tracer and C-Shock Tracer Across a Molecular Cloud Boundary in Taurus
- Tracers of the ionization fraction in dense and translucent gas: I. Automated exploitation of massive astrochemical model grids
- The detectability of mm-wave molecular rotational transitions
- The KOSMA- PDR Model -- I. Recent updates to the numerical model of photo-dissociated regions
- Gas and Dust Properties in the Chamaeleon Molecular Cloud Complex based on the Optically Thick HI
- Kinetic tomography of the Galactic plane within 1.25 kiloparsecs from the Sun. The interstellar flows revealed by HI and CO line emission and 3D dust
- Probing the nature of dissipation in compressible MHD turbulence
- A nearly constant CN/HCN line ratio in nearby galaxies: CN as a new tracer of dense gas
- CO enhancement by magnetohydrodynamic waves; Striations in the Polaris Flare
- The role of neutral hydrogen in setting the abundances of molecular species in the Milky Way's diffuse interstellar medium. II. Comparison between observations and theoretical models
- Influence of protostellar jets and HII regions on the formation and evolution of stellar clusters