The Influence of Deuteration and Turbulent Diffusion on the Observed D/H Ratio
arXiv:1102.2698 · doi:10.1088/0004-637X/731/1/48
Abstract
The influence of turbulent mixing on the chemistry of the interstellar medium has so far received little attention. Previous studies of this effect have suggested that it might play an important role in mixing the various phases of the interstellar medium. In this paper we examine the potential effects of turbulent diffusion on the deuterium chemistry within molecular clouds. We find that such mixing acts to reduce the efficiency of deuteration in these clouds by increasing the ionization fraction and reducing freeze-out of heavy molecules. This leads to lower abundances for many deuterated species. We also examine the influence of turbulent mixing on the transition from atomic hydrogen to H2 and from atomic deuterium to HD near the cloud edge. We find that including turbulent diffusion in our models serves to push these transitions deeper into the cloud and helps maintain a higher atomic fraction throughout the cloud envelope. Based on these findings, we propose a new process to account for the significant scatter in the observed atomic D/H ratio for galactic sightlines extending beyond the Local Bubble. Although several mechanisms have been put forward to explain this scatter, they are unable to fully account for the range in D/H values. We suggest a scenario in which turbulent mixing of atomic and molecular gas at the edges of molecular clouds causes the observed atomic D/H ratio to vary by a factor of ~2.
14 pages, 14 figures, accepted for publication in ApJ
References in corpus (16)
- What is the Total Deuterium Abundance in the Local Galactic Disk?
- H3+ in Diffuse Interstellar Clouds: a Tracer for the Cosmic-Ray Ionization Rate
- First detection of triply-deuterated methanol
- Molecular Hydrogen in the FUSE Translucent Lines of Sight: The Full Sample
- The importance of the ortho:para H2 ratio for the deuteration of molecules during pre-protostellar collapse
- Molecular line intensities as measures of cloud masses - I. Sensitivity of CO emissions to physical parameter variations
- The chemistry of multiply deuterated molecules in protoplanetary disks. I. The outer disk
- A Unified Monte Carlo Treatment of Gas-Grain Chemistry for Large Reaction Networks. I. Testing Validity of Rate Equations in Molecular Clouds
- The abundances of nitrogen-containing molecules during pre-protostellar collapse
- Connecting the primordial and Galactic deuterium abundances
- Effects of turbulent diffusion on the chemistry of diffuse clouds
- A New FUSE Survey of Interstellar HD
- Charm Production in DPMJET
- Variations in the D/H ratio of extended sightlines from FUSE observations
- FUSE Deuterium Observations: A Strong Case For Galactic Infall
- The Galactic Deuterium Abundance and Dust Depletion: Insights From an Expanded Ti/H Sample
Cited by in corpus (6)
- Water ice deuteration: a tracer of the chemical history of protostars
- The HI-to-H2 Transition in a Turbulent Medium
- Planck cold clumps in the Orionis complex: I. Discovery of an extremely young Class 0 protostellar object and a proto-brown dwarf candidate in a bright rimmed clump PGCC G192.32-11.88
- HST/COS Detection of Deuterated Molecular Hydrogen in a DLA at z = 0.18
- Dust temperature and time-dependent effects in the chemistry of photodissociation regions
- Vibrational, non-adiabatic and isotopic effects in the dynamics of the H + H H + H reaction: application to plasma modeling