The cycling of carbon into and out of dust
arXiv:1411.5877 · doi:10.1039/C3FD00128H
Abstract
Observational evidence seems to indicate that the depletion of interstellar carbon into dust shows rather wide variations and that carbon undergoes rather rapid recycling in the interstellar medium (ISM). Small hydrocarbon grains are processed in photo-dissociation regions by UV photons, by ion and electron collisions in interstellar shock waves and by cosmic rays. A significant fraction of hydrocarbon dust must therefore be re-formed by accretion in the dense, molecular ISM. A new dust model (Jones et al., Astron. Astrophys., 2013, 558, A62) shows that variations in the dust observables in the diffuse interstellar medium (nH = 1000 cm^3), can be explained by systematic and environmentally-driven changes in the small hydrocarbon grain population. Here we explore the consequences of gas-phase carbon accretion onto the surfaces of grains in the transition regions between the diffuse ISM and molecular clouds (e.g., Jones, Astron. Astrophys., 2013, 555, A39). We find that significant carbonaceous dust re-processing and/or mantle accretion can occur in the outer regions of molecular clouds and that this dust will have significantly different optical properties from the dust in the adjacent diffuse ISM. We conclude that the (re-)processing and cycling of carbon into and out of dust is perhaps the key to advancing our understanding of dust evolution in the ISM.
14 pages, 6 figures
References in corpus (6)
- The evolution of amorphous hydrocarbons in the ISM: dust modelling from a new vantage point
- Variations on a theme - the evolution of hydrocarbon solids: I. Compositional and spectral modelling - the eRCN and DG models
- Variations on a theme - the evolution of hydrocarbon solids: II. Optical property modelling - the optEC(s) model
- Variations on a theme - the evolution of hydrocarbon solids: III. Size-dependent properties - the optEC(s)(a) model
- The origin of GEMS in IDPs as deduced from microstructural evolution of amorphous silicates with annealing
- Heteroatom-doped hydrogenated amorphous carbons, a-C:H:X 'Volatile' silicon, sulphur and nitrogen depletion, blue photoluminescence, diffuse interstellar bands and ferro-magnetic carbon grain connections (Research Note)
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- DustPedia - A Definitive Study of Cosmic Dust in the Local Universe
- Dust variations in the diffuse interstellar medium: constraints on Milky Way dust from Planck-HFI observations
- Abundant hydrocarbons in the disk around a very-low-mass star
- The spatial distribution of carbon dust in the early solar nebula and the carbon content of planetesimals
- Mantle formation, coagulation and the origin of cloud/core-shine: II. Comparison with observations
- Mantle formation, coagulation and the origin of cloud/core shine: I. Modelling dust scattering and absorption in the infra-red
- THEMIS 2.0: A self-consistent model for dust extinction, emission, and polarisation
- Polyacenes and diffuse interstellar bands
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- The essential elements of dust evolution: A viable solution to the interstellar oxygen depletion problem?
- H2 formation via the UV photo-processing of a-C:H nano-particles
- VUV spectroscopy of carbon dust analogs: contribution to interstellar extinction
- Dust evolution across the Horsehead Nebula
- Separate silicate and carbonaceous solids formed from mixed atomic and molecular species diffusing in neon ice
- Modelling the evolution of PAH abundance in galaxies
- PDRs4All. XII. FUV-driven formation of hydrocarbon radicals and their relation with PAHs
- Mid-infrared extinction and fresh silicate dust towards the Galactic Center
- Spinning nano-carbon grains: Viable origin for anomalous microwave emission
- Chemical Kinetics Simulations of Ice Chemistry on Porous Versus Non-Porous Dust Grains
- From Dust to Nanodust: Resolving Circumstellar Dust from the Colliding-Wind Binary Wolf-Rayet (WR) 140
- Restructuring and destruction of hydrocarbon dust in the interstellar medium
- Impact of HAC evolution on the formation of small hydrocarbons in the Orion Bar and the Horsehead PDRs
- Spatial distribution of the aromatic and aliphatic carbonaceous nano-grain features in the protoplanetary disk around HD 100546
- A systematic study of Galactic infrared bubbles along the Galactic plane with AKARI and Herschel. II. Spatial distributions of dust components around the bubbles
- Carbon accretion and desorption by interstellar polycyclic aromatic hydrocarbons
- Far-infrared to centimeter emission of very nearby galaxies with archival data
- The Binding Energies of Atoms on Amorphous Silicate Dust: A Computational Study
- The essential elements of dust evolution: a-C(:H) nanoparticle sub-structures and photo-fragmentation