A hidden reservoir of Fe/FeS in interstellar silicates?
arXiv:1405.4208 · doi:10.1051/0004-6361/201423985
Abstract
The depletion of iron and sulphur into dust in the interstellar medium and the exact nature of interstellar amorphous silicate grains is still an open question. We study the incorporation of iron and sulphur into amorphous silicates of olivine- and pyroxene-type and their effects on the dust spectroscopy and thermal emission. We used the Maxwell-Garnett effective-medium theory to construct the optical constants for a mixture of silicates, metallic iron, and iron sulphide. We also studied the effects of iron and iron sulphide in aggregate grains. Iron sulphide inclusions within amorphous silicates that contain iron metal inclusions shows no strong differences in the optical properties of the grains. A mix of amorphous olivine- and pyroxene-type silicate broadens the silicate features. An amorphous carbon mantle with a thickness of 10 nm on the silicate grains leads to an increase in absorption on the short-wavelength side of the 10 m silicate band. The assumption of amorphous olivine-type and pyroxene-type silicates and a 10 nm thick amorphous carbon mantle better matches the interstellar silicate band profiles. Including iron nano-particles leads to an increase in the mid-IR extinction, while up to 5 ppm of sulphur can be incorporated as Fe/FeS nano inclusions into silicate grains without leaving a significant trace of its presence.
References in corpus (4)
- A Unified Representation of Gas-Phase Element Depletions in the Interstellar Medium
- The evolution of amorphous hydrocarbons in the ISM: dust modelling from a new vantage point
- The shape and composition of interstellar silicate grains
- The origin of GEMS in IDPs as deduced from microstructural evolution of amorphous silicates with annealing
Cited by in corpus (44)
- An Ice Age JWST inventory of dense molecular cloud ices
- The dust mass in Cassiopeia A from a spatially resolved Herschel analysis
- Radial distribution of dust, stars, gas, and star-formation rate in DustPedia face-on galaxies
- Old and young stellar populations in DustPedia galaxies and their role in dust heating
- Dust variations in the diffuse interstellar medium: constraints on Milky Way dust from Planck-HFI observations
- Low-temperature MIR to submillimeter mass absorption coefficient of interstellar dust analogues II: Mg and Fe-rich amorphous silicates
- JINGLE -- IV. Dust, HI gas and metal scaling laws in the local Universe
- The Two-Dimensional Metallicity Distribution and Mixing Scales of Nearby Galaxies
- THEMIS 2.0: A self-consistent model for dust extinction, emission, and polarisation
- Investigating the interstellar dust through the Fe K-edge
- High-Resolution Radiative Transfer Modelling of M33
- High-resolution, 3D radiative transfer modelling III. The DustPedia barred galaxies
- The resolved scaling relations in DustPedia: Zooming in on the local Universe
- The essential elements of dust evolution: A viable solution to the interstellar oxygen depletion problem?
- Thermodynamics and Charging of Interstellar Iron Nanoparticles
- Effects of grain growth on the interstellar polarization curve
- Nano carbon dust emission in proto-planetary disks: the aliphatic-aromatic components
- Low-temperature optical constants of amorphous silicate dust analogues
- Benchmarking Dust Emission Models in M101
- BEDE: Bayesian Estimates of Dust Evolution For Nearby Galaxies
- Vacuum ultraviolet photodesorption and photofragmentation of formaldehyde-containing ices
- Mid-infrared extinction and fresh silicate dust towards the Galactic Center
- AlFoCS + F3D II: unexpectedly low gas-to-dust ratios in the Fornax galaxy cluster
- ALMA ACA study of the HS/OCS ratio in low-mass protostars
- Constraints on interstellar dust models from extinction and spectro-polarimetry
- Dust properties of the cometary globule Barnard 207 (LDN 1489)
- High-Resolution X-Ray Spectroscopy of Interstellar Iron Toward Cygnus X-1 and GX 339-4
- Synthetic Modelling of Polarized Dust Emission in Intermediate-Mass YSOs: I: Constraining the Role of Iron Inclusions and Inelastic Relaxation on Grain Alignment with ALMA Polarization
- Probing the spectral shape of dust emission with the DustPedia galaxy sample
- A derivation of nano-diamond optical constants: Here be nano-diamonds
- Quantum confinement and carbon nanodots: A conceptual view for the origin of diffuse interstellar bands
- Exploring the interplay of dust and gas phases in DustPedia star-forming galaxies
- Deriving the intrinsic properties of M51 with radiative transfer models
- Radial distribution of the carbonaceous nano-grains in the protoplanetary disk around HD 169142
- Silicon and iron dust in gamma-ray burst host galaxy absorbers
- Uncovering the truth about M101, NGC 3938, and their significant others through radiative transfer
- GRB 180325A: dust grain-size distribution and interstellar iron nanoparticles contribution
- The essential elements of dust evolution: a-C(:H) nanoparticle sub-structures and photo-fragmentation
- Far-infrared to centimeter emission of very nearby galaxies with archival data
- The Binding Energies of Atoms on Amorphous Silicate Dust: A Computational Study
- Dust removal timescale in galaxies across cosmic time
- Spheroidal core-mantle particle absorption, scattering, and polarisation in the long-wavelength limit
- The nature and evolution of a-C(:H) nanoparticle substructures and speculations on the origin of the 3-4m emission bands
- The role of young and evolved stars in the heating of dust in local galaxies