Properties of Dust Grains Probed with Extinction Curves
arXiv:1301.4024 · doi:10.1088/0004-637X/770/1/27
Abstract
Modern data of the extinction curve from the ultraviolet to the near infrared are revisited to study the property of dust grains in the Milky Way (MW) and the Small Magellanic Cloud (SMC). We confirm that the graphite-silicate mixture of grains yields the observed extinction curve with the simple power-law distribution of the grain size but with a cutoff at some maximal size: the parameters are tightly constrained to be for the size distribution and the maximum radius um, for both MW and SMC. The abundance of grains, and hence the elemental abundance, is constrained from the reddening versus hydrogen column density, E(B-V)/N_H. If we take the solar elemental abundance as the standard for the MW, >56 % of carbon should be in graphite dust, while it is <40 % in the SMC using its available abundance estimate. This disparity and the relative abundance of C to Si explain the difference of the two curves. We find that 50-60 % of carbon may not necessarily be in graphite but in the amorphous or the glassy phase. Iron may also be in the metallic phase or up to ~80 % in magnetite rather than in silicates, so that the Mg/Fe ratio in astronomical olivine is arbitrary. With these substitutions the parameters of the grain size remain unchanged. The mass density of dust grains relative to hydrogen is for the MW and A_λ \propto λ^{-gamma}$ with gamma ~ 1.6, the power-law grain-size model fails, whereas it works if gamma ~ 1.8-2.0.
14 pages, 16 figures, 4 tables, ApJ in press
References in corpus (3)
- An Analysis of the Shapes of Interstellar Extinction Curves. V. The IR-Through-UV Curve Morphology
- Present-day cosmic abundances. A comprehensive study of nearby early B-type stars and implications for stellar and Galactic evolution and interstellar dust models
- An Analysis of the Shapes of Interstellar Extinction Curves. VI. The Near-IR Extinction Law
Cited by in corpus (33)
- Galaxy Simulation with Dust Formation and Destruction
- Dust in the diffuse interstellar medium: Extinction, emission, linear and circular polarisation
- Dust origin in late-type dwarf galaxies: ISM growth vs. type II supernovae
- Cosmological simulation with dust formation and destruction
- Discovery of a Perseus-like cloud in the early Universe: HI-to-H2 transition, carbon monoxide and small dust grains at zabs=2.53 towards the quasar J0000+0048
- Dust scaling relations in a cosmological simulation
- Luminous Type II Short-Plateau Supernovae 2006Y, 2006ai, and 2016egz: A Transitional Class from Stripped Massive Red Supergiants
- Galactic cold cores V. Dust opacity
- Remodeling the evolution of grain size distribution in galaxies
- Two-size approximation: a simple way of treating the evolution of grain size distribution in galaxies
- Galaxy simulation with the evolution of grain size distribution
- Evolution of dust extinction curves in galaxy simulation
- Detection of Ultraviolet Halos around Highly Inclined Galaxies
- Evolution of the extinction curves in galaxies
- Dust processing in elliptical galaxies
- Evolution of grain size distribution in high-redshift dusty quasars: Integrating large amounts of dust and unusual extinction curves
- Properties of the post in-spiral common envelope ejecta II: dust formation
- Distances to the Supernova Remnants in the Inner Disk
- The Distance and the near-IR extinction of the Monoceros Supernova Remnant
- Quantifying the (X/peanut)-shaped Structure of the Milky Way - New Constraints on the Bar Geometry
- Ultraviolet Halos Around Spiral Galaxies. I. Morphology
- Dust evolution processes constrained by extinction curves in nearby galaxies
- Dust diffusion in SPH simulations of an isolated galaxy
- Down-the-barrel observations of a multiphase quasar outflow at high redshift: VLT/X-shooter spectroscopy of the proximate molecular absorber at z=2.631 towards SDSS J001514+184212
- Dense molecular cloud cores as a source of micrometer-sized grains in galaxies
- Early gray dust formation in the type IIn SN 2005ip
- Evolution of dust grain size distribution and grain porosity in galaxies
- Charged grains and Kelvin Helmholtz instability in molecular clouds
- Effects of rotational disruption on the evolution of grain size distribution in galaxies
- Shattering as a source of small grains in the circum-galactic medium
- Dust Mass Associated with the Supernova Remnant IC 443 when Emission Meets Extinction
- Diffusion of Oxygen Isotopes in Thermally Evolving Planetesimals and Size Ranges of Presolar Silicate Grains
- Dust growth in molecular cloud envelopes: a numerical approach