Optical properties of silicon carbide for astrophysical applications I. New laboratory infrared reflectance spectra and optical constants
arXiv:0803.1210 · doi:10.1051/0004-6361:20078468
Abstract
Silicon Carbide (SiC) optical constants are fundamental inputs for radiative transfer models of astrophysical dust environments. However, previously published values contain errors and do not adequately represent the bulk physical properties of the cubic (beta) SiC polytype usually found around carbon stars. We provide new, uncompromised optical constants for beta- and alpha-SiC derived from single-crystal reflectance spectra and investigate quantitatively whether there is any difference between alpha- and beta-SiC that can be seen in infrared spectra and optical functions. Previous optical constants for SiC do not reflect the true bulk properties, and they are only valid for a narrow grain size range. The new optical constants presented here will allow narrow constraints to be placed on the grain size and shape distribution that dominate in astrophysical environments. In addition, our calculated absorption coefficients are much higher than laboratory measurements, which has an impact on the use of previous data to constrain abundances of these dust grains.
12 pages; 10 figures; laboratory optical constants available from CDS. Accepted by Astronomy & Astrophysics
References in corpus (4)
- The shape and composition of interstellar silicate grains
- A Spitzer mid-infrared spectral survey of mass-losing carbon stars in the Large Magellanic Cloud
- Spitzer Infrared Spectrograph Observations of Magellanic Cloud Planetary Nebulae: the nature of dust in low metallicity circumstellar ejecta
- Spitzer spectroscopy of carbon stars in the Small Magellanic Cloud
Cited by in corpus (5)
- Luminosities and mass-loss rates of Local Group AGB stars and Red Supergiants
- Theoretical Investigation of Phonon Polaritons in SiC Micropillar Resonators
- Dust-gas chemistry in AGB outflows: Chemical modelling of dust-gas chemistry within AGB outflows I. Effect on the gas-phase chemistry
- Surprising detection of an equatorial dust lane on the AGB star IRC+10216
- Dusty shells surrounding the carbon variables S Scuti and RT Capricorni