The dust and gas content of carbon stars toward the Galactic Halo
arXiv:1208.1306 · doi:10.1111/j.1365-2966.2012.21874.x
Abstract
We present Spitzer IRS spectra of four carbon stars located in the Galactic Halo and the thick disc. The spectra display typical features of carbon stars with SiC dust emission and CH molecular absorption. Dust radiative transfer models and infrared colors enable us to determine the dust production rates for these stars whilst prior CO measurements yield expansion velocities and total mass-loss rates. The gas properties (low expansion velocities (around 7 km/s) and strong CH molecular absorption bands) are consistent with the stars being metal-poor. However the dust content of these stars (strong SiC emission bands) is very similar to what is observed in metal-rich carbon stars. The strong SiC emission may indicate that the carbon stars derive from a metal-rich population, or that these AGB stars produce silicon. The origin of the halo carbon stars is not known. They may be extrinsinc halo stars belonging to the halo population, they may have been accreted from a satellite galaxy such as the Sagittarius Dwarf Spheroidal Galaxy, or they may be escapees from the galactic disk. If the stars are intrinsically metal-rich, an origin in the disc would be most likely. If an -element enhancement can be confirmed, it would argue for an origin in the halo (which is known to be -enhanced) or a Galactic satellite.
10 pages, 5 figures, accepted for publications in MNRAS
References in corpus (12)
- Near-Infrared Photometry of Carbon Stars
- A Spitzer mid-infrared spectral survey of mass-losing carbon stars in the Large Magellanic Cloud
- The Magellanic zoo: Mid-infrared Spitzer spectroscopy of evolved stars and circumstellar dust in the Magellanic Clouds
- The Mass-Loss Return From Evolved Stars to the LMC: Empirical Relations for Excess Emission at 8 and 24 μm
- Spitzer spectroscopy of carbon stars in the Small Magellanic Cloud
- Dust-driven Winds and Mass Loss of C-rich AGB Stars with subsolar Metallicities
- The metallicity extremes of the Sagittarius dSph using SALT spectroscopy of PNe
- Spitzer observations of acetylene bands in carbon-rich AGB stars in the Large Magellanic Cloud
- Carbon-rich dust production in metal-poor galaxies in the Local Group
- Dust mass-loss rates from AGB stars in the Fornax and Sagittarius dwarf Spheroidal galaxies
- Metal-rich carbon stars in the Sagittarius Dwarf Spheroidal galaxy
- Cool carbon stars in the halo: new very red or distant objects
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- Carbon-rich dust past the asymptotic giant branch: aliphatics, aromatics, and fullerenes in the Magellanic Clouds
- The Role of Acetylene in the Chemical Evolution of Carbon Complexity
- 30-micron sources in galaxies with different metallicities
- CGCS 6306, another X-ray-emitting asymptotic giant branch star confirmed to be a symbiotic binary