Spectroscopic Study of IRAS 19285+0517(PDS 100): A Rapidly Rotating Li-Rich K Giant
Bacham E. Reddy, David L. Lambert, Bruce J. Hrivnak, Eric J. Bakker
Abstract
We report on photometry and high-resolution spectroscopy for IRAS 19285+0517. The spectral energy distribution based on visible and near-IR photometry and far-IR fluxes shows that the star is surrounded by dust at a temperature of T d 250 K. Spectral line analysis shows that the star is a K giant with a projected rotational velocity v sin i = 9 2 km s-1. We determined the atmospheric parameters: T eff = 4500 K, log g = 2.5, ξt = 1.5 km s-1, and [Fe/H] = 0.14 dex. The LTE abundance analysis shows that the star is Li-rich (log ε(Li) = 2.50.15), but with essentially normal C, N, and O, and metal abundances. Spectral synthesis of molecular CN lines yields the carbon isotopic ratio 12C/13C = 9 3, a signature of post-main sequence evolution and dredge-up on the RGB. Analysis of the Li resonance line at 6707 Åfor different ratios 6Li/7Li shows that the Li profile can be fitted best with a predicted profile for pure 7Li. Far-IR excess, large Li abundance, and rapid rotation suggest that a planet has been swallowed or, perhaps, that an instability in the RGB outer layers triggered a sudden enrichment of Li and caused mass-loss.
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