Complex Organic and Inorganic Compounds in Shells of Lithium-rich K Giant Stars
arXiv:1504.05983 · doi:10.1088/0004-637X/806/1/86
Abstract
Hydrocarbon organic material, as found in the interstellar medium, exists in complex mixtures of aromatic and aliphatic forms. It is considered to be originated from carbon enriched giant stars during their final stages of evolution, when very strong mass loss occurs in a few thousand years on their way to become planetary nebulae. We show here that the same organic compounds appear to be formed in previous stages of the evolution of giant stars. More specifically, during the first ascending giant branch K-type stars. According to our model this happens only when these stars are being abruptly enriched with lithium together with the formation of a circumstellar shell with a strong mass loss during just a few thousand years. This sudden mass loss is, on an average, a thousand times larger than that of normal Li-poor K giant stars. This shell would later be detached, specially when the star stops its Li enrichment and a rapid photospheric Li depletion occurs. In order to gain extra carbon-based material to form the organic hydrocarbons, and also to explain the presence of complex inorganic compounds in these stars, we propose an interaction of these strong winds with remaining asteroidal/cometary disks that already existed around these stars since they were dwarf A-type stars. The mechanism of interaction presented here is successful to explain the presence of inorganic compounds, however it is unable to produce new carbon free atoms to form the organic hydrocarbon compounds. Finally, we discuss some suggestions and speculations that can eventually help solving the long-standing puzzle of Li-rich giants.
Accepted for publication in ApJ, 19 pages, 5 figures, 1 table
References in corpus (8)
- Pollution of single white dwarfs by accretion of many small asteroids
- Molecular Gas Clumps from the Destruction of Icy Bodies in the Pictoris Debris Disk
- CO mass upper limits in the Fomalhaut ring - the importance of NLTE excitation in debris discs and future prospects with ALMA
- On the Numerical Treatment and Dependence of Thermohaline Mixing in Red Giants
- Discovery of Super-Li Rich Red Giants in Dwarf Spheroidal Galaxies
- PAH Formation in O-rich Planetary Nebulae
- Spectral Calibration in the Mid-Infrared: Challenges and Solutions
- Complex Organic Materials in the HR 4796A Disk?
Cited by in corpus (4)
- Li-rich K giants, dust excess, and binarity
- The 6 m Feature as A Tracer of Aliphatic Components of Interstellar Carbonaceous Grains
- Analysis of the non-LTE lithium abundance for a large sample of F-, G-, and K-giants and supergiants
- On producers of cosmic organic compounds: exploring the boron abundance in lithium-rich K giant stars