Modelling the nucleosynthetic properties of carbon-enhanced metal-poor RR Lyrae stars
arXiv:1307.4762 · doi:10.1093/mnras/stt1329
Abstract
Certain carbon-enhanced metal-poor stars likely obtained their composition via pollution from some of the earliest generations of asymptotic giant branch stars and as such provide important clues to early Universe nucleosynthesis. Recently, Kinman et al. discovered that the highly carbon- and barium-enriched metal-poor star SDSS J1707+58 is in fact an RR Lyrae pulsator. This gives us an object in a definite evolutionary state where the effects of dilution of material during the Main Sequence are minimised owing to the object having passed through first dredge-up. We perform detailed stellar modelling of putative progenitor systems in which we accreted material from asymptotic giant branch stars in the mass range 1-2 solar masses. We investigate how the surface abundances are affected by the inclusion of mechanisms like thermohaline mixing and gravitational settling. While we are able to find a reasonable fit to the carbon and sodium abundances of SDSS J1707+58, suggesting accretion of around 0.1 solar masses from a 2 solar mass companion, the strontium and barium abundances remain problematic and this object may have experienced something other than a standard process. We have more success in fitting the abundances of the mildly carbon-enriched, metal-poor RR Lyrae pulsator TY Gru (CS 22881-071), which we suggest received 0.1 solar masses of material from a companion of around 1 solar mass.
10 pages, 5 figures. Accepted for publication in MNRAS
References in corpus (11)
- Thermohaline mixing: A physical mechanism governing the photospheric composition of low-mass giants
- Wind Roche-lobe overflow: Application to carbon-enhanced metal-poor stars
- Carbon-Enhanced Metal-Poor Stars. III. Main-Sequence Turn-Off Stars from the SDSS/SEGUE Sample
- Thermohaline mixing and gravitational settling in carbon-enhanced metal-poor stars
- CS22964-161: A Double-Lined Carbon- and s-Process-Enhanced Metal-Poor Binary Star
- Lithium abundances in CEMP stars
- Light element abundances in carbon-enhanced metal-poor stars
- The Impact of Carbon Enhancement on Extra Mixing in Metal-Poor Stars
- Does simultaneous solution matter for stellar evolution codes?
- Chemical abundances of metal-poor RR Lyrae stars in the Magellanic Clouds
- A New CEMP-s RR Lyrae Star
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- Studies of RR Lyrae Variables in Binary Systems. I.: Evidence of a Trimodal Companion Mass Distribution
- Chemical abundances in a high velocity RR Lyrae star near the bulge
- Radiative levitation in carbon-enhanced metal-poor stars with s-process enrichment
- Seven New Carbon-Enhanced Metal-Poor RR Lyrae Stars
- HCT/HESP study of two carbon stars from the LAMOST survey
- Pulsation in TESS Objects of Interest
- RR Lyrae stars with variable mean magnitudes
- CEMP-s and CEMP-s/r stars: last update