Relics of ancient post-AGB stars in a primitive meteorite
arXiv:1310.2679 · doi:10.1088/2041-8205/777/2/L27
Abstract
Graphite is one of the many presolar circumstellar condensate species found in primitive meteorites. While the isotopic compositions of low-density graphite grains indicate an origin in core-collapse supernovae, some high-density grains have extreme isotopic anomalies in C, Ca and Ti, which cannot be explained by envelope predictions of asymptotic giant branch (AGB) stars or theoretical supernova models. The Ca and Ti isotopic anomalies, however, match the predictions of He-shell abundances in AGB stars. In this study, we show that the C, Ca, and Ti isotopic anomalies are consistent with nucleosynthesis predictions of the H-ingestion phase during a very late thermal pulse (VLTP) event in post-AGB stars. The low C/C isotopic ratios in these grains are a result of abundant C efficiently capturing the protons that are being ingested during the VLTP. Very high neutron densities of cm, typical of the -process, are achieved during this phase in post-AGB stars. The large Ca excesses in some graphite grains are indicative of neutron capture nucleosynthesis during VLTP. The comparison of VLTP nucleosynthesis calculations to the graphite data also indicate that apparent anomalies in the Ti isotopic ratios are due to large contributions from Ca, which cannot be resolved from the isobars Ti during the measurements. We conclude that presolar graphite grains with moderate to extreme Ca and Ti isotopic anomalies originate in post-AGB stars that suffer a very late thermal pulse.
15 pages, 5 figures, Accepted for publication in Astrophysical Journal Letters
References in corpus (8)
- Evolution, nucleosynthesis and yields of low mass AGB stars at different metallicities (II): the FRUITY database
- Evolution of interstellar dust and stardust in the solar neighbourhood
- Effects of Metallicity on the Chemical Composition of Carbon Stars
- Stellar archaeology: the evolving spectrum of FG Sge
- The onset of photoionization in Sakurai's Object (V4334 Sgr)
- The Spitzer IRS view of V4334 Sgr (Sakurai's Object)
- A dense disk of dust around the born-again Sakurai's object
- Hydrodynamic simulations of H entrainment at the top of He-shell flash convection
Cited by in corpus (23)
- The Dawes Review 2: Nucleosynthesis and stellar yields of low and intermediate-mass single stars
- i-process nucleosynthesis and mass retention efficiency in He-shell flash evolution of rapidly accreting white dwarfs
- The production of proton-rich isotopes beyond iron: The process in stars
- The Diverse Origins of Neutron-Capture Elements in the Metal-Poor Star HD 94028: Possible Detection of Products of i-process Nucleosynthesis
- New insights on Ba over-abundance in open clusters. Evidence for the intermediate neutron-capture process at play?
- Stellar origin of 15N-rich presolar SiC grains of type AB: supernovae with explosive hydrogen burning
- The s Process and Beyond
- Galactic Chemical Evolution: the Impact of the 13C-pocket Structure on the s-process Distribution
- The intermediate neutron capture process. III. The i-process in AGB stars of different masses and metallicities without overshoot
- Deep underground laboratory measurement of C(,)O in the Gamow windows of the - and -processes
- J-type carbon stars: A dominant source of 14N-rich presolar SiC grains of type AB
- Coordinated Analysis of Two Graphite Grains from the CO3.0 LAP 031117 Meteorite: First Identification of a CO Nova Graphite and a Presolar Iron Sulfide Subgrain
- R Coronae Borealis Stars are Viable Factories of Pre-solar Grains
- Unusual neutron-capture nucleosynthesis in a carbon-rich Galactic bulge star
- The impact of (n,) reaction rate uncertainties on the predicted abundances of i-process elements with in the metal-poor star HD94028
- Synthesis of thorium and uranium in asymptotic giant branch stars
- A strong neutron burst in jet-like supernovae of spinstars
- The i-process and CEMP-r/s stars
- NanoSIMS, TEM, and XANES studies of a Unique Presolar Supernova Graphite Grain
- Presolar grains
- Isotopic ratios for C, N, Si, Al, and Ti in C-rich presolar grains from massive stars
- Strontium-84 Enrichments in Presolar Grains Provide First Evidence of p-process Nucleosynthesis in Core-collapse Supernovae
- Post-AGB nebular studies