Evidence for supernova injection into the solar nebula and the decoupling of r-process nucleosynthesis.
basic_science · Level V
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- Record sourced from PubMed, PMID 24101483.
- Also identified by DOI 10.1073/pnas.1307759110 and PMC identifier 3808631.
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Abstract
The isotopic composition of our Solar System reflects the blending of materials derived from numerous past nucleosynthetic events, each characterized by a distinct isotopic signature. We show that the isotopic compositions of elements spanning a large mass range in the earliest formed solids in our Solar System, calcium-aluminum-rich inclusions (CAIs), are uniform, and yet distinct from the average Solar System composition. Relative to younger objects in the Solar System, CAIs contain positive r-process anomalies in isotopes A < 140 and negative r-process anomalies in isotopes A > 140. This fundamental difference in the isotopic character of CAIs around mass 140 necessitates (i) the existence of multiple sources for r-process nucleosynthesis and (ii) the injection of supernova material into a reservoir untapped by CAIs. A scenario of late supernova injection into the protoplanetary disk is consistent with formation of our Solar System in an active star-forming region of the galaxy.
Medical subject headings
- Extraterrestrial Environment
- Isotopes
- Meteoroids
- Solar System