Isotopic evidence of long-lived volcanism on Io.
basic_science · Level V
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- Record sourced from PubMed, PMID 38634676.
- Also identified by DOI 10.1126/science.adj0625.
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Abstract
Jupiter's moon Io hosts extensive volcanism, driven by tidal heating. The isotopic composition of Io's inventory of volatile chemical elements, including sulfur and chlorine, reflects its outgassing and mass-loss history and thus records information about its evolution. We used submillimeter observations of Io's atmosphere to measure sulfur isotopes in gaseous sulfur dioxide and sulfur monoxide, and chlorine isotopes in gaseous sodium chloride and potassium chloride. We find <sup>34</sup>S/<sup>32</sup>S = 0.0595 ± 0.0038 (equivalent to δ<sup>34</sup>S = +347 ± 86‰), which is highly enriched compared to average Solar System values and indicates that Io has lost 94 to 99% of its available sulfur. Our measurement of <sup>37</sup>Cl/<sup>35</sup>Cl = 0.403 ± 0.028 (δ<sup>37</sup>Cl = +263 ± 88‰) shows that chlorine is similarly enriched. These results indicate that Io has been volcanically active for most (or all) of its history, with potentially higher outgassing and mass-loss rates at earlier times.