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Article: The Magnesium Isotope Composition of Samples Returned from Asteroid Ryugu

TitleThe Magnesium Isotope Composition of Samples Returned from Asteroid Ryugu
Authors
Issue Date2023
Citation
Astrophysical Journal Letters, 2023, v. 958, n. 2, article no. L25 How to Cite?
AbstractThe nucleosynthetic isotope composition of planetary materials provides a record of the heterogeneous distribution of stardust within the early solar system. In 2020 December, the Japan Aerospace Exploration Agency Hayabusa2 spacecraft returned to Earth the first samples of a primitive asteroid, namely, the Cb-type asteroid Ryugu. This provides a unique opportunity to explore the kinship between primitive asteroids and carbonaceous chondrites. We report high-precision μ 26Mg* and μ 25Mg values of Ryugu samples together with those of CI, CM, CV, and ungrouped carbonaceous chondrites. The stable Mg isotope composition of Ryugu aliquots defines μ 25Mg values ranging from -160 ± 20 ppm to -272 ± 30 ppm, which extends to lighter compositions relative to Ivuna-type (CI) and other carbonaceous chondrite groups. We interpret the μ 25Mg variability as reflecting heterogeneous sampling of a carbonate phase hosting isotopically light Mg (μ 25Mg ∼ -1400 ppm) formed by low temperature equilibrium processes. After correcting for this effect, Ryugu samples return homogeneous μ 26Mg* values corresponding to a weighted mean of 7.1 ± 0.8 ppm. Thus, Ryugu defines a μ 26Mg* excess relative to the CI and CR chondrite reservoirs corresponding to 3.8 ± 1.1 and 11.9 ± 0.8 ppm, respectively. These variations cannot be accounted for by in situ decay of 26Al given their respective 27Al/24Mg ratios. Instead, it requires that Ryugu and the CI and CR parent bodies formed from material with a different initial 26Al/27Al ratio or that they are sourced from material with distinct Mg isotope compositions. Thus, our new Mg isotope data challenge the notion that Ryugu and CI chondrites share a common nucleosynthetic heritage.
Persistent Identifierhttp://hdl.handle.net/10722/363591
ISSN
2023 Impact Factor: 8.8
2023 SCImago Journal Rankings: 2.766

 

DC FieldValueLanguage
dc.contributor.authorBizzarro, Martin-
dc.contributor.authorSchiller, Martin-
dc.contributor.authorYokoyama, Tetsuya-
dc.contributor.authorAbe, Yoshinari-
dc.contributor.authorAléon, Jérôme-
dc.contributor.authorAlexander, Conel M.-
dc.contributor.authorAmari, Sachiko-
dc.contributor.authorAmelin, Yuri-
dc.contributor.authorBajo, Ken Ichi-
dc.contributor.authorBouvier, Audrey-
dc.contributor.authorCarlson, Richard W.-
dc.contributor.authorChaussidon, Marc-
dc.contributor.authorChoi, Byeon Gak-
dc.contributor.authorDauphas, Nicolas-
dc.contributor.authorDavis, Andrew M.-
dc.contributor.authorRocco, Tommaso Di-
dc.contributor.authorFujiya, Wataru-
dc.contributor.authorFukai, Ryota-
dc.contributor.authorGautam, Ikshu-
dc.contributor.authorHaba, Makiko K.-
dc.contributor.authorHibiya, Yuki-
dc.contributor.authorHidaka, Hiroshi-
dc.contributor.authorHomma, Hisashi-
dc.contributor.authorHoppe, Peter-
dc.contributor.authorHuss, Gary R.-
dc.contributor.authorIchida, Kiyohiro-
dc.contributor.authorIizuka, Tsuyoshi-
dc.contributor.authorIreland, Trevor R.-
dc.contributor.authorIshikawa, Akira-
dc.contributor.authorItoh, Shoichi-
dc.contributor.authorKawasaki, Noriyuki-
dc.contributor.authorKita, Noriko T.-
dc.contributor.authorKitajima, Kouki-
dc.contributor.authorKleine, Thorsten-
dc.contributor.authorKomatani, Shintaro-
dc.contributor.authorKrot, Alexander N.-
dc.contributor.authorLiu, Ming Chang-
dc.contributor.authorMasuda, Yuki-
dc.contributor.authorMorita, Mayu-
dc.contributor.authorMoynier, Fréderic-
dc.contributor.authorMotomura, Kazuko-
dc.contributor.authorNakai, Izumi-
dc.contributor.authorNagashima, Kazuhide-
dc.contributor.authorNesvorný, David-
dc.contributor.authorNguyen, Ann-
dc.contributor.authorNittler, Larry-
dc.contributor.authorOnose, Morihiko-
dc.contributor.authorPack, Andreas-
dc.contributor.authorPark, Changkun-
dc.contributor.authorPiani, Laurette-
dc.contributor.authorQin, Liping-
dc.contributor.authorRussell, Sara S.-
dc.contributor.authorSakamoto, Naoya-
dc.contributor.authorSchönbächler, Maria-
dc.contributor.authorTafla, Lauren-
dc.contributor.authorTang, Haolan-
dc.contributor.authorTerada, Kentaro-
dc.contributor.authorTerada, Yasuko-
dc.contributor.authorUsui, Tomohiro-
dc.contributor.authorWada, Sohei-
dc.contributor.authorWadhwa, Meenakshi-
dc.contributor.authorWalker, Richard J.-
dc.contributor.authorYamashita, Katsuyuki-
dc.contributor.authorYin, Qing Zhu-
dc.contributor.authorYoneda, Shigekazu-
dc.contributor.authorYoung, Edward D.-
dc.contributor.authorYui, Hiroharu-
dc.contributor.authorZhang, Ai Cheng-
dc.contributor.authorNakamura, Tomoki-
dc.contributor.authorNaraoka, Hiroshi-
dc.contributor.authorNoguchi, Takaaki-
dc.contributor.authorOkazaki, Ryuji-
dc.contributor.authorSakamoto, Kanako-
dc.contributor.authorYabuta, Hikaru-
dc.contributor.authorAbe, Masanao-
dc.contributor.authorMiyazaki, Akiko-
dc.contributor.authorNakato, Aiko-
dc.contributor.authorNishimura, Masahiro-
dc.contributor.authorOkada, Tatsuaki-
dc.contributor.authorYada, Toru-
dc.contributor.authorYogata, Kasumi-
dc.contributor.authorNakazawa, Satoru-
dc.contributor.authorSaiki, Takanao-
dc.contributor.authorTanaka, Satoshi-
dc.contributor.authorTerui, Fuyuto-
dc.contributor.authorTsuda, Yuichi-
dc.contributor.authorWatanabe, Sei Ichiro-
dc.contributor.authorYoshikawa, Makoto-
dc.contributor.authorTachibana, Shogo-
dc.contributor.authorYurimoto, Hisayoshi-
dc.date.accessioned2025-10-10T07:48:01Z-
dc.date.available2025-10-10T07:48:01Z-
dc.date.issued2023-
dc.identifier.citationAstrophysical Journal Letters, 2023, v. 958, n. 2, article no. L25-
dc.identifier.issn2041-8205-
dc.identifier.urihttp://hdl.handle.net/10722/363591-
dc.description.abstractThe nucleosynthetic isotope composition of planetary materials provides a record of the heterogeneous distribution of stardust within the early solar system. In 2020 December, the Japan Aerospace Exploration Agency Hayabusa2 spacecraft returned to Earth the first samples of a primitive asteroid, namely, the Cb-type asteroid Ryugu. This provides a unique opportunity to explore the kinship between primitive asteroids and carbonaceous chondrites. We report high-precision μ <sup>26</sup>Mg* and μ <sup>25</sup>Mg values of Ryugu samples together with those of CI, CM, CV, and ungrouped carbonaceous chondrites. The stable Mg isotope composition of Ryugu aliquots defines μ <sup>25</sup>Mg values ranging from -160 ± 20 ppm to -272 ± 30 ppm, which extends to lighter compositions relative to Ivuna-type (CI) and other carbonaceous chondrite groups. We interpret the μ <sup>25</sup>Mg variability as reflecting heterogeneous sampling of a carbonate phase hosting isotopically light Mg (μ <sup>25</sup>Mg ∼ -1400 ppm) formed by low temperature equilibrium processes. After correcting for this effect, Ryugu samples return homogeneous μ <sup>26</sup>Mg* values corresponding to a weighted mean of 7.1 ± 0.8 ppm. Thus, Ryugu defines a μ <sup>26</sup>Mg* excess relative to the CI and CR chondrite reservoirs corresponding to 3.8 ± 1.1 and 11.9 ± 0.8 ppm, respectively. These variations cannot be accounted for by in situ decay of <sup>26</sup>Al given their respective <sup>27</sup>Al/<sup>24</sup>Mg ratios. Instead, it requires that Ryugu and the CI and CR parent bodies formed from material with a different initial <sup>26</sup>Al/<sup>27</sup>Al ratio or that they are sourced from material with distinct Mg isotope compositions. Thus, our new Mg isotope data challenge the notion that Ryugu and CI chondrites share a common nucleosynthetic heritage.-
dc.languageeng-
dc.relation.ispartofAstrophysical Journal Letters-
dc.titleThe Magnesium Isotope Composition of Samples Returned from Asteroid Ryugu-
dc.typeArticle-
dc.description.naturelink_to_subscribed_fulltext-
dc.identifier.doi10.3847/2041-8213/ad09d9-
dc.identifier.scopuseid_2-s2.0-85179467539-
dc.identifier.volume958-
dc.identifier.issue2-
dc.identifier.spagearticle no. L25-
dc.identifier.epagearticle no. L25-
dc.identifier.eissn2041-8213-

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