
| ID | 70880 |
| フルテキストURL | |
| 著者 |
Peng, Yihang
Department of Geosciences, Princeton University
Yoshino, Takashi
Institute for Planetary Materials, Okayama University
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Deng, Jie
Department of Geosciences, Princeton University
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| 抄録 | The low 182W/184W and high 3He/4He in some ocean island basalts compared to the bulk mantle values may derive from the Earth’s core through long-term core-mantle interactions. It has been proposed that the grain boundary diffusion of siderophile elements is an efficient mechanism for core-mantle interaction and may effectively modify the W isotopic compositions of the plume-source mantle. In this study, we perform large-scale molecular dynamics simulations driven by machine learning potentials of ab initio quality to investigate the diffusion of W along ferropericlase grain boundaries and in (Mg,Fe)O liquid. Here we show that the diffusion of W is sluggish under core-mantle boundary conditions, and thus is unlikely to have observable impacts on the W isotopic compositions of terrestrial igneous rocks.
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| 発行日 | 2025-02-21
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| 出版物タイトル |
Nature Communications
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| 巻 | 16巻
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| 号 | 1号
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| 出版者 | Springer Science and Business Media LLC
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| 開始ページ | 1866
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| ISSN | 2041-1723
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| 資料タイプ |
学術雑誌論文
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| 言語 |
英語
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| OAI-PMH Set |
岡山大学
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| 著作権者 | © The Author(s) 2025
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| 論文のバージョン | publisher
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| 関連URL | isVersionOf https://doi.org/10.1038/s41467-025-57120-1
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| ライセンス | http://creativecommons.org/licenses/by-nc-nd/4.0/
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| Citation | Peng, Y., Yoshino, T. & Deng, J. Grain boundary diffusion cannot explain the W isotope heterogeneities of the deep mantle. Nat Commun 16, 1866 (2025). https://doi.org/10.1038/s41467-025-57120-1
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| 助成情報 |
EAR-2242946:
( National Science Foundation )
21H04996:
川井型マルチアンビル装置による深部マントル研究の新展開
( 独立行政法人日本学術振興会 / Japan Society for the Promotion of Science )
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