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      Hydrogen Isotopic Composition of Hydrous Minerals in Asteroid Ryugu

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      The Astrophysical Journal Letters
      American Astronomical Society

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          Abstract

          Rock fragments of the Cb-type asteroid Ryugu returned to Earth by the JAXA Hayabusa2 mission share mineralogical, chemical, and isotopic properties with the Ivuna-type (CI) carbonaceous chondrites. Similar to CI chondrites, these fragments underwent extensive aqueous alteration and consist predominantly of hydrous minerals likely formed in the presence of liquid water on the Ryugu parent asteroid. Here we present an in situ analytical survey performed by secondary ion mass spectrometry from which we have estimated the D/H ratio of Ryugu’s hydrous minerals, D/H Ryugu, to be [165 ± 19] × 10 −6, which corresponds to δD Ryugu = +59 ± 121‰ (2 σ). The hydrous mineral D/H Ryugu’s values for the two sampling sites on Ryugu are similar; they are also similar to the estimated D/H ratio of hydrous minerals in the CI chondrites Orgueil and Alais. This result reinforces a link between Ryugu and CI chondrites and an inference that Ryugu’s samples, which avoided terrestrial contamination, are our best proxy to estimate the composition of water at the origin of hydrous minerals in CI-like material. Based on this data and recent literature studies, the contribution of CI chondrites to the hydrogen of Earth’s surficial reservoirs is evaluated to be ∼3%. We conclude that the water responsible for the alteration of Ryugu’s rocks was derived from water ice precursors inherited from the interstellar medium; the ice partially re-equilibrated its hydrogen with the nebular H 2 before being accreted on the Ryugu’s parent asteroid.

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          The origin and evolution of chondrites recorded in the elemental and isotopic compositions of their macromolecular organic matter

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                Journal
                The Astrophysical Journal Letters
                ApJL
                American Astronomical Society
                2041-8205
                2041-8213
                April 04 2023
                April 01 2023
                April 04 2023
                April 01 2023
                : 946
                : 2
                : L43
                Article
                10.3847/2041-8213/acc393
                0b717dec-06cc-4acd-96ae-584f976607cd
                © 2023

                http://creativecommons.org/licenses/by/4.0/

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