研究者業績
基本情報
- 所属
- 国立研究開発法人宇宙航空研究開発機構 宇宙科学研究所 教授
- 学位
- 博士(学術)(岡山大学)
- J-GLOBAL ID
- 201901004664301386
- researchmap会員ID
- B000348549
- 外部リンク
Personal HP <https://sites.google.com/site/tomohirousui/>
Google Scholar <https://scholar.google.com/citations?user=iCTuRbUAAAAJ&hl=en>
ISAS astromaterial/curation research group HP <https://curation.isas.jaxa.jp/en/>
研究分野
1経歴
3-
2018年7月 - 現在
-
2016年4月 - 2018年6月
-
2012年4月 - 2016年3月
論文
106-
Meteoritics & Planetary Science 2025年11月25日Abstract Analyzing primitive extraterrestrial samples from asteroids is key to understanding the evolution of the early solar system. The OSIRIS‐REx mission returned samples from the B‐type asteroid Bennu, providing a valuable opportunity to compare them with the Ryugu samples collected by the Hayabusa2 mission. This study examines the representativeness of a fraction of the Bennu samples, which was allocated from NASA to JAXA, by nondestructive characterization of their physical and spectral properties without atmospheric exposure. The reflectance and observed spectral features in the visible‐to‐infrared range of the Bennu sample resemble those from the spectroscopic analysis of different fractions. Additionally, we found differences in the slope of the visible range and band‐center of ~2.7 μm band between the samples and the asteroid surface, which could be explained by the degree of space weathering. A comparative analysis of the Bennu and Ryugu samples revealed spectral similarities, including absorption features indicative of Mg‐rich phyllosilicates, organics, and carbonates, without any evidence of sampling bias or terrestrial alteration. This finding can be used as a benchmark for subsequent Ryugu–Bennu comparative studies.
-
Meteoritics & Planetary Science 60(11) 2529-2559 2025年9月6日Abstract Silica polymorphs in meteorites provide critical constraints on crystallization processes associated with thermal activity in the early solar system. A detailed investigation of silica polymorphs in eucrites (the largest group of achondrites) using cathodoluminescence imaging and laser‐Raman spectroscopy revealed significant variations in the relative abundance of silica polymorphs. Based on these variations, the eucrites were divided into four “Si‐groups” according to their dominant silica phase: Si‐0 (cristobalite‐dominant eucrites), Si‐I (quartz‐dominant eucrites), Si‐II (quartz and tridymite‐dominant eucrites), and Si‐III (tridymite‐dominant eucrites). In studied eucrites, tridymite and cristobalite form lathy euhedral shapes, while quartz is anhedral, coexistent with opaques and phosphates, suggesting that silica polymorphs were crystallized from different stages and formation processes. We propose a new model that explains the formation pathways of silica minerals in eucrites and accounts for the distinct formation histories represented by each Si‐group: tridymite crystallizes from alkali‐rich immiscible melts (starting at ≥ ~1060°C), cristobalite crystallizes from quenched melts (~1060°C), and quartz crystallizes from extremely differentiated melts and/or by solid‐state transformation from tridymite and cristobalite through interactions with sulfur‐rich vapor below ~1025°C. This model explains the occurrences of silica polymorphs in eucrites without requiring secondary heating or shock processes.
-
Geology 53(11) 945-950 2025年9月2日Abstract Subsurface ice in the mid-latitudes of Mars represents one of the largest present-day water ice reservoirs. While atmospheric models predict Late Amazonian (during the past hundreds of millions of years) obliquity-driven ice accumulation, its long-term variations, and the factors influencing accumulation remain unclear. Using geomorphological evidence and numerical modeling, we reveal a southwestern depositional trend within northern mid-latitudinal crater walls and floors. Detailed crater-fill deposit analyses indicate multiple glaciation stages, including an earlier, high-intensity stage followed by a later, lower-intensity stage, both exhibiting this southwestern trend (ca. 640–98 Ma). We conclude that persistent multiple-stage Amazonian glaciations were governed by atmospheric water availability and obliquity-driven climate cycles.
-
GEOCHEMICAL JOURNAL 59(2) 45-63 2025年
-
Meteoritics & Planetary Science 2024年11月25日Abstract Nucleosynthetic isotope variations are powerful tracers to determine genetic relationships between meteorites and planetary bodies. They can help to link material collected by space missions to known meteorite groups. The Hayabusa 2 mission returned samples from the Cb‐type asteroid (162173) Ryugu. The mineralogical, chemical, and isotopic characteristics of these samples show strong similarities to carbonaceous chondrites and in particular CI chondrites. The nucleosynthetic isotope compositions of Ryugu overlap with CI chondrites for several elements (e.g., Cr, Ti, Fe, and Zn). In contrast to these isotopes, which are of predominately supernovae origin, s‐process variations in Mo isotope data are similar to those of carbonaceous chondrites, but even more s‐process depleted. To further constrain the origin of this depletion and test whether this signature is also present for other s‐process elements, we report Zr isotope compositions for three bulk Ryugu samples (A0106, A0106‐A0107, C0108) collected from the Hayabusa 2 mission. The data are complemented with that of terrestrial rock reference materials, eucrites, and carbonaceous chondrites. The Ryugu samples are characterized by distinct 96Zr enrichment relative to Earth, indicative of a s‐process depletion. Such depletion is also observed for carbonaceous chondrites and eucrites, in line with previous Zr isotope work, but it is more extreme in Ryugu, as observed for Mo isotopes. Since s‐process Zr and Mo are coupled in mainstream SiC grains, these distinct s‐process variations might be due to SiC grain depletion in the analyzed materials, potentially caused by incomplete sample digestion, because the Ryugu samples were dissolved on a hotplate only to avoid high blank levels for other elements (e.g., Cr). However, local depletion of SiC grains cannot be excluded. An alternative, equally possible scenario is that aqueous alteration redistributed anomalous, s‐process‐depleted, Zr on a local scale, for example, into Ca‐phosphates or phyllosilicates.
MISC
29-
日本地球化学会年会要旨集 66 177-177 2019年<p>火星隕石ナクライトにはIddingsiteという変質脈が存在し、この中の変質鉱物には火星での水の痕跡が残されている。しかし、変質鉱物には炭酸塩と硫酸塩(jarositeなど)という異なるEh-pH条件で形成したと考えられる物質が共存しており、火星でのIddingsite形成環境・過程は不明瞭である。また、これらの関係性を正確に議論した研究は今までにほとんどない。本研究ではナクライト隕石Y000593のIddingsiteを対象とし、微量元素とその化学種に着目した分析を行った。従来の隕石分析に用いるSEM・EPMA分析に、放射光をベースとしたX線顕微分析(μ-XRF-XAFS@BL37XU SPring-8とsemi-μ-XRF-XAFS@BL-15A KEK-PF)から得られる知見を組み合わせることで、変質過程の詳細な解明を試みた。</p>
-
Astrobiology: From the Origins of Life to the Search for Extraterrestrial Intelligence v-vi 2019年1月1日
-
平成29年度宇宙航行の力学シンポジウム = Symposium on Flight Mechanics and Astrodynamics: 2017 2017年12月平成29年度宇宙航行の力学シンポジウム(2017年12月7日-8日. 宇宙航空研究開発機構宇宙科学研究所(JAXA)(ISAS)), 相模原市, 神奈川県著者人数: 11名資料番号: SA6000124018
-
第50回月・惑星シンポジウム = Proceedings of the 50th ISAS Lunar and Planetary Symposium 2017年8月第50回月・惑星シンポジウム (2017年8月3-4日. 宇宙航空研究開発機構宇宙科学研究所(JAXA)(ISAS)), 相模原市, 神奈川県著者人数: 17名資料番号: SA6000200012
-
第49回月・惑星シンポジウム = Proceedings of the 49th ISAS Lunar and Planetary Symposium 2016年7月第49回月・惑星シンポジウム (2016年7月20-21日. 宇宙航空研究開発機構宇宙科学研究所(JAXA)(ISAS)), 相模原市, 神奈川県著者人数: 17名資料番号: SA6000059023
-
日本地球化学会年会要旨集 63 181-181 2016年<p>数ナノグラム以下の極微量Pb同位体分析時に分析精度に大きく影響するのは、存在度の最も低い同位体である204Pb (1.4%)の信号強度の低さであり、極微量PbについてPbイオン信号強度を最大化する事が分析精度の向上に重要である。本研究では、極微量Pb(< 2 ng)に対して同位体分析手法の最適化を行い、表面電離型質量分析計(TIMS)を用いてトータルエバポレーション法と204Pb-207Pbダブルスパイク法を併用した高精度Pb同位体分析手法の開発を行った。Pb信号強度の最大化と測定精度向上のために、イオン化促進剤の量、試料塗布幅、フィラメント電流値変化、測定値の計算方法の検討を行った。本研究の手法における208Pb/204Pb比の繰り返し再現性(2S.D.)として、0.160/00 (2 ng)、0.450/00 (0.5 ng)、1.30/00 (0.1 ng)が得られた。</p>
-
GEOCHEMICAL JOURNAL 50(1) 1-2 2016年
-
日本惑星科学会秋期講演会予稿集 2013 "P1-25" 2013年11月20日
共同研究・競争的資金等の研究課題
12-
日本学術振興会 科学研究費助成事業 2022年12月 - 2029年3月
-
日本学術振興会 科学研究費助成事業 2020年10月 - 2026年3月
-
日本学術振興会 科学研究費助成事業 2022年4月 - 2025年3月
-
日本学術振興会 科学研究費助成事業 2022年4月 - 2025年3月
-
日本学術振興会 科学研究費助成事業 2021年4月 - 2024年3月