Tetsuya Yokoyama
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Professor Tetsuya Yokoyama is a faculty member at the Tokyo Institute of Technology in Japan. His research encompasses the study of isotopic variations in chondritic materials, including recent investigations into fluid flow in primitive asteroids and elemental abundances in the asteroid Ryugu. With a focus on the nucleosynthetic origins of early solar system materials, his work employs techniques such as mass spectrometry for multi-isotopic analysis of extraterrestrial samples.
Recent Grants
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小惑星リュウグウ試料の多元素同位体分析:C型小惑星の起源と形成史の解明
Open Date: 2021-10-07
Close Date: 2026-03-31
Grant: Close
Chemical and isotopic analyses of asteroid samples returned by Hayabusa2 mission
Open Date: 2020-04-01
Close Date: 2022-03-31
Grant: Close
隕石および太古代火成岩の親鉄元素同位体分析による地球形成モデルの構築
Open Date: 2019-04-01
Close Date: 2023-03-31
Grant: Close
Investigation of the plume source regions using mantle xenoliths
Open Date: 2019-04-01
Close Date: 2022-03-31
Grant: Close
星と隕石の組成解読を基軸としたr過程元素の起源・進化の解明
Open Date: 2018-04-01
Close Date: 2023-03-31
Articles (27)
Hydrogen in magnetite from asteroid Ryugu
In order to gain insights on the conditions of aqueous alteration on asteroid Ryugu and the origin of water in the outer solar system, we developed the measurement of water content in magnetite at the micrometer scale by secondary ion mass spectrometry (NanoSIMS) and determined the H and Si content of coarse‐grained euhedral magnetite grains (polyhedral magnetite) and coarse‐grained fibrous (spherulitic) magnetite from the Ryugu polished section A0058‐C1001. The hydrogen content in magnetite ranges between ~900 and ~3300 wt ppm equivalent water and is correlated with the Si content. Polyhedral magnetite has low and homogenous silicon and water content, whereas fibrous magnetite shows correlated Si and water excesses. These excesses can be explained by the presence of hydrous Si‐rich amorphous nanoinclusions trapped during the precipitation of fibrous magnetite away from equilibrium and testify that fibrous magnetite formed from a hydrous gel with possibly more than 20 wt% water. An attempt to determine the water content in sub‐μm framboids indicates that additional calibration and contamination issues must be addressed before a safe conclusion can be drawn, but hints at elevated water content as well. The high water content in fibrous magnetite, expected to be among the first minerals to crystallize at low water–rock ratio, points to the control of water content by local conditions of magnetite precipitation rather than large‐scale alteration conditions. Systematic lithological variations associated with water‐rich and water‐poor magnetite suggest that the global context of alteration may be better understood if local water concentrations are compared with millimeter‐scale distribution of the various morphologies of magnetite. Finally, the high water content in the magnetite precursor gel indicates that the initial O isotopic composition in alteration water must not have been very different from that of the earliest magnetite crystals.
Year:
2024
Collaborators (25)
Maria Schonbachler
ETH Zurich
Mutsumi Komatsu
Associate Professor
Saitama University
Makiko Haba
Assistant Professor
Tokyo Institute of Technology
Yan Hu
Institut de Physique du Globe de Paris
Toru Matsumoto
Kyoto University
Trevor Ireland
Professor
University of Queensland
Conel Alexander
Carnegie Institution for Science
Rhonda Stroud
Professor
Arizona State University
Martin Bizzarro
Professor
University of Copenhagen
Daisuke Araoka
National Institute of Advanced Industrial Science and Technology (AIST)
Henner Busemann
ETH Zurich
Shogo Tachibana
Professor
University of Tokyo
Kevin McKeegan
Professor
UCLA
Ryota Fukai
Assistant professor
Japan Aerospace Exploration Agency
Takanao Saiki
Professor
Japan Aerospace Exploration Agency
Marine PAQUET
Institut de Physique du Globe de Paris
Jens Barosch
University of Edinburgh
Akira Ishikawa
Associate Professor
Tokyo Institute of Technology
Hicham KHODJA
Head of Laboratoire d'Etude des Eléments Légers
CEA Saclay
Changkun Park
Korea Polar Research Institute
Audrey Bouvier
Prof. Dr.
University of Bayreuth
Taiga Okumura
University of Tokyo
Yoko Kebukawa
Associate Professor
Yokohama National University
H. Yurimoto
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Hikaru Iwamori
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