Curriculum Vitaes
Profile Information
- Affiliation
- Professor, Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency
- J-GLOBAL ID
- 201901019246827999
- researchmap Member ID
- B000358321
- External link
Research Interests
4Research Areas
1Education
3-
Apr, 1999 - Mar, 2002
Papers
214-
Journal of the American Ceramic Society, 109(2), Feb 10, 2026 Peer-reviewedABSTRACT The thermophysical properties and atomic structure of molten oxides are crucial data for advancing our understanding of the glass transition and for optimizing melt processes of advanced functional glasses. We report a variety of measurements on ten binary and ternary fragile liquid oxides selected from two compositional families, the CaO–Al 2 O 3 –SiO 2 and R 2 O 3 –Al 2 O 3 (R = Y, La, and/or Yb) systems, using imaging techniques on droplets levitated and laser beam heated in microgravity. The liquids’ densities, thermal expansion coefficients, viscosities, and surface tensions are measured up to 2800 K, spanning several hundred kelvins above and below the equilibrium melting points. For binary and ternary rare‐earth aluminate melts, the molar volumes follow approximately a linear trend with the mean cube of the cation radii, consistent with their unary oxide endmembers. Melt‐quenched glasses are further characterized with x‐ray tomography and diffraction to assess internal porosity and structure. Glasses prepared in microgravity have atomic structures that are indistinguishable from terrestrially prepared analogues. Internal bubbles are occasionally present, and in microgravity, the bubbles do not migrate to external surfaces as is common for terrestrial processing of such high‐temperature, inviscid liquids. These findings provide useful insights into the nature of fragile oxide liquids and glass formation, with implications for space‐based manufacturing.
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Journal of Materials Science: Materials in Engineering, 21(1), Jan 10, 2026Abstract Miscibility gap alloys (MGAs) are promising candidates for high‑temperature thermal energy storage owing to their high latent heat and intrinsic phase separation. In this study, the liquid–liquid phase separation and subsequent solidification of Fe–Cu alloys were experimentally investigated using an aerodynamic levitator in a reducing atmosphere to suppress oxidation. In situ observations using a high-speed camera revealed that Fe‑rich liquid domains separated first from the undercooled homogeneous liquid, followed by the formation of Cu‑rich liquid domains. These observations are consistent with the asymmetry of the Gibbs free energy of mixing in liquid Fe–Cu alloys. The energy densities of these alloys exceeded the upper range of IRENA’s 2050 target (50–85 kWh m⁻ 3 ) for high-temperature latent-heat storage at Cu concentrations above 40 at. % (Fe60Cu40 and higher), indicating the potential of Fe–Cu alloys as high‑temperature latent heat storage materials. Our results provide insights into the role of microstructural control and, together with favorable thermal properties, offer a promising strategy for the design of MGA‑based thermal energy storage materials produced by casting.
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International Journal of Microgravity Science and Applicaiton, 43(1) 430101, Jan, 2026 Peer-reviewed
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Acta Materialia, 301 121510-121510, Dec, 2025
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International Journal of Microgravity Science and Applicaiton, 42(4) 420402, Oct, 2025 Peer-reviewed
Misc.
144-
Space Utilization Research, Vol. 38 2023: Proceedings of The Thirty-eighth Space Utilization Symposium, Jan, 2024
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Hyperordered Structures in Materials, 2023 Lead author
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Metallurgy in Space, 65-92, Apr 1, 2022 Peer-reviewedLead author
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日本セラミックス協会秋季シンポジウム講演予稿集(Web), 35th, 2022
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(35), Jan, 2021Space Utilization Research (January 19-20, 2021. Online Meeting)
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日本セラミックス協会秋季シンポジウム講演予稿集(CD-ROM), 33rd, 2020
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(34), Jan, 2020Space Utilization Research (January 21-22, 2020. Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency(JAXA)(ISAS)), Sagamihara, Kanagawa JapanG-15
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Thermophysical Properties, 40th, 2019
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(33), Jan, 2019Space Utilization Research (January 24-25, 2019. Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency(JAXA)(ISAS)), Sagamihara, Kanagawa Japan
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(33), Jan, 2019Space Utilization Research (January 24-25, 2019. Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency(JAXA)(ISAS)), Sagamihara, Kanagawa Japan
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(32), Jan, 2018Space Utilization Research (January 15-16, 2018. Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency(JAXA)(ISAS)), Sagamihara, Kanagawa Japan
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宇宙環境利用シンポジウム 第29回: 平成26年度 = Space Utilization Research, Vol. 29 2014: Proceedings of The Twenty-ninth Space Utilization Symposium, 29 12-15, Jan, 2015第29回宇宙環境利用シンポジウム (2015年1月24日-25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 Space Utilization Research (January 24-25, 2015. Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency(JAXA)(ISAS)), Sagamihara, Kanagawa Japan 著者人数: 13名 資料番号: SA6000035006 レポート番号: ISAS-SUR29-S01
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International Journal of Microgravity Science and Application (Web), 32(2), 2015
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(29) 44-47, Jan, 2015Space Utilization Research (January 24-25, 2015. Institute of Space and Astronautical Science, Japan Aerospace Exploration Agency(JAXA)(ISAS)), Sagamihara, Kanagawa Japan
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Procee[d]ings of Thermal Engineering Conference, 2014 "F115-1"-"F115-2", Nov 8, 2014Emissivity data is important for the temperature measurement using pyrometer when the sample is processed without container. A spectral emissivity measurement system combined with an electrostatic levitator was developed for high temperature melts. The radiation intensity from a high temperature sample was measured with a multichannel photo spectrometer (MCPD) over the 700 nm to 1000 nm spectral range while a Fourier Transform Infrared Spectrometer (FTIR) measured the radiation over the 1.1μm to 6μm intervals. These spectrometers were calibrated with a black body radiation furnace so that the spectral hemispherical emissivity can be calculated. The experimental results of molten zirconium and niobium are presented.
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Procee[d]ings of Thermal Engineering Conference, 2014 "F116-1"-"F116-2", Nov 8, 2014In the gravity field on the earth, the phase separation with different density phases is affected by the gravitational force. Especially phase separation from fluids, for example, nucleation, solidification, and liquid-liquid or liquid-gas phase separation with critical phenomena, are disturbed by the convection flow caused by the gravity. In previous microgravity experiments using a soumding rocket, abnormal behavior of the electrical resistance near the critical point of the Bi-Ga liquid alloy has been found. On the other hand, in order to grasp an atomic scale phase separation from the liquid phase, structural analysis experiments using neutron rays and X-rays is indispensable. In this study, we tried to observe the structure of the liquid Bi-Ga alloy by using an X-ray diffraction with the laser heating and gas floating. Measuring the scattering intensity X-ray irradiation to the liquid Bi-Ga alloy, it was determined the structure factor as a first step for the understanding of the characteristic behavior of the electrical resistance from the scattering intensity.
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大気球シンポジウム: 平成26年度 = Balloon Symposium: 2014, Nov, 2014大気球シンポジウム 平成26年度(2014年11月6-7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: 18名資料番号: SA6000021014
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Meeting abstracts of the Physical Society of Japan, 69(2) 570-570, Aug 22, 2014
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Meeting abstracts of the Physical Society of Japan, 69(1) 786-786, Mar 5, 2014
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Transactions of the Japan Society for Aeronautical and Space Sciences, Aerospace Technology Japan (Web), 12(ists29), 2014
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Meeting abstracts of the Physical Society of Japan, 68(2) 721-721, Aug 26, 2013
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Meeting abstracts of the Physical Society of Japan, 68(1) 864-864, Mar 26, 2013
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28(4) 119-123, Oct 31, 2011
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Meeting abstracts of the Physical Society of Japan, 66(2) 828-828, Aug 24, 2011
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Meeting abstracts of the Physical Society of Japan, 66(1) 807-807, Mar 3, 2011
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Meeting abstracts of the Physical Society of Japan, 66(1) 806-806, Mar 3, 2011
Presentations
63-
13th Asian Microgravity Symposium AMS2022, Oct, 2022
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13th Asian Microgravity Symposium AMS2022, Oct, 2022
Professional Memberships
5Research Projects
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Grants-in-Aid for Scientific Research Grant-in-Aid for Transformative Research Areas (A), Japan Society for the Promotion of Science, Nov, 2020 - Mar, 2025
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科学研究費助成事業 学術変革領域研究(A), 日本学術振興会, Nov, 2020 - Mar, 2025
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Grants-in-Aid for Scientific Research, Japan Society for the Promotion of Science, Apr, 2018 - Mar, 2021
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Grants-in-Aid for Scientific Research Grant-in-Aid for Scientific Research (B), Japan Society for the Promotion of Science, Apr, 2012 - Mar, 2015
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科学研究費助成事業 特別研究員奨励費, 日本学術振興会, 2012 - 2013
● 専任大学名
1-
Affiliation (university)総合研究大学院大学(SOKENDAI)
● 所属する所内委員会
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ISAS Committee安全委員会
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ISAS CommitteeISASニュース編集委員会
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ISAS Committee宇宙環境利用専門委員会
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ISAS Committee大気球専門委員会