Rchr
J-GLOBAL ID:202101020725724564   Update date: Feb. 05, 2024

Azuma Shintaro

アズマ シンタロウ | Azuma Shintaro
Affiliation and department:
Job title: 助教
Research field  (1): Solid earth science
Research theme for competitive and other funds  (7):
  • 2021 - 2026 超高圧超大歪み変形実験による全マントル領域を網羅する地球内部レオロジー断面の決定
  • 2021 - 2024 回転式DAC × レーザー加熱 = 地球深部に沈み込んだ海洋地殻の変形特性の解明
  • 2019 - 2023 Development of innovative high-pressure deformation technology toward understanding complicated seismic structure and dynamics of Earth's inner core
  • 2019 - 2022 Experimental study on the rheology of D'' layers using a newly developed ultra-high pressure deformation apparatus
  • 2018 - 2020 回転式ダイヤモンドアンビル装置による沈み込んだスラブ内レオロジーの検証
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Papers (18):
  • Yusuke Okazaki, Shintaro Azuma, Daijiro Fukuhara, Ikuo Katayama, Yasuhito Sekine, Tomotaka Saruya. Low-temperature friction experiments on ice-salt mixtures: Implications for the strength of ice plate boundaries on Europa. Icarus. 2024. 115961-115961
  • Kenji Ohta, Sho Suehiro, Saori I. Kawaguchi, Yoshiyuki Okuda, Tatsuya Wakamatsu, Kei Hirose, Yasuo Ohishi, Manabu Kodama, Shuichiro Hirai, Shintaro Azuma. Measuring the Electrical Resistivity of Liquid Iron to 1.4 Mbar. Physical Review Letters. 2023. 130. 26
  • Yohan Park, Shintaro Azuma, Keishi Okazaki, Kentaro Uesugi, Masahiro Yasutake, Yu Nishihara, Ryuichi Nomura. Development of Lattice-Preferred Orientations of MgO Periclase From Strain Rate Controlled Shear Deformation Experiments Under Pressure up to 120 GPa. Geophysical Research Letters. 2022. 49. 21
  • Yohan Park, Kyoko Yonemitsu, Kei Hirose, Yasuhiro Kuwayama, Shintaro Azuma, Kenji Ohta. Viscosity of Earth’s inner core constrained by Fe-Ni interdiffusion in Fe-Si alloy in an internal-resistive-heated diamond anvil cell. Mineralogical Society of America. 2022. 108. 6. 1064-1071
  • Kosuke Kurosawa, Hidenori Genda, Shintaro Azuma, Keishi Okazaki. The Role of Post-Shock Heating by Plastic Deformation During Impact Devolatilization of Calcite (CaCO 3 ). Geophysical Research Letters. 2021. 48. 7
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MISC (1):
  • Azuma S., Katayama I. Mechanism of moonquakes inferred from rheological structure of moon interior. Planetary People. 2015. 24. 4. 318-325
Association Membership(s) (4):
American Geophysical Union ,  The Japanese Society for Planetary Sciences ,  Japan Association of Mineralogical Sciences ,  Japan Geoscience Union
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