Rchr
J-GLOBAL ID:202101020725724564   Update date: Nov. 02, 2024

Azuma Shintaro

アズマ シンタロウ | Azuma Shintaro
Affiliation and department:
Job title: Associate Professor
Research field  (1): Solid earth science
Research theme for competitive and other funds  (10):
  • 2024 - 2028 Solid State Ionics under extreme conditions of Earth's deep interior
  • 2024 - 2028 回転式DACによる超高圧高温変形実験から明らかにする深部スラブの変形特性
  • 2024 - 2026 ダイヤモンド量子センサによる高圧超伝導体のナノスケール物性計測
  • 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
Show all
Papers (20):
  • Yohan Park, Tatsuya Wakamatsu, Shintaro Azuma, Yu Nishihara, Kenji Ohta. Characterization of the lattice preferred orientation of hcp iron transformed from the single-crystal bcc phase in situ at high pressures up to 80 GPa. Physics and Chemistry of Minerals. 2024. 51. 3
  • Shintaro Azuma, Keishi Okazaki, Kentaro Uesugi, Masahiro Yasutake, Bunrin Natsui, Eranga Jayawickrama, Keiya Ishimori, Yoshiyuki Okuda, Yohan Park, Ryuichi Nomura. Near-infrared focused heating method for the rotational diamond anvil cell. Review of Scientific Instruments. 2024. 95. 7
  • 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
more...
MISC (1):
  • Azuma S., Katayama I. Mechanism of moonquakes inferred from rheological structure of moon interior. Planetary People. 2015. 24. 4. 318-325
Awards (1):
  • 2022/03 - 東京工業大学 異分野融合研究支援賞
Association Membership(s) (5):
日本高圧力学会 ,  American Geophysical Union ,  The Japanese Society for Planetary Sciences ,  Japan Association of Mineralogical Sciences ,  Japan Geoscience Union
※ Researcher’s information displayed in J-GLOBAL is based on the information registered in researchmap. For details, see here.

Return to Previous Page