Rchr
J-GLOBAL ID:200901048780305453   Update date: Sep. 17, 2024

Terashima Kensei

テラシマ ケンセイ | Terashima Kensei
Affiliation and department:
Research field  (1): Magnetism, superconductivity, and strongly correlated systems
Research keywords  (3): データ駆動物質探索 ,  EXAFS ,  光電子分光
Research theme for competitive and other funds  (9):
  • 2023 - 2028 Development of new INVAR functional materials by clarification of local structure-physical property correlation
  • 2023 - 2026 物理モデルの機械学習を用いた材料探索実践:結晶場を基にした磁気冷凍材料開発
  • 2020 - 2023 Data-driven search for magnetocaloric materials with help of crystral structure data and first principles calculations
  • 2018 - 2022 Elucidation of electronic- and local- structure of candidate exotic superconductors studied by 3rd generation synchrotron based advanced spectroscopy
  • 2016 - 2019 Clarification of the correlation between functionality and chemical pressure in BiCh2-based compounds
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Papers (158):
  • Ryo Matsumoto, Kazuki Yamane, Yoshikazu Mizuguchi, Rikuya Ishikawa, Kyohei Takae, Rei Kurita, Hidetomo Usui, Masahiro Ohkuma, Kensei Terashima, Yoshihiko Takano. Pressure-induced superconductivity and robust Tc against external pressure in (Ge,Sn,Pb)Te. Journal of Alloys and Compounds. 2024. 983. 173906-173906
  • Ryo Matsumoto, Sayaka Yamamoto, Kensei Terashima, Kazuki Yamane, Yoshihiko Takano. Electrical Transport Properties of van der Waals Insulator CrGeTe3 under Extremely High Pressure up to 52 GPa. Journal of the Physical Society of Japan. 2024. 93. 4
  • Hirofumi Sakakibara, Masayuki Ochi, Hibiki Nagata, Yuta Ueki, Hiroya Sakurai, Ryo Matsumoto, Kensei Terashima, Keisuke Hirose, Hiroto Ohta, Masaki Kato, et al. Theoretical analysis on the possibility of superconductivity in the trilayer Ruddlesden-Popper nickelate La4Ni3O10 under pressure and its experimental examination: Comparison with La3Ni2O7. Physical Review B. 2024. 109. 14
  • Luca Foppiano, Tomoya Mato, Kensei Terashima, Pedro Ortiz Suarez, Taku Tou, Chikako Sakai, Wei-Sheng Wang, Toshiyuki Amagasa, Yoshihiko Takano, Masashi Ishii. Semi-automatic staging area for high-quality structured data extraction from scientific literature. Science and Technology of Advanced Materials: Methods. 2023. 3. 1
  • Kensei Terashima, Pedro Baptista de Castro, Akiko Takahashi Saito, Takafumi D Yamamoto, Ryo Matsumoto, Hiroyuki Takeya, Yoshihiko Takano. Experimental exploration of ErB2 and SHAP analysis on a machine-learned model of magnetocaloric materials for materials design. Science and Technology of Advanced Materials: Methods. 2023. 3. 1
more...
MISC (78):
  • Kensei Terashima, Pedro Baptista de Castro, T. D. Yamamoto, A. T. Saito, R. Matsumoto, H. Ando, H. Takeya, Y. Takano. 19p-Z32-1 Magnetocaloric effect of ErB2: comparison between experiment and machine-learning prediction. Meeting abstracts of the JSAP. 2021
  • 細田渉, 寺嶋健成, 寺嶋健成, 藤原弘和, 矢野佑幸, 片岡範行, 谷口拓海, 松下智裕, 松下智裕, 室隆桂之, et al. High-resolution photoelectron holography of heavily boron-doped diamond (III). 日本物理学会講演概要集(CD-ROM). 2020. 75. 1
  • 谷口拓海, 細田渉, 寺嶋健成, 寺嶋健成, 砂川正典, 藤原弘和, 福良哲司, 矢野佑幸, 松下智裕, 室隆桂之, et al. 高濃度ホウ素ドープダイヤモンド超伝導体の高分解能光電子ホログラフィー. 日本物理学会講演概要集(CD-ROM). 2019. 74. 1
  • 谷口拓海, 細田渉, 寺嶋健成, 寺嶋健成, 藤原弘和, 矢野佑幸, 片岡範行, 松下智裕, 室隆桂之, 木下豊彦, et al. 高濃度ホウ素ドープダイヤモンドの高分解能光電子ホログラフィー:複数のC1s化学サイトの局所構造. 日本物理学会講演概要集(CD-ROM). 2019. 74. 2
  • 細田渉, 寺嶋健成, 寺嶋健成, 藤原弘和, 矢野佑幸, 松下智裕, 室隆桂之, 木下豊彦, 高野義彦, 蔭浦泰資, et al. 高濃度ホウ素ドープダイヤモンドの高分解能光電子ホログラフィー(II). 日本物理学会講演概要集(CD-ROM). 2019. 74. 2
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Lectures and oral presentations  (14):
  • Evaluation on reproducibility of automated arc-melting materials synthesis system
    (2024)
  • 部分置換試料の超伝導転移温度グラフニューラルネットワーク学習
    (2024年 第71回応用物理学会春季学術講演会 2024)
  • 固体合金試料自動合成システム建設の試み
    (2023年 第84回応用物理学会秋季学術講演会 2023)
  • 組成記述子ベース機械学習モデルのSHAP解析
    (2023年 第70回応用物理学会春季学術講演会 2023)
  • レポジトリ/予備物性測定データ効率利用のためのニューラルネットワーク学習堅牢化・高速化
    (2022年 第83回応用物理学会秋季学術講演会 2022)
more...
Education (3):
  • - 2008 Tohoku University "Graduate School, Division of Natural Science"
  • - 2005 Tohoku University "Graduate School, Division of Natural Science"
  • - 2003 Tohoku University Faculty of Science
Professional career (1):
  • 博士(理学) (東北大学)
Work history (7):
  • 2024/04 - 現在 National Institute for Materials Science
  • 2020/04 - 2024/03 National Institute for Materials Science MANA, Nano frontier superconducting group Researcher
  • 2019/04 - 2020/03 National Institute for Materials Science
  • 2016/04 - 2019/03 Okayama University The Research Institute for Interdisciplinary Science
  • 2014/03 - 2016/03 Okayama University
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Association Membership(s) (3):
THE JAPANESE SOCIETY FOR SYNCHROTRON RADIATION RESEARCH ,  日本物理学会 ,  日本応用物理学会
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