Shota Ono, Ravinder Pawar. Fluorite-type materials in the monolayer limit. Phys. Rev. Materials. 2024. 8. 094002
Yuri Saida, Thomas Gauthier, Hiroo Suzuki, Satoshi Ohmura, Ryo Shikata, Yui Iwasaki, Godai Noyama, Misaki Kishibuchi, Yuichiro Tanaka, Wataru Yajima, et al. Photoinduced dynamics during electronic transfer from narrow to wide bandgap layers in one-dimensional heterostructured materials. Nature Communications. 2024. 15. 4600
Shota Ono, Koharu Tamura. Bain distortion of noble metal thin films that exhibit fcc, bct, and reoriented fcc structures. Computational Materials Science. 2024. 237. 25. 112920-1-112920-5
Shota Ono, Yu Kumagai. Structural Properties of Two-Dimensional Strontium Titanate: A First-Principles Investigation. Journal of the Physical Society of Japan. 2023. 92. 114601-1-114601-7
Tohru Suemoto, Shota Ono, Akifumi Asahara, Tsuyoshi Okuno, Takeshi Suzuki, Kozo Okazaki, Shuntaro Tani, Yohei Kobayashi. Observation of infrared interband luminescence in magnesium by femtosecond spectroscopy. Journal of Applied Physics. 2023. 134. 163105-1-163105-8
2009 - 2012 Hokkaido University Graduate School, Division of Engineering
- 2009 Hokkaido University Graduate School, Division of Engineering
- 2007 Hokkaido University Faculty of Engineering
Professional career (1):
博士(工学) (北海道大学)
Work history (8):
2024/06 - 現在 Muroran Institute of Technology Department of Sciences and Informatics
2023/04 - 2024/05 Tohoku University Institute for Materials Research
2016/04 - 2023/03 岐阜大学
2015/04 - 2016/03 Yokohama National University Faculty of Engineering Division of Intelligent Systems Engineering Assistant Professor
2015/01 - 2015/03 米国カリフォルニア大学バークレー校 客員研究員
2012/10 - 2015/03 Yokohama National University
2012/04 - 2012/09 Yokohama National University
2011/04 - 2012/03 Hokkaido University
Show all
Committee career (1):
2020/04 - 2021/03 日本物理学会 領域10運営委員(フォノン分科)
Awards (2):
2022/10 - 第17回(2023)日本物理学会若手奨励賞(領域10)
2019/11 - Award for Encouragement of Research in the 29th Annual Meeting of MRS-J Symposium E Boltzmann equation and ab initio approaches to ultrafast infrared luminescence in metals