Biography:Hideo Aoki
Hideo Aoki | |
|---|---|
| Born | Hideo Aoki October 1, 1950 |
| Alma mater | University of Tokyo |
| Known for | Cuprate and iron-based superconductivity Quantum Hall effect Flat-band superconductivity Floquet topological insulator |
| Scientific career | |
| Fields | Physicist |
| Institutions | University of Tokyo |
| Website | cms |
Hideo Aoki is a Japanese theoretical physicist. He is an emeritus professor at the University of Tokyo, Japan, and works in the field of condensed-matter physics and cold-atom physics.
Biography
Hideo Aoki studied theoretical condensed-matter physics, and received his PhD in physics from the University of Tokyo in 1978, where his doctoral research was on the quantum Hall effect. He was a visiting scholar at the Cavendish Laboratory, University of Cambridge, UK in 1980-1982. He then built up his group in 1986 at the department of physics, University of Tokyo in theoretical condensed-matter physics, as a full professor from 1998.[1]
In 2016 he retired from the University of Tokyo and became an emeritus professor, and subsequently took up a research position at National Institute of Advanced Industrial Science and Technology (AIST), Tsukuba, Japan until 2022.[2] In 2017 he was a guest professor at ETH Zurich, Switzerland, and also a guest scientist at the Max-Planck-Institute for the Structure and Dynamics of Matter, Hamburg in Germany in 2018.[1]
Research
The theoretical works of Hideo Aoki and his group[3] are focussed on many-body and topological effects in electron systems, namely, superconductivity, magnetism, and topological systems (including graphene[4]). For these system he explored materials designed for correlated electron systems, and in particular non-equilibrium phenomena in recent years. He has authored or co-authored over 300 articles[5] ranging across condensed-matter physics. He has also authored or co-edited six books:[6][7][8][9][10][11]
References
- ↑ 1.0 1.1 Aoki, Hideo (2025-10-02). "Flat bands in condensed-matter systems – perspective for magnetism and superconductivity". Contemporary Physics 66 (1-4): 1–38. doi:10.1080/00107514.2025.2550105. ISSN 0010-7514. https://www.tandfonline.com/doi/full/10.1080/00107514.2025.2550105.
- ↑ "Aoki Group | The University of Tokyo". http://cms.phys.s.u-tokyo.ac.jp/index_eng.html.
- ↑ "Google Scholar". https://scholar.google.com/scholar?q=%22Hideo+Aoki%22.
- ↑ "Optical quantum Hall effect in graphene" (in en). https://www.u-tokyo.ac.jp/focus/en/articles/a_00158.html.
- ↑ "Hideo Aoki Publications". http://cms.phys.s.u-tokyo.ac.jp/dissertation_en.html. Retrieved 2020-09-02.
- ↑ H. Kamimura and H. Aoki: Physics of Interacting Electrons in Disordered Systems (International Series of Monographs on Physics 76), Oxford University Press, Oxford, 1989). https://global.oup.com/academic/product/physics-of-interacting-electrons-in-disordered-systems-9780198520238
- ↑ H. Aoki, M. Tsukada, M. Schluter and F. Levy (editors): New Horizons in Low-Dimensional Electron Systems (in the series Physics and Chemistry of Materials with Low-Dimensional Structures), Kluwer Academic Publishers, Dordrecht, 1992).
- ↑ "Physics Meets Mineralogy" (in en-GB). https://www.cambridge.org/universitypress/subjects/earth-and-environmental-science/mineralogy-petrology-and-volcanology/physics-meets-mineralogy-condensed-matter-physics-geosciences.
- ↑ Aoki, Hideo; S. Dresselhaus, Mildred, eds (2014). "Physics of Graphene" (in en). NanoScience and Technology. doi:10.1007/978-3-319-02633-6. ISSN 1434-4904. https://link.springer.com/book/10.1007/978-3-319-02633-6.
- ↑ Hideo Aoki: Integer quantum Hall effect in R. Fornari (Ed.): Comprehensive Semiconductor Science and Technology, 2nd Edition, Vol. 1, pp. 134-189 (Elsevier, 2025).
- ↑ T. Chakraborty, Ana M. Sanchez, Hideo Aoki, Robert H. Blick, Roberto Raimondi, Rudolf A. Roemer, and Vladimir Mihajlovic Fomin (editors): Encyclopedia of Condensed Matter Physics, 2nd Ed. (Elsevier, 2023).
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