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New ways to drive and utilize the metal insulator transition of VO<sub>2</sub>

ORAL · Invited

Abstract

The metal-insulator transition (MIT) of VO2 continues to challenge our understanding of correlated electron physics as well as inspire novel technological applications. In recent years, we have discovered new, non-thermal and non-optical ways to reversibly drive the MIT. We have also developed new applications of the MIT that impact the energy and sensor markets. In this talk, I will review our achievements at these two fronts.

Publication: ???????References<br>[1] S. Lee, et al, Science, 355, 371 (2017).<br>[2] K. Tang, et al, Science, 374, 1504 (2021).<br>[3] R. Guo, J. Li, et al, unpublished (2022).

Presenters

  • Junqiao Wu

    University of California, Berkeley

Authors

  • Junqiao Wu

    University of California, Berkeley