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Photoinduced Topological Insulator to Dirac Semimetal Transition in ZrTe5

Published online by Cambridge University Press:  30 July 2021

Tatiana Konstantinova
Affiliation:
Brookhaven National Lab, United States
Lijun Wu
Affiliation:
Brookhaven National Laboratory, United States
Weiguo Yin
Affiliation:
Brookhaven National Laboratory, United States
Jing Tao
Affiliation:
Brookhaven National Laboratory, United States
Genda Gu
Affiliation:
Brookhaven National Laboratory, United States
Igor Zaliznyak
Affiliation:
Brookhaven National Laboratory, United States
Yimei Zhu
Affiliation:
Department of Condensed Matter Physics and Materials Science, Brookhaven National Laboratory, Upton, NY, USA, United States

Abstract

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Type
Fast and Ultrafast Dynamics Using Electron Microscopy
Copyright
Copyright © The Author(s), 2021. Published by Cambridge University Press on behalf of the Microscopy Society of America

References

Fu, X.; Wang, E.; Zhao, Y.; Liu, A.; Montgomery, E.; Gokhale, V. J.; Gorman, J. J.; Jing, C.; Lau, J. W.; Zhu, Y., “Laser-free ultrafast electron microscopy of electromagnetic wave dynamics”, Science Advances, 6 eabc3456 (2020).Google ScholarPubMed
Fu, X.; Barantani, F.; Gargiulo, S.; Madan, I.; Berruto, G.; Lagrange, T.; Jin, L.; Wu, J.; Vanacore, G.M.; Carbone, F.; and Zhu, Y.; “Nanoscale-femtosecond dielectric response of Mott insulators captured by two-color near-field ultrafast electron microscopy”, Nat. Comm., 11: 5770 (2020).Google Scholar
Konstantinova, T.; Wu, L.; Yin, W.-G.; Tao, T.; Gu, G. D.; Wang, X.J.; Zaliznyak, I. A.; Zhu, Y. "Photoinduced chiral Dirac semimetal in ZrTe5", npj Quantum Materials, 5: 80 (2020)CrossRefGoogle Scholar
The authors would like to acknowledge J. Yang and X. J. Wang of SLAC for assistance. Work at BNL was supported by the US DOE-BES, MSED, under Contract No. DESC0012704.Google Scholar