arXiv · 2106.11329
Three-dimensional quasi-quantized Hall insulator phase in SrSi2
Abstract
In insulators, the longitudinal resistivity becomes infinitely large at zero temperature. For classic insulators, the Hall conductivity becomes zero at the same time. However, there are special systems, such as two-dimensional quantum Hall isolators, in which a more complex scenario is observed at high magnetic fields. Here, we report experimental evidence for a quasi-quantized Hall insulator in the quantum limit of the three-dimensional semimetal SrSi2. Our measurements reveal a magnetic field-range, in which the longitudinal resistivity diverges with decreasing temperature, while the Hall conductivity approaches a quasi-quantized value that is given only by the conductance quantum and the Fermi wave vector in the field-direction. The quasi-quantized Hall insulator appears in a magnetic-field induced insulating ground state of three-dimensional materials and is deeply rooted in quantum Hall physics.
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Kaustuv Manna, Nitesh Kumar, Sumanta Chattopadhyay, Jonathan Noky, Mengyu Yao, Joonbum Park, Tobias Förster, Marc Uhlarz, Tirthankar Chakraborty, B. Valentin Schwarze, Jacob Hornung, Vladimir N. Strocov, Horst Borrmann, Chandra Shekhar, Yan Sun, Jochen Wosnitza, Claudia Felser, Johannes Gooth. 2021-06-21. Three-dimensional quasi-quantized Hall insulator phase in SrSi2. https://doi.org/10.1103/physrevb.106.l041113
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