Evolution of Weyl orbit and quantum Hall effect in Dirac semimetal Cd3As2

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作者
Cheng Zhang
Awadhesh Narayan
Shiheng Lu
Jinglei Zhang
Huiqin Zhang
Zhuoliang Ni
Xiang Yuan
Yanwen Liu
Ju-Hyun Park
Enze Zhang
Weiyi Wang
Shanshan Liu
Long Cheng
Li Pi
Zhigao Sheng
Stefano Sanvito
Faxian Xiu
机构
[1] Fudan University,State Key Laboratory of Surface Physics and Department of Physics
[2] Collaborative Innovation Center of Advanced Microstructures,School of Physics, CRANN and AMBER
[3] Trinity College,Department of Physics
[4] University of Illinois at Urbana-Champaign,High Magnetic Field Laboratory
[5] Chinese Academy of Sciences,Institute for Nanoelectronic Devices and Quantum Computing
[6] National High Magnetic Field Laboratory,undefined
[7] Fudan University,undefined
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摘要
Owing to the coupling between open Fermi arcs on opposite surfaces, topological Dirac semimetals exhibit a new type of cyclotron orbit in the surface states known as Weyl orbit. Here, by lowering the carrier density in Cd3As2 nanoplates, we observe a crossover from multiple-frequency to single-frequency Shubnikov–de Haas (SdH) oscillations when subjected to out-of-plane magnetic field, indicating the dominant role of surface transport. With the increase of magnetic field, the SdH oscillations further develop into quantum Hall state with non-vanishing longitudinal resistance. By tracking the oscillation frequency and Hall plateau, we observe a Zeeman-related splitting and extract the Landau level index as well as sub-band number. Different from conventional two-dimensional systems, this unique quantum Hall effect may be related to the quantized version of Weyl orbits. Our results call for further investigations into the exotic quantum Hall states in the low-dimensional structure of topological semimetals.
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