High-Chern-Number and High-Temperature Quantum Hall Effect without Landau Levels

NATIONAL SCIENCE REVIEW(2020)

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摘要
The quantum Hall effect (QHE) with quantized Hall resistance of h/nu e(2) started the research on topological quantum states and laid the foundation of topology in physics. Since then, Haldane proposed the QHE without Landau levels, showing nonzero Chern number vertical bar C vertical bar = 1, which has been experimentally observed at relatively low temperatures. For emerging physics and low-power-consumption electronics, the key issues are how to increase the working temperature and realize high Chern numbers (C> 1). Here, we report the experimental discovery of high-Chern-number QHE (C = 2) without Landau levels and C = 1 Chern insulator state displaying a nearly quantized Hall resistance plateau above the Neel temperature in MnBi2Te4 devices. Our observations provide a new perspective on topological matter and open new avenues for exploration of exotic topological quantum states and topological phase transitions at higher temperatures.
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关键词
quantum Hall effect without Landau levels,Chern insulator,topological matter,topological quantum states,high Chern number,high temperature
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