4.8 Article

Quantum theory of the nonlinear Hall effect

期刊

NATURE COMMUNICATIONS
卷 12, 期 1, 页码 -

出版社

NATURE PORTFOLIO
DOI: 10.1038/s41467-021-25273-4

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资金

  1. National Natural Science Foundation of China [12004157, 11974249, 11925402]
  2. National Basic Research Program of China [2015CB921102]
  3. Strategic Priority Research Program of the Chinese Academy of Sciences [XDB28000000]
  4. Natural Science Foundation of Shanghai [19ZR1437300]
  5. Guangdong province [2020KCXTD001, 2016ZT06D348]
  6. Shenzhen High-level Special Fund [G02206304, G02206404]
  7. Science, Technology and Innovation Commission of Shenzhen Municipality [ZDSYS20170303165926217, JCYJ20170412152620376, KYTDPT20181011104202253]
  8. Center for Computational Science and Engineering of Southern University of Science and Technology

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The nonlinear Hall effect is a quantum transport phenomenon where a voltage can be driven by two perpendicular currents, but a full quantum description is still lacking. The authors developed a complete quantum theory of the nonlinear Hall effect using diagrammatic technique, which will aid in exploring topological physics beyond the linear regime.
The nonlinear Hall effect is an unconventional response, in which a voltage can be driven by two perpendicular currents in the Hall-bar measurement. Unprecedented in the family of the Hall effects, it can survive time-reversal symmetry but is sensitive to the breaking of discrete and crystal symmetries. It is a quantum transport phenomenon that has deep connection with the Berry curvature. However, a full quantum description is still absent. Here we construct a quantum theory of the nonlinear Hall effect by using the diagrammatic technique. Quite different from nonlinear optics, nearly all the diagrams account for the disorder effects, which play decisive role in the electronic transport. After including the disorder contributions in terms of the Feynman diagrams, the total nonlinear Hall conductivity is enhanced but its sign remains unchanged for the 2D tilted Dirac model, compared to the one with only the Berry curvature contribution. We discuss the symmetry of the nonlinear conductivity tensor and predict a pure disorder-induced nonlinear Hall effect for point groups C-3, C-3h, C-3v, D-3h, D-3 in 2D, and T, T-d, C-3h, D-3h in 3D. This work will be helpful for explorations of the topological physics beyond the linear regime. The nonlinear Hall effect is a quantum phenomenon, in which two perpendicular currents induce a Hall voltage; however, previous theories for this effect has remained at the semi classical level. Here, the authors develop a full quantum theory of the nonlinear Hall effect by using the diagrammatic technique.

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