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      Band Signatures for Strong Nonlinear Hall Effect in Bilayer \({\mathrm{WTe}}_{2}\)

      , , ,
      Physical Review Letters
      American Physical Society (APS)

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          Abstract

          <p class="first" id="d5321321e129">Unconventional responses upon breaking discrete or crystal symmetries open avenues for exploring emergent physical systems and materials. By breaking inversion symmetry, a nonlinear Hall signal can be observed, even in the presence of time-reversal symmetry, quite different from the conventional Hall effects. Low-symmetry two-dimensional materials are promising candidates for the nonlinear Hall effect, but it is less known when a strong nonlinear Hall signal can be measured, in particular, its connections with the band-structure properties. By using model analysis, we find prominent nonlinear Hall signals near tilted band anticrossings and band inversions. These band signatures can be used to explain the strong nonlinear Hall effect in the recent experiments on two-dimensional WTe_{2}. This Letter will be instructive not only for analyzing the transport signatures of the nonlinear Hall effect but also for exploring unconventional responses in emergent materials. </p>

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          Author and article information

          Journal
          PRLTAO
          Physical Review Letters
          Phys. Rev. Lett.
          American Physical Society (APS)
          0031-9007
          1079-7114
          December 2018
          December 26 2018
          : 121
          : 26
          Article
          10.1103/PhysRevLett.121.266601
          30636120
          b86dddd8-c41e-4b0f-9ca6-b30b55a58250
          © 2018

          https://link.aps.org/licenses/aps-default-license

          History

          Developmental biology,Ecology
          Developmental biology, Ecology

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