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- W2030962852 abstract "Based on a combination of $k cdot p$ theory, band topology analysis and electronic structure calculations, we predict the (111) thin films of the SnTe class of three-dimensional (3D) topological crystalline insulators realize the quantum spin Hall phase in a wide range of thickness. The nontrivial topology originates from the inter-surface coupling of the topological surface states of TCI in the 3D limit. The inter-surface coupling changes sign and gives rise to topological phase transitions as a function of film thickness. Furthermore, this coupling can be strongly affected by an external electric field, hence the quantum spin Hall phase can be effectively tuned under experimentally accessible the electric field. Our results show that (111) thin films of SnTe-class TCI can be an ideal platform to realize the novel applications of quantum spin Hall insulators." @default.
- W2030962852 created "2016-06-24" @default.
- W2030962852 creator A5011352096 @default.
- W2030962852 creator A5065092309 @default.
- W2030962852 date "2015-02-27" @default.
- W2030962852 modified "2023-09-26" @default.
- W2030962852 title "Electrically tunable quantum spin Hall state in topological crystalline insulator thin films" @default.
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- W2030962852 doi "https://doi.org/10.1103/physrevb.91.081407" @default.
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