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- W2897263208 abstract "A minimal tight-binding model of the two-dimensional topological-insulator bismuthene on SiC that accurately describes its experimentally determined low-energy electronic band structure is presented. Two-terminal electron transport through quantum dots described by this model with Ohmic normal conductor contacts and leads is studied within Landauer theory. Depending on the configuration of the leads and contacts, quantized conductances exactly or approximately equal to the conductance quantum $2{e}^{2}/h$, or conductance resonances are found at zero temperature if the Fermi level is within the topological-insulator bulk band gap. Interface states formed at the normal contact--topological-insulator boundary and their role in electron transport are discussed. Disorder along the normal contact--topological-insulator interfaces is found to improve the accuracy of the conductance quantization due to Anderson localization of the interface states." @default.
- W2897263208 created "2018-10-26" @default.
- W2897263208 creator A5005284722 @default.
- W2897263208 date "2018-10-22" @default.
- W2897263208 modified "2023-09-24" @default.
- W2897263208 title "Perfect and imperfect conductance quantization and transport resonances of two-dimensional topological-insulator quantum dots with normal conducting leads and contacts" @default.
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- W2897263208 doi "https://doi.org/10.1103/physrevb.98.165430" @default.
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