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- W2767116590 abstract "Proximity-induced superconductivity in single-layer graphene (SLG) and in topological insulators represent almost ideal examples of superconductivity in two dimensions. Fundamental mechanisms governing superconductivity in the 2D limit are of central interest for modern condensed-matter physics. To deduce fundamental parameters of superconductor/graphene/superconductor and superconductor/bismuth selenide/superconductor junctions we investigate the self-field critical currents in these devices using the formalism of the Ambegaokar–Baratoff model. Our central finding is that the induced superconducting state in SLG and bismuth selenide each exhibits gapping on two superconducting bands. Based on recent results obtained on ultra-thin films of natural superconductors, including single-atomic layer of iron selenide, double and triple atomic layers of gallium, and several atomic layer tantalum disulphide, we conclude that a two-band induced superconducting state in SLG and bismuth selenide is part of a wider, more general multiple-band phenomenology of currently unknown origin." @default.
- W2767116590 created "2017-11-10" @default.
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- W2767116590 date "2017-11-29" @default.
- W2767116590 modified "2023-09-28" @default.
- W2767116590 title "Two-band induced superconductivity in single-layer graphene and topological insulator bismuth selenide" @default.
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- W2767116590 doi "https://doi.org/10.1088/1361-6668/aa9800" @default.
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