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- W1492049419 abstract "Topological superconductivity is an exotic state of matter that supports Majorana zero-modes, which have been predicted to occur in the surface states of three-dimensional systems, in the edge states of two-dimensional systems, and in one-dimensional wires. Localized Majorana zero-modes obey non-Abelian exchange statistics, making them interesting building blocks for topological quantum computing. Here, we report superconductivity induced in the edge modes of semiconducting InAs/GaSb quantum wells, a two-dimensional topological insulator. Using superconducting quantum interference we demonstrate gate-tuning between edge-dominated and bulk-dominated regimes of superconducting transport. The edge-dominated regime arises only under conditions of high-bulk resistivity, which we associate with the two-dimensional topological phase. These experiments establish InAs/GaSb as a promising platform for the confinement of Majoranas into localized states, enabling future investigations of non-Abelian statistics." @default.
- W1492049419 created "2016-06-24" @default.
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- W1492049419 date "2015-05-11" @default.
- W1492049419 modified "2023-10-16" @default.
- W1492049419 title "Edge-mode superconductivity in a two-dimensional topological insulator" @default.
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- W1492049419 doi "https://doi.org/10.1038/nnano.2015.86" @default.
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