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- W2014116857 abstract "The concept, the present status, key issues and future prospects of a novel hexagonal binary decision diagram (BDD) quantum circuit approach for III–V quantum large-scale integrated circuits (QLSIs) are presented and discussed. In this approach, the BDD logic circuits are implemented on III–V semiconductor-based hexagonal nanowire networks controlled by nanoscale Schottky gates. The hexagonal BDD QLSIs can operate at delay-power products near the quantum limit in the quantum regime as well as in the many-electron classical regime. To demonstrate the feasibility of the present approach, GaAs Schottky wrap gate (WPG)-based single-electron BDD node devices and their integrated circuits were fabricated and their proper operations were confirmed. Selectively grown InGaAs sub-10 nm quantum wires and their hexagonal networks have been investigated to form high-density hexagonal BDD QLSIs operating in the quantum regime at room temperature." @default.
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- W2014116857 date "2002-05-01" @default.
- W2014116857 modified "2023-09-25" @default.
- W2014116857 title "III–V quantum devices and circuits based on nanoscale Schottky gate control of hexagonal quantum wire networks" @default.
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- W2014116857 doi "https://doi.org/10.1016/s0169-4332(01)00887-x" @default.
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