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Journal Article | FZJ-2015-00817 |
2015
APS
College Park, Md.
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Please use a persistent id in citations: http://hdl.handle.net/2128/8291 doi:10.1103/PhysRevB.91.035430
Abstract: The three-electron configuration of gate-defined double quantum dots encodes a promising qubit for quantum information processing. I propose a two-qubit entangling gate using a pulse-gated manipulation procedure. The requirements for high-fidelity entangling operations are equivalent to the requirements for the pulse-gated single-qubit manipulations that have been successfully realized for Si QDs. This two-qubit gate completes the universal set of all-pulse-gated operations for the three-electron double-dot qubit and paves the way for a scalable setup to achieve quantum computation.
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