FAULT TOLERANT QUANTUM COMPUTATION ON ISOLATED LOGICAL CELLS

Ashley M. Stephens, Lloyd C. L. Hollenberg · 2006

A two-dimensional architecture is considered in which logical qubits are stored on isolated cells. Intra-logical transport is via nearest-neighbor SWAP operations and inter-logical operation is via short-distance qubit transport. Non-local quantum circuitry is adapted to this architecture to implement fault tolerant quantum computation under the [[7,1,3]] quantum code. The CNOT gate threshold for this architecture is estimated and is presented as an explicit physical gate failure rate in a number of common physical settings.

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