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Theory of fault-tolerant quantum computation

Physical Review A · 1998 · Vol. 57(1) · pp. 127–137
Daniel Gottesman

Abstract

In order to use quantum error-correcting codes to improve the performance of a quantum computer, it is necessary to be able to perform operations fault-tolerantly on encoded states. I present a theory of fault-tolerant operations on stabilizer codes based on symmetries of the code stabilizer. This allows a straightforward determination of which operations can be performed fault-tolerantly on a given code. I demonstrate that fault-tolerant universal computation is possible for any stabilizer code. I discuss a number of examples in more detail, including the five-quantum-bit code.

Quantum Computing Algorithms and ArchitectureQuantum Information and CryptographyQuantum Mechanics and ApplicationsQuantum computerComputer scienceCode (set theory)ComputationFault toleranceQubitQuantum convolutional codeQuantumAlgorithmTheoretical computer science
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