Fault-tolerant architectures for superconducting qubits
David P. DiVincenzo
Nobel Symposium: Qubits for Future Quantum Information 2009
We exhibit a simple, systematic procedure for detecting and correcting errors using any of the recently reported quantum error-correcting codes. The procedure is shown explicitly for a code in which one qubit is mapped into five. The quantum networks obtained are fault tolerant, that is, they can function successfully even if errors occur during the error correction. Our construction is derived using a recently introduced group-theoretic framework for unifying all known quantum codes. © 1996 The American Physical Society.
David P. DiVincenzo
Nobel Symposium: Qubits for Future Quantum Information 2009
Charles H. Bennett, David P. DiVincenzo, et al.
Physical Review Letters
Barbara M. Terhal, David P. DiVincenzo
Physical Review A - AMO
Charles H. Bennett, David P. Di Vincenzo, et al.
Physical Review Letters