Fault-tolerant quantum computation in concatenation of verified cluster states
Fujii, Keisuke · Yamamoto, Katsuji
Original · EN
A novel scheme is presented for fault-tolerant quantum computation based on the cluster model. Some relevant logical cluster states are constructed in concatenation by post-selection through verification, without necessity of recovery operation, where a suitable code such as the Steane's 7-qubit code is adopted for transversal operations. This simple concatenated construction of verified cluster states achieves a high noise threshold 1%, and restrains the divergence of resources.
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