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Quantum Error Correction Fault Tolerance

Towards practical classical processing for the surface code

arXiv
Authors: Austin G. Fowler, Adam C. Whiteside, Lloyd C. L. Hollenberg

Year

2011

Paper ID

29073

Status

Preprint

Abstract Read

~2 min

Abstract Words

115

Citations

N/A

Abstract

The surface code is unarguably the leading quantum error correction code for 2-D nearest neighbor architectures, featuring a high threshold error rate of approximately 1%, low overhead implementations of the entire Clifford group, and flexible, arbitrarily long-range logical gates. These highly desirable features come at the cost of significant classical processing complexity. We show how to perform the processing associated with an nxn lattice of qubits, each being manipulated in a realistic, fault-tolerant manner, in O\(n^2\) average time per round of error correction. We also describe how to parallelize the algorithm to achieve O(1) average processing per round, using only constant computing resources per unit area and local communication. Both of these complexities are optimal.

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