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Realization of an Error-Correcting Surface Code with Superconducting Qubits

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arxiv 2112.13505 v2 pith:PR34FK5J submitted 2021-12-27 quant-ph

classification quant-ph
keywords codeerrorsurfacequantumcorrectionerror-correctingexperimentallyfully
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Quantum error correction is a critical technique for transitioning from noisy intermediate-scale quantum (NISQ) devices to fully fledged quantum computers. The surface code, which has a high threshold error rate, is the leading quantum error correction code for two-dimensional grid architecture. So far, the repeated error correction capability of the surface code has not been realized experimentally. Here, we experimentally implement an error-correcting surface code, the distance-3 surface code which consists of 17 qubits, on the \textit{Zuchongzhi} 2.1 superconducting quantum processor. By executing several consecutive error correction cycles, the logical error can be significantly reduced after applying corrections, achieving the repeated error correction of surface code for the first time. This experiment represents a fully functional instance of an error-correcting surface code, providing a key step on the path towards scalable fault-tolerant quantum computing.

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  1. Q3DE: A fault-tolerant quantum computer architecture for multi-bit burst errors by cosmic rays

    quant-ph 2024-12 conditional novelty 7.0 of 10

    Q3DE detects cosmic-ray-induced multi-bit burst errors from syndrome statistics alone and mitigates them through dynamic code-distance expansion and decoder rollback, cutting the exposed error period by about 1000 times.

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