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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Dissipation-induced continuous quantum error correction for superconducting circuits
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Dissipation-induced continuous quantum error correction for superconducting circuits

机译:耗散引起的超导电路连续量子误差校正

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Quantum error correction (QEC) is a crucial step towards long coherence times required for efficient quantum information processing. One major challenge in this direction concerns the fast real-time analysis of error syndrome measurements and the associated feedback control. Recent proposals on autonomous QEC (AQEC) have opened new perspectives to overcome this difficulty. Here, we design an AQEC scheme based on quantum reservoir engineering adapted to superconducting qubits. We focus on a three-qubit bit-flip code, where three transmon qubits are dispersively coupled to a few low-Q resonator modes. By applying only continuous-wave drives of fixed but well-chosen frequencies and amplitudes, we engineer an effective interaction Hamiltonian to evacuate the entropy created by eventual bit-flip errors. We provide a full analytical and numerical study of the protocol while introducing the main limitations on the achievable error correction rates.
机译:量子纠错(QEC)是实现高效量子信息处理所需的长相干时间的关键一步。这个方向上的主要挑战涉及对错误综合症测量值和相关反馈控制的快速实时分析。关于自治QEC(AQEC)的最新提议为克服这一困难开辟了新的前景。在这里,我们设计了一种基于量子储层工程的AQEC方案,适用于超导量子位。我们专注于一个三比特位翻转码,其中三个transmon量子位分散地耦合到一些低Q谐振器模式。通过仅应用固定但选择好的频率和振幅的连续波驱动器,我们设计了一种有效的哈密顿相互作用,以消除最终的比特翻转误差所产生的熵。我们提供了对该协议的完整分析和数值研究,同时介绍了可实现的纠错率的主要限制。

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