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首页> 外文期刊>Physical Review, A >Universal set of dynamically protected gates for bipartite qubit networks: Soft pulse implementation of the [[5,1,3]] quantum error-correcting code
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Universal set of dynamically protected gates for bipartite qubit networks: Soft pulse implementation of the [[5,1,3]] quantum error-correcting code

机译:普遍集的二分钟qubit网络动态保护栅栏:[[5,1,3]]量子误差校正码的软脉冲实现

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We model repetitive quantum error correction (QEC) with the single-error-correcting five-qubit code on a network of individually controlled qubits with always-on Ising couplings. We use our previously designed universal set of quantum gates based on sequences of shaped decoupling pulses. In addition to being accurate quantum gates, the sequences also provide dynamical decoupling (DD) of low-frequency phase noise. The simulation involves integrating the unitary dynamics of six qubits over the duration of tens of thousands of control pulses, using classical stochastic phase noise as a source of decoherence. The combined DD and QEC protocol dramatically improves the coherence, with the QEC alone being responsible for more than an order of magnitude infidelity reduction.
机译:我们使用单独控制Qubits网络的单个错误校正五个QUB比特校正(QEC)模拟重复量子纠错(QEC),其在单独控制的Qubits网络中具有始终开启insing耦合。 我们使用先前设计的基于形状去耦脉冲序列的一组设计的一组量子门。 除了精确量子门之外,序列还提供低频相位噪声的动态解耦(DD)。 这些模拟涉及将六个Qubits的整体动态集成在数万个控制脉冲的持续时间内,使用经典随机相位噪声作为变形的源。 组合的DD和QEC协议显着改善了相干性,仅当QEC负责超过一个数量级不一致。

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