论文标题
使用一系列观众Qubits对相关相误差的中路校正
Mid-circuit correction of correlated phase errors using an array of spectator qubits
论文作者
论文摘要
扩大易于错误的量子处理器的扩展是一个巨大的挑战。虽然量子误差校正最终承诺容忍故障的操作,但所需的量子座开销和误差阈值令人生畏,并且在相关噪声下,许多代码分解。最近的提案提出了一种基于共同确定的辅助“观众”量子的互补方法。这些充当噪声的原位探针,并实现对数据量量的结果误差的实时,相干校正。在这里,我们使用一系列cesium旁观者量子位来纠正rubidium数据量子数阵列上的相关相误差。至关重要的是,通过结合序列读数,数据处理和馈送操作,这些相关的错误在量子电路的执行中被抑制。该协议广泛适用于量子信息平台,我们的方法建立了用于缩放中性原子量子处理器的关键工具:原子阵列,实时处理和进纸的中路读数,以及相干的原子量子量中路。
Scaling up invariably error-prone quantum processors is a formidable challenge. While quantum error correction ultimately promises fault-tolerant operation, the required qubit overhead and error thresholds are daunting, and many codes break down under correlated noise. Recent proposals have suggested a complementary approach based on co-located, auxiliary 'spectator' qubits. These act as in-situ probes of noise, and enable real-time, coherent corrections of the resulting errors on the data qubits. Here, we use an array of cesium spectator qubits to correct correlated phase errors on an array of rubidium data qubits. Crucially, by combining in-sequence readouts, data processing, and feed-forward operations, these correlated errors are suppressed within the execution of the quantum circuit. The protocol is broadly applicable to quantum information platforms, and our approach establishes key tools for scaling neutral-atom quantum processors: mid-circuit readout of atom arrays, real-time processing and feed-forward, and coherent mid-circuit reloading of atomic qubits.