论文标题

连续量子误差校正基于测量的估计器方案

Measurement based estimator scheme for continuous quantum error correction

论文作者

Borah, Sangkha, Sarma, Bijita, Kewming, Michael, Quijandria, Fernando, Milburn, Gerard J., Twamley, Jason

论文摘要

规范离散量子误差校正(DQEC)方案使用稳定器上的投影von Neumann测量值将误差综合症离散为有限集,并将快速的统一门应用于恢复损坏的信息。基于连续测量的量子误差校正(QEC)原则上可以比DQEC更快地执行称为连续的量子误差校正(CQEC),并且也可以是有效的。但是,CQEC需要对嘈杂的连续测量数据进行细致的过滤,以可靠提取误差综合征,以检测到哪些错误。在本文中,我们表明,通过构建要保护的基于测量的估计器(MBE),这是由稳定器的嘈杂连续测量电流驱动的,可以准确地跟踪实时的物理量子器上发生的错误。我们使用此MBE来开发连续的量子误差校正(MBE-CQEC)方案,该方案可以高度保护逻辑量子,超过了DQEC的性能,还允许立即或在瞬时反馈中立即或延迟时间进行QEC。

Canonical discrete quantum error correction (DQEC) schemes use projective von Neumann measurements on stabilizers to discretize the error syndromes into a finite set, and fast unitary gates are applied to recover the corrupted information. Quantum error correction (QEC) based on continuous measurement, known as continuous quantum error correction (CQEC), in principle, can be executed faster than DQEC and can also be resource efficient. However, CQEC requires meticulous filtering of noisy continuous measurement data to reliably extract error syndromes on the basis of which errors could be detected. In this paper, we show that by constructing a measurement-based estimator (MBE) of the logical qubit to be protected, which is driven by the noisy continuous measurement currents of the stabilizers, it is possible to accurately track the errors occurring on the physical qubits in real time. We use this MBE to develop a continuous quantum error correction (MBE-CQEC) scheme that can protect the logical qubit to a high degree, surpassing the performance of DQEC, and also allows QEC to be conducted either immediately or in delayed time with instantaneous feedbacks.

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