论文标题

通过耗散泵送对逻辑网格状态量子标论的误差校正

Error correction of a logical grid state qubit by dissipative pumping

论文作者

de Neeve, Brennan, Nguyen, Thanh Long, Behrle, Tanja, Home, Jonathan

论文摘要

使用量子误差校正对编码逻辑Qubit的稳定是实现可靠量子计算机的关键。尽管Qubit代码需要控制许多物理系统,但振荡器代码提供了对单个物理实体进行错误校正的可能性。振荡器的一个强大编码是网格状态或GKP编码,它允许纠正小位移错误。在这里,我们介绍并实施了一个耗散图,设计用于物理逼真的有限GKP代码,该代码对在单个捕获离子的运动中实现的逻辑量子器进行量子误差校正。校正周期涉及两轮,分别纠正了位置和动量的小位移。每个都包括首先将有限的GKP代码稳定器信息映射到内部电子状态Ancilla量子位,然后应用一致的反馈和Ancilla propumping。我们证明了使用方形和六边形GKP代码同时扩展逻辑相干性的扩展,从而增加了逻辑寿命为三倍。用于校正的简单耗散图可以看作是一种储层工程,它可以泵入高度非经典的GKP量子歧管中。这些技术为量子状态控制和传感开辟了新的可能性,并在其应用量表计算时使用。

Stabilization of encoded logical qubits using quantum error correction is key to the realization of reliable quantum computers. While qubit codes require many physical systems to be controlled, oscillator codes offer the possibility to perform error correction on a single physical entity. One powerful encoding for oscillators is the grid state or GKP encoding, which allows small displacement errors to be corrected. Here we introduce and implement a dissipative map designed for physically realistic finite GKP codes which performs quantum error correction of a logical qubit implemented in the motion of a single trapped ion. The correction cycle involves two rounds, which correct small displacements in position and momentum respectively. Each consists of first mapping the finite GKP code stabilizer information onto an internal electronic state ancilla qubit, and then applying coherent feedback and ancilla repumping. We demonstrate the extension of logical coherence using both square and hexagonal GKP codes, achieving an increase in logical lifetime of a factor of three. The simple dissipative map used for the correction can be viewed as a type of reservoir engineering, which pumps into the highly non-classical GKP qubit manifold. These techniques open new possibilities for quantum state control and sensing alongside their application to scaling quantum computing.

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