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Hardware-Encoding Grid States in a Nonreciprocal Superconducting Circuit

机译:在非透视超导电路中的硬件编码网格状态

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We present a circuit design composed of two Josephson junctions coupled by a nonreciprocal element, the gyrator, whose ground space is doubly degenerate. The ground states are approximate code words of the Gottesman-Kitaev-Preskill code. We determine the low-energy dynamics of the circuit by working out the equivalence of this system to the problem of a single electron in a crystal, confined to a two-dimensional plane, and subjected to a strong, homogeneous magnetic field. We find that the circuit is naturally protected against the common noise channels in superconducting circuits, such as charge and flux noise, implying that it can be used for passive quantum error correction. We also propose realistic design parameters for an experimental realization, and we describe possible protocols to perform logical one- and two-qubit gates, state preparation, and readout.
机译:我们介绍了由两个Josephseon结组成的电路设计,该结合由非透平元件,陀螺仪耦合,其地面空间是双重退化的。 地面状态是Gottesman-Kitaev-Preskill代码的近似代码字。 我们通过将该系统的等效物流出来将该系统的等效性确定为晶体中的单个电子的问题来确定电路的低能量动力学,限制在二维平面上,并经受强,均匀的磁场。 我们发现该电路自然地防止超导电路中的常见噪声通道,例如充电和磁通噪声,这意味着它可以用于被动量子误差校正。 我们还提出了实际的设计参数,用于实验性实现,我们描述了执行逻辑单和两个栅栏,状态准备和读数的可能协议。

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