论文标题

在手性对称二聚体超导电路晶格中,工程型拓扑路由器与长距离跳跃

Engineering the phase-robust topological router in a chiral-symmetric dimerized superconducting circuit lattice with long-range hopping

论文作者

Zheng, Li-Na, Wang, Hong-Fu, Yi, Xuexi

论文摘要

我们提出了一个方案,以基于一维二聚体的超导电路晶格实现相位射击拓扑路由器,并进行远距离跳跃。我们表明,提出的二聚体超导电路晶格可以映射到具有远距离跳跃的延伸性手性超对称的Su-Schrieffer-Heeger(SSH)模型中,其中远距离跳跃的存在会引起特殊的零能模式。零能量模式的特殊分布使我们能够设计一个相位塑性拓扑路由器,该路由器可以将量子状态转移(QST)从一个位点(输入端口)实现为多个站点(输出端口)。受益于手性对称性的拓扑保护,我们证明了在最近的邻居和远距离跳跃中的温和疾病的存在对晶格中的QST没有明显的影响。特别是,在将另一个新的长距离跳跃引入扩展的SSH晶格之后,我们提出了相位刺激拓扑路由器的优化协议,其中可以有效地增加输出端口的数量。可以通过光子的平均分布来检测到超导电路晶格的BOSE统计特性,以零能量模式辅助的输入端口和输出端口。我们的作品仅通过零能量模式而打破了传统的QST形式,并打开了在SSH链中构建大规模量子信息处理的途径。

We propose a scheme to implement the phase-robust topological router based on a one-dimensional dimerized superconducting circuit lattice with long-range hopping. We show that the proposed dimerized superconducting circuit lattice can be mapped into an extended chiral-symmetric Su-Schrieffer-Heeger (SSH) model with long-range hopping, in which the existence of long-range hopping induces a special zero-energy mode. The peculiar distribution of the zero-energy mode enables us to engineer a phase-robust topological router, which can achieve quantum state transfer (QST) from one site (input port) to multiple sites (output ports). Benefiting from the topological protection of chiral symmetry, we demonstrate that the presence of the mild disorder in nearest-neighbor and long-range hopping has no appreciable effects on QST in the lattice. Especially, after introducing another new long-range hopping into the extended SSH lattice, we propose an optimized protocol of the phase-robust topological router, in which the number of the output ports can be efficiently increased. Resorting to the Bose statistical properties of the superconducting circuit lattice, the input port and output ports assisted by the zero-energy mode can be detected via the mean distribution of the photons. Our work breaks the traditional QST form with only one outport by the zero-energy mode and opens a pathway to construct large-scale quantum information processing in the SSH chains with long-range hopping.

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