论文标题
拓扑状态转移和拓扑梁分离器的工程均匀尺寸的Su-Schrieffer-Heeger链
Engineering of topological state transfer and topological beam splitter in an even-size Su-Schrieffer-Heeger chain
论文作者
论文摘要
具有均匀数量的晶格位点的通常的Su-Schrieffer-Heeger模型具有两个退化的零能量模式。零能量模式的退化导致左边缘拓扑之间的混合,这使得难以通过拓扑边缘通道实施状态转移。在这里,在大米拓扑泵送的启发下,我们发现交错的周期性最新的邻居跳跃也可以将初始混合边缘状态分开,从而确保状态左右边缘状态之间的状态转移。值得注意的是,我们通过引入交错的周期性现场电位来构建一个独特的拓扑状态转移通道,并且仅同时在奇数位置上添加了周期性的最新邻居跳跃,并发现最初在最后一个位置准备的状态可以转移到前两个具有相同概率分布的位点。这种特殊的拓扑状态传输通道有望实现拓扑束分离器,其功能是使一个位置的初始光子出现在两个不同的位置,具有相同的概率。此外,我们证明了基于电路量子电动力晶格实现拓扑束分离器的可行性。我们的方案为实现拓扑量子信息处理开辟了一种新方法,并为新型量子光学设备的工程提供了新的途径。
The usual Su-Schrieffer-Heeger model with an even number of lattice sites possesses two degenerate zero energy modes. The degeneracy of the zero energy modes leads to the mixing between the topological left and right edge states, which makes it difficult to implement the state transfer via topological edge channel. Here, enlightened by the Rice-Male topological pumping, we find that the staggered periodic next-nearest neighbor hoppings can also separate the initial mixed edge states, which ensures the state transfer between topological left and right edge states. Significantly, we construct an unique topological state transfer channel by introducing the staggered periodic on-site potentials and the periodic next-nearest neighbor hoppings added only on the odd sites simultaneously, and find that the state initially prepared at the last site can be transfered to the first two sites with the same probability distribution. This special topological state transfer channel is expected to realize a topological beam splitter, whose function is to make the initial photon at one position appear at two different positions with the same probability. Further, we demonstrate the feasibility of implementing the topological beam splitter based on the circuit quantum electrodynamic lattice. Our scheme opens up a new way for the realization of topological quantum information processing and provides a new path towards the engineering of new type of quantum optical device.