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Long-range doublon transfer in a dimer chain induced by topology and ac fields

机译:拓扑和交流场在二聚体链中进行长距离双链转移

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摘要

The controlled transfer of particles from one site of a spatial lattice to another is essential for many tasks in quantum information processing and quantum communication. In this work we study how to induce long-range transfer between the two ends of a dimer chain, by coupling states that are localized just on the chain’s end-points. This has the appealing feature that the transfer occurs only between the end-points – the particle does not pass through the intermediate sites–making the transfer less susceptible to decoherence. We first show how a repulsively bound-pair of fermions, known as a doublon, can be transferred from one end of the chain to the other via topological edge states. We then show how non-topological surface states of the familiar Shockley or Tamm type can be used to produce a similar form of transfer under the action of a periodic driving potential. Finally we show that combining these effects can produce transfer by means of more exotic topological effects, in which the driving field can be used to switch the topological character of the edge states, as measured by the Zak phase. Our results demonstrate how to induce long range transfer of strongly correlated particles by tuning both topology and driving.
机译:粒子从空间晶格的一个位置到另一个位置的受控传输对于量子信息处理和量子通信中的许多任务至关重要。在这项工作中,我们研究如何通过耦合仅位于链端点上的状态来诱导二聚体链两端之间的长距离转移。它具有吸引人的特征,即转移仅发生在端点之间-粒子不通过中间位置-使得转移不易受到去相干的影响。我们首先展示如何将被称为双链子的费米子的排斥结合对通过拓扑边缘状态从链的一端转移到另一端。然后,我们说明如何在周期性驱动势的作用下,将熟悉的Shockley或Tamm类型的非拓扑表面状态用于产生相似形式的传递。最后,我们证明了结合这些效应可以通过更奇特的拓扑效应产生转移,其中驱动场可以用来切换边缘态的拓扑特征,如Zak相所测量的。我们的结果证明了如何通过调整拓扑和驱动来诱导强相关粒子的远距离转移。

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