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在磁通交错晶格中实现拓扑相变和阿哈罗诺夫-玻姆囚禁

Engineering topological phase transition and Aharonov-Bohm caging in a flux-staggered lattice.

作者信息

Mukherjee Amrita, Nandy Atanu, Sil Shreekantha, Chakrabarti Arunava

机构信息

Department of Physics, University of Kalyani, Kalyani, West Bengal-741 235, India.

Department of Physics, Kulti College, Kulti, Paschim Bardhaman, West Bengal-713 343, India.

出版信息

J Phys Condens Matter. 2020 Oct 16;33(3). doi: 10.1088/1361-648X/abbc9a.

Abstract

A tight binding network of diamond shaped unit cells trapping a staggered magnetic flux distribution is shown to exhibit a topological phase transition under a controlled variation of the flux trapped in a cell. A simple real space decimation technique maps a binary flux staggered network into an equivalent Su-Shrieffer-Heeger (SSH) model. In this way, dealing with a subspace of the full degrees of freedom, we show that a topological phase transition can be initiated by tuning the applied magnetic field that eventually simulates an engineering of the numerical values of the overlap integrals in the paradigmatic SSH model. Thus one can use an external agent, rather than monitoring the intrinsic property of a lattice to control the topological properties. This is advantageous from an experimental point of view. We also provide an in-depth description and analysis of the topologically protected edge states, and discuss how, by tuning the flux from outside one can enhance the spatial extent of the Aharonov-Bohm caging of single particle states for any arbitrary period of staggering. This feature can be useful for the study of transport of quantum information. Our results are exact.

摘要

一种由菱形晶胞构成的紧密束缚网络,其捕获了交错的磁通量分布,结果表明,在一个晶胞中捕获的磁通量受到可控变化时,该网络会呈现拓扑相变。一种简单的实空间抽取技术将二元通量交错网络映射为等效的Su-Shrieffer-Heeger(SSH)模型。通过这种方式,在处理全自由度的一个子空间时,我们表明可以通过调节外加磁场来引发拓扑相变,该外加磁场最终模拟了范例SSH模型中重叠积分数值的一种调控。因此,可以使用外部因素,而不是监测晶格的固有属性来控制拓扑性质。从实验角度来看,这是有利的。我们还对拓扑保护边缘态进行了深入描述和分析,并讨论了如何通过从外部调节磁通量,对于任意交错周期,都能增强单粒子态的阿哈罗诺夫 - 玻姆囚禁的空间范围。这一特性对于量子信息传输的研究可能是有用的。我们的结果是精确的。

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