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Unveiling Signatures of Topological Phases in Open Kitaev Chains and Ladders

机译:公开的Kitaev链和梯子中的拓扑阶段的公开特征

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摘要

In this work, the general problem of the characterization of the topological phase of an open quantum system is addressed. In particular, we study the topological properties of Kitaev chains and ladders under the perturbing effect of a current flux injected into the system using an external normal lead and derived from it via a superconducting electrode. After discussing the topological phase diagram of the isolated systems, using a scattering technique within the Bogoliubov–de Gennes formulation, we analyze the differential conductance properties of these topological devices as a function of all relevant model parameters. The relevant problem of implementing local spectroscopic measurements to characterize topological systems is also addressed by studying the system electrical response as a function of the position and the distance of the normal electrode (tip). The results show how the signatures of topological order affect the electrical response of the analyzed systems, a subset of which being robust also against the effects of a moderate amount of disorder. The analysis of the internal modes of the nanodevices demonstrates that topological protection can be lost when quantum states of an initially isolated topological system are hybridized with those of the external reservoirs. The conclusions of this work could be useful in understanding the topological phases of nanowire-based mesoscopic devices.
机译:在这项工作中,解决了开放量子系统拓扑相表征的一般问题。特别是,我们研究了Kitaev链和梯子在使用外部法向导线注入到系统中并通过超导电极从中导出的电流通量的扰动作用下的拓扑特性。在讨论了孤立系统的拓扑相图之后,使用Bogoliubov-de Gennes公式内的散射技术,我们分析了这些拓扑设备的微分电导特性,作为所有相关模型参数的函数。通过研究作为正常电极(尖端)位置和距离的函数的系统电响应,还可以解决实施局部光谱测量以表征拓扑系统的相关问题。结果表明,拓扑顺序的签名如何影响被分析系统的电响应,该系统的一个子集还可以抵抗中等程度的无序影响。对纳米器件内部模式的分析表明,当最初隔离的拓扑系统的量子状态与外部存储库的量子状态混合时,拓扑保护可能会丢失。这项工作的结论可能有助于理解基于纳米线的介观器件的拓扑阶段。

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