双层Haldane体系:拓扑表征及连接Chern相的绝热通道

S. Bhattacharjee, Souvik Bandyopadhyay, D. Sen, A. Dutta
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引用次数: 0

摘要

我们提出了一个完整的拓扑表征双层复合材料的两个陈氏绝缘体(特别是霍尔丹模型),并明确地建立了体积边界对应。我们证明了非阿贝尔陈恩数(NACN)准确地映射出系统的所有可能的相位,因为即使在占用带中存在简并,它仍然是定义良好的。重要的是,我们的结果为实现单层陈氏绝缘子的绝热制备铺平了道路。考虑到不可能统一连接不等价拓扑相,这一直是迄今为止的主要挑战。我们表明,这种困难可以通过绝热改变层间耦合的方式来规避,使系统始终保持间隙。特别是,对双层复合材料相图的完整了解,可以立即确定所有这样的绝热通道,这些通道可以被穿越以调整单个单层的相。
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Bilayer Haldane system: Topological characterization and adiabatic passages connecting Chern phases
We present a complete topological characterization of a bilayer composite of two Chern insulators (specifically, Haldane models) and explicitly establish the bulk-boundary correspondences. We show that the non-Abelian Chern number (NACN) accurately maps out all the possible phases of the system as it remains well-defined even in the presence of degeneracies in the occupied bands. Importantly, our result paves the way for realizing adiabatic preparation of monolayer Chern insulators. This has been a major challenge till date, given the impossibility of unitarily connecting inequivalent topological phases. We show that this difficulty can be circumvented by adiabatically varying the interlayer coupling in such a way that the system remains gapped at all times. In particular, a complete knowledge of the phase diagram of the bilayer composite immediately allows one to identify all such adiabatic passages which can be traversed to tune the phases of the individual monolayers.
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