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三聚化非厄密晶格中具有趋肤效应的拓扑边缘态
引用本文:许楠,张岩. 三聚化非厄密晶格中具有趋肤效应的拓扑边缘态[J]. 物理学报, 2019, 68(10): 104206-104206. DOI: 10.7498/aps.68.20190112
作者姓名:许楠  张岩
作者单位:东北师范大学物理学院, 长春 130024
基金项目:国家自然科学基金(批准号:11704064)、吉林省科技发展计划项计划(批准号:20180520205JH)和吉林省教育厅“十三五”科学技术项目(批准号:JJKH20180010KJ)资助的课题.
摘    要:近年来,探索新的拓扑量子结构、深入分析各种多聚化拓扑晶格中的新奇物理性质已经成为热点.并且,多聚化拓扑模型在量子光学等领域的研究也愈发深入,拥有广阔的发展前景.本文聚焦于研究三聚化非厄密晶格中的新奇拓扑特性.首先,若晶胞内最近邻正反向耦合不相等,三聚化模型中的体态和边缘态出现趋肤效应.其中,随着最近邻耦合正反系数差的增大,拓扑保护的边缘态的宽度和简并度均可被调制,边缘态数量也会减少.其次,当在考虑次近邻耦合的影响时,随着次近邻耦合系数在适当范围内变化,系统本征能谱的上下能隙及其中具有趋肤效应的边缘态也会发生不对称的变化.此外,当适当改变两种耦合系数,三聚化非厄密模型的体态和边缘态的局域程度也会随之发生变化.

关 键 词:边缘态  拓扑绝缘体  趋肤效应
收稿时间:2019-01-21

Topological edge states with skin effect in a trimerized non-Hermitian lattice
Xu Nan,Zhang Yan. Topological edge states with skin effect in a trimerized non-Hermitian lattice[J]. Acta Physica Sinica, 2019, 68(10): 104206-104206. DOI: 10.7498/aps.68.20190112
Authors:Xu Nan  Zhang Yan
Affiliation:School of Physics, Northeast Normal University, Changchun 130024, China
Abstract:In recent years, exploring new topological quantum model structures and in depth analyzing the novel physical properties in various multimerized topological lattices have become a hot topic in the field of quantum optics. Among the different model structures, the multimerized non-Hermitian lattice controlled by different parameters in the future research of topological quantum materials, we believe, can exhibit more meaningful novel topological properties. As one of the most classic topological models, the one-dimensional Aubry-André-Harper (AAH) model has received more and more attention in the study of multimerized lattices. In this paper, we focus on the novel topological properties of a trimerized non-Hermitian lattice, and extend the trimer model structure from a one-dimensional chain to a quasi-one-dimensional zigzag structure. The results show that firstly, if the nearest-neighbor forward coupling coefficient in the unit cell is not equal to the backward coupling coefficient, the chiral inversion symmetry of the system is destroyed. It can be observed that the bulk states and the edge states in the trimerization model will be localized on the same edge of the lattice, and the skin effect will appear in the system. With the increase of the nearest-neighbor coupling coefficient, the width of the edge state changes in which the lower edge state of the imaginary part of the spectrum is narrowed until it disappears. The degree of degeneracy of the system changes, and the number of edge states is reduced from four to two. Remarkably, the generalized bulk-boundary correspondence is shown in certain non-Hermitian topological systems. Secondly, when the trimerization model considers the influence of the next-nearest-neighbor coupling, the numerical results show that the upper and lower energy gaps in the energy spectrum and the edge states in the energy spectrum are asymmetrical as the next-nearest-neighbor coupling coefficient is modulated in an appropriate range. The upper energy gaps and the edge states are narrowed, and the edge states of the lower energy gaps are widened. At the same time, the novel topology features of the system can also be used to achieve the quantitative control of the energy spectrum edge states, and other interesting directions are worth exploring.
Keywords:edge states  topological insulators  skin effect
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