A review on non-Hermitian skin effect

IF 7.7 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
Xiujuan Zhang, Tian Zhang, Ming-Hui Lu, Yan-Feng Chen
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引用次数: 61

Abstract

ABSTRACT The past decades have witnessed the flourishing of non-Hermitian physics in non-conservative systems, leading to unprecedented phenomena of unidirectional invisibility, enhanced sensitivity and more recently the novel topological features such as bulk Fermi arcs. Among them, growing efforts have been invested to an intriguing phenomenon, known as the non-Hermitian skin effect (NHSE). Here, we review the recent progress in this emerging field. By starting from the one-dimensional (1D) case, the fundamental concepts of NHSE, its minimal model, the physical meanings and consequences are elaborated in details. In particular, we discuss the NHSE enriched by lattice symmetries, which gives rise to unique non-Hermitian topological properties with revised bulk-boundary correspondence (BBC) and new definitions of topological invariants. Then we extend the discussions to two and higher dimensions, where dimensional surprises enable even more versatile NH.SE phenomena. Extensions of NHSE assisted with extra degrees of freedom such as long-range coupling, pseudospins, magnetism, non-linearity and crystal defects are also reviewed. This is followed by the contemporary experimental progress for NHSE. Finally, we provide the outlooks to possible future directions and developments. Graphical Abstract
非厄米集肤效应研究进展
在过去的几十年里,非厄米物理在非保守系统中蓬勃发展,导致了前所未有的单向不可见现象,提高了灵敏度,最近又出现了新的拓扑特征,如体费米弧。其中,越来越多的努力已经投入到一个有趣的现象,被称为非厄米皮肤效应(NHSE)。在此,我们回顾了这一新兴领域的最新进展。从一维(1D)情况出发,详细阐述了NHSE的基本概念、最小模型、物理意义和后果。特别地,我们讨论了由晶格对称性丰富的NHSE,它产生了具有修正的体边界对应(BBC)和拓扑不变量的新定义的独特的非厄米拓扑性质。然后我们将讨论扩展到二维和更高的维度,其中维度惊喜可以实现更通用的NH。SE现象。本文还评述了在额外自由度的辅助下NHSE的扩展,如远程耦合、伪自旋、磁性、非线性和晶体缺陷。随后是当代NHSE的实验进展。最后,我们对未来可能的方向和发展进行了展望。图形抽象
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来源期刊
Advances in Physics: X
Advances in Physics: X Physics and Astronomy-General Physics and Astronomy
CiteScore
13.60
自引率
0.00%
发文量
37
审稿时长
13 weeks
期刊介绍: Advances in Physics: X is a fully open-access journal that promotes the centrality of physics and physical measurement to modern science and technology. Advances in Physics: X aims to demonstrate the interconnectivity of physics, meaning the intellectual relationships that exist between one branch of physics and another, as well as the influence of physics across (hence the “X”) traditional boundaries into other disciplines including: Chemistry Materials Science Engineering Biology Medicine
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