Li Linhu, Lee Ching Hua, Mu Sen, Gong Jiangbin
Department of Physics, National University of Singapore, Singapore, 117542, Singapore.
Nat Commun. 2020 Oct 30;11(1):5491. doi: 10.1038/s41467-020-18917-4.
Critical systems represent physical boundaries between different phases of matter and have been intensely studied for their universality and rich physics. Yet, with the rise of non-Hermitian studies, fundamental concepts underpinning critical systems - like band gaps and locality - are increasingly called into question. This work uncovers a new class of criticality where eigenenergies and eigenstates of non-Hermitian lattice systems jump discontinuously across a critical point in the thermodynamic limit, unlike established critical scenarios with spectrum remaining continuous across a transition. Such critical behavior, dubbed the "critical non-Hermitian skin effect", arises whenever subsystems with dissimilar non-reciprocal accumulations are coupled, however weakly. This indicates, as elaborated with the generalized Brillouin zone approach, that the thermodynamic and zero-coupling limits are not exchangeable, and that even a large system can be qualitatively different from its thermodynamic limit. Examples with anomalous scaling behavior are presented as manifestations of the critical non-Hermitian skin effect in finite-size systems. More spectacularly, topological in-gap modes can even be induced by changing the system size. We provide an explicit proposal for detecting the critical non-Hermitian skin effect in an RLC circuit setup, which also directly carries over to established setups in non-Hermitian optics and mechanics.
临界系统代表了不同物质相之间的物理边界,因其普遍性和丰富的物理学特性而受到深入研究。然而,随着非厄米研究的兴起,支撑临界系统的基本概念——如带隙和局域性——越来越受到质疑。这项工作揭示了一类新的临界性,在热力学极限下,非厄米晶格系统的本征能量和本征态在临界点处会发生不连续跳跃,这与已有的临界情形不同,后者的谱在相变过程中保持连续。这种临界行为被称为“临界非厄米趋肤效应”,只要具有不同非互易积累的子系统相互耦合,无论耦合多么微弱,都会出现这种效应。正如用广义布里渊区方法所阐述的那样,这表明热力学极限和零耦合极限是不可交换的,而且即使是一个大系统在定性上也可能与其热力学极限不同。作为有限尺寸系统中临界非厄米趋肤效应的表现形式,给出了具有反常标度行为的例子。更引人注目的是,甚至可以通过改变系统大小来诱导拓扑带隙模式。我们提出了一个在RLC电路设置中检测临界非厄米趋肤效应的明确方案,该方案也可以直接应用于非厄米光学和力学中的现有设置。