Lee Ching Hua, Li Linhu, Gong Jiangbin
Institute of High Performance Computing, A*STAR, Singapore 138632.
Department of Physics, National University of Singapore, Singapore 117551, Republic of Singapore.
Phys Rev Lett. 2019 Jul 3;123(1):016805. doi: 10.1103/PhysRevLett.123.016805.
Higher-order phases are characterized by corner or hinge modes that arise due to the interesting interplay of localization mechanisms along two or more dimensions. In this work, we introduce and construct a novel class of "hybrid" higher-order skin-topological boundary modes in nonreciprocal systems with two or more open boundaries. Their existence crucially relies on nonreciprocal pumping in addition to topological localization. Unlike usual non-Hermitian "skin" modes, they can exist in lattices with vanishing net reciprocity due to the selective nature of nonreciprocal pumping: While the bulk modes remain extended due to the cancellation of nonreciprocity within each unit cell, boundary modes experience a curious spontaneous breaking of reciprocity in the presence of topological localization, thereby experiencing the non-Hermitian skin effect. The number of possible hybridization channels increases rapidly with dimensionality, leading to a proliferation of distinct phases. In addition, skin modes or hybrid skin-topological modes can restore unitarity and are hence stable, allowing for experimental observations and manipulations in non-Hermitian photonic and electrical metamaterials.
高阶相的特征是角模式或铰链模式,这些模式是由于沿两个或多个维度的局域化机制之间有趣的相互作用而产生的。在这项工作中,我们在具有两个或更多开放边界的非互易系统中引入并构建了一类新型的“混合”高阶表面拓扑边界模式。它们的存在除了依赖拓扑局域外,还关键地依赖于非互易泵浦。与通常的非厄米“表面”模式不同,由于非互易泵浦的选择性,它们可以存在于净互易性消失的晶格中:虽然由于每个晶胞内非互易性的抵消,体模式仍然是扩展的,但在存在拓扑局域化的情况下,边界模式会经历一种奇特的互易性自发破缺,从而表现出非厄米表面效应。可能的杂化通道数量随维度迅速增加,导致不同相的大量涌现。此外,表面模式或混合表面拓扑模式可以恢复幺正性,因此是稳定的,这使得在非厄米光子和电气超材料中进行实验观测和操作成为可能。