Hu Haiping
Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China; School of Physical Sciences, University of Chinese Academy of Sciences, Beijing 100049, China.
Sci Bull (Beijing). 2025 Jan 15;70(1):51-57. doi: 10.1016/j.scib.2024.07.022. Epub 2024 Jul 25.
The non-Hermitian skin effect is an iconic phenomenon characterized by the aggregation of eigenstates near the system boundaries in non-Hermitian systems. While extensively studied in one dimension, understanding the skin effect and extending the non-Bloch band theory to higher dimensions encounter a formidable challenge, primarily due to infinite lattice geometries or open boundary conditions. This work adopts a point-gap perspective and unveils that non-Hermitian skin effect in all spatial dimensions originates from point gaps. We introduce the concept of uniform spectra and reveal that regardless of lattice geometry, their energy spectra are universally given by the uniform spectra, even though their manifestations of skin modes may differ. Building on the uniform spectra, we demonstrate how to account for the skin effect with generic lattice cuts and establish the connections of skin modes across different geometric shapes via momentum-basis transformations. Our findings highlight the pivotal roles point gaps play, offering a unified understanding of the topological origin of non-Hermitian skin effect in all dimensions.
非厄米趋肤效应是一种标志性现象,其特征是在非厄米系统中本征态在系统边界附近聚集。虽然在一维中已得到广泛研究,但理解趋肤效应并将非布洛赫能带理论扩展到更高维度面临着巨大挑战,主要原因在于无限晶格几何结构或开放边界条件。这项工作采用点能隙视角,揭示了所有空间维度中的非厄米趋肤效应都源于点能隙。我们引入了均匀谱的概念,并揭示出无论晶格几何结构如何,其能谱都由均匀谱普遍给出,尽管它们的趋肤模式表现可能不同。基于均匀谱,我们展示了如何用一般的晶格切割来解释趋肤效应,并通过动量基变换建立不同几何形状之间趋肤模式的联系。我们的发现突出了点能隙所起的关键作用,为所有维度中非厄米趋肤效应的拓扑起源提供了统一的理解。