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活性机械超材料中非厄米拓扑及其体边对应关系的观测

Observation of non-Hermitian topology and its bulk-edge correspondence in an active mechanical metamaterial.

作者信息

Ghatak Ananya, Brandenbourger Martin, van Wezel Jasper, Coulais Corentin

机构信息

Institute of Physics, University of Amsterdam, 1098 XH, Amsterdam, The Netherlands.

Institute of Physics, University of Amsterdam, 1098 XH, Amsterdam, The Netherlands

出版信息

Proc Natl Acad Sci U S A. 2020 Nov 24;117(47):29561-29568. doi: 10.1073/pnas.2010580117. Epub 2020 Nov 9.

Abstract

Topological edge modes are excitations that are localized at the materials' edges and yet are characterized by a topological invariant defined in the bulk. Such bulk-edge correspondence has enabled the creation of robust electronic, electromagnetic, and mechanical transport properties across a wide range of systems, from cold atoms to metamaterials, active matter, and geophysical flows. Recently, the advent of non-Hermitian topological systems-wherein energy is not conserved-has sparked considerable theoretical advances. In particular, novel topological phases that can only exist in non-Hermitian systems have been introduced. However, whether such phases can be experimentally observed, and what their properties are, have remained open questions. Here, we identify and observe a form of bulk-edge correspondence for a particular non-Hermitian topological phase. We find that a change in the bulk non-Hermitian topological invariant leads to a change of topological edge-mode localization together with peculiar purely non-Hermitian properties. Using a quantum-to-classical analogy, we create a mechanical metamaterial with nonreciprocal interactions, in which we observe experimentally the predicted bulk-edge correspondence, demonstrating its robustness. Our results open avenues for the field of non-Hermitian topology and for manipulating waves in unprecedented fashions.

摘要

拓扑边缘模式是一种激发态,它局域在材料的边缘,但却由在体材料中定义的拓扑不变量来表征。这种体-边对应关系使得在从冷原子到超材料、活性物质和地球物理流等广泛的系统中能够产生稳健的电子、电磁和机械输运特性。最近,非厄米拓扑系统(其中能量不守恒)的出现引发了大量的理论进展。特别是,引入了仅能存在于非厄米系统中的新型拓扑相。然而,这些相是否能够通过实验观测到以及它们的性质是什么,仍然是悬而未决的问题。在这里,我们识别并观测到了一种特定非厄米拓扑相的体-边对应形式。我们发现,体非厄米拓扑不变量的变化会导致拓扑边缘模式局域化的变化以及奇特的纯非厄米性质。通过量子与经典的类比,我们创建了一种具有非互易相互作用的机械超材料,在其中我们通过实验观测到了预测的体-边对应关系,证明了其稳健性。我们的结果为非厄米拓扑领域以及以前所未有的方式操纵波开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9c5/7703544/5dff91dbcb79/pnas.2010580117fig01.jpg

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