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尺度定制的局域化及其在非厄米特电路中的观测

Scale-tailored localization and its observation in non-Hermitian electrical circuits.

作者信息

Guo Cui-Xian, Su Luhong, Wang Yongliang, Li Li, Wang Jinzhe, Ruan Xinhui, Du Yanjing, Zheng Dongning, Chen Shu, Hu Haiping

机构信息

Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing, 100190, China.

Beijing Key Laboratory of Optical Detection Technology for Oil and Gas, China University of Petroleum-Beijing, Beijing, 102249, China.

出版信息

Nat Commun. 2024 Oct 23;15(1):9120. doi: 10.1038/s41467-024-53434-8.

Abstract

Anderson localization and non-Hermitian skin effect are two paradigmatic wave localization phenomena, resulting from wave interference and the intrinsic non-Hermitian point gap, respectively. In this study, we unveil a novel localization phenomenon associated with long-range asymmetric coupling, termed scale-tailored localization, where the number of induced localized modes and their localization lengths scale exclusively with the coupling range. We show that the long-range coupling fundamentally reshapes the energy spectra and eigenstates by creating multiple connected paths on the lattice. Furthermore, we present experimental observations of scale-tailored localization in non-Hermitian electrical circuits utilizing adjustable voltage followers and switches. The circuit admittance spectra possess separate point-shaped and loop-shaped components in the complex energy plane, corresponding respectively to skin modes and scale-tailored localized states. Our findings not only expand and deepen the understanding of peculiar effects induced by non-Hermiticity but also offer a feasible experimental platform for exploring and controlling wave localizations.

摘要

安德森局域化和非厄米趋肤效应是两种典型的波局域化现象,分别由波干涉和本征非厄米点能隙引起。在本研究中,我们揭示了一种与长程不对称耦合相关的新型局域化现象,称为尺度定制局域化,其中诱导局域模的数量及其局域长度仅与耦合范围成比例。我们表明,长程耦合通过在晶格上创建多个连通路径从根本上重塑了能谱和本征态。此外,我们展示了利用可调电压跟随器和开关在非厄米电路中对尺度定制局域化的实验观察。电路导纳谱在复能平面中具有单独的点状和环形分量,分别对应于趋肤模和尺度定制局域态。我们的发现不仅扩展和加深了对非厄米性引起的特殊效应的理解,还为探索和控制波局域化提供了一个可行的实验平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f4fb/11496883/4bbe62b8d06e/41467_2024_53434_Fig1_HTML.jpg

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