Observation of an acoustic non-Hermitian topological Anderson insulator

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作者
Zhongming Gu
He Gao
Haoran Xue
Di Wang
Jiamin Guo
Zhongqing Su
Baile Zhang
Jie Zhu
机构
[1] Tongji University,Institute of Acoustics, School of Physics Science and Engineering
[2] The Hong Kong Polytechnic University,Department of Mechanical Engineering
[3] Nanyang Technological University,Division of Physics and Applied Physics, School of Physical and Mathematical Sciences
[4] Nanyang Technological University,Centre for Disruptive Photonic Technologies
关键词
topological Anderson insulator; non-Hermitian systems; topological edge states; 43.20.Fn; 68.35.Rh; 72.15.Rn;
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摘要
The interaction of band topology and disorder can give rise to intriguing phenomena. One paradigmatic example is the topological Anderson insulator, whose nontrivial topology is induced in a trivial system by disorders. In this study, we investigate the effect of purely non-Hermitian disorders on topological systems using a one-dimensional acoustic lattice with coupled resonators. Specifically, we construct a theoretical framework to describe the non-Hermitian topological Anderson insulator phase solely driven by disordered loss modulation. Then, the complete evolution of non-Hermitian disorder-induced topological phase transitions, from an initial trivial phase to a topological Anderson phase and finally to a trivial Anderson phase, is revealed experimentally using both bulk and edge spectra. Interestingly, topological modes induced by non-Hermitian disorders to be immune to both weak Hermitian and non-Hermitian disorders. These findings pave the way for future research on disordered non-Hermitian systems for novel wave manipulation.
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