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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Coexistence of topological edge states and skin effects in the non-Hermitian Su-Schrieffer-Heeger model with long-range nonreciprocal hopping in topoelectric realizations
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Coexistence of topological edge states and skin effects in the non-Hermitian Su-Schrieffer-Heeger model with long-range nonreciprocal hopping in topoelectric realizations

机译:拓扑边缘状态和皮肤效应的共存,在非麦克尔维亚苏·施德尔 - Heeger模型中具有远程非透视跳跃在热识别中的远程非剖宫制模型

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摘要

Recently, the topological phase in non-Hermitian systems has been a rapidly expanding field. The iconic features of non-Hermitian systems are exceptional points at which the eigenmodes coalesce and the non-Hermitian skin effect. We study the non-Hermitian Su-Schrieffer-Heeger model with long-range nonreciprocal hopping and find the model exhibiting topologically nontrivial phases which can be characterized by the non-Bloch winding number. With specific parameter values, the skin effect can be eliminated. As long-range nonreciprocal hopping is not easy for experimental implementations, we furthermore propose a feasible electrical-circuit simulation with operational amplifiers to implement the non-Hermitian term to realize these interesting states.
机译:最近,非隐士系统中的拓扑阶段一直是一种快速扩大的领域。 非密封系统的标志性特征是特殊点,特征幅度聚结和非封闭症皮肤效应。 我们研究了具有远程非偏离跳跃的非封闭素舒克夫尔 - Heeger模型,并找到了表现出拓扑非竞争相位的模型,其可以特征是非布洛克绕组数。 具有特定参数值,可以消除皮肤效果。 由于远程非重量经跳跃对于实验实施,我们进一步提出了一种可行的电路模拟,其运算放大器实现了实现非密封术语来实现这些有趣状态。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2021年第12期|125411.1-125411.12|共12页
  • 作者单位

    Key Laboratory of Micro and Nano Photonic Structures (MOE) Department of Optical Science and Engineering Fudan University Shanghai 200433 China;

    Key Laboratory of Micro and Nano Photonic Structures (MOE) Department of Optical Science and Engineering Fudan University Shanghai 200433 China;

    School of Physics and Technology Wuhan University Wuhan 430072 China;

    School of Physics and Technology Wuhan University Wuhan 430072 China;

    Department of Electronic Engineering Fudan University Shanghai 200433 China;

    Key Laboratory of Micro and Nano Photonic Structures (MOE) Department of Optical Science and Engineering Fudan University Shanghai 200433 China;

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