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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >LATTICES OF COUPLED CAVITIES AS PHOTONIC SIMULATORS FOR TOPOLOGICAL PHENOMENA IN CONDENSED MATTER PHYSICS
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LATTICES OF COUPLED CAVITIES AS PHOTONIC SIMULATORS FOR TOPOLOGICAL PHENOMENA IN CONDENSED MATTER PHYSICS

机译:耦合腔格作为凝聚态物理中拓扑现象的光子模拟器

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摘要

We review several two- and three-dimensional metamaterial designs which serve as photonic simulators of topological phenomena in condensed matter physics. Based on a coupled-mode theory we show that lattices of interacting cavities can simulate Haldane lattices which exhibit one-way guided modes and mode coalescence in the absence of external magnetic field. Furthermore, periodic holey metals filled with a magnetoelectric material exhibit a nonreciprocal photonic band structure in the optical regime. Lastly, we show that a three-dimensional lattice of interacting cavities respecting time-reversal symmetry and a certain point-group symmetry can simulate a topological crystalline insulator.
机译:我们回顾了几个二维和三维超材料设计,它们可作为凝聚态物理中拓扑现象的光子模拟器。基于耦合模式理论,我们证明了相互作用的腔的晶格可以模拟霍尔丹晶格,它们在没有外部磁场的情况下表现出单向导模和模合并。此外,填充有磁电材料的周期性有孔金属在光学状态下表现出不可逆的光子能带结构。最后,我们证明了相互作用的腔体的三维晶格尊重时间反转对称性和一定的点群对称性,可以模拟拓扑晶体绝缘体。

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