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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Effect of hybrid state of surface plasmon-polaritons, magnetic defect mode and optical Tamm state on nonreciprocal propagation
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Effect of hybrid state of surface plasmon-polaritons, magnetic defect mode and optical Tamm state on nonreciprocal propagation

机译:表面等离激元-极化子的混合态,磁缺陷模式和光学Tamm态对不可逆传播的影响

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摘要

A coupled system of semi-infinite one-dimensional photonic crystal coated with metal and magnetic films is proposed. The properties of hybrid states of surface plasmon-polaritons, magnetic defect mode and optical Tamm state from the system have been studied through the Bloch theorem of periodic structure and the transfer matrix method. In the hybrid states the magneto-optical effect is amplified due to the field resonance amplification at the interface between the metal and magneto-optical material. Tunable nonreciprocal propagation can be achieved from the hybrid states through changing the thickness of magneto-optical material layer. The nonreciprocity is found to be robust to the change of metal thickness.
机译:提出了一种具有金属和磁性膜的半无限一维光子晶体的耦合系统。通过周期性结构的布洛赫定理和传递矩阵法研究了系统的表面等离激元-极化子,磁缺陷模式和光学Tamm状态的混合态的性质。在混合态中,由于在金属和磁光材料之间的界面处的场共振放大,磁光效应被放大。通过改变磁光材料层的厚度,可以从混合状态实现可调的不可逆传播。发现不可逆性对金属厚度的变化具有鲁棒性。

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