Magneto-optical photonic crystal-based three-port circulators with low symmetry

V. Dmitriev, G. Portela, Leno Martins
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引用次数: 2

Abstract

Three-port circulators based on magneto-optical resonators in 2D photonic crystals with low symmetry are investigated. We consider different geometries of the circulators in photonic crystals with triangular and square unit cells. All of the three-ports possess only one specific element of symmetry named antiplane of symmetry. The theoretical part of our paper concerns scattering matrix analysis for different regimes of circulation. In particular, we define the scattering matrices of ideal circulator and a special type of conditions which allow one to transform the nonreciprocal three-port in ideal circulator. One case of non-ideal circulators is considered as well. Finally, one example of the circulator simulations with calculated frequency responses in photonic crystals based on triangular unit cells is presented.
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低对称性磁光光子晶体三端口环行器
研究了低对称性二维光子晶体中基于磁光谐振腔的三端口环行器。我们考虑了具有三角形和正方形单元格的光子晶体中环形器的不同几何形状。所有的三个端口都只有一个特定的对称元素,称为对称反平面。本文的理论部分涉及不同环流制度的散射矩阵分析。特别地,我们定义了理想环行器的散射矩阵,并给出了理想环行器中非互易三端口变换的一类特殊条件。本文还考虑了非理想循环器的一种情况。最后,给出了一个基于三角单元晶格的光子晶体中循环器频率响应的仿真实例。
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