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Coupling of photonic crystal-photonic crystal interface and guided modes in two-dimensional heterostructures

机译:二维异质结构中光子晶体-光子晶体界面和导模的耦合

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摘要

In this work, we propose a two-dimensional photonic crystal-photonic crystal heterostructure that possesses the requirements for exciting an electromagnetic interface mode and investigate its interaction with photonic crystal waveguide modes. To study the interaction and coupling of both types of modes, the proper conditions to excite them are analyzed. Photonic crystal guided modes can appear in nearly any band gap when the photonic crystal has a line of defects within its lattice. Photonic crystal-photonic crystal surface modes can be excited at the junction of two different photonic crystals that share translation symmetry along the interface direction and have overlapped frequency band gaps. When this condition is met, dispersion relations of photonic crystal-photonic crystal surface modes will lie in the common region of both band gaps. Once the proper conditions are provided to excite these two modes, an interaction between them is possible. In the resulting calculations, a symmetric super-cell and a plane wave basis are defined to numerically solve the wave equation.
机译:在这项工作中,我们提出了一种二维光子晶体-光子晶体异质结构,该结构具有激发电磁界面模式的要求,并研究其与光子晶体波导模式的相互作用。为了研究两种模式的相互作用和耦合,分析了激发它们的合适条件。当光子晶体在其晶格中具有缺陷线时,几乎可以在任何带隙中出现光子晶体导模。光子晶体-光子晶体表面模式可以在两个不同的光子晶体的交界处被激发,这两个光子晶体沿着界面方向共享平移对称性并且具有重叠的带隙。当满足该条件时,光子晶体-光子晶体表面模式的色散关系将位于两个带隙的公共区域中。一旦提供了适当的条件来激发这两种模式,它们之间就可能发生相互作用。在结果计算中,定义了一个对称的超级单元和一个平面波基础,以数值方式求解波动方程。

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