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Finite element method analysis of band gap and transmission of two-dimensional metallic photonic crystals at terahertz frequencies

机译:太赫兹频率下二维金属光子晶体的带隙和传输的有限元分析

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摘要

Photonic band gap and transmission characteristics of 2D metallic photonic crystals at THz frequencies have been investigated using finite element method (FEM). Photonic crystals composed of metallic rods in air, in square and triangular lattice arrangements, are considered for transverse electric and transverse magnetic polarizations. The modes and band gap characteristics of metallic photonic crystal structure are investigated by solving the eigenvalue problem over a unit cell of the lattice using periodic boundary conditions. A photonic band gap diagram of dielectric photonic crystal in square lattice array is also considered and compared with well-known plane wave expansion results verifying our FEM approach. The photonic band gap designs for both dielectric and metallic photonic crystals are consistent with previous studies obtained by different methods. Perfect match is obtained between photonic band gap diagrams and transmission spectra of corresponding lattice structure.
机译:使用有限元方法(FEM)研究了二维金属光子晶体在太赫兹频率下的光子带隙和透射特性。考虑到由空气中的金属棒以正方形和三角形晶格排列构成的光子晶体用于横向电极化和横向磁极化。通过使用周期边界条件解决晶格的晶胞上的特征值问题,研究了金属光子晶体结构的模式和带隙特性。还考虑了方格阵列中的介电光子晶体的光子带隙图,并将其与众所周知的平面波扩展结果进行比较,从而验证了我们的FEM方法。电介质和金属光子晶体的光子带隙设计与以前通过不同方法获得的研究一致。在光子带隙图和相应晶格结构的透射光谱之间获得了完美匹配。

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