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Dispersion characteristics of terahertz photonic crystal waveguide

机译:太赫兹光子晶体波导的色散特性

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A new type of terahertz (THz) photonic crystal waveguide is proposed and its dispersion characteristics are investigated. The cladding of this THz photonic crystal waveguide is silicon material containing periodic circular air holes arranged as triangular lattice, and the material of its core is polythene (PE). The band-gap distribution is studied by plane wave method (PWM), absorption boundary is determined by perfectly matched layer (PML), and dispersion characteristics are analyzed by finite-difference time-domain method (FDTD). Results show that waveguide dispersion is strongly affected by structure parameters, e.g. air hole diameter, spacing between air holes and core radius. The value, slope and zero-dispersion point of waveguide dispersion can be adjusted by changing structure parameters. Better dispersion characteristics could be achieved at higher air-filling factor.
机译:提出了一种新型的太赫兹(THz)光子晶体波导,并研究了其色散特性。该太赫兹光子晶体波导的包层是硅材料,其中包含排列成三角形点阵的周期性圆形气孔,其芯层的材料是聚乙烯(PE)。通过平面波方法(PWM)研究带隙分布,通过完全匹配层(PML)确定吸收边界,并通过时域有限差分法(FDTD)分析色散特性。结果表明,波导色散受结构参数的强烈影响。气孔直径,气孔之间的间距和芯半径。波导色散的值,斜率和零色散点可通过更改结构参数来调整。在较高的空气填充系数下可以实现更好的分散特性。

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