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首页> 外文期刊>Journal of Modern Optics >Multi-channel terahertz wavelength division demultiplexer with defects-coupled photonic crystal waveguide
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Multi-channel terahertz wavelength division demultiplexer with defects-coupled photonic crystal waveguide

机译:缺陷耦合光子晶体波导的多通道太赫兹波分复用器

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摘要

Terahertz (THz) wavelength division demultiplexer based on a compact defects-coupled photonic crystal waveguide is proposed and demonstrated numerically. This device consists of an input waveguide that perpendicularly coupled with a series of defects cavities, each of which captures the resonance frequency from the input waveguide. Coupled-mode theory and finite element method are used to analyze the transmission properties of the structure. It is found that the transmission wavelength centered around 1THz can be adjusted by changing the geometrical parameters of defects cavities, which equals to THz waves generated by optical methods such as difference frequency generation and optical rectification. Applications in this frequency range are urgently needed. Furthermore, the highest transmission efficiency of 0.94 can be achieved when a perfect wavelength-selective mirror is set in the output waveguide.
机译:提出了一种基于缺陷耦合光子晶体波导的太赫兹(THz)波分复用器,并进行了数值模拟。该设备由一个与一系列缺陷腔垂直耦合的输入波导组成,每个缺陷腔捕获来自输入波导的谐振频率。耦合模式理论和有限元方法被用来分析结构的传递特性。发现通过改变缺陷腔的几何参数可以调节以1THz为中心的透射波长,其等于通过诸如差频产生和光学整流的光学方法产生的THz波。迫切需要该频率范围内的应用。此外,当在输出波导中设置理想的波长选择镜时,可以获得0.94的最高传输效率。

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