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首页> 外文期刊>Photonics and Nanostructures: Fundamentals and Applications >Complete optical transmission through nano-scale periodic metallic structure with three-stepped slits
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Complete optical transmission through nano-scale periodic metallic structure with three-stepped slits

机译:通过三级狭缝通过纳米级周期金属结构完成光学传输

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Metallic structures with periodic array of subwavelength slits are well-known to lead to extraordinary optical transmission (EOT). Excellent power transmission originates from surface waves excited by incident transverse magnetic wave. Here we show that the metallic structure with array of three-stepped slits can transmit almost the entire power of incident wave into the substrate at desired optical frequency for low-temperature-grown gallium arsenide (LT-GaAs) substrate. Transmitted power of the proposed structure is studied both by an analytical model as well as numerical method by finite element (FEM). It is found that existence of three corners in the proposed structure can favorably confine generated carriers in the vicinity of the electrodes as this structure is used in photoconductive antenna (PCA); this feature contributes to increase terahertz (THz) current and subsequently THz radiation power of PCAs.
机译:具有周期性帧阵列的金属结构是众所周知的,以导致非凡的光学传输(EOT)。 优异的动力传递来自入射横向磁波激发的表面波。 在这里,我们表明,具有三步狭缝阵列的金属结构可以以期望的光学频率向基板传输到低温生长的砷化镓(LT-GaAs)衬底的所需光学频率。 通过分析模型以及通过有限元(FEM)来研究所提出的结构的传送功率。 结果发现,当该结构用于光电导天线(PCA)中,所提出的结构中的三个角的存在能够有利地限制电极附近的产生载流子; 此功能有助于增加Terahertz(THz)电流和随后PCA的辐射功率。

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