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Effect of Boundary Condition and Periodical Extension on Transmission Characteristics of Terahertz Filters with Periodical Hole Array Structure Fabricated on Aluminum Slab

机译:边界条件和周期扩展对铝板上周期孔阵列结构太赫兹滤波器传输特性的影响

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摘要

Terahertz (THz) filters based on extraordinary optical transmission from periodical hole array structures fabricated on aluminum slab have been experimentally investigated by using THz time-domain spectroscopy. The incident THz pulses with frequency from 0.1 to 2.7 THz could be partly filtered, and the central peak was at ~0.26. The high frequency signal could be observed to decrease, especially for the frequency above ~1 THz. Moreover, the transmission peak from small-size sample with less hole arrays shifts to high frequency at ~0.53 THz due to both the effects of boundary condition and insufficient periodical extension. Furthermore, finite element method with surface plasmon polariton theory is employed to analyze this extraordinary optical transmission and filter phenomena.
机译:太赫兹(THz)滤光片基于太赫兹(THz)滤光片,该滤光片是通过使用THz时域光谱法对铝板上的周期性孔阵列结构产生的非常规光学传输进行了研究。频率从0.1到2.7 THz的入射THz脉冲可以部分滤波,中心峰值在〜0.26。可以观察到高频信号降低,尤其是对于〜1 THz以上的频率。此外,由于边界条件和周期性扩展不足的影响,孔阵列较少的小尺寸样品的透射峰在〜0.53 THz处转移至高频。此外,采用表面等离激元极化理论的有限元方法被用来分析这种非凡的光传输和滤光现象。

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