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Design of a tunable terahertz narrowband metamaterial absorber based on an electrostatically actuated MEMS cantilever and split ring resonator array

机译:基于静电驱动MEMS悬臂和裂环谐振器阵列的可调谐太赫兹窄带超材料吸收器的设计

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摘要

A dynamically tunable terahertz (THz) narrowband metamaterial absorber is presented. The absorber is based on an electrostatically actuated micro-electro-mechanical systems (MEMS) cantilever and split ring resonator (SRR) array. An equivalent LC circuit model for a transverse electric (TE) polarization wave is introduced to analyze the mechanism of frequency tuning. A finite element method is applied to simulate the mechanical characteristics of the cantilever, and a finite integration technique is used to study the frequency tuning properties of the absorber. The results show that, for a TE polarization wave, there is only one absorption peak in the frequency range from 0.6 to 1.6 THz. The absorption peak frequency can be continuously tuned from 1.32 to 1.28 THz, and then abruptly to 1.12 THz. The maximum tunable frequency is 0.20 THz, which is about 15% of the initial resonance frequency. For a transverse magnetic (TM) polarization wave, there are two tunable absorption peaks in this frequency range. Moreover, for a TE wave, some geometric dimensions affecting the initial resonance frequency are investigated.
机译:提出了一种动态可调太赫兹(THz)窄带超材料吸收器。该吸收器基于静电致动微机电系统(MEMS)悬臂和裂环谐振器(SRR)阵列。引入了等效的横向电极化LC电路模型,分析了频率调谐的机理。应用有限元方法来模拟悬臂的机械特性,并使用有限积分技术来研究吸收器的频率调谐特性。结果表明,对于TE极化波,在0.6至1.6 THz的频率范围内只有一个吸收峰。吸收峰值频率可以连续从1.32 THz调整到1.28 THz,然后突然调整到1.12 THz。最大可调频率为0.20 THz,约为初始谐振频率的15%。对于横向(TM)极化波,在此频率范围内有两个可调的吸收峰。此外,对于TE波,研究了影响初始共振频率的一些几何尺寸。

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