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A uncooled multi-band metamaterial detector focal plane array for real-time multi-spectral terahertz wave sensing and imaging

机译:用于实时多光谱太赫兹波感测和成像的非冷却多频带超材料探测器焦平面阵列

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We have designed, fabricated, and characterized an uncooled, multi-band sub-wavelength metamaterial detector focal plane array (FPA) for real-time multi-spectral terahertz (THz) wave sensing and imaging. A rise in temperature due to the resonant absorption by split ring resonators (SRRs) leads to an increase in the interconnected SRR array's resistance, which can be readily read out electrically. Based on a triple band metamaterial SRR design, using MEMS processing technology, we report a THz metamaterial detector FPA working at 2.5 THz, 3.4 THz, 4.3 THz, respectively. The experiment results show that our device has good sensitivities with acceptable spatial resolution and response time at all three frequency bands.
机译:我们为实时多光谱太赫兹(THz)波感测和成像设计,制造和表征了非冷却多波段亚波长超材料检测器焦平面阵列(FPA)。由于裂环谐振器(SRR)的谐振吸收引起的温度升高导致互连的SRR阵列的电阻增加,可以很容易地用电读出。基于三频带超材料SRR设计,使用MEMS处理技术,我们报告了分别在2.5 THz,3.4 THz,4.3 THz下工作的THz超材料检测器FPA。实验结果表明,我们的设备在所有三个频段上均具有良好的灵敏度以及可接受的空间分辨率和响应时间。

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