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MEMS-Based Terahertz Detectors

机译:基于MEMS的太赫兹探测器

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A MEMS based novel THz detector structure is designed and realized by micro fabrication. The detector is then characterized to extract its mechanical performance. Operating in 1-5 THz band, the detector has a pixel size of 200 μm x 200 μm. Bimaterial suspension legs consist of Parylene-C and titanium, the pair of which provides a high mismatch in coefficients of thermal expansion. The pixel is a suspended Parylene-C structure having a 200 nm-thick titanium metallization. Operation principle relies on conversion of absorbed THz radiation into heat energy on the pixel. This increases the temperature of the free-standing microstructure that is thermally isolated from the substrate. The increase in temperature induces mechanical deflection due to bimaterial springs. The detector is designed to deliver a noise equivalent temperature difference (NETD) less than 500 mK and a refresh rate of 30Hz.
机译:基于MEMS的新型THZ检测器结构由微制造设计和实现。然后,检测器的特征是提取其机械性能。在1-5 THz波段中操作,检测器的像素大小为200μmx200μm。双层悬浮腿由聚氨酯-C和钛组成,该对在热膨胀系数中提供高错位。像素是具有200nm厚的钛金属化的悬浮的聚酰烯-c结构。操作原理依赖于将吸收的THz辐射转化为像素上的热能。这增加了从基板热隔离的自由稳态微观结构的温度。温度的增加会引起由于双层弹簧引起的机械偏转。检测器旨在提供小于500 mk的噪声等效温差(NetD)和30Hz的刷新率。

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