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A MEMS-based terahertz detector with metamaterial-based absorber and optical interferometric readout

机译:基于MEMS的太赫兹探测器,具有基于超材料的吸收器和光学干涉仪读数

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摘要

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 0.5-2THz band, the detector has a pixel size of 200 mu m x 200 mu m. 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 detectivity (D*) of 2 x 10(9) cm Hz(-1/2)/W and a refresh rate of 20 Hz. (C) 2016 Elsevier B.V. All rights reserved.
机译:通过微制造设计并实现了基于MEMS的新型太赫兹检测器结构。然后对检测器进行表征以提取其机械性能。该探测器工作于0.5-2THz频带,像素尺寸为200μmx 200μm。双材料悬架支腿由Parylene-C和钛组成,这对提供了很高的热膨胀系数失配。像素是具有200 nm厚的钛金属化层的悬浮Parylene-C结构。工作原理取决于将吸收的太赫兹辐射转换为像素上的热能。这增加了与衬底热隔离的独立微结构的温度。温度升高会由于双材料弹簧而引起机械变形。该检测器旨在提供2 x 10(9)cm Hz(-1/2)/ W的检测率(D *)和20 Hz的刷新率。 (C)2016 Elsevier B.V.保留所有权利。

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