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Metamaterial-Based Terahertz Imaging

机译:基于超材料的太赫兹成像

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摘要

This paper presents the design of an innovative, low-cost, uncooled, metamaterial-based terahertz (THz) focal plane array (FPA). A single pixel is composed of a resonant metamaterial absorber and micro-bolometer sensor integrated in a standard 180 nm CMOS process. The metamaterial is made directly in the metallic and insulating layers available in the six metal layer CMOS foundry process. THz absorption is determined by the geometry of the metamaterial absorber which can be customized for different frequencies. The initial prototype consists of a 55 pixel array with a pixel size of 30 m30 m and is readily scalable to more commercially viable array sizes. The FPA imaging capability is demonstrated in a transmission and reflection mode experiment by scanning a metallic object hidden in a manila envelope.
机译:本文介绍了一种创新的,低成本的,未冷却的,基于超材料的太赫兹(THz)焦平面阵列(FPA)的设计。单个像素由以标准180 nm CMOS工艺集成的谐振超材料吸收体和微辐射热传感器组成。超材料直接在六层金属CMOS铸造工艺中可用的金属和绝缘层中制成。太赫兹吸收由超材料吸收器的几何形状确定,可以针对不同的频率进行定制。最初的原型包含一个像素大小为30 m30 m的55像素阵列,可以轻松扩展到更具商业可行性的阵列尺寸。通过扫描隐藏在马尼拉信封中的金属物体,在透射和反射模式实验中证明了FPA成像功能。

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