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Terahertz Metamaterial Absorbers Implemented in CMOS Technology for Imaging Applications: Scaling to Large Format Focal Plane Arrays

机译:在CMOS技术中实现的太赫兹超材料吸收器用于成像应用:缩放到大型焦平面阵列

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摘要

We present the design and fabrication of terahertz (THz) metamaterial (MM) absorbers and their monolithic integration into a commercial CMOS technology along with its respective readout electronics to produce a low-cost, uncooled and high resolution THz camera. We first describe the work done on single band and broadband MM absorbers on custom substrates then progress with a description of the integration of such resonators into a six metal layer 180 nm CMOS process and its coupling with two types of microbolometer sensors: vanadium oxide (VOx) and silicon (Si) pn diode. Additionally, we demonstrate the integration of the THz sensors with readout electronics to form a monolithic THz focal plane array (FPA). Reflection images of a metallic object hidden in a manila envelope are recorded using both the VOx and Si pn diode detectors, demonstrating the suitability of the technology for stand-off detection of concealed objects. Lastly, we present the current work towards scaling this technology into a 64 x 64 FPA.
机译:我们介绍了太赫兹(THz)超材料(MM)吸收器的设计和制造,以及它们与商业CMOS技术的单片集成以及它们各自的读出电子器件,以生产低成本,不制冷和高分辨率的THz相机。我们首先描述在定制基板上的单波段和宽带MM吸收器上完成的工作,然后继续描述将这种谐振器集成到180nm CMOS六金属层工艺中,并将其与两种类型的微辐射热计传感器耦合:钒氧化物(VOx) )和硅(Si)pn二极管。此外,我们演示了太赫兹传感器与读出电子设备的集成,以形成整体式太赫兹焦平面阵列(FPA)。使用VOx和Si pn二极管检测器记录了隐藏在马尼拉信封中的金属物体的反射图像,这证明了该技术适用于对隐蔽物体的隔离检测。最后,我们介绍了将这项技术扩展到64 x 64 FPA的当前工作。

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