22nm CMOS偏振复用高分辨率无源太赫兹成像阵列

S. V. Berkel, E. S. Malotaux, B. V. D. Bogert, M. Spirito, D. Cavallo, Andrea Neto, N. Llombart
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引用次数: 7

摘要

提出了一种集成在globalfoundries 22nm CMOS技术中的12像素太赫兹焦平面阵列(FPA),可实现高分辨率无源太赫兹成像。该阵列以差分拓扑结构将200 GHz至600 GHz黑体辐射有效耦合到肖特基势垒二极管(sbd)上。天线探测器协同设计的平均噪声等效功率(NEP)为0.9 pW/$\sqrt{\text{Hz}}$。通过使用两个正交偏振,可以实现极小的阵列周期性。这样的配置使被动成像具有接近衍射极限的分辨率,同时保持42%的高光学效率。该阵列目前正处于定型阶段,测量结果将在会议上公布。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High Resolution Passive THz Imaging Array With Polarization Reusage in 22nm CMOS
A 12-pixel THz Focal Plane Array (FPA), integrated in Global Foundries 22nm CMOS technology, enabling high resolution passive THz imaging, is presented. The array efficiently couples blackbody radiation from 200 GHz to 600 GHz to Schottky Barrier Diodes (SBDs) in a differential topology. An antenna-detector co-design results in an average Noise Equivalent Power (NEP) of 0.9 pW/$\sqrt{\text{Hz}}$. An extremely small array periodicity is achieved by using two orthogonal polarizations. Such configuration enables passive imaging with a near-diffraction limited resolution while simultaneously maintaining a high optical efficiency of 42%. The array is currently in tape-out and measurements will be presented at the conference.
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