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基于天线和腔耦合测辐射热计的太赫兹实时成像非制冷阵列。

Terahertz real-time imaging uncooled array based on antenna- and cavity-coupled bolometers.

机构信息

CEA-Leti MINATEC, 17 rue des Martyrs, Grenoble Cedex 9 38054, France.

出版信息

Philos Trans A Math Phys Eng Sci. 2014 Feb 24;372(2012):20130111. doi: 10.1098/rsta.2013.0111. Print 2014 Mar 28.

DOI:10.1098/rsta.2013.0111
PMID:24567477
Abstract

The development of terahertz (THz) applications is slowed down by the availability of affordable, easy-to-use and highly sensitive detectors. CEA-Leti took up this challenge by tailoring the mature infrared (IR) bolometer technology for optimized THz sensing. The key feature of these detectors relies on the separation between electromagnetic absorption and the thermometer. For each pixel, specific structures of antennas and a resonant quarter-wavelength cavity couple efficiently the THz radiation on a broadband range, while a central silicon microbridge bolometer resistance is read out by a complementary metal oxide semiconductor circuit. 320×240 pixel arrays have been designed and manufactured: a better than 30 pW power direct detection threshold per pixel has been demonstrated in the 2-4 THz range. Such performance is expected on the whole THz range by proper tailoring of the antennas while keeping the technological stack largely unchanged. This paper gives an overview of the developed bolometer-based technology. First, it describes the technology and reports the latest performance characterizations. Then imaging demonstrations are presented, such as real-time reflectance imaging of a large surface of hidden objects and THz time-domain spectroscopy beam two-dimensional profiling. Finally, perspectives of camera integration for scientific and industrial applications are discussed.

摘要

太赫兹(THz)应用的发展受到经济实惠、易于使用和高灵敏度探测器的可用性的限制。CEA-Leti 通过为优化的太赫兹传感定制成熟的红外(IR)测辐射热计技术来应对这一挑战。这些探测器的关键特点在于电磁吸收和温度计之间的分离。对于每个像素,天线的特定结构和共振四分之一波长腔有效地在宽带范围内耦合太赫兹辐射,而中央硅微桥测辐射热计电阻由互补金属氧化物半导体电路读出。已经设计和制造了 320×240 像素阵列:在 2-4 THz 范围内,每个像素的直接检测阈值优于 30 pW。通过适当调整天线,同时基本保持技术堆栈不变,预计在整个太赫兹范围内都能实现这种性能。本文概述了基于测辐射热计的开发技术。首先,它描述了该技术并报告了最新的性能特征。然后展示了成像演示,例如隐藏物体大表面的实时反射成像和太赫兹时域光谱光束二维层析成像。最后,讨论了用于科学和工业应用的相机集成的前景。

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