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Imaging of 3.4 THz quantum cascade laser beam using uncooled microbolometer camera

机译:使用未冷却的微辐射热像仪对3.4 THz量子级联激光束进行成像

摘要

The employment of terahertz (THz) technology for applications including Improvised Explosive Device (IED) and concealed weapons detection is a rapidly growing field of research. Additionally, THz waves do not pose a health hazard as do x-rays and as such can be used for the imaging and detection of certain cancers. To date, however, most detectors are highly sophisticated, bulky systems which require extensive cooling in order to provide a signal-tonoise (SNR) ratio high enough for detection. A detection system that is simple in operation and uncooled is highly desirable and is the focus of this research. In this thesis, operation of a 3.4 THz quantum cascade laser (QCL) was successfully achieved using a closed cycle cryostat and nanosecond pulse generator with impedance matching circuitry. The laser beam was imaged in real time using an uncooled microbolometer infrared camera typically used in far-infrared wavelength band (8-12 mm). The preliminary findings offer potential for development of a compact THz imaging system for applications involving concealed object detection.
机译:太赫兹(THz)技术在简易爆炸装置(IED)和隐蔽武器检测等应用中的应用正在迅速发展。另外,太赫兹波不像X射线那样对健康构成危害,因此可以用于某些癌症的成像和检测。但是,迄今为止,大多数检测器是高度复杂的笨重系统,需要进行大量冷却才能提供足够高的信号噪声比(SNR)以进行检测。一种操作简单且未冷却的检测系统是非常需要的,并且是本研究的重点。本文采用闭环低温恒温器和具有阻抗匹配电路的纳秒脉冲发生器,成功实现了3.4 THz量子级联激光器(QCL)的工作。使用通常在远红外波段(8-12 mm)中使用的未冷却微测辐射热仪红外热像仪对激光束进行实时成像。初步发现为开发紧凑的THz成像系统提供了潜力,该系统可用于涉及隐蔽物体检测的应用。

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    Lowe Michele N;

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  • 年度 2006
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