Terahertz laser based standoff imaging system

K. Linden, W. Neal, J. Waldman, A. Gatesman, A. Danylov
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引用次数: 24

Abstract

Definition and design of a terahertz standoff imaging system has been theoretically investigated. Utilizing terahertz quantum cascade lasers for transmitter and local oscillator, a detailed analysis of the expected performance of an active standoff imaging system based on coherent heterodyne detection has been carried out. Five atmospheric windows between 0.3 THz and 4.0 THz have been identified and quantified by carrying out laboratory measurements of atmospheric transmission as a function of relative humidity. Using the approximate center frequency of each of these windows, detailed calculations of expected system performance vs target distance, pixel resolution, and relative humidity were carried out. It is shown that with 1.5 THz laser radiation, a 10m standoff distance, 1 m times 1 m target area, and a 1cm times 1cm pixel resolution, a viable imaging system should be achievable. Performance calculations for various target distances, target pixel resolution, and laser frequency are presented
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基于太赫兹激光的对峙成像系统
对太赫兹对峙成像系统的定义和设计进行了理论研究。利用太赫兹量子级联激光器作为发射机和本振,详细分析了基于相干外差探测的有源距离成像系统的预期性能。通过对相对湿度的大气传输函数进行实验室测量,确定并量化了在0.3太赫兹至4.0太赫兹之间的五个大气窗口。利用每个窗口的近似中心频率,详细计算了预期系统性能与目标距离、像素分辨率和相对湿度的关系。结果表明,在1.5太赫兹的激光辐射、10m的距离、1m × 1m的目标面积和1cm × 1cm的像素分辨率下,可以实现可行的成像系统。给出了不同目标距离、目标像素分辨率和激光频率下的性能计算
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