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Design optimization of Cassegrain telescope for remote explosive trace detection.

机译:用于远程爆炸痕迹检测的卡塞格林望远镜的设计优化。

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摘要

The past three years have seen a global increase in explosive-based terror attacks. The widespread use of improvised explosives and anti-personnel landmines have caused thousands of civilian casualties across the world. Current scenario of globalized civilization threat from terror drives the need to improve the performance and capabilities of standoff explosive trace detection devices to be able to anticipate the threat from a safe distance to prevent explosions and save human lives. In recent years, laser-induced breakdown spectroscopy (LIBS) is an emerging approach for material or elemental investigations. All the principle elements on the surface are detectable in a single measurement using LIBS and hence, a standoff LIBS based method has been used to remotely detect explosive traces from several to tens of metres distance. The most important component of LIBS based standoff explosive trace detection system is the telescope which enables remote identification of chemical constituents of the explosives. However, in a compact LIBS system where Cassegrain telescope serves the purpose of laser beam delivery and light collection, need a design optimization of the telescope system. This paper reports design optimization of a Cassegrain telescope to detect explosives remotely for LIBS system. A design optimization of Schmidt corrector plate was carried out for Nd:YAG laser. Effect of different design parameters was investigated to eliminate spherical aberration in the system. Effect of different laser wavelengths on the Schmidt corrector design was also investigated for the standoff LIBS system.
机译:在过去的三年中,基于炸药的恐怖袭击在全球范围内有所增加。简易爆炸物和杀伤人员地雷的广泛使用已在世界范围内造成数千名平民伤亡。当前,全球文明受到恐怖威胁的情况驱使人们需要提高对峙爆炸痕迹检测设备的性能和能力,以便能够在安全距离内预测威胁,以防止爆炸并挽救生命。近年来,激光诱导击穿光谱法(LIBS)是用于材料或元素研究的新兴方法。使用LIBS一次测量即可检测到表面上的所有主要元素,因此,基于防区分开LIBS的方法已被用于从几米到几十米的距离远程检测爆炸痕迹。基于LIBS的对峙爆炸物痕迹检测系统的最重要组成部分是望远镜,它可以远程识别爆炸物的化学成分。然而,在紧凑的LIBS系统中(其中Cassegrain望远镜用于激光束的传输和集光),需要对望远镜系统进行设计优化。本文报告了卡塞格林望远镜用于LIBS系统的远程探测爆炸物的设计优化。对Nd:YAG激光器进行了Schmidt校正板的设计优化。研究了不同设计参数对消除系统中球差的影响。还针对支座LIBS系统研究了不同激光波长对Schmidt校正器设计的影响。

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