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首页> 外文期刊>The European Physical Journal Special Topics >Laser photoacoustic spectroscopy helps fight terrorism: High sensitivity detection of chemical Warfare Agent and explosives
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Laser photoacoustic spectroscopy helps fight terrorism: High sensitivity detection of chemical Warfare Agent and explosives

机译:激光光声光谱法有助于打击恐怖主义:化学战剂和爆炸物的高灵敏度检测

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Tunable laser photoacoustic spectroscopy is maturing rapidly in its applications to real world problems. One of the burning problems of the current turbulent times is the threat of terrorist acts against civilian population. This threat appears in two distinct forms. The first is the potential release of chemical warfare agents (CWA), such as the nerve agents, in a crowded environment. An example of this is the release of Sarin by Aum Shinrikyo sect in a crowded Tokyo subway in 1995. An example of the second terrorist threat is the ever-present possible suicide bomber in crowded environment such as airports, markets and large buildings. Minimizing the impact of both of these threats requires early detection of the presence of the CWAs and explosives. Photoacoustic spectroscopy is an exquisitely sensitive technique for the detection of trace gaseous species, a property that Pranalytica has extensively exploited in its CO2 laser based commercial instrumentation for the sub-ppb level detection of a number of industrially important gases including ammonia, ethylene, acrolein, sulfur hexafluoride, phosphine, arsine, boron trichloride and boron trifluoride. In this presentation, I will focus, however, on our recent use of broadly tunable single frequency high power room temperature quantum cascade lasers (QCL) for the detection of the CWAs and explosives. Using external grating cavity geometry, we have developed room temperature QCLs that produce continuously tunable single frequency CW power output in excess of 300 mW at wavelengths covering 5μm to 12μm. I will present data that show a CWA detection capability at ppb levels with false alarm rates below 1:108. I will also show the capability of detecting a variety of explosives at a ppb level, again with very low false alarm rates. Among the explosives, we have demonstrated the capability of detecting homemade explosives such as triacetone triperoxide and its liquid precursor, acetone which is a common household liquid. This capability, deployed at airports and other public places, will go a long way towards increasing public safety and minimizing inconveniences faced in airline travel.
机译:可调激光光声光谱技术在解决实际问题方面正迅速成熟。当前动荡时期最迫切的问题之一是针对平民的恐怖行为的威胁。这种威胁以两种不同的形式出现。首先是在拥挤的环境中可能释放化学战剂(CWA),例如神经毒剂。这方面的一个例子是1995年奥姆真理教教派在拥挤的东京地铁中释放了萨林。第二个恐怖威胁的例子是在机场,市场和大型建筑物等拥挤环境中不断出现的自杀式炸弹袭击。要将这两种威胁的影响降至最低,需要及早发现CWA和爆炸物的存在。光声光谱法是检测痕量气态物种的一种灵敏技术,Pranalytica在其基于CO2激光的商业仪器中已广泛利用此属性,以亚ppb浓度检测多种工业重要气体,包括氨,乙烯,丙烯醛,六氟化硫,膦,a,三氯化硼和三氟化硼。但是,在本演讲中,我将重点介绍我们最近在广泛使用的可调谐单频高功率室温量子级联激光器(QCL)上检测CWA和爆炸物的情况。利用外部光栅腔的几何形状,我们开发了室温QCL,该QCL可在覆盖5μm至12μm的波长时产生连续可调的单频CW功率输出,其输出功率超过300 mW。我将展示在ppb级别显示CWA检测能力且误报率低于1:108的数据。我还将展示以ppb级别检测多种爆炸物的能力,再次具有极低的误报率。在这些炸药中,我们证明了能够检测自制炸药,例如三丙酮三氧化三oxide及其液态前体丙酮(一种常见的家用液体)。部署在机场和其他公共场所的这项功能将大大提高公共安全并最大程度地减少航空旅行中的不便。

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