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Identification and Analysis of Hazardous Materials Using Optical Spectroscopy

机译:使用光谱学鉴定和分析有害物质

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This investigation is aimed towards using optical spectroscopy for remote identification and quantitative analysis of hazardous substances for safety and security applications. We introduce a new model employing portable photosensor devices that are based on the double-barrier and vertically placed silicon structure, for such applications. The different absorption depths of individual waves allow us to carry out their spectral selection using an algorithm developed for this specific objective. We tested the proposed model on experimental Ag-p-Si-n-Si structures. The algorithm is developed for the spectral analysis without the preliminary calibration. The low dark currents (several dozens of pA) permit us to carry out the spectral analysis of the integral flux of the electromagnetic radiation of low intensity. The quantitative data from light current-voltage characteristics allow us to obtain an intensity distribution spectrum characteristic of the material by using red LED and the green laser. The results of this investigation divulge new possibilities for the creation of a new type of the portable semiconductor spectrophotometer and due to its stand-off detection capability, offer potential pathways to evaluate hazardous substances.
机译:这项调查旨在使用光谱学对安全和安保应用中的有害物质进行远程识别和定量分析。我们针对此类应用引入了一种新模型,该模型采用基于双势垒和垂直放置的硅结构的便携式光电传感器设备。各个波的不同吸收深度使我们能够使用针对该特定目标开发的算法来进行光谱选择。我们在实验性的Ag-p-Si-n-Si结构上测试了提出的模型。该算法是针对光谱分析而开发的,无需进行初步校准。低暗电流(几十pA)使我们能够对低强度电磁辐射的积分通量进行频谱分析。来自光电流-电压特性的定量数据使我们能够通过使用红色LED和绿色激光来获得材料的强度分布光谱特性。这项调查的结果为创建新型便携式半导体分光光度计提供了新的可能性,并且由于其防脱检测能力,为评估有害物质提供了潜在的途径。

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