Progress toward handheld THz spectroscopy and THz Air Photonics

B. Schulkin, T. Tongue, D. Brigada, B. Clough, J. Dai, X. Zhang
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引用次数: 1

Abstract

Development and application of real-time (> 5Hz) first-surface and bulk reflection measurements using the mini-Z THz Time-Domain-Spectrometer (TDS) are presented for standoff detection and identification of organic, pharmaceutical and energetic compounds. A non-iterative baseline correction for scattering is applied to real-time data to expand THz sensing across a wider range of sample preparation techniques, including pressed pellets, powders and other irregular surface geometries. Performance is assessed using selected samples of organic, pharmaceutical and energetic compounds with absorption peak positions in the 0.1–3.5 THz range, with results >99% confidence without the use of HDPE sample references using standard correlation and partial-least-squares (PLS) techniques. The current state of THz Air Photonics, where selected gases are used as both THz emitter and detector, and how it relates to real-time identification will also be presented.
手持太赫兹光谱学和太赫兹空气光子学的进展
本文介绍了微型太赫兹时域光谱仪(TDS)实时(> 5Hz)首表面和体反射测量的发展和应用,用于有机、药物和含能化合物的对峙检测和鉴定。对散射的非迭代基线校正应用于实时数据,以扩展太赫兹传感在更大范围的样品制备技术,包括压制颗粒,粉末和其他不规则表面几何形状。使用吸收峰位置在0.1-3.5 THz范围内的选定有机、药物和含能化合物样品评估性能,使用标准相关和偏最小二乘(PLS)技术,在不使用HDPE样品参考的情况下,结果置信度>99%。太赫兹空气光子学的现状,其中选定的气体被用作太赫兹发射器和探测器,以及它与实时识别的关系也将被提出。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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