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Gas recognition with terahertz time-domain spectroscopy and spectral catalog: a preliminary study

机译:与太赫兹时域光谱和光谱目录的气体识别:初步研究

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The ability to detect and recognise a variety of gases under certain environmental conditions has significant potential impact in many areas: from hazardous gas detection in the industrial domain to physical sciences in academia. Gas sensing has long received attention with microwave and infrared spectroscopy. With many molecular resonances occurring in the THz (T-ray) range leading to simple, unique spectral features, THz time-domain spectroscopy (TDS) shows promise as a tool for gas detection and recognition. This paper presents a preliminary study on real-time gas recognition with THz-TDS. In particular, a simple method is used that involves extracting line positions from gas species without a reference pulse and classifying them by means of the minimum Euclidean distance using the Submillimeter, Millimeter, and Microwave Spectral Line Catalog.
机译:在某些环境条件下检测和识别各种气体的能力在许多领域具有显着的潜在影响:从工业领域的危险气体检测到学术界的物理科学。气体传感长期接受了微波和红外光谱的关注。对于在THz(T射线)范围内发生的许多分子共振,导致简单,独特的光谱特征,THz时域光谱(TDS)显示了承诺作为气体检测和识别的工具。本文提出了对THz-TDS实时气体识别的初步研究。特别地,使用简单的方法,其涉及在没有参考脉冲的情况下从气体物种中提取线位置,并通过使用亚丘疹,毫米和微波谱线目目录的最小欧几里德距离对它们进行分类。

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