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首页> 外文期刊>Laser Physics: An International Journal devoted to Theoretical and Experimental Laser Research and Application >Continuous-wave quantum cascade lasers absorption spectrometers for trace gas detection in the atmosphere
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Continuous-wave quantum cascade lasers absorption spectrometers for trace gas detection in the atmosphere

机译:连续波量子级联激光吸收光谱仪用于大气中痕量气体的检测

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摘要

Mid infra-red absorption spectrometry based on continuous-wave distributed feedback (DFB) quantum cascade laser (QCL) is more and more widely used for trace gas detection and pollution monitoring. The main advantages of this technique are high sensitivity, high selectivity and a potential for extreme compactness. Various examples of trace gas detection for atmospheric detection will be presented in this paper. Commercial QCLs available on the shelves were first implemented. A cryogenic QCL emitting at 6.7 μm was used to demonstrate the detection of water vapor and its isotopes. A room-temperature QCL was then used to simultaneously detect methane and nitrous oxide at 7.9 μm. Recently, we have developed a room-temperature top grating DFB QCL designed around 4.5 μm for the demonstration of N _2O detection in the ppb range. Atmospheric applications of these spectrometers will be presented. The improvements of QCL performances make it now possible to develop instruments that are more and more compact and therefore compatible with in situ applications.
机译:基于连续波分布反馈(DFB)量子级联激光器(QCL)的中红外吸收光谱法越来越广泛地用于痕量气体的检测和污染监测。该技术的主要优点是高灵敏度,高选择性和极致紧凑的潜力。本文将介绍用于大气检测的痕量气体检测的各种示例。货架上可用的商业QCL首次实现。使用在6.7μm处发射的低温QCL来证明检测到了水蒸气及其同位素。然后使用室温QCL同时检测7.9μm的甲烷和一氧化二氮。最近,我们开发了一个室温顶部光栅DFB QCL,其设计约为4.5μm,用于演示ppb范围内的N _2O检测。将介绍这些光谱仪的大气应用。 QCL性能的提高使得现在有可能开发出越来越紧凑的仪器,从而与现场应用兼容。

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