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Inter-pulse spectroscopy based on room-temperature pulsed quantum-cascade laser for N2O detection

机译:基于室温脉冲量子级联激光器的N2O检测的脉冲间光谱

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Mid-infrared lasers are very suitable for high-sensitive trace-gases detection for their wavelengths cover the fundamental absorption lines of most gases. Quantum-cascade (QC) lasers have been demonstrated to be ideal light sources with its special power, tuning and capability of operating in room-temperature. All these merits make it appropriate for the high resolution spectrum analysis. The absorption spectrum monitoring technology based on the QC laser pulsed operating in the room temperature, combining with the strong absorption of the gas molecule in the basic frequency, has become an effective way to monitor the trace gas with the characteristic of high sensitivity, good selectivity and fast response. In this paper, the inter-pulse spectroscopy based on a room-temperature distributed-feedback pulsed QC laser was introduced. Our approach to trace gas monitoring with QC lasers relies on short current pulses which are designed to produce even shorter light pulses. Each pulse corresponds to a single point in a spectrum. The N2O absorption spectrum centered at 2178.2cm-1 was also obtained.
机译:中红外激光非常适合高灵敏度的痕量气体检测,因为它们的波长覆盖了大多数气体的基本吸收线。量子级联(QC)激光器以其特殊的功率,调谐能力和在室温下工作的能力而被证明是理想的光源。所有这些优点使其适合于高分辨率光谱分析。基于在室温下脉冲操作的QC激光的吸收光谱监测技术,结合基频中气体分子的强吸收性,已成为监测痕量气体的一种有效方法,具有灵敏度高,选择性好等特点。和快速的响应。本文介绍了一种基于室温分布反馈脉冲QC激光器的脉冲间光谱。我们使用QC激光器进行痕量气体监测的方法依赖于短电流脉冲,该脉冲旨在产生更短的光脉冲。每个脉冲对应于频谱中的单个点。还获得了以2178.2cm-1为中心的N2O吸收光谱。

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