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Open multipass absorption cell for in situ monitoring of stratospheric trace gas with telecommunication laser diodes

机译:开放式多通道吸收池,用于通过电信激光二极管对平流层痕量气体进行原位监测

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摘要

A two-mirror multipass absorption cell that is operated open to the atmosphere from a stratospheric balloon to monitor in situ methane (in the 1.65-μm region) and water vapor (in the 1.39-μm region) with telecommunication laser diodes is described. A small Cassegrain-type telescope is used to couple the cell simultaneously with two near-infrared InGaAsP laser diodes by means of optical fibers. The 1-m cell provides an absorption path length of 56 m. The optical cell was carefully designed to be free of incidental fringing in the 10~(-5) absorption range. It is used in combination with a dual-beam detector to obtain a detection limit of 10~(-5) absorption units, a large dynamic range of the measurements of many orders of magnitude, and a precision error in the concentration determination of a few percents. The optical arrangement of the cell and its ability to be used to detect in situ trace gas in the stratosphere, in severe environmental conditions, are exposed.
机译:描述了一种双镜多通吸收池,该池从平流层气球向大气开放,利用电信激光二极管监测甲烷(1.65-μm区域)和水蒸气(1.39μm区域)的原位甲烷。一个小型的卡塞格林式望远镜通过光纤将细胞与两个近红外InGaAsP激光二极管同时耦合。 1 m池提供的吸收路径长度为56 m。光学电池经过精心设计,在10〜(-5)吸收范围内无附带条纹。它与双光束检测器结合使用,可获得10〜(-5)吸收单位的检测极限,多个数量级的大动态测量范围以及少数几个浓度测定中的精度误差个百分比。在恶劣的环境条件下,暴露了电池的光学结构及其在平流层中检测原位痕量气体的能力。

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