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MASERATI: a rocketborne tunable diode laser absorption spectrometer

机译:MASERATI:火箭载可调谐二极管激光吸收光谱仪

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The MASERATI (middle-atmosphere spectrometric experiment on rockets for analysis of trace-gas influences) instrument is, to our knowledge, the first rocket-borne tunable diode laser absorption spectrometer that was developed for in situ measurements of trace gases in the middle atmosphere. Infrared absorption spectroscopy with lead salt diode lasers is applied to measure water vapor and carbon dioxide in the altitude range from 50 to 90 km and 120 km, respectively. The laser beams are directed into an open multiple-pass absorption setup (total path length 31.7 m) that is mounted on top of a sounding rocket and that is directly exposed to ambient air. The two species are sampled alternately with a sampling . time of 7.37 ms, each corresponding to an altitude resolution of approximately 15 m. Frequency-modulation and lock-in techniques are used to achieve high sensitivity. Tests in the laboratory have shown that the instrument is capable of detecting a very small relative absorbance of 10~(-4)-10~(-5) when integrating spectra for 1 s. The instrument is designed and qualified to resist the mechanical stress occurring during the start of a sounding rocket and to be operational during the cruising phase of the flight when accelerations are very small. Two almost identical versions of the MASERATI instrument were built and were launched on sounding rockets from the Andφya Rocket Range (69 °N) in northern Norway on 12 October 1997 and on 31 January 1998. The good technical performance of the instruments during these flights has demonstrated that MASERATI is indeed a new suitable tool to perform rocket-borne in situ measurements in the upper atmosphere.
机译:据我们所知,MASERATI(用于分析痕量气体影响的火箭中空光谱实验)仪器是我们所知的第一台火箭式可调谐二极管激光吸收光谱仪,该仪器用于现场测量中层大气中的痕量气体。采用铅盐二极管激光器的红外吸收光谱法分别测量了50至90 km和120 km高度范围内的水蒸气和二氧化碳。激光束被引导到开放式多程吸收装置(总路径长度31.7 m),该装置安装在探空火箭的顶部,并直接暴露于环境空气中。这两个物种与一个采样交替采样。时间为7.37毫秒,每个时间对应于大约15 m的高度分辨率。调频和锁定技术用于实现高灵敏度。实验室测试表明,该仪器在对光谱进行1 s积分时能够检测到10〜(-4)-10〜(-5)的很小的相对吸光度。该仪器的设计和资格能够抵抗发声火箭启动期间出现的机械应力,并且在加速度很小的情况下,在飞行巡航阶段可以操作。 1997年10月12日和1998年1月31日,制造了两个几乎相同版本的MASERATI仪器,并从挪威北部的安菲亚火箭靶场(69°N)的探空火箭上发射了该仪器。证明了MASERATI确实是一种在高层大气中执行火箭载原位测量的新工具。

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