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A highly miniaturized satellite payload based on a spatial heterodyne spectrometer for atmospheric temperature measurements in the mesosphere and lower thermosphere

机译:一种基于空间外差光谱仪的高度小型化的卫星有效载荷,用于测量中层和低层热层的大气温度

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A highly miniaturized limb sounder for the observation of the Osub2/sub A-band to derive temperatures in the mesosphere and lower thermosphere is presented. The instrument consists of a monolithic spatial heterodyne spectrometer (SHS), which is able to resolve the rotational structure of the R-branch of that band. The relative intensities of the emission lines follow a Boltzmann distribution and the ratio of the lines can be used to derive the kinetic temperature. The SHS operates at a Littrow wavelength of 761.8?nm and heterodynes a wavelength regime between 761.9 and 765.3?nm with a resolving power of about 8000 considering apodization effects. The size of the SHS is 38 × 38 × 27?mm sup3/sup and its acceptance angle is ± 5 sup°/sup . It has an etendue of 0.01?cm sup2/sup sr. Complemented by front optics with an acceptance angle of ± 0.65 sup°/sup and detector optics, the entire optical system fits into a volume of about 1.5?L. This allows us to fly this instrument on a 3- or 6-unit CubeSat. The vertical field of view of the instrument is about 60?km at the Earth's limb when operated in a typical low Earth orbit. Integration times to obtain an entire altitude profile of nighttime temperatures are on the order of 1?min for a vertical resolution of 1.5?km and a random noise level of about 1.5?K. Daytime integration times are 1 order of magnitude shorter. This work presents the design parameters of the optics and a radiometric assessment of the instrument. Furthermore, it gives an overview of the required characterization and calibration steps. This includes the characterization of image distortions in the different parts of the optics, visibility, and phase determination as well as flat fielding.
机译:提出了一种高度微型的肢体发声器,用于观察O 2 A波段以推导中层和较低热层的温度。该仪器由单片空间外差光谱仪(SHS)组成,它能够解析该波段R分支的旋转结构。发射谱线的相对强度遵循玻尔兹曼分布,发射谱线的比率可用于得出动力学温度。 SHS在Littrow波长为761.8?nm的波长下工作,并在761.9到765.3?nm的波长范围内进行杂化,考虑到切趾效应,分辨力约为8000。 SHS的尺寸为38×38×27?mm 3 ,其接受角为±5 °。它的光学扩展量为0.01?cm 2 sr。整个光学系统的装机容量约为1.5?L,由前部光学器件和±0.65 °的接收角组成,并与检测器光学器件配合使用。这使我们可以在3或6单位的CubeSat上飞行该仪器。在典型的低地球轨道上操作时,该仪器在地球四肢的垂直视场约为60公里。对于1.5?km的垂直分辨率和大约1.5?K的随机噪声水平,获得夜间温度的整个高度分布的积分时间约为1?min。白天的积分时间缩短了1个数量级。这项工作介绍了光学系统的设计参数和仪器的辐射评估。此外,它概述了所需的表征和校准步骤。这包括表征光学器件不同部分的图像失真,可见性,相位确定以及平坦视场。

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