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High Precision Solar Occultation for Sounding of the Thermosphere and Mesosphere

机译:高精度太阳能掩饰热圈和介质晶体

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The Solar Occupation for Ice Experiment (SOFIE) is one instrument proposed for the recently selected Aeronomy of Ice in the Mesosphere (AIM) satellite. SOFIE will characterize profiles of temperature, particle extinction, and gas concentration using differential solar occultation measurements with eight channel pairs covering wavelengths (λ) from 0.290 to 5.32μm. Six of these broadband (~2% filter width) channels are designed to measure gaseous absorption (O_3, CO_2, H_2O, CH_4, and NO), and two are dedicated to particle absorption. Each channel uses two detectors, one that measures the target gas in a strongly absorbing spectral region and one that measures in an adjacent weakly absorbing spectral region. In addition to direct measurements, simultaneous difference signals measured for the eight channel pairs allow extraordinarily precision, resulting in a limb-path extinction of 10~(-6) or less. Measurements in two CO_2 bands will be used to simultaneously retrieve profiles of temperature and CO_2 mixing ratio. In addition, temperature profiles will be retrieved in the lower stratosphere using measurements of the solar refraction angle versus height, an approach conceptually similar to that used in Global Positioning Satellite (GPS) refraction angle temperature retrievals. SOFIE measurements will accurately characterize temperature, gas mixing ratios, and particle extinction at altitudes from the tropopause into the lower thermosphere. Implementation and design issues, plus proof-of-concept are presented.
机译:太阳能占领冰实验(SOFIE)提出了冰的中间层(AIM)卫星的最近选择高层大气物理学一台仪器。 SOFIE将使用具有从0.290覆盖波长(λ)八通道对到5.32μm差动太阳能掩测量表征温度,颗粒的消光,和气体浓度的曲线。这些宽带(〜2%滤波器宽度)的六个信道被设计为测量气体吸收(O_3,CO_2,H_2O,CH_4,和NO),以及两个专用于粒子的吸收。每个通道使用两个检测器,一个措施在强吸收光谱区域中目标气体和一种在相邻的弱吸收措施光谱区域。除了直接的测量,用于八个通道对测量同时的差信号允许非常精确,从而导致在10〜(-6)或更小的肢体路径灭绝。两个CO_2频带测量将被用于同时检索温度和CO_2混合比的曲线。此外,温度曲线将在平流层下部使用太阳能折射角相对于高度的测量检索的方法在概念上相似于全球定位卫星(GPS)折射角温度检索使用。 SOFIE测量将准确地在海拔从对流层顶表征温度,气体混合比和颗粒消光到下热层。实现和设计问题,再加证明的概念呈现。

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