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Optical and mechanical designs of the multi-band SWIR receiver for the Lunar Flashlight CubeSat mission

机译:用于月球手电筒CubeSat Mission的多频带抢劫接收器的光学和机械设计

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Mapping and quantifying lunar water ice addresses one of NASA's Strategic Knowledge Gaps to understand the lunar resource potential for future human exploration of the Moon. Lunar Flashlight is an innovative NASA CubeSat mission dedicated to mapping water ice in the permanently-shadowed and occasionally-sunlit regions in the vicinity of the lunar South Pole. Lunar Flashlight will acquire these measurements from lunar orbit using a multi-band laser reflectometer composed of an optical receiver aligned with four lasers emitting different wavelengths in the shortwave infrared spectral region between 1 urn and 2 μm. The receiver measures the laser radiance reflected from the lunar surface in each spectral band and continuum/absorption reflectance band ratios are then analyzed to quantify water ice concentration in the illuminated spot. The receiver utilizes a 70×70-mm, aluminum, off-axis paraboloidal mirror with a focal length of 70 mm, which collects the incoming light onto a single, 2 mm diameter InGaAs detector with a cutoff wavelength of 2.4 μm. We present the optical and mechanical designs of the receiver, including its optimization for rejection of solar stray-light from outside its intended field of view. This highly mass- and volume-constrained instrument payload will demonstrate several firsts, including being one of the first instruments onboard a CubeSat performing science measurements beyond low Earth orbit and the first planetary mission to use multi-band active reflectometry from orbit.
机译:测绘和量化月球水冰地址NASA的战略知识差距之一,了解未来人类探索月球的月球资源潜力。月球手电是一种创新的美国宇航局古典特派团,致力于在农历南极附近的永久阴影和偶尔的阳光照射地区映射水冰。月球手电筒将使用由与在短波红外光谱区域中的四个激光器中的光接收器组成的多频带激光反射计来从月球轨道获取这些测量,该光学接收器与在1缸和2μm之间的短波红外光谱区域中发出不同波长的不同波长。接收器测量从每个光谱带中的月球表面反射的激光辐射,然后分析连续轴/吸收反射带比以定量照明点中的水冰浓度。接收器利用70×70mm,铝的轴外抛物面镜,焦距为70mm,它将进入的光线收集到单个2 mm直径的IngaAs检测器上,截止波长为2.4μm。我们介绍了接收器的光学和机械设计,包括从其预期视野的外部拒绝太阳杂散光的优化。这种高度大规模和体积约束的仪器有效载荷将展示几个第一款,包括作为在低地球轨道上执行科学测量的第一个仪器之一,以及使用从轨道使用多频带主动反射仪的第一行星任务。

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