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The on-ground calibration performances of the hyperspectral microscope MicrOmega for the Hayabusa-2 mission

机译:高光谱显微镜MicrOmega用于Hayabusa-2任务的地面校准性能

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摘要

The miniaturized near-infrared hyperspectral microscope MicrOmega, on board the MASCOT lander for Hayabusa-2 mission, is designed to perform in situ measurements at the grain scale of the C-type asteroid 1999 JU3 RYUGU. MicrOmega will observe samples with a field of view of a few millimeters with a spatial sampling of 25 pm and acquire near-infrared spectra by illuminating the sample sequentially with different wavelengths from 0.99 to 3.55 pm over two spectral channels with a typical spectral sampling of 20 cm(-1). The on-ground calibration of MicrOmega requfres a full characterization of the nominal range of operation of the instrument, both spectral (0.99-3.55 mu m) and thermal (-40 degrees C to +40 degrees C) to derive the radiometric and spectral responses combined into a 4D transfer function to convert raw signal to calibrated reflectance. This specific 4D radiometric reference gives the instrument response according to the pixel location (x,y), the wavelength and the instrument temperature. This paper reports the complex computation of the 4D radiometric reference for the 0.9-2.5 mu m channel. In this. spectral range, the composition of the grains of a wide variety of minerals with relevance to solar system bodies can be identified through diagnostic spectral features: mafic (pyroxene, olivine ...) as well as hydrated and altered minerals that are key phases for the solar system bodies' exploration.
机译:MASCOT着陆器上执行Hayabusa-2任务的微型近红外高光谱显微镜MicrOmega被设计为以C型小行星1999 JU3 RYUGU的晶粒度进行原位测量。 MicrOmega将以25 pm的空间采样观察具有几毫米视野的样品,并通过在两个光谱通道上以0.99至3.55 pm的不同波长依次照射样品来获取近红外光谱,典型光谱采样为20厘米(-1)。 MicrOmega的地面校准需要对仪器的标称工作范围进行全面表征,包括光谱范围(0.99-3.55μm)和热范围(-40摄氏度至+40摄氏度),以得出辐射和光谱响应组合成4D传递函数,将原始信号转换为校准的反射率。该特定的4D辐射参考根据像素位置(x,y),波长和仪器温度给出仪器响应。本文报告了0.9-2.5微米通道的4D辐射参考的复杂计算。在此。在光谱范围内,可以通过诊断光谱特征来确定与太阳系物体相关的多种矿物的晶粒组成:铁镁矿(辉石,橄榄石……)以及水合和蚀变矿物,这些是矿物的关键相。太阳系机构的探索。

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