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Retrieving Mars aerosol optical depth from CRISM/MRO imagery

机译:从Crism / MRO Imagery检索火星气雾光学深度

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Analysis of near infrared hyperspectral images for the detection, mapping and characterization of surface materials on Mars requires the modeling and the correction of the atmospheric (gas and aerosols) spectral effects on the spectra. The CRISM imaging spectrometer offers unprecedented possibilites in that matter since it performs a sequence of Emission Phase Function measurements accompanying every high resolution nadir image. In this paper we propose an original method to retrieve the optical depth of the Martian aerosols over the targeted scene. The method is based on the dependence of the intensity of the CO2 gas absorption bands that mark the spectra with the amount of aerosols and with the geometry of the acquisition. Retrieving the atmospheric opacity is the first step toward getting surface reflectance.
机译:MAR上表面材料的近红外高光谱图像的分析需要对光谱的型号(气体和气溶胶)光谱效应的建模和校正。 CRISC成像光谱仪在该事件中提供前所未有的可能性,因为它执行了一系列伴随着每个高分辨率Nadir图像的发射阶段函数测量序列。在本文中,我们提出了一种原始方法,可以在目标场景中检索火星气溶胶的光学深度。该方法基于将光谱标记为气溶胶的量和采集的几何形状的CO 2气体吸收带的强度的依赖性。检索大气不透明度是获得表面反射的第一步。

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