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Titan's surface from the Cassini RADAR radiometry data during SAR mode

机译:SAR模式下来自卡西尼雷达辐射数据的泰坦表面

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摘要

We present initial results on the calibration and interpretation of the high-resolution radiometry data acquired during the Synthetic Aperture Radar (SAR) mode (SAR-radiometry) of the Cassini Radar Mapper during its first five flybys of Saturn's moon Titan. We construct maps of the brightness temperature at the 2-cm wavelength coincident with SAR swath imaging. A preliminary radiometry calibration shows that brightness temperature in these maps varies from 64 to 89 K. Surface features and physical properties derived from the SAR-radiometry maps and SAR imaging are strongly correlated; in general, we find that surface features with high radar reflectivity are associated with radiometrically cold regions, while surface features with low radar reflectivity correlate with radiometrically warm regions. We examined scatterplots of the normalized radar cross-section σ° versus brightness temperature, outlining signatures that characterize various terrains and surface features. The results indicate that volume scattering is important in many areas of Titan's surface, particularly Xanadu, while other areas exhibit complex brightness temperature variations consistent with variable slopes or surface material and compositional properties.
机译:我们介绍了在卡西尼雷达测绘仪的合成孔径雷达(SAR)模式(SAR辐射测量)在土星的卫星土卫六前五次飞越过程中获得的高分辨率辐射测量数据的校准和解释的初步结果。我们构建了2 cm波长处与SAR条带成像一致的亮度温度图。初步的辐射定标表明,这些图中的亮度温度从64到89 K不等。从SAR辐射图和SAR成像得出的表面特征和物理特性密切相关。通常,我们发现雷达反射率高的表面特征与辐射冷的区域相关,而雷达反射率低的表面特征与辐射热的区域相关。我们检查了归一化雷达横截面σ°与亮度温度的散点图,概述了表征各种地形和表面特征的特征。结果表明,体积散射在泰坦表面的许多区域(尤其是Xanadu)中都很重要,而其他区域则表现出复杂的亮度温度变化,与变化的斜率或表面材料和成分特性一致。

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