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Laboratoire d'Etudes Spatiales et d'Instrumentation en Astrophysique, Observatoire de Paris, Meudon, France

机译:法国默顿巴黎天文台天体物理空间研究与仪器实验室

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摘要

We analyzed remote-sensing observations of the Isidis Basin, Gusev Crater, and Meridiani Planum landing sites for Beagle II, MER-A Spirit, and MER-B Opportunity spacecraft, respectively. We emphasized the thermophysical properties using daytime and nighttime radiance measurements from the Mars Global Surveyor (MGS) Thermal Emission Spectrometer and Mars Odyssey Thermal Emission Imaging System (THEMIS) and thermal inertias derived from nighttime data sets. THEMIS visible images, MGS Mars Orbiter Camera (MOC) narrow-angle images, and MGS Mars Orbiter Laser Altimeter (MOLA) data are incorporated as well. Additionally, the remote-sensing data were compared with ground-truth at the MER sites. The Isidis Basin surface layer has been shaped by aeolian processes and erosion by slope winds coming off of the southern highlands and funneling through notches between massifs. In the Gusev region, surface materials of contrasting thermophysical properties have been interpreted as rocks or bedrock, duricrust, and dust deposits; these are consistent with a complex geological history dominated by volcanic and aeolian processes. At Meridiani Planum the many layers having different thermophysical and erosional properties suggest periodic deposition of differing sedimentological facies possibly related to clast size, grain orientation and packing, or mineralogy.
机译:我们分别分析了Bidi II,MER-A Spirit和MER-B Opportunity航天器对Isidis盆地,Gusev Crater和Meridiani Planum着陆点的遥感观测。我们使用火星全球测量师(MGS)热发射光谱仪和火星奥德赛热发射成像系统(THEMIS)的白天和夜间辐射测量值以及从夜间数据集得出的热惯性来强调热物理性质。同时包含THEMIS可见图像,MGS火星轨道相机(MOC)窄角图像和MGS火星轨道激光高度计(MOLA)数据。此外,在MER站点将遥感数据与真实情况进行了比较。伊迪迪斯盆地表层的形状是由风化过程和南部高地的倾斜风侵蚀形成的,并通过地块之间的凹口漏出。在古塞夫地区,具有不同热物理性质的表层材料被解释为岩石或基岩,榴ric石和粉尘沉积。这些与以火山和风成过程为主的复杂地质历史相吻合。在Meridiani Planum,许多具有不同热物理性质和侵蚀性质的层表明,周期性沉积的沉积相可能与碎屑的大小,晶粒的取向和堆积或矿物学有关。

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