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Geologic context of proposed chloride-bearing materials on Mars

机译:拟议的火星上含氯物质的地质背景

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[1] We use Thermal Emission Imaging System (THEMIS) data to identify and characterize the global distribution of distinct materials interpreted to contain chloride salts on the Martian surface. Previously mapped global geochemical and physical properties are used in concert with thermophysical and morphological observations to assess the materials' local and regional characteristics. The results of our survey have expanded the characterization of the materials from ~200 to ~640 distinct sites dispersed throughout low-albedo Noachian- and Hesperian-aged terrains. Our survey also shows that the materials are detected in locally thermophysically distinct terrains and display a range of morphologies. Topography indicates that the majority of the materials occur in local lows, although crosscutting relationships indicate that some sites are located in "geologic windows" implying that the materials may be older than the terrains in which they are situated. Once exposed, the materials appear to undergo erosion, which may be the reason we do not observe large laterally extensive materials at the surface. The materials are predominantly local in nature, yet their prevalence across the southern highlands suggests that they represent one or more globally ubiquitous processes. We consider a number of formation hypotheses but find that most observations are consistent with formation via ponding of surface runoff or groundwater upwelling, although efflorescence and hydrothermal activity may also be possible in some locales. The materials' inferred ages suggest that the conditions that enabled the deposition of the materials persisted for up to 1 billion years.
机译:[1]我们使用热发射成像系统(THEMIS)数据来识别和表征火星表面上含有氯化物盐的独特材料的全球分布。先前映射的全球地球化学和物理特性与热物理和形态学观测结合使用,以评估材料的局部和区域特征。我们的调查结果已将材料的特征描述从大约200到640个分散在低反照率Noachian和Hesperian年龄地区的不同地点扩展。我们的调查还显示,在局部热物理上不同的地形中检测到了这些物质,并显示出一系列形态。地形表明大多数材料都位于局部低点,尽管横切关系表明某些站点位于“地质窗口”中,这意味着这些材料可能比它们所在的地形更老。一旦暴露,材料似乎会受到侵蚀,这可能是我们在表面未观察到较大的横向扩展材料的原因。这些物质本质上主要是局部的,但是它们在南部高地的流行表明它们代表了一个或多个全球无处不在的过程。我们考虑了许多地层假说,但发现大多数观察结果与通过地表径流或地下水上升流的蓄积是一致的,尽管在某些地区也可能出现风化和热液活动。材料的推断年龄表明,使材料沉积的条件持续了长达10亿年。

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