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The Ancient Rocky Surfaces of Mars: Analysis of Spacecraft Data and the Development of Laboratory Instrumentation.

机译:火星的古代岩石表面:航天器数据分析和实验室仪器的发展。

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摘要

Early spacecraft missions to Mars, including the Marnier and Viking orbiters and landers revealed a morphologically and compositionally diverse landscape that reshaped widely held views of Mars. More recent spacecraft including Mars Global Surveyor, Mars Odyssey, Mars Express, Mars Reconnaissance Orbiter, and the Mars Exploration Rovers have further refined, enhanced, and diversified our understanding of Mars. In this dissertation, I take a multiple-path approach to planetary and Mars science including data analysis and instrument development.;First, I present several tools necessary to effectively use new, complex datasets by highlighting unique and innovative data processing techniques that allow for the regional to global scale comparison of multiple datasets.;Second, I present three studies that characterize several processes on early Mars, where I identify a regional, compositionally distinct, in situ, stratigraphically significant layer in Ganges and Eos Chasmata that formed early in martian history. This layer represents a unique period in martian history where primitive mantle materials were emplaced over large sections of the martian surface. While I originally characterized this layer as an effusive lava flow, based on the newly identified regional or global extent of this layer, I find the only likely scenario for its emplacement is the ejecta deposit of the Borealis Basin forming impact event. I also re-examine high thermal inertia, flat-floored craters identified in Viking data and conclude they are typically more mafic than the surrounding plains and were likely infilled by primitive volcanic materials during, or shortly after the Late Heavy Bombardment. Furthermore, the only plausible source for these magmas is directly related to the impact process, where mantle decompression melting occurs as result of the removal of overlying material by the impactor.;Finally, I developed a new laboratory microscopic emission and reflectance spectrometer designed to help improve the interpretation of current remote sensing or in situ data from planetary bodies. I present the design, implementation, calibration, system performance, and preliminary results of this instrument. This instrument is a strong candidate for the next generation in situ rover instruments designed to definitively assess sample mineralogy and petrology while preserving geologic context.
机译:包括Marnier和Viking的轨道飞行器和着陆器在内的早期对火星的飞行任务,揭示了形态和组成各异的景观,重塑了人们广泛持有的火星景观。包括“火星全球测量师”,“火星奥德赛”,“火星快车”,“火星侦察轨道飞行器”和“火星探索漫游者”在内的最新航天器,进一步完善,增强了我们对火星的理解,并使之多样化。在本文中,我对行星和火星科学采取了多路径方法,包括数据分析和仪器开发。首先,我通过突出独特且创新的数据处理技术,介绍了有效利用新的复杂数据集所必需的几种工具。其次,我提出了三项研究,这些研究描述了火星早期的几个过程的特征,其中我确定了恒河和Eos Chasmata中火星历史早期形成的区域性,成分不同,原位地层的重要地层。 。这一层代表了火星历史上的一个独特时期,原始的地幔材料被放置在火星表面的大部分区域上。虽然我最初将这一层的特征描述为喷出的熔岩流,但根据该层的新确定的区域或全球范围,我发现唯一可能发生这种情况的情况是北冰洋盆地的喷出沉积物形成了撞击事件。我还重新检查了维京人数据中发现的高热惯性,平底坑,并得出结论说,它们通常比周围的平原更具黑镁铁质,并可能在后期重轰炸期间或之后不久被原始火山物质填充。此外,这些岩浆的唯一可能来源与撞击过程直接相关,在撞击过程中,由于撞击器清除了上覆的物质而发生了地幔减压融化。最后,我开发了一种新型的实验室显微镜发射和反射光谱仪,旨在帮助改善对当前遥感或来自行星体的原位数据的解释。我介绍了该仪器的设计,实现,校准,系统性能和初步结果。该仪器是下一代现场流动站仪器的理想选择,该仪器旨在在保留地质背景的同时,最终评估样品的矿物学和岩石学。

著录项

  • 作者

    Edwards, Christopher.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Geology.;Physics Astrophysics.;Remote Sensing.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 332 p.
  • 总页数 332
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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