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首页> 外文期刊>Journal of geophysical research. Planets >Radar sounding of Lucus Planum, Mars, by MARSIS
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Radar sounding of Lucus Planum, Mars, by MARSIS

机译:Mars,Mars的Lucus Planum的雷达响起

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摘要

Lucus Planum, extending for a radius of approximately 500 km around 181°E, 5°S, is part of the Medusae Fossae Formation (MFF), a set of several discontinuous deposits of fine-grained, friable material straddling across the Martian highland-lowland boundary. The MFF has been variously hypothesized to consist of pyroclastic flows, pyroclastic airfall, paleopolar deposits, or atmospherically deposited icy dust driven by climate cycles. Mars Advanced Radar for Subsurface and Ionosphere Sounding (MARSIS), a low-frequency subsurface-sounding radar carried by European Space Agency's Mars Express, acquired 238 radar swaths across Lucus Planum, providing sufficient coverage for the study of its internal structure and dielectric properties. Subsurface reflections were found only in three areas, marked by a distinctive surface morphology, while the central part of Lucus Planum appears to be made of radar-attenuating material preventing the detection of basal echoes. The bulk dielectric properties of these areas were estimated and compared with those of volcanic rocks and ice-dust mixtures. Previous interpretations that east Lucus Planum and the deposits on the northwestern flanks of Apollinaris Patera consist of high-porosity pyroclastic material are strongly supported by the new results. The northwestern part of Lucus Planum is likely to be much less porous, although interpretations about the nature of the subsurface materials are not conclusive. The exact origin of the deposits cannot be constrained by radar data alone, but our results for east Lucus Planum are consistent with an overall pyroclastic origin, likely linked to Tharsis Hesperian and Amazonian activity. Plain LanguageSummary Lobe-shaped thick deposits, collectively known as theMedusae Fossae Formation, are found west of the Olympus Mons volcano on Mars. Visual observations of these smooth and relatively unremarkably looking materials have not definitively determined how they formed with hypotheses ranging from volcanic ash to remnants of a materials deposited at a previous location of the north pole, to accumulation of atmospheric dust. In this study we used the ground penetrating radar on board Mars Express to see through these deposits to derive information about Lucus Planum, the central lobe of the Medusae Fossae Formation. Through our analysis of the way the radar waves were reflected by subsurface layering, we concluded that the materials forming Lucus Planum are spatially variable: the east and west portions of the deposits are highly porous and probably composed of ashes and rocks from nearby volcanoes. In the north-west the deposits are much denser, but we could not unequivocally define their nature. Finally, our instrument could not detect signals from the central part of Lucus Planum, which suggests yet a different component in the deposits. This diversity points to a dynamic geological history in this unique region of Mars.
机译:Lucus Pallum,延伸约500公里的半径约为500公里,5°S,是Medusae Fossae形成(MFF)的一部分,一套多种不连续沉积的细粒度,易碎的散装跨越Martian Highland-低地边界。 MFF已被各种假设,包括由气候循环驱动的Pyroclastic流量,Pyroclastic通风,古巴基沉积物或大气沉积的冰冷粉尘组成。 MARS先进的雷达用于地下和电离层探测(MARSIS),由欧洲航天局的火星表达携带的低频地下辐射雷达,在Lucus Pallum中获得了238个雷达条子,为其内部结构和电介质性能进行了足够的覆盖范围。地下反射仅在三个方面发现,标有独特的表面形态,而乐光Pallum的中心部分似乎是由雷达衰减材料制成,防止了基础回波的检测。估计这些区域的块状介电性质并与火山岩和冰粉末混合物进行比较。以前的解释是,东乐岩Planum和矿床上的浮渣侧面的沉积物由新结果强烈支持高孔隙率吡芯弹性材料。乐杉Pallum的西北部可能会不少于多孔,尽管对地下材料的性质的解释并非决定。存款的确切起源不能仅受雷达数据来限制,但我们对东岩岩Planum的结果与整体发球起源一致,可能与Tharsis Hesperian和Amazonian活动有关。普通语言菱形厚厚的沉积物,统称为HONEDUSAE FOSSAE形成,在火星的奥林巴斯蒙斯火山以西被发现。这些平滑且相对不熟度的材料的视觉观察并不明确地确定它们如何用从火山灰到沉积在北极的先前位置的材料的残余物中的假设,以积累大气尘埃。在这项研究中,我们使用了船上的地面穿透雷达,以便通过这些沉积物来看看Lucus Planum的信息,Medusae Fossae形成的中央叶。通过对雷达波的方式分析雷达波被地下分层反射,我们得出结论,形成岩岩Planum的材料是空间变量:沉积物的东西部分是高度多孔,可能由附近火山的灰烬和岩石组成。在西北部,存款是更密集的,但我们无法明确定义他们的性质。最后,我们的仪器无法检测来自Lucus Planum的中央部分的信号,这表明沉积物中的不同部件。这种多样性在这个独特的火星地区的动态地质历史上。

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