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The effect of target properties on crater morphology: Comparison of central peak craters on the Moon and Ganymede

机译:目标特性对陨石坑形态的影响:月球和木卫三中心陨石坑的比较

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We examine the morphology of central peak craters on the Moon and Ganymede in order to investigate differences in the near-surface properties of these bodies. We have extracted topographic profiles across craters on Ganymede using Galileo images, and use these data to compile scaling trends. Comparisons between lunar and Ganymede craters show that crater depth, wall slope and amount of central uplift are all affected by material properties. We observe no major differences between similar-sized craters in the dark and bright terrain of Ganymede, Suggesting that dark terrain does not contain enough silicate material to significantly increase the strength of the surface ice. Below crater diameters of similar to 12 km, central peak craters on Ganymede and simple craters on the Moon have similar rim heights, indicating comparable amounts of rim collapse. This suggests that the formation of central peaks at smaller crater diameters oil Ganymede than the Moon is dominated by enhanced central floor uplift rather than rim collapse. Crater wall slope trends are similar on the Moon and Ganymede, indicating that there is a similar trend in material weakening with increasing crater size, and possibly that the mechanism of weakening during impact is analogous in icy and rocky targets, We have run a Suite of numerical models to simulate the formation of central peak craters on Ganymede and the Moon. Our modeling shows that the same styles of strength model can be applied to ice and rock, and that the strength model parameters do not differ significantly between materials.
机译:我们研究月球和木卫三中央峰口的形态,以调查这些天体近地表性质的差异。我们已使用伽利略图像提取了Ganymede上各个陨石坑的地形轮廓,并使用这些数据来编辑缩放趋势。月球陨石坑和木卫三陨石坑的比较表明,陨石坑的深度,壁坡度和中央隆升量都受物质特性的影响。我们在木卫三的黑暗和明亮地形中观察到相似大小的陨石坑之间没有重大差异,这表明黑暗地形没有足够的硅酸盐物质来显着增加地表冰的强度。火山口直径低于约12公里时,木卫三上的中央峰值火山口和月球上的简单火山口的轮缘高度相似,表明轮缘塌陷的数量相当。这表明在比月球更小的木卫三直径的火山口直径处形成的中心峰主要是由中央底部隆起的增强而不是轮缘的塌陷所主导。月球和木卫三的陨石坑壁坡度趋势相似,这表明随着陨石坑大小的增加,物质减弱的趋势也相似,并且可能在冰冷和多岩石的目标中,撞击过程中的减弱机理相似。数值模型来模拟木卫三和月球上中心峰坑的形成。我们的建模表明,相同样式的强度模型可以应用于冰和岩石,并且强度模型参数在材料之间没有显着差异。

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