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Impact penetration of Europa's ice crust as a mechanism for formation of chaos terrain

机译:欧罗巴冰壳的冲击渗透是形成混乱地形的一种机制

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摘要

Ice thickness estimates and impactor dynamics indicate that some impacts must breach Europa's ice crust; and outcomes of impact experiments using ice-over-water targets range from simple craters to chaos-like destroyed zones, depending oil impact energy and ice competence. First-order impacts-into thick ice or at low impact energy-produce craters. Second-order impacts punch through the ice, making holes that resemble rail-free chaos areas. Third-order impacts-into thinnest ice or at highest energy-prod Lice large irregular raft-filled zones similar to platy chaos. Other evidence for an impact origin for chaos areas comes from the size-frequency distribution of chaos+craters on Europa, which matches the impact production functions of Ganymede and Callisto; and from small craters around the large chaos area Thera Macula, which decrease in average size and density per unit area as a function of distance from Thera's center. There are no tiny chaos areas and no craters >50 km diameter. This Suggests that small impactors never penetrate, whereas large ones (UberPenetrators: >2.5 km diameter at average impact velocity) always do. Existence of both craters and chaos areas in the size range 2-40 km diameter points to spatial/temporal variation in crust thickness. But in this size range, craters are progressively outnumbered by chaos areas at larger diameters, suggesting that probability of penetration increases with increasing scale of impact. If chaos areas do represent impact sites, then Europa's surface is older than previously thought. The recalculated resurfacing age is 480 (-302/+960) Ma: greater than prior estimates, but Still very young by solar system standards.
机译:冰层厚度的估算和撞击器的动力学表明,某些撞击必定会破坏欧罗巴的结冰层。根据油撞击能量和冰的能力,使用冰上目标的冲击实验的结果范围从简单的火山口到混乱状的破坏区。一阶冲击-进入厚冰层或在低冲击下产生能量的陨石坑。二阶冲击冲破冰层,形成类似于无轨混沌区域的孔。三阶撞击-进入最薄的冰层或能量最高的虱子大片不规则的筏板状填充区,类似于板状混沌。关于混乱地区影响起源的其他证据来自欧罗巴上混乱+陨石坑的大小-频率分布,这与木卫三和卡利斯托的冲击产生函数相匹配;以及大混乱地区Thera Macula周围的小陨石坑,这些陨石坑的平均大小和密度随着距Thera中心距离的增加而降低。没有微小的混乱区域,也没有直径大于50公里的陨石坑。这表明,小型撞击器永远不会穿透,而大型撞击器(UberPenetrators:在平均撞击速度下直径大于2.5 km)总是能够穿透。直径在2-40 km范围内的陨石坑和混乱地区的存在都说明地壳厚度的时空变化。但是在这个尺寸范围内,环形山的直径逐渐被直径较大的混乱区域所取代,这表明穿透的可能性随着撞击规模的增加而增加。如果混乱区域确实代表了撞击地点,那么欧罗巴的表面比以前认为的要老。重新计算的表面重生年龄为480(-302 / + 960)Ma:大于先前的估计,但按照太阳系标准仍然非常年轻。

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