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Meteorite evidence for partial differentiation and protracted accretion of planetesimals

机译:陨石证据是偏分化和平坦的突出的增生

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Modern meteorite classification schemes assume that no single planetary body could be source of both unmelted (chondritic) and melted (achondritic) meteorites. This dichotomy is a natural outcome of formation models assuming that planetesimal accretion occurred nearly instantaneously. However, it has recently been proposed that the accretion of many planetesimals lasted over ?1 million years (Ma). This could have resulted in partially differentiated internal structures, with individual bodies containing iron cores, achondritic silicate mantles, and chondritic crusts. This proposal can be tested by searching for a meteorite group containing evidence for these three layers. We combine synchrotron paleomagnetic analyses with thermal, impact, and collisional evolution models to show that the parent body of the enigmatic IIE iron meteorites was such a partially differentiated planetesimal. This implies that some chondrites and achondrites simultaneously coexisted on the same planetesimal, indicating that accretion was protracted and that apparently undifferentiated asteroids may contain melted interiors.
机译:现代陨石分类计划假设没有单行星体可以是未兴奋(内部软骨质)和融化(Achondritic)陨石的来源。这种二分法是形成模型的自然结果,假设直率地发生了几乎瞬间发生。然而,最近提出了许多星期体的增散持续超过100万年(MA)。这可能导致部分分化的内部结构,其中包含铁核,致腱硅酸盐罩和软骨菌结壳的个体体。可以通过搜索含有这三层证据的陨石组来测试该提案。我们将同步古磁石分析与热,冲击和碰撞演化模型相结合,表明神话IIE铁陨石的父体体是如此分化的平坦化。这意味着一些细胞酸盐和achondrites同时在同一行星上共存,表明抑制抑制性并且显然未分化的小行星可含有熔化的内部。

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