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Differentiation of the asteroid Ceres as revealed by its shape

机译:小行星谷神星的形状显示其分化

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The accretion of bodies in the asteroid belt was halted nearly 4.6 billion years ago by the gravitational influence of the newly formed giant planet Jupiter. The asteroid belt therefore preserves a record of both this earliest epoch of Solar System formation and variation of conditions within the solar nebula. Spectral features in reflected sunlight indicate that some asteroids have experienced sufficient thermal evolution to differentiate into layered structures. The second most massive asteroid—4 Vesta—has differentiated to a crust, mantle and core. 1 Ceres, the largest and most massive asteroid, has in contrast been presumed to be homogeneous, in part because of its low density, low albedo and relatively featureless visible reflectance spectrum, similar to carbonaceous meteorites that have suffered minimal thermal processing. Here we show that Ceres has a shape and smoothness indicative of a gravitationally relaxed object. Its shape is significantly less flattened than that expected for a homogeneous object, but is consistent with a central mass concentration indicative of differentiation. Possible interior configurations include water-ice-rich mantles over a rocky core.
机译:在新近形成的巨型行星木星的引力影响下,将近46亿年前,小行星带中的物体积聚停止了。因此,小行星带保留了最早的太阳系形成时期和太阳星云内条件变化的记录。反射的太阳光的光谱特征表明,一些小行星经历了足够的热演化,可以分化为分层结构。第二大质量小行星-4 Vesta-分化为地壳,地幔和核心。 1 Ceres是最大,质量最大的小行星,据推测是均匀的,部分原因是其低密度,低反照率和相对无特征的可见反射光谱,类似于热加工最少的碳质陨石。在这里,我们显示了谷神星的形状和光滑度表示重力松弛的物体。它的形状比同质物体所期望的形状明显不平坦,但与指示分化的中央质量浓度一致。可能的内部构造包括岩心上方富含冰水的地幔。

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