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Density distribution of asteroid 25143 Itokawa based on smooth terrain shape

机译:基于平滑地形形状的小行星25143丝川的密度分布

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摘要

The shape and internal structure of an asteroid is a result of its violent collisional history, and Asteroid 25143 Itokawa is an important target for investigating the internal structure and formation processes associated with rubble pile asteroids. The surface of Itokawa contains numerous boulders and is very rough, but 20% of the surface is covered with centimeter-sized gravels that are called "smooth terrain". These flat areas are associated with low areas of the gravitational potential and are considered to be formed by down-slope migration and accumulation of pebbles. We propose a method to constrain the interior density distribution of an asteroid by modeling the gravity field and fitting the smooth terrains to equi-potential surfaces. Density models that are composed of two distinct lobes best explain the data if the "head" and "body" have different densities of 2,450 kg/m(3) and 1,930 kg/m(3), respectively. Alternatively, the two lobes could have comparable densities if there was a compressed "neck" of higher density between the two. Three layer models that treat the densities of the head, neck and body separately are largely unconstrained. However, when using an independent estimate of the center-of-mass/center-of-figure offset as determined from modeling the YORP spin-up of Itokawa, our models require the density of the head to be larger than the global average.
机译:小行星的形状和内部结构是其剧烈碰撞历史的结果,小行星25143 Itokawa是研究与碎石小行星相关的内部结构和形成过程的重要目标。丝川市的表面上有许多巨石,非常粗糙,但表面的20%覆盖着几厘米大小的砾石,被称为“光滑的地形”。这些平坦的区域与重力势能的低区域相关联,并被认为是由下坡的迁移和卵石的堆积形成的。我们提出了一种通过对重力场进行建模并将光滑的地形拟合到等势面来限制小行星内部密度分布的方法。如果“头”和“体”的密度分别为2,450 kg / m(3)和1,930 kg / m(3),则由两个不同的叶组成的密度模型可以最好地解释数据。备选地,如果在两个瓣之间存在较高密度的压缩“颈”,则两个瓣可以具有可比较的密度。分别处理头部,颈部和身体的密度的三层模型在很大程度上不受约束。但是,当使用对Itokawa的YORP旋转模型进行建模所确定的质量中心/图形中心偏移的独立估计时,我们的模型要求磁头的密度大于全局平均值。

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