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首页> 外文期刊>Icarus: International Journal of Solar System Studies >The shape distribution of boulders on Asteroid 25143 Itokawa: Comparison with fragments from impact experiments
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The shape distribution of boulders on Asteroid 25143 Itokawa: Comparison with fragments from impact experiments

机译:小行星25143丝川上巨石的形状分布:与撞击实验的碎片比较

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摘要

Laboratory impact experiments have found that the shape of fragments over a broad size range is distributed around the mean value of the axial ratio 2:√2:1, which is independent of a wide range of experimental conditions. We report the shape statistics of boulders with size of 0.1-30 m on the surface of Asteroid 25143 Itokawa based on high-resolution images obtained by the Hayabusa spacecraft in order to investigate whether their shape distribution is similar to the distribution obtained for fragments (smaller than 0.1 m) in laboratory impact experiments. We also investigated the shapes of boulders with size of 0.1-150 m on Asteroid 433 Eros using a few arbitrary selected images by the NEAR spacecraft, in order to compare those with the shapes on Asteroid Itokawa. In addition, the shapes of small- and fast-rotating asteroids (diameter <200 m and rotation period <1 h), which are natural fragments from past impact events among asteroids, were inferred from archived light curve data taken by ground-based telescopes. The results show that the shape distributions of laboratory fragments are similar to those of the boulders on Eros and of the small- and fast-rotating asteroids, but are different from those on Itokawa. However, we propose that the apparent difference between the boulders of Itokawa and the laboratory fragments is due to the migration of boulders. Therefore, we suggest that the shape distributions of the boulders ranging from 0.1 to 150 m in size and the small- and fast-rotating asteroids are similar to those obtained for the fragments generated in laboratory impact experiments.
机译:实验室冲击实验发现,碎片的形状在较宽的尺寸范围内分布在轴向比率2:√2:1的平均值附近,这与广泛的实验条件无关。我们根据the鸟号航天器获得的高分辨率图像报告了小行星25143丝川表面上大小为0.1-30 m的巨石的形状统计数据,以研究其形状分布是否类似于碎片的分布(较小大于0.1 m)在实验室冲击实验中。我们还使用NEAR航天器的一些任意选择的图像,研究了小行星433 Eros上大小为0.1-150 m的巨石形状,以便将其与小行星丝川上的形状进行比较。另外,小和快速旋转的小行星的形状(直径<200 m,旋转周期<1 h)是小行星过去撞击事件的天然碎片,是根据地面望远镜拍摄的光曲线数据推断的。结果表明,实验室碎片的形状分布与爱神星上的巨石形状以及小而快旋转的小行星的形状分布相似,但与丝川上的不同。但是,我们提出,丝川巨石和实验室碎片之间的明显差异是由于巨石的迁移所致。因此,我们建议巨石的形状分布范围从0.1到150 m,小而快速旋转的小行星与在实验室撞击实验中产生的碎片所获得的形状相似。

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