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首页> 外文期刊>Icarus: International Journal of Solar System Studies >A 2 km-size asteroid challenging the rubble-pile spin barrier - A case for cohesion
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A 2 km-size asteroid challenging the rubble-pile spin barrier - A case for cohesion

机译:挑战碎石堆自旋屏障的2公里大小的小行星-凝聚力的情况

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摘要

The rubble pile spin barrier is an upper limit on the rotation rate of asteroids larger than similar to 200-300 m. Among thousands of asteroids with diameters larger than similar to 300 m, only a handful of asteroids are known to rotate faster than 2.0 h, all are in the sub-km range (<= 0.6 km). Here we present photometric measurements suggesting that (60716) 2000 GD65, an S-complex, inner-main belt asteroid with a relatively large diameter of 2.3(-0.7)(+0.6) km, completes one rotation in 1.9529 +/- 0.0002 h. Its unique diameter and rotation period allow us to examine scenarios about asteroid internal structure and evolution: a rubble pile bound only by gravity; a rubble-pile with strong cohesion; a monolithic structure; an asteroid experiencing mass shedding; an asteroid experiencing YORP spin-up/down; and an asteroid with a unique octahedron shape results with a four-peak lightcurve and a 3.9 h period. We find that the most likely scenario includes a lunar-like cohesion that can prevent (60716) 2000 GD65 from disrupting without requiring a monolithic structure or a unique shape. Due to the uniqueness of (60716)2000 GD65, we suggest that most asteroids typically have smaller cohesion than that of lunar regolith. (C) 2015 Elsevier Inc. All rights reserved.
机译:碎石堆自旋障碍是小行星自转速度的上限,大于200-300 m。在成千上万个直径大于300 m的小行星中,只有极少数的小行星旋转速度超过2.0 h,都在亚千米范围内(<= 0.6 km)。在这里,我们提供的光度学测量结果表明,(60716)2000 GD65,这是一个具有2.3(-0.7)(+ 0.6)km相对较大直径的S复杂的内主带小行星,在1.9529 +/- 0.0002 h内完成了一次旋转。其独特的直径和旋转周期使我们能够研究有关小行星内部结构和演化的情景:仅受重力约束的瓦砾堆;紧密结合的瓦砾堆;整体结构;小行星正在脱落。经历YORP上/下旋转的小行星;而具有独特八面体形状的小行星将产生四个峰值的光曲线和3.9小时的周期。我们发现最可能的情况包括类似月球的内聚力,而无需整体结构或独特形状即可防止(60716)2000 GD65破裂。由于(60716)2000 GD65的独特性,我们建议大多数小行星的内聚力通常小于月球巨石的内聚力。 (C)2015 Elsevier Inc.保留所有权利。

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