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Rotational and translational considerations in kinetic impact deflection of potentially hazardous asteroids

机译:潜在危险小行星动力冲击偏转中的旋转和平移注意事项

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Kinetic impact may be the most reliable and easily implemented method to deflect hazardous asteroids using current technology. Depending on warning time, it can be effective on asteroids with diameters of a few hundred meters. Current impact deflection research often focuses on the orbital dynamics of asteroids. In this paper, we use the ejection outcome of a general oblique impact to calculate how an asteroid's rotational and translational state changes after impact. The results demonstrate how small impactors affect the dynamical state of small asteroids having a diameter of about 100 m. According to these consequences, we propose using several small impactors to hit an asteroid continuously and gently, making the deflection mission relatively flexible. After calculating the rotational variation, we find that the rotational state, especially of slender non-porous asteroids, can be changed significantly. This gives the possibility of using multiple small impactors to mitigate a potentially hazardous asteroid by spinning it up into pieces, or to despin one for future in-situ investigation (e.g., asteroid retrieval or mining).
机译:运动冲击可能是使用当前技术偏转危险小行星的最可靠和最容易实现的方法。根据警告时间,它可能对直径几百米的小行星有效。当前的撞击变形研究通常集中在小行星的轨道动力学上。在本文中,我们使用一般倾斜撞击的弹射结果来计算撞击后小行星的旋转和平移状态如何变化。结果表明,小型撞击器如何影响直径约为100 m的小行星的动力学状态。根据这些后果,我们建议使用几个小型撞击器连续轻柔地撞击小行星,使偏转任务相对灵活。在计算旋转变化后,我们发现旋转状态,尤其是细长的无孔小行星的旋转状态可以显着改变。这样就可以使用多个小型撞击器,将其破碎成碎片来减轻潜在的危险小行星,或者将其撞击以进行将来的现场调查(例如小行星的回收或开采)。

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