论文标题

通过撞击在瓦砾 - 毛皮小行星上重塑和射血过程

Reshaping and ejection processes on rubble-pile asteroids by impacts

论文作者

Raducan, S. D., Jutzi, M., Zhang, Y., Ormö, J., Michel, P.

论文摘要

语境。大多数小的小行星(直径<50 km)是较大的母体破裂的结果,通常被认为是碎石对象。预计小行星二进制二进制的次要结构,包括Dimorphos,65803 Didymos二进制系统的较小组成部分以及NASA的双重小行星重定向测试(DART)和ESA的HERA Mission的目标。 DART的影响发生在2022年9月26日,它将改变Didymos周围的Dimorphos的轨道时期。目标。在这项工作中,我们假设具有碎石结构的二尖体状物体,并量化了巨石堆积在其内部对撞击后形态,形状变化程度和材料射血过程的影响。方法。我们使用伯尔尼SPH冲击物理代码将数值的超速影响对高,直径为160 m的小型紫红色小行星进行了建模,并具有多种巨石分布。结果。我们发现,影响后的靶向形态对靶标巨石的质量分数最敏感,而小行星偏转效率取决于目标中巨石的质量分数,以及靠近影响点的巨石大小分布。我们的结果也可能对小行星的结构具有重要意义。

Context. Most small asteroids (<50 km in diameter) are the result of the breakup of a larger parent body and are often considered to be rubble-pile objects. Similar structures are expected for the secondaries of small asteroid binaries, including Dimorphos, the smaller component of the 65803 Didymos binary system and the target of NASA's Double Asteroid Redirection Test (DART) and ESA's Hera mission. The DART impact occurs on September 26th, 2022 and it will alter the orbital period of Dimorphos around Didymos. Aims. In this work we assume Dimorphos-like bodies with a rubble-pile structure, and quantify the effects of boulder packing in its interior on the post-impact morphology, degree of shape change and material ejection processes. Methods. We used the Bern SPH shock physics code to numerically model hypervelocity impacts into small, 160 m in diameter rubble-pile asteroids, with a variety of boulder distributions. Results. We find that the post-impact target morphology is most sensitive to the mass-fraction of boulders in the target, while the asteroid deflection efficiency depends on both the mass-fraction of boulders in the target and on the boulder size-distribution close to the impact point. Our results may also have important implications for the structure of small asteroids.

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