433 号厄洛斯的地震重现表明大型近地小行星的内部具有高度耗散性

IF 12.9 1区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Nature Astronomy Pub Date : 2024-11-15 DOI:10.1038/s41550-024-02411-8
R.-L Ballouz, C. M. Ernst, O. S. Barnouin, R. T. Daly, D. N. DellaGiustina, B. A. Hyatt, A. C. Martin
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引用次数: 0

摘要

小行星的内部决定了其空间环境如何改变其形状和表面,这为太阳系的碰撞和动态演变提供了记录。对小行星内部的了解还有助于制定针对危险小行星的减缓战略。尽管如此重要,人们对小行星内部的了解仍然很少。直径在 0.2 千米到 10 千米之间的小行星被认为具有碎石堆内部,在 10 千米尺度上过渡到断裂内部,然后在≳100 千米尺度上过渡到连贯和分化内部。433 号小行星 "厄洛斯 "是会合任务探索的唯一一颗 10 千米尺度的小行星,是中间尺度小行星的典范。最近对较小碎石堆的探索让我们了解到与厄洛斯大小的天体共有的物理特性。在这里,我们通过测量和模拟厄洛斯上直径为 7.5 千米的舒梅克环形山的撞击所造成的环形山退化和侵蚀,量化了厄洛斯内部的地震和物理特性。我们的研究结果表明,厄洛斯的深层内部的地震波散射长度为0.5 ± 0.1千米,有效品质因数EQ < \({63}_{-13}^{+18}\),频率为>0.06赫兹。与将厄洛斯视为碎裂碎片的既定观点相反,我们的研究结果表明,厄洛斯的内部特性与碎石堆小行星的内部特性是一致的。
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Seismic resurfacing of 433 Eros indicative of a highly dissipative interior for large near-Earth asteroids

An asteroid’s interior dictates how its space environment changes its shape and surface, which provides a record of the collisional and dynamical evolution of the Solar System. Knowledge of asteroid interiors also enables the formulation of mitigation strategies against hazardous asteroids. Despite this importance, asteroid interiors remain poorly understood. Asteroids between 0.2 km and 10 km in diameter are thought to have rubble-pile interiors, transitioning to fractured interiors at 10 km scales, then to coherent and differentiated interiors at 100 km scales. The asteroid 433 Eros, the only 10-km-scale asteroid explored by a rendezvous mission, is an exemplar of asteroids at intermediate scales. Recent exploration of smaller rubble piles has provided insight into physical properties that are shared with Eros-sized objects. Here we quantify the seismic and physical properties of Eros’ interior through measurements and modelling of crater degradation and erasure from the impact that formed the 7.5-km-diameter Shoemaker crater on Eros. Our results indicate that Eros’ deep interior has a seismic wave scattering length of 0.5 ± 0.1 km and effective quality factor EQ < \({63}_{-13}^{+18}\) at frequencies >0.06 Hz. Contrary to the established view of Eros as a fractured shard, our findings suggest that Eros’ interior properties are consistent with those of a rubble-pile asteroid.

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来源期刊
Nature Astronomy
Nature Astronomy Physics and Astronomy-Astronomy and Astrophysics
CiteScore
19.50
自引率
2.80%
发文量
252
期刊介绍: Nature Astronomy, the oldest science, has played a significant role in the history of Nature. Throughout the years, pioneering discoveries such as the first quasar, exoplanet, and understanding of spiral nebulae have been reported in the journal. With the introduction of Nature Astronomy, the field now receives expanded coverage, welcoming research in astronomy, astrophysics, and planetary science. The primary objective is to encourage closer collaboration among researchers in these related areas. Similar to other journals under the Nature brand, Nature Astronomy boasts a devoted team of professional editors, ensuring fairness and rigorous peer-review processes. The journal maintains high standards in copy-editing and production, ensuring timely publication and editorial independence. In addition to original research, Nature Astronomy publishes a wide range of content, including Comments, Reviews, News and Views, Features, and Correspondence. This diverse collection covers various disciplines within astronomy and includes contributions from a diverse range of voices.
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