Johns Hopkins University Applied Physics Laboratory, Laurel, MD, USA.
University of Maryland, College Park, MD, USA.
Nature. 2023 Apr;616(7957):443-447. doi: 10.1038/s41586-023-05810-5. Epub 2023 Mar 1.
Although no known asteroid poses a threat to Earth for at least the next century, the catalogue of near-Earth asteroids is incomplete for objects whose impacts would produce regional devastation. Several approaches have been proposed to potentially prevent an asteroid impact with Earth by deflecting or disrupting an asteroid. A test of kinetic impact technology was identified as the highest-priority space mission related to asteroid mitigation. NASA's Double Asteroid Redirection Test (DART) mission is a full-scale test of kinetic impact technology. The mission's target asteroid was Dimorphos, the secondary member of the S-type binary near-Earth asteroid (65803) Didymos. This binary asteroid system was chosen to enable ground-based telescopes to quantify the asteroid deflection caused by the impact of the DART spacecraft. Although past missions have utilized impactors to investigate the properties of small bodies, those earlier missions were not intended to deflect their targets and did not achieve measurable deflections. Here we report the DART spacecraft's autonomous kinetic impact into Dimorphos and reconstruct the impact event, including the timeline leading to impact, the location and nature of the DART impact site, and the size and shape of Dimorphos. The successful impact of the DART spacecraft with Dimorphos and the resulting change in the orbit of Dimorphos demonstrates that kinetic impactor technology is a viable technique to potentially defend Earth if necessary.
尽管在至少未来一个世纪内,没有已知的小行星会对地球构成威胁,但对于那些撞击会造成区域破坏的近地小行星,其目录并不完整。已经提出了几种方法来通过偏转或干扰小行星来潜在地防止小行星与地球发生碰撞。动能撞击技术的测试被确定为与小行星缓解相关的最高优先级太空任务。美国宇航局的双小行星重定向测试(DART)任务是对动能撞击技术的全面测试。该任务的目标小行星是 Didymos 近地 S 型双小行星系统中的次小行星 Dimorphos。选择这个双星小行星系统是为了使地面望远镜能够量化 DART 航天器撞击引起的小行星偏转。尽管过去的任务已经利用撞击器来研究小天体的特性,但那些早期的任务并不是为了偏转它们的目标,也没有实现可测量的偏转。在这里,我们报告了 DART 航天器对 Dimorphos 的自主动能撞击,并重建了撞击事件,包括撞击前的时间线、DART 撞击点的位置和性质,以及 Dimorphos 的大小和形状。DART 航天器成功撞击 Dimorphos 以及随后 Dimorphos 轨道的变化表明,动能撞击器技术是一种可行的技术,如果有必要,它可能有助于保护地球。