论文标题

在计划的DART撞击之前和之后,Didymos系统的动态状态的预测

Predictions for the Dynamical States of the Didymos System before and after the Planned DART Impact

论文作者

Richardson, Derek C., Agrusa, Harrison F., Barbee, Brent, Bottke, William F., Cheng, Andrew F., Eggl, Siegfried, Ferrari, Fabio, Hirabayashi, Masatoshi, Karatekin, Özgür, McMahon, Jay, Schwartz, Stephen R., Ballouz, Ronald-Louis, Bagatin, Adriano Campo, Dotto, Elisabetta, Fahnestock, Eugene G., Fuentes-Muñoz, Oscar, Gkolias, Ioannis, Hamilton, Douglas P., Jacobson, Seth A., Jutzi, Martin, Lyzhoft, Josh, Makadia, Rahil, Meyer, Alex J., Michel, Patrick, Nakano, Ryota, Noiset, Guillaume, Raducan, Sabina D., Rambaux, Nicolas, Rossi, Alessandro, Sánchez, Paul, Scheeres, Daniel J., Soldini, Stefania, Stickle, Angela M., Tanga, Paolo, Tsiganis, Kleomenis, Zhang, Yun

论文摘要

NASA的双重小行星重定向测试(DART)航天器计划影响2022年9月26日在23:14 UTC左右的(65803)Didymos的自然卫星,导致其轨道时期的降低,这将是可与地面观测值测量的。这种动力学撞击器技术的测试将以现实的规模为动量传递增强因子$β$提供第一个估计,其中从冲击中发出的弹出为目标提供了额外的偏转。基于地球的观察结果,即Liciacube航天器(在撞击之前将与DART分离),ESA的随访HERA任务将于2024年推出,将提供偏转测试的额外表征。 HERA和DART共同包括NASA和ESA之间的小行星影响和挠度评估(AIDA)合作。在这里提出了二进制系统的预测动力状态和撞击后的二进制系统。该系统的动态放松状态将受到影响的激发,从而导致偏心率的增加和轨道的轻微倾斜,以及增强的Dimorphos的图表,幅度取决于当前已知的靶标形状。也可能会触发围绕月球长轴的自由旋转,并且轨道周期会在几天到几个月的时间范围内经历从几秒钟到几分钟的变化。由于陨石坑形成和喷射触发的碎片或质量浪费而导致的身体变化可能会影响$β$,但可以通过其他测量来限制。 BYORP和重力潮汐都可能在Hera会合的时间范围内导致可测量的轨道变化。

NASA's Double Asteroid Redirection Test (DART) spacecraft is planned to impact the natural satellite of (65803) Didymos, Dimorphos, around 23:14 UTC on 26 September 2022, causing a reduction in its orbital period that will be measurable with ground-based observations. This test of kinetic impactor technology will provide the first estimate of the momentum transfer enhancement factor $β$ at a realistic scale, wherein ejecta from the impact provides an additional deflection to the target. Earth-based observations, the LICIACube spacecraft (to be detached from DART prior to impact), and ESA's follow-up Hera mission to launch in 2024, will provide additional characterization of the deflection test. Together Hera and DART comprise the Asteroid Impact and Deflection Assessment (AIDA) cooperation between NASA and ESA. Here the predicted dynamical states of the binary system upon arrival and after impact are presented. The assumed dynamically relaxed state of the system will be excited by the impact, leading to an increase in eccentricity and slight tilt of the orbit together with enhanced libration of Dimorphos with amplitude dependent on the currently poorly known target shape. Free rotation around the moon's long axis may also be triggered and the orbital period will experience variations from seconds to minutes over timescales of days to months. Shape change of either body due to cratering or mass wasting triggered by crater formation and ejecta may affect $β$ but can be constrained through additional measurements. Both BYORP and gravity tides may cause measurable orbital changes on the timescale of Hera's rendezvous.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源