论文标题

表面滑坡之后,卫星和赤道山脊形成在顶形的小行星周围

Formation of moons and equatorial ridge around top-shaped asteroids after surface landslide

论文作者

Hyodo, Ryuki, Sugiura, Keisuke

论文摘要

在接近地球的小行星中已经观察到了顶形的小行星。据报道,其中约有一半的卫星(按$ \ sim 1 $ wt。\%的顶级主级别的订单),其中许多具有赤道山脊。最近的一项研究表明,在分手旋转时期附近的快速旋转中,小行星(例如Ryugu,Bennu和Didymos)的杂物形状的顶部图(例如Ryugu,Bennu和Didymos)可能是由主要的轴对称滑坡造成的。这样的滑坡不可避免地会在小行星周围形成一个颗粒状磁盘,并具有短的时间表($ \ sim 3 $小时)。但是,没有研究长期的全动力演化。在这里,我们进行了连续的模拟($ \ sim 700 $小时),该模拟研究了从地表滑坡的事件序列,该事件形成了顶部形状的小行星和颗粒磁盘以进化。我们表明,磁盘很快传播并产生月亮(在$ \ sim 300美元以内)。形成的月亮的质量与在顶形小行星周围观察到的质量一致。我们还证明了赤道脊是自然形成的,因为将磁盘颗粒的一部分选择性地重新固定在主要的赤道区域上。我们设想Ryugu和Bennu曾经有一个古老的月亮,后来由于连续的月球轨道进化而丢失。另外,在具有月球(例如Didymos)的顶形的小行星上,没有发生轨道的显着轨道演变,这会导致其损失。我们的研究也将在定性上适用于分手旋转周期附近的任何碎石螺旋杆小行星。

Top-shaped asteroids have been observed among near-Earth asteroids. About half of them are reported to have moons (on the order of $\sim 1$wt.\% of the top-shaped primary) and many of them have an equatorial ridge. A recent study has shown that the enigmatic top-shaped figure of asteroids (e.g., Ryugu, Bennu, and Didymos) could result from an axisymmetric landslide of the primary during a fast spin-up near the breakup rotation period. Such a landslide would inevitably form a particulate disk around an asteroid with a short timescale ($\sim 3$ hours). However, the long-term full dynamical evolution is not investigated. Here, we perform a continuous simulation ($\sim 700$ hours) that investigates the sequence of events from the surface landslide that forms a top-shaped asteroid and a particulate disk to disk evolution. We show that the disk quickly spreads and produces moons (within $\sim 300$ hours). The mass of the formed moon is consistent with what is observed around the top-shaped asteroids. We also demonstrate that an equatorial ridge is naturally formed because a fraction of the disk particles re-accretes selectively onto the equatorial region of the primary. We envision that Ryugu and Bennu could once have an ancient moon that was later lost due to a successive moon's orbital evolution. Alternatively, at the top-shaped asteroid that has a moon, such as Didymos, no significant orbital evolution of the moon has occurred that would result in its loss. Our study would also be qualitatively applicable to any rubble-pile asteroids near the breakup rotation period.

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