论文标题

周期性近彗星323p/soho的死亡死亡

The Lingering Death of Periodic Near-Sun Comet 323P/SOHO

论文作者

Hui, Man-To, Tholen, David J., Kracht, Rainer, Chang, Chan-Kao, Wiegert, Paul A., Ye, Quan-Zhi, Mutchler, Max

论文摘要

我们首次使用地面和空间望远镜观察到了近似彗星323p/SOHO。 2020年12月下旬,该物体在斯巴鲁(Subaru)中被发现,在前往近日期权的途中没有彗星特征。但是,在我们的毕业后观察中,它形成了一个长长的狭窄尾巴,模仿了崩解的彗星。弹射器由至少毫米大小的灰尘组成,并带有幂律尺寸分布指数$ 3.2 \ pm 0.2 $,在骨髓毛细血管通道后不久就会冲动生产,在此期间,由于过度的热应力和旋转破坏,$ \ gtrsim $ 0.1-10%的核质量$ 0.1-10%被脱落。 Two fragments of $\sim$20 m in radius (assuming a geometric albedo of 0.15) were seen in HST observations from early March 2021. The nucleus, with an effective radius of $86 \pm 3$ m (the same albedo assumed) and an aspect ratio of $\sim$0.7, has a rotation period of 0.522 hr, which is the shortest for known comets in the solar system and implies内饰$ \ gtrsim $ \ gtrsim $ 10-100 pa。物体的颜色是怪异的,并且如何在暂时变化。使用我们的天文学,我们在对象的横向运动中发现了$ r _ {\ rm h}^{ - 8.5} $的HeliePentric依赖性之后的强烈非倾向效应。我们的N身体整合表明,在接下来的两千年中,有323p的可能性为99.7%,这是由$ν_6$世俗共振驱动的。

We observed near-Sun comet 323P/SOHO for the first time using ground and space telescopes. In late December 2020, the object was recovered at Subaru showing no cometary features on its way to perihelion. However, in our postperihelion observations it developed a long narrow tail mimicking a disintegrated comet. The ejecta, comprised of at least mm-sized dust with power-law size distribution index $3.2 \pm 0.2$, was impulsively produced shortly after the perihelion passage, during which $\gtrsim$0.1-10% of the nucleus mass was shed due to excessive thermal stress and rotational disruption. Two fragments of $\sim$20 m in radius (assuming a geometric albedo of 0.15) were seen in HST observations from early March 2021. The nucleus, with an effective radius of $86 \pm 3$ m (the same albedo assumed) and an aspect ratio of $\sim$0.7, has a rotation period of 0.522 hr, which is the shortest for known comets in the solar system and implies cohesive strength $\gtrsim$10-100 Pa in the interior. The colour of the object was freakish, and how it changed temporally has never been previously observed. Using our astrometry, we found a strong nongravitational effect following a heliocentric dependency of $r_{\rm H}^{-8.5}$ in the transverse motion of the object. Our N-body integration reveals that 323P has a likelihood of 99.7% to collide with the Sun in the next two millennia driven by the $ν_6$ secular resonance.

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