论文标题

MU69从二元行星的演变从Kozai-Lidov振荡和Nebular阻力接触到接触

Evolution of MU69 from a binary planetesimal into contact by Kozai-Lidov oscillations and nebular drag

论文作者

Lyra, Wladimir, Youdin, Andrew N., Johansen, Anders

论文摘要

冷古典kuiper带对象MU69的新视野飞越表明它是接触二进制的。 1-10公里范围内的其他接触二进制物的存在提出了一个问题,即这些物体的共同点以及它们如何演变为接触。在这里,我们认为Mu69的裂片是太阳星云中二进制的,并在存在气体的情况下计算其轨道演变。我们发现,磁盘的次杀手为二次速度拖动的1公里身体带来了10公里身体的阻力时间。然而,在Kuiper带中,阻力是线性的,速度是线性的,随着另一半轨道中的一半轨道损失的角度动量,风的效果消除了:拖动时间尺度10公里的车身仍然超过10 Myr。在这种情况下,我们发现阻力和Kozai-Lidov振荡的结合是崩溃的有前途的渠道。我们通过分析解决了拖放和将其实施到Kozai和潮汐摩擦模型中的分层三体问题。裂片的永久性四极使Kozai振荡随机,并且随着阻力缩小半轴轴,它更容易使波动使系统接触。接触的演变非常迅速地发生($ 10^4 $ yr),在$ \ 85-95^\ circ $之间,在$ \ $ \ 85-95^\ circ $之间,在其超出该区域的拖曳辅助区域中的3个MYR之间。 $ J_2 $和气阻力之间的协同作用将接触窗口扩大到80-100 $^\ Circ $初始倾斜度,在较大范围的半轴轴上。因此,该模型预测Kuiper带中冷古典物的初始接触二元分数约为10 \%。接触速度的速度仅是由于底漆而偏离逃生速度的。对于MU69,与缺乏变形特征和拉伸强度估计的观察证据相一致,接触速度应为3.3-4.2 m/s。

The New Horizons flyby of the cold classical Kuiper Belt object MU69 showed it to be a contact binary. The existence of other contact binaries in the 1-10km range raises the question of how common these bodies are and how they evolved into contact. Here we consider that the lobes of MU69 formed as a binary in the Solar nebula, and calculate its orbital evolution in the presence of gas. We find that the sub-Keplerian wind of the disk brings the drag timescales for 10km bodies under 1 Myr for quadratic-velocity drag. In the Kuiper belt, however, the drag is linear with velocity and the effect of the wind cancels out as the angular momentum gained in half an orbit is lost in the other half: the drag timescales for 10 km bodies remain over 10 Myr. In this situation we find that a combination of drag and Kozai-Lidov oscillations is a promising channel for collapse. We analytically solve the hierarchical three-body problem with drag and implement it into a Kozai plus tidal friction model. The permanent quadrupoles of the lobes make the Kozai oscillations stochastic, and as drag shrinks the semimajor axis it more easily allows the fluctuations to bring the system into contact. Evolution to contact happens very rapidly (within $10^4$ yr) in the pure, double-average quadrupole, Kozai region between $\approx 85-95^\circ$, and within 3 Myr in the drag-assisted region beyond it. The synergy between $J_2$ and gas drag widens the window of contact to 80-100$^\circ$ initial inclination, over a larger range of semimajor axes. As such, the model predicts an initial contact binary fraction of about 10\% for the cold classicals in the Kuiper belt. The speed at contact deviates from the escape velocity only because of the oblateness. For MU69, the contact velocity should be 3.3-4.2 m/s, in line with the observational evidence from the lack of deformation features and estimate of the tensile strength.

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