论文标题

木星家族彗星在混乱的轨道演变中的热加工

Thermal processing of Jupiter Family Comets during their chaotic orbital evolution

论文作者

Gkotsinas, Anastasios, Guilbert-Lepoutre, Aurélie, Raymond, Sean N., Nesvorný, David

论文摘要

木星和土星轨道以外的彗星活动的证据(例如半人马和长时间彗星观察到的轨道)表明,彗星核的热加工在进入内部太阳系之前很早就开始了,通常会观察并监测它们。这种观察提出了有关未经处理的材料深度以及JFC的活动是否可以代表任何原始材料的问题。在这里,我们对木星家族彗星(JFC)的耦合热和动态演化进行建模,从它们离开外部太阳系储层到弹射到星际空间的那一刻起。我们将热进化模型应用于从动力学模拟(ARXIV:1706.07447)获得的模拟JFC样本中,该模拟成功地成功地重现了观察到的JFC的轨道分布。我们表明,由于彗星轨迹向内部太阳系的随机性质,所有模拟的JFC都会发生多个加热发作,从而对其初始挥发性含量进行了重大修改。统计分析限制了此类处理的程度。我们建议原始凝结的高发射冰应完全丢失,从而导致今天观察到的彗星活动的层。我们的结果表明,在将观察结果放置在更广泛的背景下时,理解JFC的轨道(以及加热)历史至关重要。

Evidence for cometary activity beyond Jupiter and Saturn's orbits -- such as that observed for Centaurs and long period comets -- suggests that the thermal processing of comet nuclei starts long before they enter the inner Solar System, where they are typically observed and monitored. Such observations raise questions as to the depth of unprocessed material, and whether the activity of JFCs can be representative of any primitive material. Here we model the coupled thermal and dynamical evolution of Jupiter Family Comets (JFCs), from the moment they leave their outer Solar System reservoirs until their ejection into interstellar space. We apply a thermal evolution model to a sample of simulated JFCs obtained from dynamical simulations (arXiv:1706.07447) that successfully reproduce the orbital distribution of observed JFCs. We show that due to the stochastic nature of comet trajectories toward the inner solar system, all simulated JFCs undergo multiple heating episodes resulting in significant modifications of their initial volatile contents. A statistical analysis constrains the extent of such processing. We suggest that primordial condensed hypervolatile ices should be entirely lost from the layers that contribute to cometary activity observed today. Our results demonstrate that understanding the orbital (and thus, heating) history of JFCs is essential when putting observations in a broader context.

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