论文标题

共共鸣的网络和可能的小乌拉尼亚卫星的进化路径

Web of resonances and possible path of evolution of the small Uranian satellites

论文作者

Charalambous, C., Giuppone, C. A., Guilera, O. M.

论文摘要

巨型行星周围的卫星系统沉浸在复杂的谐振配置区域中。了解卫星共振的作用有助于理解行星形成和后进化中的动力学过程。我们的主要目标是分析天王星周围的小卫星的谐振结构,并提出能够描述这些卫星当前配置的不同场景。我们将研究重点放在米兰达常规卫星内部的外部成员上,分别是罗莎琳德,丘比特,贝琳达,佩迪塔,帕克和mab。我们使用n体积分来执行动力学图来分析其动力学和靠近两体和三体均值共振(MMR)。我们发现其中一个复杂的低阶共振网络。我们采用分析处方,分析了磁盘(CPD)中的气阻力和I型迁移的演变,以解释这些卫星的不同历史。我们还使用一些粗近似值对这些卫星的潮汐演变进行了建模,并发现可能导致卫星对之间MMR交叉的可能路径。最后,我们的模拟表明,每个机制都可以产生明显的卫星径向漂移,从而导致可能的共振捕获,具体取决于距离和尺寸。

Satellite systems around giant planets are immersed in a region of complex resonant configurations. Understanding the role of satellite resonances contributes to comprehending the dynamical processes in planetary formation and posterior evolution. Our main goal is to analyse the resonant structure of small moons around Uranus and propose different scenarios able to describe the current configuration of these satellites. We focus our study on the external members of the regular satellites interior to Miranda, namely Rosalind, Cupid, Belinda, Perdita, Puck, and Mab, respectively. We use N-body integrations to perform dynamical maps to analyse their dynamics and proximity to two-body and three-body mean-motion resonances (MMR). We found a complicated web of low-order resonances amongst them. Employing analytical prescriptions, we analysed the evolution by gas drag and type-I migration in a circumplanetary disc (CPD) to explain different possible histories for these moons. We also model the tidal evolution of these satellites using some crude approximations and found possible paths that could lead to MMRs crossing between pairs of moons. Finally, our simulations show that each mechanism can generate significant satellite radial drift leading to possible resonant capture, depending on the distances and sizes.

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