论文标题
偏心von Zeipel-Lidov-Kozai效应在受限层次行星系统中的动力本质
Dynamical essence of the eccentric von Zeipel-Lidov-Kozai effect in restricted hierarchical planetary systems
论文作者
论文摘要
目的。偏心的von Zeipel-Lidov-Kozai(ZLK)效应被广泛用于解释天体物理系统品种中的动态现象。这项工作的目的是通过在受限制的层次行星系统中的世俗共振和世俗共振的动力学之间构建固有的联系来阐明怪异ZLK效应的动态本质。方法。通过扰动处理对APSidal共振的动力结构进行了分析研究。共振模型是通过在旋转的ZLK循环上平均哈密顿量(最高八极顺序)来制定的,从而产生了额外的运动积分。共振模型下的相肖像可用于分析动态结构,包括共振中心,动力学分离和库岛。结果。通过分析阶段肖像,在偏心率(偏心空间)中发现了五个库中心和八个图书馆区域。在库区的分析结果与谐振轨道的数值分布之间有着极好的一致性,这表明APSidal共振的谐振模型是有效且适用的。此外,发现在测试粒子极限中,翻转轨道的分布由以i = 90度的倾向为中心的那些apsidal共振。结论。怪异的ZLK效应在动态上等同于限制性层次行星系统中apsidal共振的效果。偏心ZLK效应(或Apsidal共振的效果)的动态响应是显着激发了长期演化中测试颗粒的偏心率和/或倾斜度。
Aim. The eccentric von Zeipel-Lidov-Kozai (ZLK) effect is widely used to explain dynamical phenomena in varieties of astrophysical systems. The purpose of this work is to make clear the dynamical essence of the eccentric ZLK effect by constructing an inherent connection between such an effect and dynamics of secular resonance in restricted hierarchical planetary systems. Methods. Dynamical structures of apsidal resonance are analytically studied by means of perturbative treatments. The resonant model is formulated by averaging the Hamiltonian (up to octupole order) over rotating ZLK cycles, producing an additional motion integral. The phase portraits under the resonant model can be used to analyse dynamical structures, including resonant centres, dynamical separatrices and islands of libration. Results. By analysing phase portraits, five branches of libration centres and eight libration zones are found in the eccentricity--inclination space. There is an excellent agreement between analytical results of libration zone and numerical distributions of resonant orbit, indicating that the resonant model for apsidal resonances is valid and applicable. Additionally, it is found that, in the test-particle limit, distributions of flipping orbits are dominated by those apsidal resonances centred at the inclination of i = 90 deg. Conclusions. The eccentric ZLK effect is dynamically equivalent to the effect of apsidal resonance in restricted hierarchical planetary systems. The dynamical response of the eccentric ZLK effect (or effect of apsidal resonance) is to significantly excite eccentricities and/or inclinations of test particles in the very long-term evolution.