论文标题

von Zeipel-Lidov-Kozai效应内部平均运动共振与跨核对象的应用

The von Zeipel-Lidov-Kozai effect inside mean motion resonances with applications to trans-Neptunian objects

论文作者

Lei, Hanlun, Li, Jian, Huang, Xiumin, Li, Muzi

论文摘要

MMR内部的世俗动力学在管理跨纽约州区域的动力结构和雕刻跨纽布对象(TNOS)的轨道分布中起着至关重要的作用。在这项研究中,进行了半分析的发展,以探索平均运动共振(MMRS)内部的Von Zeipel-Lidov-Kozai(ZLK)共振。为此,通过平均理论制定了半代数模型,然后基于绝热不变性近似来实现单度自由度的集成模型。特别是,我们引入了一个经过修改的绝热不变式,该不变型在MMR的分离周围是连续的。在长期演变中,共鸣的哈密顿量和绝热不变均保持不变,因此可以通过绘制给定的hamiltonian绝热不变的水平曲线来产生相肖像。阶段肖像提供了全球图片,以预测偏心率,倾向和观点的长期行为。在MMR中的某些代表性TNO(2018 VO137,2005 SD278,2015 PD312,PLUTO,2004 HA79,1996 TR66和2014 SR373)的应用显示出良好的协议,在整个N-Body模型下的数字繁殖轨迹与相位构图中的水平曲线下的曲线均显示出良好的协议。有趣的是,2018年VO137和2005 SD278在长期演变中表现出开关行为,目前它们在Neptune的2:5 mmr内。

Secular dynamics inside MMRs plays an essential role in governing the dynamical structure of the trans-Neptunian region and sculpting the orbital distribution of trans-Neptunian objects (TNOs). In this study, semi-analytical developments are made to explore the von Zeipel-Lidov-Kozai (ZLK) resonance inside mean motion resonances (MMRs). To this end, a semi-secular model is formulated by averaging theory and then a single-degree-of-freedom integrable model is achieved based on the adiabatic invariance approximation. In particular, we introduce a modified adiabatic invariant, which is continuous around the separatrices of MMRs. During the long-term evolution, both the resonant Hamiltonian and the adiabatic invariant remain unchanged, thus phase portraits can be produced by plotting level curves of the adiabatic invariant with given Hamiltonian. The phase portraits provide global pictures to predict long-term behaviors of the eccentricity, inclination and argument of pericenter. Applications to some representative TNOs inside MMRs (2018 VO137, 2005 SD278, 2015 PD312, Pluto, 2004 HA79, 1996 TR66 and 2014 SR373) show good agreements between the numerically propagated trajectories under the full N-body model and the level curves arising in phase portraits. Interestingly, 2018 VO137 and 2005 SD278 exhibit switching behaviors during the long-term evolution and currently they are inside 2:5 MMR with Neptune.

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