Non-integrability of the restricted three-body problem

IF 0.8 3区 数学 Q2 MATHEMATICS Ergodic Theory and Dynamical Systems Pub Date : 2024-03-06 DOI:10.1017/etds.2024.4
KAZUYUKI YAGASAKI
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Abstract

The problem of non-integrability of the circular restricted three-body problem is very classical and important in the theory of dynamical systems. It was partially solved by Poincaré in the nineteenth century: he showed that there exists no real-analytic first integral which depends analytically on the mass ratio of the second body to the total and is functionally independent of the Hamiltonian. When the mass of the second body becomes zero, the restricted three-body problem reduces to the two-body Kepler problem. We prove the non-integrability of the restricted three-body problem both in the planar and spatial cases for any non-zero mass of the second body. Our basic tool of the proofs is a technique developed here for determining whether perturbations of integrable systems which may be non-Hamiltonian are not meromorphically integrable near resonant periodic orbits such that the first integrals and commutative vector fields also depend meromorphically on the perturbation parameter. The technique is based on generalized versions due to Ayoul and Zung of the Morales–Ramis and Morales–Ramis–Simó theories. We emphasize that our results are not just applications of the theories.

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受限三体问题的不可控性
圆周受限三体问题的不可控性是动力学系统理论中非常经典和重要的问题。19 世纪,庞加莱(Poincaré)部分地解决了这个问题:他证明了不存在一个实解析的第一积分,它在解析上取决于第二体与总体的质量比,并且在函数上与哈密顿无关。当第二体质量为零时,受限三体问题就会简化为二体开普勒问题。我们证明了在第二体质量不为零的情况下,受限三体问题在平面和空间上的不可控性。我们证明的基本工具是在此开发的一种技术,用于确定非哈密尔顿可积分系统的扰动在共振周期轨道附近是否不具有协整可积分性,从而使第一积分和交换向量场也协整地依赖于扰动参数。该技术基于 Ayoul 和 Zung 提出的莫拉莱斯-拉米理论和莫拉莱斯-拉米-西莫理论的广义版本。我们强调,我们的结果不仅仅是这些理论的应用。
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来源期刊
CiteScore
1.70
自引率
11.10%
发文量
113
审稿时长
6-12 weeks
期刊介绍: Ergodic Theory and Dynamical Systems focuses on a rich variety of research areas which, although diverse, employ as common themes global dynamical methods. The journal provides a focus for this important and flourishing area of mathematics and brings together many major contributions in the field. The journal acts as a forum for central problems of dynamical systems and of interactions of dynamical systems with areas such as differential geometry, number theory, operator algebras, celestial and statistical mechanics, and biology.
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