A degenerate Arnold diffusion mechanism in the restricted 3-body problem

Other authors

Universitat Politècnica de Catalunya. Departament de Matemàtiques

Universitat Politècnica de Catalunya. UPCDS - Grup de Sistemes Dinàmics de la UPC

Publication date

2025-12-18



Abstract

A major question in dynamical systems is to understand the mechanisms driving global instability in the 3-body problem (3BP), which models the motion of three bodies under Newtonian gravitational interaction. The 3BP is called restricted if one of the bodies has zero mass and the other two, the primaries, have strictly positive masses m0,m1. We consider the restricted planar elliptic 3-body problem (RPE3BP) where the primaries revolve in Keplerian ellipses. We prove that the RPE3BP exhibits topological instability: for any values of the masses m0,m1, except m0=m1, we build orbits along which the angular momentum of the massless body experiences an arbitrarily large variation provided the eccentricity of the orbit of the primaries is positive but small enough. In order to prove this result we show that a degenerate Arnold diffusion mechanism, which moreover involves exponentially small phenomena, takes place in the RPE3BP. Our work extends the one of Delshams, Kaloshin, de la Rosa, and Seara (2019) for the a priori unstable case m1/m0«1, to the case of arbitrary masses m0,m1>0, where the model displays features of the so-called a priori stable setting.


Peer Reviewed


Preprint

Document Type

Article

Language

English

Related items

https://smf.emath.fr/publications/un-mecanisme-de-diffusion-darnold-degenere-dans-le-probleme-restreint-des-trois-corps

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Open Access

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E-prints [72872]