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Bifurcation graphs for the CR3BP via symplectic methods: on the Jupiter–Europa and Saturn–Enceladus systems

  • Abstract In this article, using the symplectic methods developed by Moreno and Frauenfelder (aimed at analyzing periodic orbits, their stability and their bifurcations), we will carry out numerical studies concerning periodic orbits in the Jupiter–Europa and Saturn–Enceladus systems. We will put emphasis on planar-to-spatial bifurcations, from deformation of the families in Hill’s lunar problem studied by Aydin. We will also provide an algorithm for the numerical computation of Conley–Zehnder indices, which are instrumental in practice for determining which families of orbits connect to which. As an application, we use our tools to analyze a well-known family of Halo orbits that approaches Enceladus at an altitude of 29 km, which bears interest for future space missions that visit the water plumes.

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Metadaten
Author:Agustin MorenoORCiD, Cengiz Aydin, Otto van Koert, Urs FrauenfelderORCiDGND, Dayung Koh
URN:urn:nbn:de:bvb:384-opus4-1184710
Frontdoor URLhttps://opus.bibliothek.uni-augsburg.de/opus4/118471
ISSN:2195-0571OPAC
Parent Title (English):The Journal of the Astronautical Sciences
Publisher:Springer US
Place of publication:New York, NY
Type:Article
Language:English
Year of first Publication:2024
Publishing Institution:Universität Augsburg
Release Date:2025/01/29
Tag:Bifurcations; Hamiltonian dynamics; Periodic orbits; Space mission design; Symplectic geometry; Three-body problem
Volume:71
Issue:6
First Page:51
DOI:https://doi.org/10.1007/s40295-024-00462-7
Institutes:Mathematisch-Naturwissenschaftlich-Technische Fakultät
Mathematisch-Naturwissenschaftlich-Technische Fakultät / Institut für Mathematik
Mathematisch-Naturwissenschaftlich-Technische Fakultät / Institut für Mathematik / Lehrstuhl für Analysis und Geometrie
Dewey Decimal Classification:5 Naturwissenschaften und Mathematik / 51 Mathematik / 510 Mathematik
Licence (German):CC-BY 4.0: Creative Commons: Namensnennung (mit Print on Demand)