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Straight-line oscillations generating three-dimensional motions in the photogravitational restricted three-body problem

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The Sitnikov configuration is a special case of the restricted three-body problem where the two primaries are of equal masses and the third body of a negligible mass moves along a straight line perpendicular to the orbital plane of the primaries and passes through their center of mass. It may serve as a toy model in dynamical astronomy, and can be used to study the three-dimensional orbits in more applicable cases of the classical three-body problem. The present paper concerns the straight-line oscillations of the Sitnikov family of the photogravitational circular restricted three-body problem as well as the associated families of three-dimensional periodic orbits. From the stability analysis of the Sitnikov family and by using appropriate correctors we have computed accurately 49 critical orbits at which families of 3D periodic orbits of the same period bifurcate. All these families have been computed in both cases of equal and non-equal primaries, and consist entirely of unstable orbits. They all terminate with coplanar periodic orbits. We have also found 35 critical orbits at which period doubling bifurcations occur. Several families of 3D periodic orbits bifurcating at these critical Sitnikov orbits have also been given. These families contain stable parts and close upon themselves containing no coplanar orbits.

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Correspondence to E. A. Perdios.

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Perdios, E.A., Kalantonis, V.S. & Douskos, C.N. Straight-line oscillations generating three-dimensional motions in the photogravitational restricted three-body problem. Astrophys Space Sci 314, 199–208 (2008). https://doi.org/10.1007/s10509-008-9755-1

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  • DOI: https://doi.org/10.1007/s10509-008-9755-1

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