Families of periodic orbits around asteroids: From shape symmetry to asymmetry

G. Voyatzis, D. Karydis, K. Tsiganis
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Abstract

Abstract In Karydis et al. (2021) we have introduced the method of shape continuation in order to obtain periodic orbits in the complex gravitational field of an irregularly-shaped asteroid starting from a symmetric simple model. What’s more, we map the families of periodic orbits of the simple model to families of the real asteroid model. The introduction of asymmetries in a gravitational potential may significantly affect the dynamical properties of the families. In this paper, we discuss the effect of the asymmetries in the neighborhood of vertically critical orbits, where, in the symmetric model, bifurcations of 3D periodic orbit families occur. When asymmetries are introduced, we demonstrate that two possible continuation schemes can take place in general. Numerical simulations, using an ellipsoid and a mascon model of 433-Eros, verify the existence of these schemes.
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小行星的周期轨道族:从形状对称到不对称
在Karydis et al.(2021)中,我们从一个对称的简单模型开始,引入了形状延拓的方法,以获得不规则形状小行星在复杂引力场中的周期轨道。更重要的是,我们将简单模型的周期轨道族映射到真实小行星模型的族。在重力势中引入不对称性会显著影响族的动力学性质。本文讨论了在对称模型中,三维周期轨道族在垂直临界轨道附近出现分岔的不对称性所产生的影响。当引入不对称时,我们证明了一般情况下可以有两种可能的延续方案。利用椭球和433-Eros的mascon模型进行了数值模拟,验证了这些方案的存在性。
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