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Chaotic gravitational zones around a regularly shaped complex rotating body

机译:规则形状的复杂旋转体周围的混沌引力区

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In preparation for the Rosetta mission, the location and widths of gravitational resonances surrounding a regularly shaped and possibly complex rotating body are mapped following the second fundamental model of resonance. It is found that for uniaxial rotation of the central body, the surrounding resonances are widest for prograde orbits. If the figure axis is tilted with respect to the spin axis of the central body, an additional number of wide resonances appear with a preference for prograde and inclined orbits, and the occurrence of initial conditions which lie in the globally connected chaotic web is significantly increased. For larger rotational excitations, it is seen how these new additional resonances overlap internally at low eccentricity for very large semi-major axes. However, with exceptions for some excited short-axis rotational modes of the central body, it is argued that most resonances vanish for retrograde orbits lying in the plane normal to the body spin, and that resonant or non-resonant stability therefore can be expected for a wide range of mean orbit eccentricities.
机译:在准备执行罗塞塔任务时,围绕共振的第二基本模型,绘制了围绕规则形状且可能复杂的旋转体的重力共振的位置和宽度。已经发现,对于中心体的单轴旋转,对于前进轨道,周围的共振是最宽的。如果图形轴相对于中心体的自旋轴倾斜,则会出现更多的宽共振,偏向于正向和倾斜轨道,并且位于全局连接的混沌网中的初始条件的发生率显着增加。对于较大的旋转激励,可以看到对于很大的半长轴,这些新的附加共振如何在低偏心率下在内部重叠。但是,除了中心体的某些激发的短轴旋转模式外,有论点认为,对于位于垂直于身体自旋平面的逆行轨道,大多数共振消失,因此可以预期共振或非共振稳定性各种平均轨道偏心率。

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