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DYNAMICAL INSTABILITIES IN HIGH-OBLIQUITY SYSTEMS

机译:高流逝系统中的动力学不稳定性

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High-inclination circumplanetary orbits that are gravitationally perturbed by the central star can undergo Kozai oscillations—large-amplitude, coupled variations in the orbital eccentricity and inclination. We first study how this effect is modified by incorporating perturbations from the planetary oblateness. Tremaine et al. found that, for planets with obliquities 68875, orbits in the equilibrium local Laplace plane are unstable to eccentricity perturbations over a finite radial range and execute large-amplitude chaotic oscillations in eccentricity and inclination. In the hope of making that treatment more easily understandable, we analyze the problem using orbital elements, confirming this threshold obliquity. Furthermore, we find that orbits inclined to the Laplace plane will be unstable over a broader radial range, and that such orbits can go unstable for obliquities less than 68875. Finally, we analyze the added effects of radiation pressure, which are important for dust grains and provide a natural mechanism for particle semimajor axes to sweep via Poynting-Robertson drag through any unstable range. For low-eccentricity orbits in the equilibrium Laplace plane, we find that generally the effect persists; however, the unstable radial range is shifted and small retrograde particles can avoid the instability altogether. We argue that this occurs because radiation pressure modifies the equilibrium Laplace plane.
机译:受中心恒星引力扰动的高倾角外行星轨道可能会发生Kozai振荡,即大振幅,轨道偏心率和倾角的耦合变化。我们首先研究如何结合行星扁圆的摄动来改变这种影响。 Tremaine等。发现,对于倾斜度> 68875的行星,平衡局部拉普拉斯平面中的轨道在有限的径向范围内对偏心率扰动不稳定,并在偏心率和倾斜度上执行大振幅混沌振荡。为了使这种处理更容易理解,我们使用轨道元素分析了问题,并确认了该阈值倾斜度。此外,我们发现倾斜到拉普拉斯平面的轨道在更宽的径向范围内将变得不稳定,并且这些轨道对于小于68875的倾斜度可能会变得不稳定。最后,我们分析了辐射压力的附加影响,这对粉尘颗粒很重要并为粒子半长轴通过Poynting-Robertson阻力在任何不稳定范围内扫掠提供了自然的机制。对于平衡拉普拉斯平面中的低偏心率轨道,我们发现这种影响通常会持续;但是,不稳定的径向范围会移动,小的逆行粒子可以完全避免不稳定性。我们认为发生这种情况是因为辐射压力改变了平衡拉普拉斯平面。

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