首页> 外文期刊>Celestial Mechanics and Dynamical Astronomy: An international journal of space dynamics >Detection by MEGNO of the gravitational resonances between a rotating ellipsoid and a point mass satellite
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Detection by MEGNO of the gravitational resonances between a rotating ellipsoid and a point mass satellite

机译:通过MEGNO检测旋转椭球与点质量卫星之间的重力共振

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Nowadays the scientific community considers that more than a third of the asteroids are double. The study of the stability of these systems is quite complex, because of their irregular shapes and tumbling rotations, and requires a full body-full body approach. A particular case is analysed here, when the secondary body is sufficiently small and distant from the primary to be considered as a point mass satellite. Gravitational resonances (between the revolution of the satellite and the rotation of the asteroid) of a small body in fast or slow rotation around a rigid ellipsoid are studied. The same model can be used for the motion of a probe around an irregular asteroid. The gravitational potential induced by the primary body is modelled by the MacMillan potential. The stability of the satellite is measured thanks to the MEGNO indicator (Mean Exponential Growth Factor of Nearby Orbits). We present stability maps in the plane (b/d, c/d) where d, b, and c are the three semi-axes of the ellipsoid shaping the asteroid. Special stable conic-like curves are detected on these maps and explained by an analytical model, based on a simplification of the MacMillan potential for some specific resonances (1: 1 and 2: 1). The efficiency of the MEGNO to detect stability is confirmed.
机译:如今,科学界认为三分之一以上的小行星是两倍。这些系统的稳定性研究非常复杂,因为它们的形状不规则且旋转不稳,因此需要采用全身法。当次要物体足够小且与主要物体相距遥远以被视为点质量卫星时,这里将分析一种特殊情况。研究了围绕刚性椭球体快速旋转或缓慢旋转的小物体的重力共振(在卫星的旋转和小行星的旋转之间)。相同模型可用于探针围绕不规则小行星的运动。由麦克米伦势模型化了由基体感应的引力势。借助MEGNO指标(附近轨道的平均指数增长因子)来测量卫星的稳定性。我们在平面(b / d,c / d)中显示了稳定性图,其中d,b和c是塑造小行星的椭球的三个半轴。在这些图上可以检测到特殊的稳定圆锥状曲线,并通过简化麦克米伦电位以实现某些特定共振(1:1和2:1)的解析模型进行解释。证实了MEGNO检测稳定性的效率。

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