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Spin-orbit resonances and rotation of coorbital bodies in quasi-circular orbits

机译:旋转轨道的共振和谐波体在准圆形轨道中的旋转

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The rotation of asymmetric bodies in eccentric Keplerian orbits can be chaotic when there is some overlap of spin-orbit resonances. Here we show that the rotation of two coorbital bodies (two planets orbiting a star or two satellites of a planet) can also be chaotic even for quasi-circular orbits around the central body. When dissipation is present, the rotation period of a body on a nearly circular orbit is believed to always end synchronous with the orbital period. Here we demonstrate that for coorbital bodies in quasi-circular orbits, stable non-synchronous rotation is possible for a wide range of mass ratios and body shapes. We further show that the rotation becomes chaotic when the natural rotational libration frequency, due to the axial asymmetry, is of the same order of magnitude as the orbital libration frequency.
机译:当旋转轨道共振的一些重叠时,偏心孔轨道上的不对称体在偏心孔轨道中的旋转可以是混乱的。在这里,我们表明两个冷却体的旋转(两个行星轨道轨道的星星或行星的两个卫星)也可以混乱,即使是围绕中央体的准圆形轨道。当存在耗散时,据信在几乎圆形轨道上的主体的旋转周期始终与轨道周期同步。在这里,我们证明,对于准圆形轨道中的粘合体,可以对各种质量比和身体形状进行稳定的非同步旋转。我们进一步表明,当由于轴向不对称而导致的自然旋转自动频率,旋转变得混乱,其轴向不对称是与轨道自由频率相同的数量级。

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