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首页> 外文期刊>Celestial Mechanics and Dynamical Astronomy: An international journal of space dynamics >Secular resonances between bodies on close orbits: a case study of the Himalia prograde group of jovian irregular satellites
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Secular resonances between bodies on close orbits: a case study of the Himalia prograde group of jovian irregular satellites

机译:短轨道上的物体之间的长期共振:以喜马拉雅进步集团的木星不规则卫星为例

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摘要

The gravitational interaction between two objects on similar orbits can effect noticeable changes in the orbital evolution even if the ratio of their masses to that of the central body is vanishingly small. Christou (Icarus 174:215-229, 2005) observed an occasional resonant lock in the differential node between two members in the Himalia irregular satellite group of Jupiter in the N-body simulations (corresponding mass ratio ). Using a semianalytical approach, we have reproduced this phenomenon. We also demonstrate the existence of two additional types of resonance, involving angle differences and between two group members. These resonances cause secular oscillations in eccentricity and/or inclination on timescales 1 Myr. We locate these resonances in (a, e, i) space and analyse their topological structure. In subsequent N-body simulations, we confirm these three resonances and find a fourth one involving . In addition, we study the occurrence rates and the stability of the four resonances from a statistical perspective by integrating 1000 test particles for 100 Myr. We find 10 to 30 librators for each of the resonances. Particularly, the nodal resonance found by Christou is the most stable: 2 particles are observed to stay in libration for the entire integration.
机译:即使两个物体在质量上与中心物体的质量比逐渐减小,它们在相似轨道上的引力相互作用也会影响轨道演变。 Christou(Icarus 174:215-229,2005)在N体模拟(相应的质量比)中,观察到木星的喜马拉雅不规则卫星群中两个成员之间的微分节点之间偶尔出现共振锁定。使用半分析方法,我们再现了这种现象。我们还演示了存在两种其他类型的共振,包括角度差异和两个组成员之间的共振。这些共振会在1 Myr时标上引起偏心率和/或倾斜度的长期振荡。我们将这些共振定位在(a,e,i)空间中,并分析它们的拓扑结构。在随后的N体仿真中,我们确认了这三个共振,并找到了第四个共振。此外,我们通过统计1000个100 Myr的测试粒子,从统计角度研究了四个共振的发生率和稳定性。我们为每个共振找到10到30个解放者。特别是,克里斯图(Christou)发现的节点共振是最稳定的:观察到2个粒子在整个整合过程中都处于释放状态。

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