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首页> 外文期刊>The Astrophysical journal >CHAOS, ORDER, AND PERIODIC ORBITS IN 3:1 RESONANT PLANETARY DYNAMICS
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CHAOS, ORDER, AND PERIODIC ORBITS IN 3:1 RESONANT PLANETARY DYNAMICS

机译:3:1共振行星动力学中的混沌,阶跃和周期轨道

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摘要

This study addresses the long-term evolution of possible two-planet extrasolar systems that are initially trapped in 3:1 mean motion resonance. A planar general three-body problem model is used, and its resonant dynamics are examined by computing periodic orbits in a rotating frame, Poincare maps, and maps of dynamical stability. We computed the families of symmetric resonant periodic orbits that obey bifurcations, giving rise to families of asymmetric periodic orbits. The linear stability of such orbits has also been computed, and their relation to the long-term stability of their nearby phase-space domain has been studied. The maps of dynamical stability reveal a complicated structure in the phase space, where chaos and order coexist and alternate as the initial eccentricities or the phases of the planets change. The regular orbits are classified into various types according to the librating or rotating evolution of the resonant angles. Apsidal symmetric librations are common in the domain of resonant motion, but asymmetric ones are associated exclusively with the existence of asymmetric periodic orbits. Such a stable asymmetric configuration seems to correspond to the companions b and c of the 55 Cnc extrasolar system, which are trapped in the 3:1 mean motion resonance according to the study of McArthur et al. However, a recent study by Fischer et al. shows the existence of a new planet (the companion f) in the system, and that the planets b and c are not in mean motion resonance.
机译:这项研究解决了最初陷入3:1平均运动共振的可能的两行星外太阳系的长期演变。使用平面一般三体问题模型,并通过计算旋转框架中的周期性轨道,庞加莱图和动态稳定性图来检查其共振动力学。我们计算了服从分叉的对称共振周期轨道族,从而产生了非对称周期轨道族。还计算了此类轨道的线性稳定性,并研究了它们与附近相空间域的长期稳定性的关系。动态稳定性图揭示了相空间中的复杂结构,其中混乱和有序共存并随着初始偏心率或行星相位的变化而交替出现。根据共振角的释放或旋转演变,规则轨道被分为各种类型。在共振运动的领域中,对称对称解很常见,但非对称解则仅与不对称周期轨道的存在有关。这种稳定的不对称构型似乎对应于55 Cnc太阳系外星系的伴星b和c,根据McArthur等人的研究,它们陷入了3:1的平均运动共振中。但是,Fischer等人的最新研究。说明系统中存在一个新行星(伴星f),并且行星b和c不在平均运动共振中。

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