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On the evolution of mean motion resonances through stochastic forcing: fast and slow libration modes and the origin of HD?128311

机译:关于通过随机强迫产生的平均运动共振的演变:快速和慢速解放模式以及HD?128311的起源

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Aims. We clarify the response of extrasolar planetary systems in a 2:1 mean motion commensurability with masses ranging from the super Jovian range to the terrestrial range to stochastic forcing that could result from protoplanetary disk turbulence. The behaviour of the different libration modes for a wide range of system parameters and stochastic forcing magnitudes is investigated. The growth of libration amplitudes is parameterized as a function of the relevant physical parameters. The results are applied to provide an explanation of the configuration of the HD128311 system. Methods. We first develop an analytic model from first principles without making the assumption that both eccentricities are small. We also perform numerical N-body simulations with additional stochastic forcing terms to represent the effects of putative disk turbulence. Results. We isolate two distinct libration modes for the resonant angles. These react to stochastic forcing in a different way and become coupled when the libration amplitudes are large. Systems are quickly destabilized by large magnitudes of stochastic forcing but some stability is imparted should systems undergo a net orbital migration. The slow mode, which mostly corresponds to motion of the angle between the apsidal lines of the two planets, is converted to circulation more readily than the fast mode which is associated with oscillations of the semi-major axes. This mode is also vulnerable to the attainment of small eccentricities which causes oscillations between periods of libration and circulation. Conclusions. Stochastic forcing due to disk turbulence may have played a role in shaping the configurations of observed systems in mean motion resonance. It naturally provides a mechanism for accounting for the HD128311 system for which the fast mode librates and the slow mode is apparently near the borderline between libration and circulation. Key words: turbulence - celestial mechanics - planetary systems: formation - planetary systems: protoplanetary disks - methods: analytical - methods: N-body simulations
机译:目的我们用2:1的平均运动可比性阐明了太阳系外行星系统的响应,其质量范围从超级Jovian范围到地面范围,再到原行星盘湍流可能导致的随机强迫。对于广泛的系统参数和随机强迫大小,研究了不同解放模式的行为。根据相关的物理参数对释放幅度的增长进行参数化。结果将用于提供HD128311系统配置的说明。方法。我们首先根据第一个原理开发了一个分析模型,而没有假设两个偏心率都很小。我们还使用附加的随机强迫项来执行N体数值模拟,以表示推定的盘湍流的影响。结果。我们分离出两个不同的共振角释放模式。它们以不同的方式对随机强迫作出反应,并在解放幅度较大时耦合。大量的随机强迫很快使系统不稳定,但是如果系统经历净轨道迁移,则会赋予一定的稳定性。与与半长轴的振动相关的快速模式相比,慢速模式主要对应于两个行星的两极线之间的角度运动,更容易转换为循环。这种模式也容易受到小的偏心率的影响,这会导致在释放和循环之间产生振荡。结论。由于盘的湍流引起的随机强迫可能在平均运动共振中对观察到的系统的构形起了作用。自然地,它提供了一种机制来解决HD128311系统的问题,对于该机制,快速模式可以释放,而慢速模式显然接近释放和循环之间的边界。关键词:湍流-天体力学-行星系统:形成-行星系统:原行星盘-方法:分析-方法:N体模拟

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