论文标题

在存在倾斜二元同伴的情况下,迁移的巨型行星的演变

Evolution of a migrating giant planet in the presence of an inclined binary companion

论文作者

Roisin, Arnaud, Libert, Anne-Sophie

论文摘要

目标。越来越多的巨型行星发现围绕二元恒星的一个恒星组成部分移动,其中大多数具有非常多样的偏心率。这些发现提出了它们的形成和长期进化的问题,因为恒星伴侣可以强烈影响地球形成过程。我们的目的是研究宽二元伴侣对迁移在原月球磁盘中的单个巨型行星的演变的动态影响。方法。使用适用于二进制星系的符合性N体积分器,并通过从流体动力学模拟中出现的适当公式对磁盘引起的耗散进行建模,我们对行星进行了不同的轨道参数,对二进制伴侣进行了不同的轨道参数和不同的偏心度和倾斜度值。对于100 MYR的行星,行星的长期演变遵循了不同的动力学行为,采用四极度汉密尔顿方法揭示。结果。我们强调了行星在磁盘阶段,由于存在二进制伴侣而导致的散射事件或弹射的可能性。我们表明,当二进制伴侣恒星高度倾斜时,Lidov-Kozai共振状态中的捕获远非自动,因为在模拟结束时,系统中只有$ 11 \%的$最终锁定在共振中。然而,在存在高度倾斜的二元伴侣的情况下,所有行星的演变都受到利多夫 - 科泽共振的强烈影响,而非共振的演变则表现出与利多夫 - 科萨群岛周围循环相关的高偏心和倾斜度变化。

Aims. There are a growing number of giant planets discovered moving around one stellar component of a binary star, most of which have very diverse eccentricity. These discoveries raise the question of their formation and long-term evolution because the stellar companion can strongly affect the planet formation process. We aim to study the dynamical influence of a wide binary companion on the evolution of a single giant planet migrating in a protoplanetary disk. Methods. Using a symplectic n-body integrator adapted for binary star systems and modeling the dissipation due to the disk by appropriate formulae emerging from hydrodynamical simulations, we carried out 3600 simulations with different orbital parameters for the planet and different eccentricity and inclination values for the binary companion. The long-term evolution of the planets was followed for 100 Myr and the different dynamical behaviors were unveiled using a quadrupolar Hamiltonian approach. Results. We highlight the high probability for planets to experience, during the disk phase, a scattering event or an ejection due to the presence of a binary companion. We show that a capture in a Lidov-Kozai resonant state is far from automatic when the binary companion star is highly inclined, since only $11 \%$ of the systems end up locked in the resonance at the end of the simulations. Nevertheless, in the presence of a highly inclined binary companion, all the planetary evolutions are strongly influenced by the Lidov-Kozai resonance and the nonresonant evolutions present high eccentricity and inclination variations associated with circulation around the Lidov-Kozai islands.

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