论文标题

均值共鸣中行星的APSidal对齐和反对准:磁盘驱动的迁移和偏心驱动

Apsidal Alignment and Anti-Alignment of Planets in Mean-Motion Resonance: Disk-Driven Migration and Eccentricity Driving

论文作者

Laune, JT, Rodet, Laetitia, Lai, Dong

论文摘要

可以将迁移到其出生盘的行星捕获到平均动作共振(MMR)中,其中行星的周期与整数比率相关。最近的观察结果表明,MMR中的行星可以在APSIDENID对准或反将。这些不同的配置如何出现。在本文中,我们研究了迁移行星的MMR捕获过程,重点介绍了被捕获的行星的Apsidal角度的特性。我们表明,MMR捕获的标准图片,即行星经历趋同的迁移并经历了由于行星盘相互作用而导致的偏心型阻尼,总是会导致捕获的行星的Apsidal抗调头。但是,当行星经历偏心率从光盘上驱动时,可以产生MMR中的APSidiD对准配置。在这种配置中,两个行星的共振角都在循环,但是“混合”共振角度库并捕获了名义共振位置附近的行星。在存在圆盘偏心驾驶的情况下,MMR捕获过程通常是复杂且不规则的,可以导致各种结果,包括APSidal对准和抗对齐,以及共振的破坏。我们建议,K2-19系统中的两个共振行星具有中等的偏心率和对齐的Apsides,过去经历了偏心率,过去从其出生的光盘中驱动了偏心。

Planets migrating in their natal discs can be captured into mean-motion resonance (MMR), in which the planets' periods are related by integer ratios. Recent observations indicate that planets in MMR can be either apsidally aligned or anti-aligned. How these different configurations arise is unclear. In this paper, we study the MMR capture process of migrating planets, focusing on the property of the apsidal angles of the captured planets. We show that the standard picture of MMR capture, in which the planets undergo convergent migration and experience eccentricity damping due to planet-disc interactions, always leads to apsidal anti-alignment of the captured planets. However, when the planets experience eccentricity driving from the disc, apsidally aligned configuration in MMR can be produced. In this configuration, both planets' resonance angles circulate, but a "mixed" resonance angle librates and traps the planets near the nominal resonance location. The MMR capture process in the presence of disc eccentricity driving is generally complex and irregular, and can lead to various outcomes, including apsidal alignment and anti-alignment, as well as the disruption of the resonance. We suggest that the two resonant planets in the K2-19 system, with their moderate eccentricities and aligned apsides, have experienced eccentricity driving from their natal disc in the past.

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