论文标题

由不稳定性塑造的紧凑型超收入系统的体系结构

Architectures of Compact Super-Earth Systems Shaped by Instabilities

论文作者

Goldberg, Max, Batygin, Konstantin

论文摘要

jovian行星的紧凑型非共振系统是行星形成过程中最常见的结果。尽管表现出广泛的整体多样性,但这些行星还表现出质量,半径和轨道间距中系统内均匀性的戏剧性特征。尽管它们的形成和早期进化的细节是鲜为人知的,但由于行星 - 磁盘相互作用,乔维亚下行星有望从其出生的星云中出现为多共振链。在这种情况的背景下,如果通过结肠后的动力学不稳定性破坏共振,可以广泛复制观察到的系外行星系统的体系结构。在这里,我们生成一个谐音链的临时样本,并使用一套N体模拟来表明不仅可以重现观察到的周期比分布,而且所产生的碰撞还以与数据一致的方式改变了质量统一性。此外,我们证明了原始质量均匀性是由谐振链的样本和动态雕刻的样本所激发的,自然会在轨道周期内产生均匀性,类似于观察到的轨道。最后,我们发现几乎所有的碰撞都会导致完美的合并,但是某种形式的稳定后阻尼可能需要充分说明当今郡郡外部球队的动态寒冷体系结构。

Compact non-resonant systems of sub-Jovian planets are the most common outcome of the planet formation process. Despite exhibiting broad overall diversity, these planets also display dramatic signatures of intra-system uniformity in their masses, radii, and orbital spacings. Although the details of their formation and early evolution are poorly known, sub-Jovian planets are expected to emerge from their natal nebulae as multi-resonant chains, owing to planet-disk interactions. Within the context of this scenario, the architectures of observed exoplanet systems can be broadly replicated if resonances are disrupted through post-nebular dynamical instabilities. Here, we generate an ad-hoc sample of resonant chains and use a suite of N-body simulations to show that instabilities can not only reproduce the observed period ratio distribution, but that the resulting collisions also modify the mass uniformity in a way that is consistent with the data. Furthermore, we demonstrate that primordial mass uniformity, motivated by the sample of resonant chains coupled with dynamical sculpting, naturally generates uniformity in orbital period spacing similar to what is observed. Finally, we find that almost all collisions lead to perfect mergers, but some form of post-instability damping is likely needed to fully account for the present-day dynamically cold architectures of sub-Jovian exoplanets.

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