论文标题

互动恒星环境中的行星体系结构

Planetary Architectures in Interacting Stellar Environments

论文作者

Wang, Yi-Han, Perna, Rosalba, Leigh, Nathan W. C.

论文摘要

超球星系的发现挑战了行星形成的一些理论,这些理论假设宿主恒星及其行星的不受干扰的演变。但是,在星团中,在行星系统的生命周期中,与Flyby恒星和二进制的相互作用可能相对普遍。在这里,通过闯入者(恒星和二进制文件)扰动的星空行星系统的高分辨率$ n $体体模拟,我们探索了由于相遇而引起的对行星系统的重新配置。特别是,通过集中在强散射状态的探索中,我们得出了互动的比例,从而导致行星弹出,行星转移和碰撞,这是Interloper star/二进制的碰撞,这是环境特征(密度,速度分散体)的函数,以及飞行量的不同质量。我们发现,二元闯入者可以显着增加行星弹出和碰撞的横截面,而它们仅稍微更改行星转移的横截面。因此,在具有较高二元分数的环境中,浮动行星有望相对普遍,而在二元分数低的环境中,行星射血和转移的横截面是可比的,两颗星之间的行星交流速率将与自由浮动行星的生产率相当。

The discovery of Exoplanetary Systems has challenged some of the theories of planet formation, which assume unperturbed evolution of the host star and its planets. However, in star clusters the interactions with flyby stars and binaries may be relatively common during the lifetime of a planetary system. Here, via high-resolution $N$-body simulations of star-planet systems perturbed by interlopers (stars and binaries), we explore the reconfiguration to the planetary system due to the encounters. In particular, via an exploration focused on the strong scattering regime, we derive the fraction of encounters which result in planet ejections, planet transfers and collisions by the interloper star/binary, as a function of the characteristics of the environment (density, velocity dispersion), and for different masses of the flyby star/binary. We find that binary interlopers can significantly increase the cross section of planet ejections and collisions, while they only slightly change the cross section for planet transfers. Therefore, in environments with high binary fractions, floating planets are expected to be relatively common, while in environments with low binary fractions, where the cross sections of planet ejection and transfer are comparable, the rate of planet exchanges between two stars will be comparable to the rate of production of free-floating planets.

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