论文标题

近距离遭遇:恒星飞行的形状形状形成行星圆盘

Close encounters: How stellar flybys shape planet-forming discs

论文作者

Cuello, Nicolás, Ménard, François, Price, Daniel J.

论文摘要

我们根据过去30年中有关该主题的已发表文献来回顾恒星蝇和相遇在围绕年轻恒星塑造行星圆盘的作用。由于大多数恒星$ \ \ leq〜2 $ MYR Old Harbour Protoplanetary Discs,因此潮汐扰动会影响行星形成。首先,我们检查了经历飞鸟或相遇的概率:在典型的恒星形成环境中,超过50 \%的具有行星形成圆盘的恒星应在1000 au中经历近距离恒星遭遇或飞行。其次,我们详细介绍了飞鸟对行星形成盘的动态影响。进展,抛物线,盘式穿透蝇质是最具破坏性的。尤其是放牧和穿透蝇猫导致次要捕获圆盘材料,形成了相对于初级盘的高度未匹配的限制性盘。一张或两张光盘可能会发生极端积聚和爆发事件,类似于在Fu Orionis型恒星中观察到的事件。扭曲和圆盘是逆行蝇by的独特签名。第三,我们回顾了一些最近观察到的恒星系统,该系统带有圆盘,其中怀疑是恒星的flyby或遭遇 - 包括UX Tau,RW AUR,为205,Z CMA和FU ORI。最后,我们讨论了恒星飞质对行星形成和系外行星人口统计的含义,包括在太阳系中可能在跨纳普尼亚物体的轨道和太阳的倾斜轨道中的flyby烙印。

We review the role of stellar flybys and encounters in shaping planet-forming discs around young stars, based on the published literature on this topic in the last 30 years. Since most stars $\leq~2$ Myr old harbour protoplanetary discs, tidal perturbations affect planet formation. First, we examine the probability of experiencing flybys or encounters: More than 50\% of stars with planet-forming discs in a typical star forming environment should experience a close stellar encounter or flyby within 1000 au. Second, we detail the dynamical effects of flybys on planet-forming discs. Prograde, parabolic, disc-penetrating flybys are the most destructive. Grazing and penetrating flybys in particular lead to the capture of disc material by the secondary to form a highly misaligned circumsecondary disc with respect to the disc around the primary. One or both discs may undergo extreme accretion and outburst events, similar to the ones observed in FU Orionis-type stars. Warps and broken discs are distinct signatures of retrograde flybys. Third, we review some recently observed stellar systems with discs where a stellar flyby or an encounter is suspected -- including UX Tau, RW Aur, AS 205, Z CMa, and FU Ori. Finally, we discuss the implications of stellar flybys for planet formation and exoplanet demographics, including possible imprints of a flyby in the Solar System in the orbits of trans-Neptunian objects and the Sun's obliquity.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源