论文标题

行星系统的出生环境

The birth environment of planetary systems

论文作者

Parker, Richard J.

论文摘要

恒星和行星形成是密不可分的。在原始恒星周围形成的原始圆盘的最早阶段,在恒星生命的前几百年中,观察到了这些碟片。行星形成的第一个阶段是在这些折叠术或原星盘中。阿尔玛(Alma)的最新观察表明,在只有一生的生命中,行星形成可能已经进行了。但是,恒星不会孤立地形成。它们是由于巨型分子云的崩溃和碎片形成的大小。这会导致年轻的恒星成群形成 - 通常称为“集群”。在这些恒星形成的区域中,恒星密度远高于太阳的位置,而银河盘中的其他恒星则占主载于外球星星。因此,恒星形成的环境有可能影响地球形成过程。在恒星形成区域中,与经过的恒星的相互作用以及来自非常巨大恒星的辐射场的光蒸发可以截断或破坏原球星盘。一旦形成,行星本身就可以通过动态接触来改变轨道 - 直接从恒星或通过二级效应(例如Kozai -Lidov机制)来改变。在这项贡献中,我回顾了可能影响星形区域中行星形成和稳定性的不同过程。我根据观察到的恒星形成区域观察到的典型恒星密度范围讨论每个过程。我结束了在太阳系的出生环境中讨论这些效果的情况。

Star and planet formation are inextricably linked. In the earliest phases of the collapse of a protostar a disc forms around the young star and such discs are observed for the first several million years of a star's life. It is within these circumstellar, or protoplanetary, discs that the first stages of planet formation occur. Recent observations from ALMA suggest that planet formation may already be well under way after only 1 Myr of a star's life. However, stars do not form in isolation; they form from the collapse and fragmentation of giant molecular clouds several parsecs in size. This results in young stars forming in groups - often referred to as 'clusters'. In these star-forming regions the stellar density is much higher than the location of the Sun, and other stars in the Galactic disc that host exoplanets. As such, the environment where stars form has the potential to influence the planet formation process. In star-forming regions, protoplanetary discs can be truncated or destroyed by interactions with passing stars, as well as photoevaporation from the radiation fields of very massive stars. Once formed, the planets themselves can have their orbits altered by dynamical encounters - either directly from passing stars or through secondary effects such as the Kozai-Lidov mechanism. In this contribution, I review the different processes that can affect planet formation and stability in star-forming regions. I discuss each process in light of the typical range of stellar densities observed for star-forming regions. I finish by discussing these effects in the context of theories for the birth environment of the Solar System.

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