论文标题

S-Star群集中行星系统的稳定性:太阳系类似物

Stability of planetary systems within the S-star cluster: the Solar system analogues

论文作者

Davari, N., Dolcetta, R. Capuzzo, Spurzem, R.

论文摘要

一个动态放松的密集簇,由大约40颗恒星(所谓的S-Star)组成,栖息在银河系的中央区域。他们的恒星围绕着$^*$巨大的对象旋转。为了理解在$^*$左右的特定环境中行星系统的动态演变,我们对S-Star群集中嵌入的行星系统进行了直接的N体模拟。在这项工作中,我们研究了行星与我们银河系中央大型黑洞的紧密相互作用后,行星围绕S明星绕的短期稳定性。我们发现行星系统与SMBH和附近的恒星经历了相遇。我们确定了行星系统与附近恒星相遇的频率和强度,因为分配给S-Star的系统的这些相遇大幅增加,更接近SMBH。 SMBH严重破坏了行星系统的稳定,尽管我们指出,行星系统的相互偏心和倾斜度的较小振荡可能是由行星 - 星空耦合以及两个行星之间的近乎谐振作用引起的。我们获得了幸存者行星比例的估计值($ \ sim 51 \%$),并发现从托管恒星中剥离的行星通常会在sgr a $^*$附近的近距离轨道上捕获。我们通知天然气巨头潮湿时,地球行星不会。我们估计SGR A $^*$耀斑可能是由于\ textit {stareless}巨型行星的潮汐破坏事件。

A dynamically relaxed dense cluster comprised of about 40 stars (the so-called S-stars) inhabits the central region of the Galaxy. Their stars revolve around the Sgr A$^*$ massive object. To understand the dynamical evolution of planetary systems in a particular environment like that around Sgr A$^*$, we carry out direct N--body simulations of planetary systems embedded in the S--star cluster. In this work, we investigate the short-term stability of the planets orbiting around S-stars after their close interactions with the central massive black hole of our galaxy. We find that planetary systems go through encounters with the SMBH and the nearby stars. We determine the frequency and the strength of planetary systems' encounters with the nearby stars as these encounters remarkably increase for systems assigned to S-stars closer to the SMBH. The SMBH severely destabilizes the planetary systems, though we noted that the small oscillations in the mutual eccentricity and inclination of the planetary system could be caused by the planet--planet coupling and the near-resonance effect between the two planets. We obtain estimates of the fraction of survivor planets ($\sim 51\%$), and find that planets stripped from their hosting star are generally captured on close orbits around Sgr A$^*$. We notify while gas giants are tidally disrupted, terrestrial planets do not. We estimate that Sgr A$^*$ flares can be due to the tidal disruption events of \textit{starless} giant planets.

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