论文标题

高多重系统中的不稳定性是否解释了近距离的白矮星行星的存在?

Do instabilities in high-multiplicity systems explain the existence of close-in white dwarf planets?

论文作者

Maldonado, R. F., Villaver, E., Mustill, A. J., Chávez, M., Bertone, E.

论文摘要

我们研究了近距离行星和相关现象的起源,这些现象绕着白色矮人(WDS)(WDS),这些现象源自距离恒星更遥远的轨道。我们使用75个多行星系统(四个,五个和六个行星)的行星体系结构检测到轨道序列恒星,以构建我们演变为WD阶段的750个动态类似的模板。我们对参数空间的探索虽然并不详尽,但受到观察的指导和限制,我们发现行星系统的多样性越高,越有可能具有动态不稳定性(丢失行星,轨道交叉和散射),最终将通过紧密的perias骨通道发送一个行星(或小物体)。实际上,不稳定的四到六个星际模拟的比例与具有大气污染的WD的25-50 $ \%$级分。此外,在WD冷却时间的第一个回旋中,在四到六个星际构型峰中的不稳定性发作,此后减少。行星多样性是一种自然的条件,可以解释与WDS的近距离行星的存在,而无需调用系统的特定体系结构或通过二进制伴侣或其生存的von Zeipel-lidov-kozai(ZLK)迁移的迁移。

We investigate the origin of close-in planets and related phenomena orbiting white dwarfs (WDs), which are thought to originate from orbits more distant from the star. We use the planetary architectures of the 75 multiple-planet systems (four, five and six planets) detected orbiting main-sequence stars to build 750 dynamically analogous templates that we evolve to the WD phase. Our exploration of parameter space, although not exhaustive, is guided and restricted by observations and we find that the higher the multiplicity of the planetary system, the more likely it is to have a dynamical instability (losing planets, orbit crossing and scattering), that eventually will send a planet (or small object) through a close periastron passage. Indeed, the fraction of unstable four- to six-planet simulations is comparable to the 25-50$\%$ fraction of WDs having atmospheric pollution. Additionally, the onset of instability in the four- to six-planet configurations peaks in the first Gyr of the WD cooling time, decreasing thereafter. Planetary multiplicity is a natural condition to explain the presence of close-in planets to WDs, without having to invoke the specific architectures of the system or their migration through the von Zeipel-Lidov-Kozai (ZLK) effects from binary companions or their survival through the common envelope phase.

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