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首页> 外文期刊>The Astrophysical Journal. Letters >Plausible Compositions of the Seven TRAPPIST-1 Planets Using Long-term Dynamical Simulations
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Plausible Compositions of the Seven TRAPPIST-1 Planets Using Long-term Dynamical Simulations

机译:使用长期动态模拟的七个Trappist-1行星的可粘性组合物

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摘要

TRAPPIST-1 is a nearby ultra-cool dwarf that is host to a remarkable planetary system consisting of seven transiting planets. The orbital properties and radii of the planets have been well constrained, and recently, the masses of the inner six planets have been measured with additional ground-and space-based photometric observations. Large uncertainties in these mass measurements have prevented a robust analysis of the planetary compositions. Here, we perform many thousands of N-body dynamical simulations with planet properties perturbed from the observed values and identify those that are stable for millions of years. This allows us to identify self-consistent orbital solutions that can be used in future studies. From our range of dynamical masses, we find that most of the planets are consistent with an Earth-like composition, where TRAPPIST-1f is likely to have a volatile-rich envelope.
机译:Trappist-1是附近的超酷矮人,其是一个由七个过渡行星组成的显着行星系统。 行星的轨道性质和半径得到了很大约束,最近,已经用额外的地面和基于空间的光度观测测量了内六个行星的质量。 这些质量测量中的大不确定性阻止了行星组合物的稳健分析。 在这里,我们使用从观察到的值扰乱的行星特性进行数千个N体动态模拟,并识别稳定的数百万年。 这使我们可以识别可用于未来研究的自我一致的轨道解决方案。 从我们的动态肿块范围内,我们发现大多数行星都与类似地球的组合物一致,其中特拉夫斯特-1F可能具有富有挥发的信封。

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