论文标题

三个系系系统的稳定性分析

Stability analysis of three exoplanet systems

论文作者

Marshall, J. P., Horner, J., Wittenmyer, R. A., Clark, J. T., Mengel, M. W.

论文摘要

已发布的多个星光系统的轨道解决方案不一定在与整个系统的寿命相当的时间尺度上动态稳定。因此,对所提出的系外行星系统的体系结构进行的动态测试是探测候选行星系统稳定性和可行性的关键工具,并有可能为这些行星的精制轨道参数指向途径。这样的研究甚至可以帮助识别此类系统中的其他伴侣。在这里,我们检查了三个行星系统的动力稳定性,即旋转HD 67087,HD 110014和HD 133131A。我们使用目标恒星的已发表的径向速度测量值来确定使用全身控制台为这些行星系统的最佳轨道溶液。然后,我们使用N体积分汞来测试一系列位于标称最佳拟合的3- $σ$以内的轨道溶液的稳定性,持续时间为100 MYR。根据N体积分的结果,我们使用贝叶斯软件包Astroperor推断出最佳拟合轨道参数。我们发现,HD 110014和HD 133131A都具有长期稳定的体系结构,这些体系结构位于标称最佳拟合的1- $σ$不确定性内,可与其以前确定的轨道溶液。但是,HD 67087系统在短时间内表现出强烈的不稳定性趋势。我们将这些结果与考虑角动量赤字标准的预测进行了比较,并发现其预测与我们的发现一致。

The orbital solutions of published multi-planet systems are not necessarily dynamically stable on timescales comparable to the lifetime of the system as a whole. For this reason, dynamical tests of the architectures of proposed exoplanetary systems are a critical tool to probe the stability and feasibility of the candidate planetary systems, with the potential to point the way towards refined orbital parameters of those planets. Such studies can even help in the identification of additional companions in such systems. Here we examine the dynamical stability of three planetary systems, orbiting HD 67087, HD 110014, and HD 133131A. We use the published radial velocity measurements of the target stars to determine the best-fit orbital solutions for these planetary systems using the Systemic console. We then employ the n-body integrator Mercury to test the stability of a range of orbital solutions lying within 3-$σ$ of the nominal best-fit for a duration of 100 Myr. From the results of the n-body integrations, we infer the best-fit orbital parameters using the Bayesian package Astroemperor. We find that both HD 110014 and HD 133131A have long-term stable architectures that lie within the 1-$σ$ uncertainties of the nominal best-fit to their previously determined orbital solutions. However, the HD 67087 system exhibits a strong tendency toward instability on short timescales. We compare these results to the predictions made from consideration of the angular momentum deficit criterion, and find that its predictions are consistent with our findings.

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