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Stellar encounters as the origin of distant solar system objects in highly eccentric orbits

机译:恒星遭遇是高偏心轨道中遥远太阳系天体的起源

摘要

The discovery of Sedna places new constraints on the origin and evolution of our solar system. Here we investigate the possibility that a close encounter with another star produced the observed edge of the Kuiper belt, at roughly 50 AU, and the highly elliptical orbit of Sedna. We show that a passing star probably scattered Sedna from the Kuiper Belt into its observed orbit. The likelihood that a planet at 60-80 AU can be scattered into Sedna's orbit is roughly 50%; this estimate depends critically on the geometry of the flyby. Even more interesting, though, is the roughly 10% chance that Sedna was captured from the outer disk of the passing star. Most captures have very high inclination orbits; detection of these objects would confirm the presence of extrasolar planets in our own Solar System.
机译:塞德纳(Sedna)的发现对我们太阳系的起源和演化提出了新的限制。在这里,我们研究了与另一颗恒星的近距离相遇产生了大约50 AU的柯伊伯带观测边缘以及塞德纳的高度椭圆轨道的可能性。我们表明,一颗经过的恒星可能会将塞德纳从柯伊伯带中散射到其观测轨道上。 60-80 AU的行星可以散布到Sedna轨道中的可能性大约为50%;该估计值主要取决于飞越的几何形状。不过,更有趣的是,塞德纳被从恒星外盘捕获的几率约为10%。大多数捕获物具有很高的倾角轨道。对这些物体的检测将确认我们太阳系中存在太阳系外行星。

著录项

  • 作者

    Kenyon S J; Bromley B C;

  • 作者单位
  • 年度 2004
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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