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The Origin of Pluto's Orbit: Implications for the Solar System Beyond Neptune

机译:冥王星轨道的起源:对海王星以外太阳系的影响

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摘要

The origin of the highly eccentric, inclined, and resonance-locked orbit of Pluto has long been a puzzle. A possible explanation has been proposed recently which suggests that these extraordinary orbital properties may be a natural consequence of the formation and early dynamical evolution of the outer solar system. A resonance capture mechanism is possible during the clearing of the residual planetesimal debris and the formation of the Oort Cloud of comets by planetesimal mass loss from the vicinity of the giant planets. If this mechanism were in operation during the early history of the planetary system, the entire region between the orbit of Neptune and approximately 50 AU would have been swept by first-order mean motion resonances. Thus, resonance capture could occur not only for Pluto, but quite generally for other trans-Neptunian small bodies. Some consequences of this evolution for the present-day dynamical structure of the trans-Neptunian region are (1) most of the objects in the region beyond Neptune and up to approximately 50 AU exist in very narrow zones located at orbital resonances with Neptune (particularly the 3:2 and the 2:1 resonances); and (2) these resonant objects would have significantly large eccentricities. The distribution of objects in the Kuiper Belt as predicted by this theory is presented here.
机译:冥王星的高度偏心,倾斜和共振锁定的轨道的起源长期以来一直令人困惑。最近提出了一种可能的解释,该解释表明这些非凡的轨道性质可能是外太阳系形成和早期动力演化的自然结果。在清除残留的小行星残骸和通过巨型行星附近的小行星质量损失形成彗星的奥尔特云期间,共振捕获机制是可能的。如果该机制在行星系统的早期历史中起作用,那么海王星轨道和大约50 AU之间的整个区域将被一阶平均运动共振所扫除。因此,共振捕获不仅会发生在冥王星上,而且还会发生在其他跨海王星小天体上。这种演变对当今海王星跨海域动力结构的某些后果是(1)海王星以外区域的大多数天体,并且高达约50 AU存在于与海王星轨道共振的非常狭窄的区域中(特别是3:2和2:1共振); (2)这些共振物体将具有很大的偏心率。本文介绍了该理论所预测的柯伊伯带中的物体分布。

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    Malhotra, Renu;

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  • 年度 1995
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