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CAPTURE OF IRREGULAR SATELLITES AT JUPITER

机译:跳跃者捕捉不规则的卫星

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The irregular satellites of outer planets are thought to have been captured from heliocentric orbits. The exact nature of the capture process, however, remains uncertain. We examine the possibility that irregular satellites were captured from the planetesimal disk during the early solar system instability when encounters between the outer planets occurred. Nesvorny et al. already showed that the irregular satellites of Saturn, Uranus, and Neptune were plausibly captured during planetary encounters. Here we find that the current instability models present favorable conditions for capture of irregular satellites at Jupiter as well, mainly because Jupiter undergoes a phase of close encounters with an ice giant. We show that the orbital distribution of bodies captured during planetary encounters provides a good match to the observed distribution of irregular satellites at Jupiter. The capture efficiency for each particle in the original transplanetary disk is found to be (1.3-3.6) × 10–8. This is roughly enough to explain the observed population of jovian irregular moons. We also confirm Nesvorny et al.'s results for the irregular satellites of Saturn, Uranus, and Neptune.
机译:人们认为外行星的不规则卫星是从日心轨道捕获的。但是,捕获过程的确切性质仍然不确定。我们研究了在外行星之间发生相遇的早期太阳系不稳定期间,从行星盘捕获不规则卫星的可能性。 Nesvorny等。已经表明土星,天王星和海王星的不规则卫星在行星相遇时被合理地捕获了。在这里,我们发现当前的不稳定性模型也为捕获木星上的不规则卫星提供了有利条件,这主要是因为木星经历了与一个冰巨人的近距离接触。我们表明,在行星相遇期间捕获的物体的轨道分布与在木星上观测到的不规则卫星的分布提供了很好的匹配。发现原始行星际盘中每个粒子的捕获效率为(1.3-3.6)×10-8。这大致足以解释所观察到的木星不规则卫星的数量。我们还证实了Nesvorny等人对土星,天王星和海王星不规则卫星的结果。

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