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Chaotic capture of Jupiter's Trojan asteroids in the early Solar System

机译:太阳系早期对木星木马小行星的混沌捕获

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摘要

Jupiter's Trojans are asteroids that follow essentially the same orbit as Jupiter, but lead or trail the planet by an angular distance of similar to 60 degrees (co-orbital motion). They are hypothesized to be planetesimals that formed near Jupiter and were captured onto their current orbits while Jupiter was growing(1,2), possibly with the help of gas drag(3-6) and/or collisions(7). This idea, however, cannot explain some basic properties of the Trojan population, in particular its broad orbital inclination distribution, which ranges up to similar to 40 degrees ( ref. 8). Here we show that the Trojans could have formed in more distant regions and been subsequently captured into co-orbital motion with Jupiter during the time when the giant planets migrated by removing neighbouring planetesimals(9-12). The capture was possible during a short period of time, just after Jupiter and Saturn crossed their mutual 1: 2 resonance, when the dynamics of the Trojan region were completely chaotic. Our simulations of this process satisfactorily reproduce the orbital distribution of the Trojans and their total mass.
机译:木星的特洛伊木马是沿着与木星基本相同的轨道运行的小行星,但以大约60度的角距(同轨道运动)领先或落后于行星。假设它们是在木星附近形成的小行星,并在木星生长时被捕获到其当前轨道上(1,2),可能是借助气体阻力(3-6)和/或碰撞(7)。但是,这种想法无法解释特洛伊木马种群的一些基本特性,特别是其广泛的轨道倾角分布,其范围高达40度左右(参考文献8)。在这里,我们显示特洛伊木马可能在更远的区域形成,随后在巨型行星通过移走邻近的小行星而迁移时被捕获到与木星的同轨道运动中(9-12)。在木星和土星通过相互的1:2共振之后,特洛伊木马区域的动态完全混乱之后,就可以在很短的时间内捕获它们。我们对此过程的仿真令人满意地再现了特洛伊木马的轨道分布及其总质量。

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