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首页> 外文期刊>Philosophical transactions of the Royal Society. Mathematical, physical, and engineering sciences >Scenarios of giant planet formation and evolution and their impact on the formation of habitable terrestrial planets
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Scenarios of giant planet formation and evolution and their impact on the formation of habitable terrestrial planets

机译:巨型行星形成和演化的场景及其对宜居地球行星形成的影响

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摘要

In our Solar System, there is a clear divide between the terrestrial and giant planets. These two categories of planets formed and evolved separately, almost in isolation from each other. This was possible because Jupiter avoided migrating into the inner Solar System, most probably due to the presence of Saturn, and never acquired a large-eccentricity orbit, even during the phase of orbital instability that the giant planets most likely experienced. Thus, the Earth formed on a time scale of several tens of millions of years, by collision of Moon- to Mars-mass planetary embryos, in a gas-free and volatile-depleted environment. We do not expect, however, that this clear cleavage between the giant and terrestrial planets is generic. In many extrasolar planetary systems discovered to date, the giant planets migrated into the vicinity of the parent star and/or acquired eccentric orbits. In this way, the evolution and destiny of the giant and terrestrial planets become intimately linked. This paper discusses several evolutionary patterns for the giant planets, with an emphasis on the consequences for the formation and survival of habitable terrestrial planets. The conclusion is that we should not expect Earth-like planets to be typical in terms of physical and orbital properties and accretion history. Most habitable worlds are probably different, exotic worlds.
机译:在我们的太阳系中,地球和巨型行星之间存在明显的鸿沟。这两类行星分别彼此独立地形成和发展。之所以可能这样做,是因为木星避免了迁移到内部太阳系中(很可能是由于土星的存在),并且即使在巨行星最可能经历的轨道不稳定阶段也从未获得大偏心率轨道。因此,地球是在无气体且贫乏的环境中,通过月球至火星质量的行星碰撞而形成的,形成了几千万年的时间尺度。但是,我们并不认为巨型行星和陆地行星之间的这种明显分裂是普遍的。在迄今为止发现的许多太阳系外行星系统中,巨型行星迁移到了母恒星和/或获得的偏心轨道附近。这样,巨型行星和陆地行星的进化与命运紧密相连。本文讨论了巨型行星的几种进化模式,重点是对可居住地球行星的形成和生存的影响。结论是,就物理和轨道特性以及吸积历史而言,我们不应期望类地行星成为典型。最宜居的世界可能是不同的异国世界。

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