首页> 外文期刊>The Astrophysical journal >DYNAMICAL SHAKE-UP OF PLANETARY SYSTEMS. II. N-BODY SIMULATIONS OF SOLAR SYSTEM TERRESTRIAL PLANET FORMATION INDUCED BY SECULAR RESONANCE SWEEPING
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DYNAMICAL SHAKE-UP OF PLANETARY SYSTEMS. II. N-BODY SIMULATIONS OF SOLAR SYSTEM TERRESTRIAL PLANET FORMATION INDUCED BY SECULAR RESONANCE SWEEPING

机译:行星系统的动态变化。二。次共振扫描诱发太阳系地面行星形成的N体模拟

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摘要

We revisit the "dynamical shake-up" model of solar system terrestrial planet formation, wherein the whole process is driven by the sweeping of Jupiter's secular resonance as the gas disk is removed. Using a large number of 0.5 Gyr long iV-body simulations, we investigate the different outcomes produced by such a scenario. We confirm that in contrast to existing models, secular resonance sweeping combined with tidal damping by the disk gas can reproduce the low eccentricities and inclinations and high radial mass concentration of the solar system terrestrial planets. At the same time, this also drives the final assemblage of the planets on a timescale of several tens of millions of years, an order of magnitude faster than inferred from previous numerical simulations which neglected these effects, but possibly in better agreement with timescales inferred from cosmochemical data. In addition, we find that significant delivery of water-rich material from the outer asteroid belt is a natural byproduct.
机译:我们重新审视了太阳系地球行星形成的“动态震动”模型,其中整个过程是由气盘被移走时木星的长期共振波及所致。使用大量0.5 Gyr长的iV身体模拟,我们研究了这种情况下产生的不同结果。我们证实,与现有模型相比,长期共振扫描和通过盘状气体进行的潮汐阻尼可以重现太阳系地面行星的低偏心率和倾角以及较高的径向质量集中度。同时,这也以几千万年的时间尺度驱动了行星的最终组装,比忽略了这些影响的以前的数值模拟所推断的快了一个数量级,但可能与从时间尺度推断的时标更好地吻合。宇宙化学数据。此外,我们发现从小行星外部带大量输送富水物质是自然的副产品。

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