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Shaping of the Inner Solar System by the Gas-Driven Migration of Jupiter

机译:木星的气体驱动迁移内太阳系的成型

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A persistent difficulty in terrestrial planet formation models is creating Mars analogs with the appropriate mass: Mars is typically an order of magnitude too large in simulations. Some recent work found that a small Mars can be created if the planetesimal disk from which the planets form has an outermost edge at 1.0 AU. However, that work and no previous work could produce a truncation of the planetesimal disk while also explaining the mass and structure of the asteroid belt. We show that gas-driven migration of Jupiter inward to 1.5 AU, before its subsequent outward migration, can truncate the disk and repopulate the asteroid belt. This dramatic migration history of Jupiter suggests that the dynamical behavior of our giant planets was more similar to that inferred for extra-solar planets than previously thought, as both have been characterised by substantial radial migration.
机译:陆地行星形成模型的持续困难正在创建具有适当质量的火星类似物:火星通常在模拟中的数量级过大。最近的一些工作发现,如果行星形式的行星磁盘在1.0 AU处具有最外边缘的行星磁盘,则可以创建一个小火星。然而,该工作和以前的工作可能产生平坦的圆盘的截短,同时还解释了小行星带的质量和结构。我们展示了木星向内的气体驱动迁移到1.5 Au,在随后的向外迁移之前,可以截断磁盘并汇编小行星带。这种Jupiter的戏剧性迁移历史表明,我们的巨大行星的动态行为与太阳能行星推断的更类似于以前认为,因为这两者都以大量的径向迁移为特征。

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