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Timing of the formation and migration of giant planets as constrained by CB chondrites

机译:受CB球粒陨石限制的巨型行星形成和迁移的时间

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摘要

The presence, formation, and migration of giant planets fundamentally shape planetary systems. However, the timing of the formation and migration of giant planets in our solar system remains largely unconstrained. Simulating planetary accretion, we find that giant planet migration produces a relatively short-lived spike in impact velocities lasting ~0.5 My. These high-impact velocities are required to vaporize a significant fraction of Fe,Ni metal and silicates and produce the CB (Bencubbin-like) metal-rich carbonaceous chondrites, a unique class of meteorites that were created in an impact vapor-melt plume ~5 My after the first solar system solids. This indicates that the region where the CB chondrites formed was dynamically excited at this early time by the direct interference of the giant planets. Furthermore, this suggests that the formation of the giant planet cores was protracted and the solar nebula persisted until ~5 My.
机译:巨型行星的存在,形成和迁移从根本上影响着行星系统。但是,在我们的太阳系中形成和迁移巨型行星的时间基本上不受限制。模拟行星的增生,我们发现巨大的行星迁移会产生相对短暂的冲击速度峰值,持续〜0.5 My。需要这些高冲击速度才能蒸发掉大量的Fe,Ni金属和硅酸盐,并生产出富含CB(类似Bencubbin)金属的碳质球粒陨石,这是在冲击蒸汽熔体羽流中形成的一类独特的陨石〜 5我的第一个太阳系固体之后。这表明形成CB球粒陨石的区域在此早期由于巨行星的直接干涉而被动态激发。此外,这表明巨行星芯的形成是持久的,太阳星云一直持续到〜5 My。

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