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Early formation of planetary building blocks inferred from Pb isotopic ages of chondrules

机译:从铅同位素的铅同位素年龄推断出行星构造块的早期形成

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摘要

The most abundant components of primitive meteorites (chondrites) are millimeter-sized glassy spherical chondrules formed by transient melting events in the solar protoplanetary disk. Using Pb-Pb dates of 22 individual chondrules, we show that primary production of chondrules in the early solar system was restricted to the first million years after the formation of the Sun and that these existing chondrules were recycled for the remaining lifetime of the protoplanetary disk. This finding is consistent with a primary chondrule formation episode during the early high-mass accretion phase of the protoplanetary disk that transitions into a longer period of chondrule reworking. An abundance of chondrules at early times provides the precursor material required to drive the efficient and rapid formation of planetary objects via chondrule accretion.
机译:原始陨石(球粒陨石)中最丰富的成分是由太阳原行星盘中的瞬时熔化事件形成的毫米大小的玻璃状球形球粒。使用22个单独的球藻的Pb-Pb日期,我们表明,早期太阳系中的球藻的主要生产仅限于太阳形成后的第一百万年,并且这些现有的球藻在原行星盘的剩余寿命中被回收利用。这一发现与原行星盘早期高质量增生阶段的初次软骨形成过程相一致,该阶段过渡到更长的软骨重新加工时期。在早期,大量的软骨提供了所需的前驱物质,这些物质通过软骨的积聚来驱动行星物体的高效快速形成。

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