论文标题

岩石线作为原始星云中难治性固体的摇篮

Rocklines as Cradles for Refractory Solids in the Protosolar Nebula

论文作者

Aguichine, Artyom, Mousis, Olivier, Devouard, Bertrand, Ronnet, Thomas

论文摘要

在我们的太阳系中,陆地行星和气象物质表现出各种散装组成。为了理解这种各种组成,通常通过热力学方法研究陨石的形成机制,该方法忽略了整个原始星云的运输过程。在这里,我们调查了原始星云的最内向区域中岩石线(冷冻材料的凝结/升华线)所起的作用,以计算粒子的组成作为时间的函数。为此,我们利用了一维积聚磁盘模型,该模型具有用于灰尘和蒸气运输,升华和再降解的耐火材料(铁岩,enstatite,enstatite,Fayalite,Fayalite,Fayalite,Forterite,Forterite,sulterte,硫化铁,金属铁和镍)的处方。我们发现,可以通过接近岩石线的形成来解释宇宙球形,软骨和软骨的大量组成的多样性,这表明固体物质集中在这些升华/凝结阵线的附近。尽管我们的模型在很大程度上取决于所考虑的物种的数量以及控制状态变化的热力学数据的可用性,但它表明岩石线在原始星云的最内向区域的大小体中起着重要作用。我们的模型对可能有助于汞大核心形成的机制提供了见解。

In our solar system, terrestrial planets and meteoritical matter exhibit various bulk compositions. To understand this variety of compositions, formation mechanisms of meteorites are usually investigated via a thermodynamic approach that neglect the processes of transport throughout the protosolar nebula. Here, we investigate the role played by rocklines (condensation/sublimation lines of refractory materials) in the innermost regions of the protosolar nebula to compute the composition of particles migrating inward the disk as a function of time. To do so, we utilize a one-dimensional accretion disk model with a prescription for dust and vapor transport, sublimation and recondensation of refractory materials (ferrosilite, enstatite, fayalite, forsterite, iron sulfide, metal iron and nickel). We find that the diversity of the bulk composition of cosmic spherules, chondrules and chondrites can be explained by their formation close to rocklines, suggesting that solid matter is concentrated in the vicinity of these sublimation/condensation fronts. Although our model relies a lot on the number of considered species and the availability of thermodynamic data governing state changes, it suggests that rocklines played a major role in the formation of small and large bodies in the innermost regions of the protosolar nebula. Our model gives insights on the mechanisms that might have contributed to the formation of Mercury's large core.

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