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地球的挥发性物质损耗趋势与一次形成月球的高能撞击相一致。

Earth's volatile depletion trend is consistent with a high-energy Moon-forming impact.

作者信息

Solomatova Natalia V, Caracas Razvan

机构信息

CNRS, Ecole Normale Supérieure de Lyon, Laboratoire de Géologie de Lyon LGLTPE UMR5276, Centre Blaise Pascal, 46 allée d'Italie, Lyon, 69364 France.

Université de Paris, Institut de Physique du Globe de Paris, CNRS, 1, rue Jussieu, Paris, 75005 France.

出版信息

Commun Earth Environ. 2023;4(1):38. doi: 10.1038/s43247-023-00694-9. Epub 2023 Feb 16.

Abstract

The abundance of volatile elements in the silicate Earth relative to primitive chondrites provides an important constraint on the thermochemical evolution of the planet. However, an overabundance of indium relative to elements with similar nebular condensation temperatures is a source of debate. Here we use ab initio molecular dynamics simulations to explore the vaporization behavior of indium from pyrolite melt at conditions of the early magma ocean just after the Moon-forming impact. We then compare this to the vaporization behavior of other minor elements. When considering the volatility of the elements from the magma ocean in the absence of the solar nebula gas, we find that there is no overabundance of indium. On the contrary, there is a slight deficit in the abundance of indium, which is consistent with its moderately siderophile nature. Thus, we propose that a high-energy Moon-forming impact may have had a more significant contribution to volatile depletion than previously believed.

摘要

相对于原始球粒陨石,硅酸盐地球中挥发性元素的丰度为地球的热化学演化提供了重要限制。然而,相对于具有相似星云凝聚温度的元素,铟的过量存在引发了争议。在此,我们使用从头算分子动力学模拟来探究在形成月球的撞击之后早期岩浆海洋条件下,铟从辉石岩熔体中的汽化行为。然后,我们将此与其他微量元素的汽化行为进行比较。在不考虑太阳星云气体的情况下,当考虑岩浆海洋中元素的挥发性时,我们发现铟不存在过量情况。相反,铟的丰度略有不足,这与其中等亲铁性本质相符。因此,我们认为形成月球的高能撞击对挥发性元素损耗的贡献可能比之前认为的更大。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f04e/11041689/dd4dd80a9d47/43247_2023_694_Fig1_HTML.jpg

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