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首页> 外文期刊>Astronomy and astrophysics >From stellar to planetary composition: Galactic chemical evolution of Mg/Si mineralogical ratio
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From stellar to planetary composition: Galactic chemical evolution of Mg/Si mineralogical ratio

机译:从恒星到行星组成:Mg / Si矿物学比的银河化学演化

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摘要

Aims. The main goal of this work is to study element ratios that are important for the formation of planets of different masses. Methods. We study potential correlations between the existence of planetary companions and the relative elemental abundances of their host stars. We use a large sample of FGK-type dwarf stars for which precise Mg, Si, and Fe abundances have been derived using HARPS high-resolution and high-quality data. Results. A first analysis of the data suggests that low-mass planet host stars show higher [Mg/Si] ratios, while giant planet hosts present [Mg/Si] that is lower than field stars. However, we found that the [Mg/Si] ratio significantly depends on metallicity through Galactic chemical evolution. After removing the Galactic evolution trend only the difference in the [Mg/Si] elemental ratio between low-mass planet hosts and non-hosts was present in a significant way. These results suggest that low-mass planets are more prevalent around stars with high [Mg/Si]. Conclusions. Our results demonstrate the importance of Galactic chemical evolution and indicate that it may play an important role in the planetary internal structure and composition. The results also show that abundance ratios may be a very relevant issue for our understanding of planet formation and evolution.
机译:目的这项工作的主要目的是研究对于不同质量行星的形成至关重要的元素比率。方法。我们研究了行星伴星的存在与其所在恒星的相对元素丰度之间的潜在相关性。我们使用大量FGK型矮星样本,这些样本已使用HARPS高分辨率和高质量数据得出了精确的Mg,Si和Fe丰度。结果。对数据的首次分析表明,低质量行星主恒星显示出较高的[Mg / Si]比,而巨型行星主存在[Mg / Si],低于野外恒星。但是,我们发现[Mg / Si]比在很大程度上取决于银河化学演化过程中的金属性。在消除了银河系的演化趋势后,低质量行星主体与非主体之间的[Mg / Si]元素比差异就很明显。这些结果表明,低质量的行星在[Mg / Si]高的恒星周围更为普遍。结论。我们的结果证明了银河化学演化的重要性,并表明它可能在行星内部结构和组成中起重要作用。结果还表明,丰度比可能是我们了解行星形成和演化的一个非常相关的问题。

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