English

From stellar to planetary composition: Galactic chemical evolution of Mg/Si mineralogical ratio

Earth and Planetary Astrophysics 2015-09-09 v1 Astrophysics of Galaxies Solar and Stellar Astrophysics

Abstract

The main goal of this work is to study element ratios that are important for the formation of planets of different masses. 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. 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 suggests that low-mass planets are more prevalent around stars with high [Mg/Si]. 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.

Keywords

Cite

@article{arxiv.1508.04970,
  title  = {From stellar to planetary composition: Galactic chemical evolution of Mg/Si mineralogical ratio},
  author = {V. Adibekyan and N. C. Santos and P. Figueira and C. Dorn and S. G. Sousa and E. Delgado-Mena and G. Israelian and A. A. Hakobyan and C. Mordasini},
  journal= {arXiv preprint arXiv:1508.04970},
  year   = {2015}
}

Comments

Accepted by A&A (Letter to the Editor)