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Equation of State of SiC at Extreme Conditions: New Insight Into the Interior of Carbon-Rich Exoplanets

机译:极端条件下的SIC状态方程:新的洞察富含碳的外产内部内胞外的内部

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摘要

There is a direct relation between the composition of a host star and that of the planets orbiting around it. As such, the recent discovery of stars with unusual chemical composition, notably enriched in carbon instead of oxygen, supports the existence of exoplanets with a chemistry dominated by carbides instead of oxides. Accordingly, several studies have been recently conducted on the Si-C binary system at high pressure and temperature. Nonetheless, the properties of carbides at the pressure-temperature conditions of exoplanets interiors are still inadequately constrained, effectively hampering reliable planetary modeling. Here we present an in situ X-ray diffraction study of the Si-C binary system up to 200 GPa and 3,500 K, significantly enlarging the pressure range explored by previous experimental studies. The large amount of collected data allows us to properly investigate the phase diagram and to refine the Clapeyron slope of the transition line from the zinc blende to the rock salt structure. Furthermore, the pressure-volume-temperature equation of state is provided for the high-pressure phase, characterized by low compressibility and thermal expansion. Our results are used to model idealized C-rich exoplanets of end-members composition. In particular, we derived mass-radius relations and performed numerical simulations defining rheological parameters and initial conditions which lead to onset of convection in such SiC planets. We demonstrate that if restrained to silicate-rich mantle compositions, the interpretation of mass-radius relations may underestimate the interior diversity of exoplanets.
机译:宿主星的组成与行星的组成之间存在直接关系。因此,最近具有不寻常的化学成分的恒星,特别是富含碳代替氧的恒星,支持具有由碳化物代替氧化物的化学品的外产网的存在。因此,最近在高压和温度下对Si-C二元系统进行了几项研究。尽管如此,碳化物在外部内部层内膜的压力温度条件下的性质仍然不充分受到限制,有效地妨碍了可靠的行星建模。在这里,我们呈现了高达200GPa和3,500 k的Si-C二元系统的原位X射线衍射研究,显着扩大了先前实验研究探索的压力范围。大量收集的数据允许我们妥善研究相图,并将过渡线的碎片斜率从锌盐结构中完善。此外,为高压相提供状态的压力 - 体积温度方程,其特征在于,可压缩性低和热膨胀。我们的结果用于模拟最终成员组合物的理想化C-富含外产成分。特别地,我们衍生的质量半径关系并进行了定义流变参数和初始条件的数值模拟,这导致这种SiC行星中的对流开始。我们证明,如果抑制着富含硅酸盐的地幔组合物,则对质量半径关系的解释可能低估了外部的内部多样性。

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  • 作者单位

    Institut de Minéralogie de Physique des Matériaux et de Cosmochimie (IMPMC) Sorbonne Université UMR CNRS 7590 IRD Muséum National d'Histoire Naturelle Paris France;

    Institut de Minéralogie de Physique des Matériaux et de Cosmochimie (IMPMC) Sorbonne Université UMR CNRS 7590 IRD Muséum National d'Histoire Naturelle Paris France;

    Institut de Minéralogie de Physique des Matériaux et de Cosmochimie (IMPMC) Sorbonne Université UMR CNRS 7590 IRD Muséum National d'Histoire Naturelle Paris France;

    Department of Earth and Planetary Sciences Northwestern University Evanston IL USA;

    European Synchrotron Radiation Facility Grenoble France;

    Institute of Computational Sciences University of Zurich Zurich Switzerland;

    Institute of Geophysics Department of Earth Sciences ETH Zurich Zurich Switzerland;

    Institut de Minéralogie de Physique des Matériaux et de Cosmochimie (IMPMC) Sorbonne Université UMR CNRS 7590 IRD Muséum National d'Histoire Naturelle Paris France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 行星、卫星、彗星、流星、陨星;
  • 关键词

    composition; planets; recent;

    机译:组成;行星;最近;

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