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Prediction of novel stable compounds in the Mg-Si-O system under exoplanet pressures

机译:系外行星压力下Mg-Si-O系统中新型稳定化合物的预测

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摘要

The Mg-Si-O system is the major Earth and rocky planet-forming system. Here, through quantum variable-composition evolutionary structure explorations, we have discovered several unexpected stable binary and ternary compounds in the Mg-Si-O system. Besides the well-known SiO2 phases, we have found two extraordinary silicon oxides, SiO3 and SiO, which become stable at pressures above 0.51 TPa and 1.89 TPa, respectively. In the Mg-O system, we have found one new compound, MgO3, which becomes stable at 0.89 TPa. We find that not only the (MgO)x·(SiO2)y compounds, but also two (MgO3)x·(SiO3)y compounds, MgSi3O12 and MgSiO6, have stability fields above 2.41 TPa and 2.95 TPa, respectively. The highly oxidized MgSi3O12 can form in deep mantles of mega-Earths with masses above 20 M⊕ (M:Earth’s mass). Furthermore, the dissociation pathways of pPv-MgSiO3 are also clarified, and found to be different at low and high temperatures. The low-temperature pathway is MgSiO3 ⇒ Mg2SiO4 + MgSi2O5 ⇒ SiO2 + Mg2SiO4 ⇒ MgO + SiO2, while the high-temperature pathway is MgSiO3 ⇒ Mg2SiO4 + MgSi2O5 ⇒ MgO + MgSi2O5 ⇒ MgO + SiO2. Present results are relevant for models of the internal structure of giant exoplanets, and for understanding the high-pressure behavior of materials.
机译:Mg-Si-O系统是主要的地球和岩石行星形成系统。在这里,通过量子可变组成的演化结构探索,我们发现了Mg-Si-O系统中一些出乎意料的稳定二元和三元化合物。除了众所周知的SiO2相,我们还发现了两种非凡的氧化硅SiO3和SiO,它们分别在高于0.51 TPa和1.89 TPa的压力下变得稳定。在Mg-O系统中,我们发现了一种新化合物MgO3,其稳定在0.89 TPa处。我们发现不仅(MgO)x·(SiO2)y化合物,而且两种(MgO3)x·(SiO3)y化合物MgSi3O12和MgSiO6的稳定性场分别高于2.41 TPa和2.95 TPa。高度氧化的MgSi3O12可以在质量大于20M⊕(M :地球质量)的巨型地球深地幔中形成。此外,pPv-MgSiO 3 的解离途径也得到了阐明,并且在低温和高温下均存在差异。低温途径是MgSiO 3 ⇒Mg 2 SiO 4 + MgSi 2 O 5 < / sub>⇒SiO 2 + Mg 2 SiO 4 ⇒MgO + SiO 2 途径是MgSiO 3 ⇒Mg 2 SiO 4 + MgSi 2 O 5 ⇒ MgO + MgSi 2 O 5 ⇒MgO + SiO 2 。目前的结果与巨系外行星内部结构的模型有关,也与理解材料的高压行为有关。

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