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Phase transitions in MgSiO3 post-perovskite in super-Earth mantles

机译:超接地地幔中mgsio3后钙钛矿的相转变

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The highest pressure form of the major Earth-forming mantle silicate is MgSiO3 post-perovskite (PPv). Understanding the fate of PPv at TPa pressures is the first step for understanding the mineralogy of super-Earths-type exoplanets, arguably the most interesting for their similarities with Earth. Modeling their internal structure requires knowledge of stable mineral phases, their properties under compression, and major element abundances. Several studies of PPv under extreme pressures support the notion that a sequence of pressure induced dissociation transitions produce the elementary oxides SiO2 and MgO as the ultimate aggregation form at similar to 3 TPa. However, none of these studies have addressed the problem of mantle composition, particularly major element abundances usually expressed in terms of three main variables, the Mg/Si and Fe/Si ratios and the Mg#, as in the Earth. Here we show that the critical compositional parameter, the Mg/Si ratio, whose value in the Earth's mantle is still debated, is a vital ingredient for modeling phase transitions and internal structure of super-Earth mantles. Specifically, we have identified new sequences of phase transformations, including new recombination reactions that depend decisively on this ratio. This is a new level of complexity that has not been previously addressed, but proves essential for modeling the nature and number of internal layers in these rocky mantles. (C) 2017 Elsevier B.V. All rights reserved.
机译:主要的形成型硅酸盐的最高压力形式是MgsiO3后钙钛矿(PPV)。了解TPA压力下PPV的命运是了解超地球型外产的矿物质的第一步,可以对其与地球的相似性最有趣。模拟其内部结构需要了解稳定的矿物阶段,它们在压缩下的性质和主要元素丰富。在极端压力下对PPV的几项研究支持该观念,即压力诱导的解离转变序列产生基本氧化物SiO 2和MgO,作为类似于3 TPA的最终聚集形式。然而,这些研究都没有解决了地幔组合物的问题,特别是通常表达的主要因素丰度,通常表达了三个主要变量,Mg / Si和Fe / Si比和Mg#,如地球。在这里,我们表明,临界成分参数,地球地幔的价值仍然讨论的临界成分参数是一种重要成分,用于模拟超接地幔的相变和内部结构。具体地,我们已确定相变的新序列,包括该决定性取决于该比率新重组反应。这是之前尚未解决的新级别复杂性,但证明是为了在这些岩石地幔中建模内部层的性质和数量来证明。 (c)2017年Elsevier B.V.保留所有权利。

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