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Exploring microstructures in lower mantle mineral assemblages with synchrotron x-rays

机译:用Synchrotron X射线探索较低地幔矿物组合中的微观结构

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Understanding dynamics across phase transformations and the spatial distribution of minerals in the lower mantle is crucial for a comprehensive model of the evolution of the Earth’s interior. Using the multigrain crystallography technique (MGC) with synchrotron x-rays at pressures of 30 GPa in a laser-heated diamond anvil cell to study the formation of bridgmanite [(Mg,Fe)SiO 3 ] and ferropericlase [(Mg,Fe)O], we report an interconnected network of a smaller grained ferropericlase, a configuration that has been implicated in slab stagnation and plume deflection in the upper part of the lower mantle. Furthermore, we isolated individual crystal orientations with grain-scale resolution, provide estimates on stress evolutions on the grain scale, and report {110} twinning in an iron-depleted bridgmanite, a mechanism that appears to aid stress relaxation during grain growth and likely contributes to the lack of any appreciable seismic anisotropy in the upper portion of the lower mantle.
机译:了解跨相变的动态和较低地幔中矿物质的空间分布对于地球内部演化的综合模型至关重要。 在激光加热的金刚石砧座细胞中使用多基因晶体技术(MGC)在30GPa的压力下,在激光加热的金刚石砧座中,研究Bridgmanite [(Mg,Fe)SiO 3]和铁铁酸碱[(Mg,Fe)O. [我们报告了较小的颗粒铁陶瓷酶的互连网络,该配置一直涉及在下部地幔的上部中的板坯停滞和羽流偏转。 此外,我们隔离具有晶粒尺度分辨率的单个晶体取向,提供了对晶粒量表的应力演进的估计,并在铁耗尽的桥商中报告{110}孪生,这种机制似乎有助于在谷物生长期间辅助应力松弛,并且可能有贡献 缺乏在下部地幔的上部缺乏任何可观的地震各向异性。

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