首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Two-stage spin transition of iron in FeAl-bearing phase D at lower mantle
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Two-stage spin transition of iron in FeAl-bearing phase D at lower mantle

机译:下地幔含铁FeAl相D的铁的两阶段自旋转变

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Hydrous magnesium silicate phase D plays a key role in the transport of water from the upper to the lower mantle via subducted slabs. Here we report pressure dependence hyperfine and lattice parameters of FeAl-bearing phase D up to megabar pressures using synchrotron nuclear forward scattering and X-ray diffraction in a diamond anvil cell at room temperature. FeAl-bearing phase D undergoes a two-stage high-spin to low-spin transition of iron for Fe2+ at 37-41GPa and for Fe3+ at 64-68GPa. These transitions are accompanied by an increase in density and a significant softening in the bulk modulus and bulk velocity at their respective pressure range. The occurrence of the dense low-spin FeAl-bearing phase D with relatively high velocity anisotropies in deep-subducted slabs can potentially contribute to small-scale seismic heterogeneities in the middle-lower mantle beneath the circum-Pacific area.
机译:含水硅酸镁相D在水通过俯冲板从上地幔到下地幔的输送中起关键作用。在这里,我们报告了在室温下在金刚石砧座中使用同步加速器核前向散射和X射线衍射,分析了FeAl轴承相D的压力依赖性超精细和晶格参数,直至兆巴压力。含FeAl的相D在37-41GPa时对Fe2 +和在64-68GPa时对Fe3 +经历两阶段的高铁自旋转变。这些转变伴随着密度的增加以及在各自压力范围内的体积模量和体积速度的显着软化。深俯冲板片中具有较高各向异性的致密低自旋FeAl基相D的出现,可能会导致环太平洋地区下中下地幔的小规模地震非均质性。

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