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Electronic spin transition of iron in the Earth’s lower mantle

机译:地球下地幔中铁的电子自旋跃迁

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摘要

Silicate perovskite and ferropericlase are thought to be the primary constituents of the lower mantle, whereas silicate post-perovskite is more likely found in the lowermost mantle. Because these minerals contain certain amounts of iron, their properties and, consequently, those of the deep mantle, are strongly influenced by iron’s spin and valence states. A high-spin to low-spin crossover in ferropericlase has been observed to occur in the middle part of the lower-mantle conditions. Recent Mössbauer results consistently show that Fe2 + predominantly exhibits extremely high quadrupole splittings in perovskite and post-perovskite, whereas a high-spin to low-spin transition of Fe3 + in the octahedral site occurs at high pressures. These results provide a new venue for discussion of the effects of the spin and valence states of iron on the physical and chemical properties of the lower mantle.
机译:硅酸盐钙钛矿和铁硅藻土酶被认为是下地幔的主要成分,而钙钛矿后钙硅酸盐则更可能出现在下地幔中。由于这些矿物质含有一定量的铁,因此其性质以及深部地幔的性质会受到铁的自旋和价态的强烈影响。观察到在下地幔条件的中部发生了铁硅藻糖酶的高旋向低旋交叉。最新的Mössbauer结果一致表明,Fe2 + 在钙钛矿和后钙钛矿中主要表现出极高的四极分裂,而Fe3 + 的高自旋转变为低自旋转变发生在高压下的八面体中。这些结果为讨论铁的自旋和价态对下地幔的物理和化学性质的影响提供了一个新的场所。

著录项

  • 来源
    《Hyperfine Interactions》 |2012年第3期|p.81-88|共8页
  • 作者

    Jung-Fu Lin; Andrea Wheat;

  • 作者单位

    Department of Geological Sciences, Jackson School of Geosciences, The University of Texas at Austin, 1 University Station, Austin, TX, 78712, USA;

    Department of Geological Sciences, Jackson School of Geosciences, The University of Texas at Austin, 1 University Station, Austin, TX, 78712, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Spin transition; Lower mantle; Mössbauer spectroscopy; Diamond anvil cell;

    机译:自旋转变;下地幔;穆斯堡尔光谱;金刚石砧室;

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