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Spin crossover in ferropericlase and velocity heterogeneities in the lower mantle

机译:阿魏酸酯酶的自旋交叉和下地幔的速度非均质性

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摘要

Deciphering the origin of seismic velocity heterogeneities in the mantle is crucial to understanding internal structures and processes at work in the Earth. The spin crossover in iron in ferropericlase (Fp), the second most abundant phase in the lower mantle, introduces unfamiliar effects on seismic velocities. First-principles calculations indicate that anticorrelation between shear velocity (VS) and bulk sound velocity (Vφ) in the mantle, usually interpreted as compositional heterogeneity, can also be produced in homogeneous aggregates containing Fp. The spin crossover also suppresses thermally induced heterogeneity in longitudinal velocity (VP) at certain depths but not in VS. This effect is observed in tomography models at conditions where the spin crossover in Fp is expected in the lower mantle. In addition, the one-of-a-kind signature of this spin crossover in the RS/P (∂⁡>ln⁡VS/∂⁡>ln⁡VP) heterogeneity ratio might be a useful fingerprint to detect the presence of Fp in the lower mantle.
机译:了解地幔中地震速度异质性的起源对于了解地球内部工作的内部结构和过程至关重要。铁在下地幔中第二富集的阶段,铁铁蛋白石(Fp)中的自旋交叉对地震速度产生了不熟悉的影响。第一性原理计算表明,地幔中的剪切速度(VS)与体声速度(Vφ)之间的反相关关系,通常被解释为成分异质性,也可以在含有Fp的均质聚集体中产生。自旋交叉点还可以抑制某些深度的纵向速度(VP)中的热诱导异质性,但不能抑制VS中的热异质性。在预期在下地幔中Fp发生自旋交叉的条件下,在层析成像模型中观察到了这种效果。此外,RS / P(∂⁡> ln ⁡VS/∂⁡> ln ⁡VP)异质比中这种自旋交叉的唯一特征可能是检测下地幔中Fp的有用指纹。

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