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Seismic anisotropy in the Earth's innermost inner core: Testing structural models against mineral physics predictions

机译:地球最内层核心的地震各向异性:针对矿物物理预测测试结构模型

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摘要

Using an updated data set of ballistic PKIKP travel time data at antipodal distances, we test different models of anisotropy in the Earth's innermost inner core (IMIC) and obtain significantly better fits for a fast axis aligned with Earth's rotation axis, rather than a quasi-equatorial direction, as proposed recently. Reviewing recent results on the single crystal structure and elasticity of iron at core conditions, we find that an hcp structure with the fast c axis parallel to Earth's rotation is more likely but a body-centered cubic structure with the [111] axis aligned in that direction results in very similar predictions for seismic anisotropy. These models are therefore not distinguishable based on current seismological data. In addition, to match the seismological observations, the inferred strength of anisotropy in the IMIC (6-7%) implies almost perfect alignment of iron crystals, an intriguing, albeit unlikely situation, especially in the presence of heterogeneity, which calls for further studies.
机译:我们使用对角距离上的弹道PKIKP传播时间数据的更新数据集,测试了地球最内层核心(IMIC)的各向异性模型,并获得了与地球旋转​​轴对准的快轴而不是准轴的明显更好的拟合度。最近提出的赤道方向。回顾最近关于铁在核心条件下的单晶结构和弹性的结果,我们发现具有快速c轴与地球自转平行的hcp结构的可能性更大,但是具有以[111]轴对齐的体心立方结构的可能性更大方向对地震各向异性的预测非常相似。因此,基于当前地震数据无法区分这些模型。此外,为了与地震观测结果相吻合,推断出的IMIC各向异性强度(6-7%)意味着铁晶体几乎完全对准,这是一个引人入胜的,尽管不太可能的情况,尤其是在存在异质性的情况下,这需要进一步研究。

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