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铁的高压弹性和地核各向异性。

High-Pressure Elasticity of Iron and Anisotropy of Earth's Inner Core.

出版信息

Science. 1995 Mar 31;267(5206):1972-5. doi: 10.1126/science.267.5206.1972.

Abstract

A first principles theoretical approach shows that, at the density of the inner core, both hexagonal [hexagonal close-packed (hcp)] and cubic [face-centered-cubic (fcc)] phases of iron are substantially elastically anisotropic. A forward model of the inner core based on the predicted elastic constants and the assumption that the inner core consists of a nearly perfectly aligned aggregate of hcp crystals shows good agreement with seismic travel time anomalies that have been attributed to inner core anisotropy. A cylindrically averaged aggregate of fcc crystals disagrees with the seismic observations.

摘要

从第一性原理理论的角度来看,在铁的内核对密度下,六方(密排六方)和立方(面心立方)相在很大程度上具有各向异性弹性。基于预测弹性常数的内核对模型和假设内核由近乎完全对齐的 hcp 晶体聚集组成的正向模型,与归因于内核各向异性的地震传播时间异常吻合得很好。而各向同性的 fcc 晶体聚集的圆柱平均与地震观测结果不一致。

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