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橄榄石晶体在地球地幔上部的扩散蠕变过程中排列。

Olivine crystals align during diffusion creep of Earth's upper mantle.

机构信息

Earthquake Research Institute, University of Tokyo, 1-1-1 Yayoi, Bunkyo-ku, Tokyo 113-0032, Japan.

出版信息

Nature. 2013 Oct 17;502(7471):321-6. doi: 10.1038/nature12570.

Abstract

The crystallographic preferred orientation (CPO) of olivine produced during dislocation creep is considered to be the primary cause of elastic anisotropy in Earth's upper mantle and is often used to determine the direction of mantle flow. A fundamental question remains, however, as to whether the alignment of olivine crystals is uniquely produced by dislocation creep. Here we report the development of CPO in iron-free olivine (that is, forsterite) during diffusion creep; the intensity and pattern of CPO depend on temperature and the presence of melt, which control the appearance of crystallographic planes on grain boundaries. Grain boundary sliding on these crystallography-controlled boundaries accommodated by diffusion contributes to grain rotation, resulting in a CPO. We show that strong radial anisotropy is anticipated at temperatures corresponding to depths where melting initiates to depths where strongly anisotropic and low seismic velocities are detected. Conversely, weak anisotropy is anticipated at temperatures corresponding to depths where almost isotropic mantle is found. We propose diffusion creep to be the primary means of mantle flow.

摘要

在位错蠕变过程中形成的橄榄石的晶体优选取向(CPO)被认为是地球上地幔弹性各向异性的主要原因,并且通常用于确定地幔流的方向。然而,一个基本问题仍然存在,即橄榄石晶体的排列是否仅由位错蠕变产生。在这里,我们报告了无铁橄榄石(即镁橄榄石)在扩散蠕变过程中 CPO 的发展;CPO 的强度和模式取决于温度和熔体的存在,这控制了晶界上晶面的出现。由扩散控制的这些晶体学控制的晶界上的晶界滑动有助于晶粒旋转,从而导致 CPO。我们表明,在对应于起始熔融的深度到检测到强各向异性和低地震速度的深度的温度下,预计会出现很强的径向各向异性。相反,在对应于几乎各向同性地幔的温度下,预计会出现较弱的各向异性。我们提出扩散蠕变是地幔流的主要方式。

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