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地球最下地幔中的可变方位各向异性。

Variable azimuthal anisotropy in Earth's lowermost mantle.

作者信息

Garnero Edward J, Maupin Valérie, Lay Thorne, Fouch Matthew J

机构信息

Department of Geological Sciences, Arizona State University, Tempe, AZ 85287-1404, USA.

出版信息

Science. 2004 Oct 8;306(5694):259-61. doi: 10.1126/science.1103411.

Abstract

A persistent reversal in the expected polarity of the initiation of vertically polarized shear waves that graze the D'' layer (the layer at the boundary between the outer core and the lower mantle of Earth) in some regions starts at the arrival time of horizontally polarized shear waves. Full waveform modeling of the split shear waves for paths beneath the Caribbean requires azimuthal anisotropy at the base of the mantle. Models with laterally coherent patterns of transverse isotropy with the hexagonal symmetry axis of the mineral phases tilted from the vertical by as much as 20 degrees are consistent with the data. Small-scale convection cells within the mantle above the D'' layer may cause the observed variations by inducing laterally variable crystallographic or shape-preferred orientation in minerals in the D'' layer.

摘要

在某些区域,掠过D''层(地球外核与下地幔之间边界处的一层)的垂直偏振剪切波起始的预期极性出现持续反转,这种反转始于水平偏振剪切波的到达时间。对加勒比地区下方路径的分裂剪切波进行全波形建模需要地幔底部存在方位各向异性。具有横向相干的横向各向同性模式且矿物相的六方对称轴相对于垂直方向倾斜多达20度的模型与数据相符。D''层上方地幔内的小规模对流单元可能通过在D''层矿物中诱导横向可变的晶体取向或形状择优取向而导致观测到的变化。

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