首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Discriminating Between Causes of D″ Anisotropy Using Reflections and Splitting Measurements for a Single Path
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Discriminating Between Causes of D″ Anisotropy Using Reflections and Splitting Measurements for a Single Path

机译:使用反射和分裂测量为单个路径的D“各向异性的原因之间的影响

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摘要

Knowledge of deep mantle deformation is based on seismic anisotropy: the variation of seismic wave speed and polarization with direction. Measuring this directional dependency requires azimuthal seismic coverage at D″ depth-the bottom few hundred kilometers of the mantle-which is often a limit in retrieving the style of anisotropy. Shear wave splitting is the standard technique for probing mantle anisotropy, and recently, reflections from the D″ region have been used to infer azimuthal anisotropy. Here we combine observations and modeling of D″ reflections with shear wave splitting along a given raypath direction in order to constrain mineralogy and dynamics of the lower mantle. From our modeling, a clear distinction between different anisotropic media is possible by using both types of observations together but only one directional path. We focus on the lowermost mantle beneath the central Atlantic Ocean by using South-Central American earthquakes recorded in Morocco. We find complex azimuthal and distance variation for both polarities of D″ reflections and shear wave splitting parameters, which rules out a simple style of anisotropy-such as vertical transverse isotropy-for the region. Our preferred model consists of a phase transition from a randomly oriented bridgmanite to lattice-preferred orientation fabric in postperovskite, developed in a tilted plane sheared along a roughly SW-NE deformation direction.
机译:深层地幔变形知识基于地震各向异性:地震波速的变化和方向极化。测量这种定向依赖性在D“深度 - 底部几千米的地幔中需要方位相色覆盖 - 这通常是检索各向异性风格的极限。剪切波分裂是用于探测地幔各向异性的标准技术,最近,来自D“区域的反射已被用于推断方位传递各向异性。在这里,我们将D“反射与剪切波分裂沿着给定的射线路方向相结合的观察和建模,以限制矿物学和动力学的下部地幔。从我们的建模中,通过使用两种类型的观察,只有一个定向路径,可以在不同各向异性介质之间进行明确区分。我们通过使用在摩洛哥记录的中南美洲地震,专注于中央大西洋下面的最低地幔。我们为D“反射和剪力波分裂参数的两个极性都找到了复杂的方位点和距离变化,这将排除了一种简单的各向异性样式 - 例如垂直横向各向同性 - 该区域。我们的优选模型包括从在Postperovskite中从随机定向的Bridgmanite到晶格优选的取向织物的相位过渡,在沿大致SW-NE变形方向剪切的倾斜平面中开发。

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