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Love-to-Rayleigh scattering across the eastern North American passive margin

机译:北美东部北美被动边缘的爱情射频散射

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This study presents observations of Love-to-Rayleigh scattering beneath the eastern North American passive margin that place new constraints on seismic anisotropy in the upper mantle. The scattering of Love-wave energy to Rayleigh waves is generated via sharp lateral gradients in anisotropic structure along the source-receiver path. The scattered phases, known as quasi-Love (QL) waves, exhibit amplitude behavior that depends on the strength of the anisotropic contrast as well as the geometrical relationship between the propagation azimuth and the anisotropic symmetry axis. Previous studies of seismic anisotropy in the upper mantle beneath eastern North America have revealed evidence for a mix of lithospheric and asthenospheric contributions, but the interpretation of indicators such as SKS splitting is hampered by a lack of vertical resolution. Complementary constraints on the depth distribution of anisotropy can be provided by surface waves, which have the additional advantage of sampling portions of the margin that lie offshore. Here we present measurements of QL phases using data from several hundred broadband seismic stations in eastern North America, including stations of the USArray Transportable Array, the Central and Eastern U.S. Network, and the MAGIC experiment in the central Appalachians. We find evidence for clear QL arrivals at stations in eastern North America, consistent with a region of particularly strong and coherent scattering inferred just offshore the central portion of the margin. The coherent scattering near the Eastern North American Margin likely reflects lateral transitions in seismic anisotropy in the asthenospheric mantle, associated with locally complex three-dimensional flow, with possible additional contributions from anisotropy in the mantle lithosphere. A second region of strong QL scattering near the southern coast of Greenland is enigmatic in origin, but may be due to pre-existing lithospheric fabric.
机译:本研究介绍了东北美国被动保证金下面的爱情到瑞利散射的观察,这对上部地幔中的地震各向异性进行了新的约束。沿源极接收器路径的各向异性结构中的尖锐横向梯度产生对瑞利波的热波能量的散射。散射阶段,称为准爱(Q1)波,表现出幅度行为,其取决于各向异性对比度的强度以及传播方位角和各向异性对称轴之间的几何关系。以前的东部地幔中地震各向异性的研究已经揭示了岩石中和哮喘贡献的混合的证据,但SKS分裂等指标的解释因缺乏垂直分辨率而受到阻碍。表面波可以提供对各向异性深度分布的互补限制,该表面波可以提供沿海躺在潜在的边缘的部分的额外优势。在这里,我们使用来自东北美国的数百个宽带地震站的数据显示QL阶段的测量,包括USARRAY可运输阵列,中央和东方美国网络的站点,以及阿巴拉契亚中部的魔法实验。我们发现证据表明北美东部地区的抵达,符合特别强大,相干散射的区域,推断下岸的边缘。东北美国边缘附近的相干散射可能反映了哮喘岩土层的地震各向异性的横向转变,与局部复杂的三维流动相关,在地幔岩间的各向异性中有可能的额外贡献。在格陵兰南部海岸附近的强大QL散射的第二个区域是原产地的神秘,但可能是由于预先存在的岩石织物。

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