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Imaging offsets in the Moho: Synthetic tests using Gaussian beams with teleseismic waves

机译:Moho中的成像偏移量:使用高斯光束和远震波的综合测试

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We carry out a sequence of numerical tests to understand conditions under which rapid changes in crustal thickness can be reliably imaged by teleseismic body waves. Using the finite-difference method over a 2-D grid, we compute synthetic seismograms resulting from a planar P-wavefield incident below the grid. We then image the Moho using a migration scheme based on the Gaussian beam representation of the wavefield. The use of Gaussian beams for the downward propagation of the wavefield is particularly advantageous in certain geologically critical cases such as overthrusting of continental lithosphere, resulting in the juxtaposition of high-velocity mantle material over crustal rocks. In contrast to ray-based methods, Gaussian beam migration requires no special treatment to handle such heterogeneities. Our results suggest that with adequate station spacing and signal-to-noise ratios, offsets of the Moho, on the order of 10 km in height, can be reliably imaged beneath thickened crust at depths of about 50 km. Furthermore, even sharp corners and edges are faithfully imaged when precise values of seismic wave speeds are available. Our tests also demonstrate that flexibility in choices of different types of seismic phases is important, because any single phase has trade-offs in issues such as spatial resolution, array aperture, and amplitude of signals.
机译:我们进行了一系列数值测试,以了解可以通过远震体波可靠地成像地壳厚度快速变化的条件。使用二维网格上的有限差分方法,我们可以计算由入射到网格下方的平面P波场产生的合成地震图。然后,我们使用基于波场的高斯光束表示的迁移方案对Moho进行成像。在某些地质关键情况下,例如大陆岩石圈的超推作用,导致高速度地幔物质在地壳岩石上并置,在某些地质关键情况下,使用高斯光束向下传播波场特别有利。与基于射线的方法相比,高斯光束迁移不需要特殊处理即可处理此类异质性。我们的结果表明,通过适当的测站间距和信噪比,可以在厚度约50 km的厚壳下可靠地成像莫霍面的偏移,高度约为10 km。此外,当地震波速度的精确值可用时,即使是尖锐的拐角和边缘也会真实地成像。我们的测试还表明,选择不同类型地震相位的灵活性非常重要,因为任何单个相位在诸如空间分辨率,阵列孔径和信号幅度等问题上都需要权衡取舍。

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