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Evidence for strong lateral seismic velocity variation in the lower crust and upper mantle beneath the California margin

机译:加利福尼亚边缘下方下地壳和上地幔中强烈的横向地震速度变化的证据

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摘要

Regional seismograms from earthquakes in Northern California show a systematic difference in arrival times across Southern California where long period (30–50 s) SH waves arrive up to 15 s earlier at stations near the coast compared with sites towards the east at similar epicentral distances. We attribute this time difference to heterogeneity of the velocity structure at the crust–mantle interface beneath the California margin. To model these observations, we propose a fast seismic layer, with thickness growing westward from the San Andreas along with a thicker and slower continental crust to the east. Synthetics generated from such a model are able to match the observed timing of SH waveforms better than existing 3D models. The presence of a strong upper mantle buttressed against a weaker crust has a major influence in how the boundary between the Pacific plate and North American plate deforms and may explain the observed asymmetric strain rate across the boundary.
机译:来自北加利福尼亚地震的区域地震图显示,整个南加利福尼亚的到达时间存在系统性差异,与沿类似震中距离向东的站点相比,沿海岸附近的站点长(30–50 s)长的SH波提前15 s到达了南海岸。我们将此时差归因于加利福尼亚边缘以下地壳—幔界面的速度结构的异质性。为了模拟这些观测,我们提出了一个快速地震层,其厚度从圣安地列斯向西增加,向东则有较厚且较慢的大陆壳。与现有的3D模型相比,从这种模型生成的合成物能够更好地匹配SH波形的观测时序。坚固的上地幔支撑着较弱的地壳,对太平洋板块和北美板块之间的边界如何变形具有重大影响,并且可以解释跨边界观测到的不对称应变率。

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