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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >3D shear velocity structure beneath the Gulf of California from Rayleigh wave dispersion
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3D shear velocity structure beneath the Gulf of California from Rayleigh wave dispersion

机译:瑞利波频散在加利福尼亚湾下方的3D剪切速度结构

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摘要

Active extension in the Gulf of California is characterized by the transition from continental rifting to seafloor spreading. Puzzling variations in the patterns of both tectonics and magmatism are observed along the length of the gulf and are likely to be related to mantle heterogeneity. Regional-scale mantle structure, however, has been difficult to constrain due to the lack of broadband seismic stations in the region. In this study we utilized new data from the deployment of the NARS-Baja array and other networks, and computed a three-dimensional shear-speed model of the upper mantle beneath the region. Applying a combination of cross-correlation analysis and multimode waveform inversions, we measured interstation Rayleigh wave dispersion for 450 pairs of stations in a broad period range of 9-250s. We computed phase velocity maps and then inverted the phase-velocity data for shear-speed structure. Our results suggest that the location of the transition from seafloor spreading (south) to continental rifting (North) in the Gulf of California, as well as differences in volcanism across Baja California and the gulf, can be explained by heterogeneity in the upper mantle, in particular by the presence f a slab remnant beneath the south-central part and an absence of such a slab remnant beneath the northern part of the gulf.
机译:加利福尼亚湾的积极扩展的特征是从大陆裂谷过渡到海底扩散。沿海湾的长度方向观察到构造和岩浆作用模式的令人困惑的变化,这很可能与地幔异质性有关。然而,由于该地区缺乏宽带地震台,很难限制区域尺度的地幔结构。在这项研究中,我们利用了来自NARS-Baja阵列和其他网络部署的新数据,并计算了该区域下方上地幔的三维剪切速度模型。通过将互相关分析和多模波形反演相结合,我们在9-250s的宽周期范围内测量了450对站的站间瑞利波频散。我们计算了相速度图,然后反转了剪切速度结构的相速度数据。我们的结果表明,加利福尼亚湾从海底扩散(南)到大陆裂谷(北)的过渡位置以及下加利福尼亚州和海湾之间的火山活动差异可以通过上地幔的异质性来解释,特别是由于在中南部下方存在板状残余物,而在海湾北部下方则没有这种板状残余物。

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