首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Anisotropic structures of oceanic slab and mantle wedge in a deep low-frequency tremor zone beneath the Kii Peninsula, SW Japan
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Anisotropic structures of oceanic slab and mantle wedge in a deep low-frequency tremor zone beneath the Kii Peninsula, SW Japan

机译:日本西南部纪伊半岛下方深低频震带中的大洋板和地幔楔的各向异性结构

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摘要

Anisotropy is an important feature of elastic wave propagation in the Earth and can arise from a variety of ordered architectures such as fractures with preferential alignments or preferred crystal orientations. We studied the regional variations in shear wave anisotropy around a deep Low-Frequency Earthquake (LFE) zone beneath the Kii Peninsula, SW Japan, using waveforms of local earthquakes observed by a dense linear array along the LFE zone. The fast directions of polarization are subparallel to the strike of the margin for both crustal and intraslab earthquakes. The delay time of the split shear waves in intraslab earthquakes is larger than that in crustal earthquakes and shows a down-dip variation across the LFE zone. This indicates that anisotropy exists in the mantle wedge and in the lower crust and/or oceanic slab. We explain the observed delay time of 0.015-0.045 s by suggesting that the mantle wedge consists of a deformed, 1-15 km thick serpentine layer if the mantle wedge is completely serpentinized. In addition to high-fluid pressures within the oceanic crust, the sheared serpentine layer may be a key factor driving LFEs in subduction zones. Key Points Depth variations in delay times of margin-parallel anisotropy below the SW Japan Sheared serpentine layer in the mantle wedge dipping along the subducting slab Sheared serpentine layer may be a key factor driving LFEs in subduction zone
机译:各向异性是弹性波在地球中传播的重要特征,它可以由多种有序结构引起,例如具有优先排列或优选晶体取向的裂缝。我们使用沿LFE区域密集的线性阵列观测到的局部地震波形,研究了日本西南部纪伊半岛下方深低频地震(LFE)区域周围的剪切波各向异性的区域变化。极化的快速方向与地壳和板内地震的边缘走向平行。平板内地震的分裂切波的延迟时间大于地壳地震的延迟时间,并且在整个LFE区域表现出下倾变化。这表明各向异性存在于地幔楔和下地壳和/或大洋板中。通过说明如果地幔楔被完全蛇纹化,则地幔楔由变形的,1-15 km厚的蛇形层组成,可以解释观察到的0.015-0.045 s的延迟时间。除了洋壳内的高流体压力外,剪切蛇纹岩层可能是驱动俯冲带中LFE的关键因素。关键点日本西南部以下边缘平行各向异性各向异性延迟时间的深度变化沿俯冲板倾覆的地幔楔中的剪切蛇形层剪切蛇形层可能是驱动俯冲带中的低频地震的关键因素

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