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Full-waveform inversion of the Japanese Islands region

机译:日本群岛地区的全波形反演

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We present a full-waveform tomographic model of the crust and upper mantle beneath the Japanese Islands region. This is based on the combination of GPU-accelerated spectral-element wavefield simulations, adjoint techniques, and nonlinear optimization. Our model explains complete seismic waveforms of events not used in the inversion in the period range from 20 to 80 s. Quantitative resolution analysis indicates that resolution lengths within the well-covered areas are around 150 km in the horizontal and around 30 km in the vertical directions. In addition to the high-velocity signatures of known lithospheric slabs in the region, our model reveals a pronounced low-velocity anomaly beneath the volcanic island of Ulleung in the Sea of Japan, reaching -19% around 100 km depth. The Ulleung anomaly originates at or above the Pacific slab, rises vertically upward to the base of the Philippine Sea slab at similar to 200 km depth, circumvents it in NW direction, and then significantly strengthens in the uppermost mantle above the Philippine Sea slab. Among the numerous hypotheses for the generation of low-velocity anomalies in subduction systems, those invoking instabilities before or when a slab enters the transition zone seem most likely. The age and fast subduction of the Pacific slab may facilitate the transport of fluids into the transition zone. This may promote the reduction in viscosity and the onset of convective upwelling, aided by ambient mantle flow, such as return flow within the mantle wedge.
机译:我们提出了日本群岛地区下的地壳和上地幔的全波形层析成像模型。这是基于GPU加速的频谱元素波场模拟,伴随技术和非线性优化的组合。我们的模型解释了在20到80 s的时间范围内未用于反演的事件的完整地震波形。定量分辨率分析表明,井盖区域内的分辨率长度在水平方向上约为150 km,在垂直方向上约为30 km。除了该地区已知岩石圈平板的高速信号外,我们的模型还揭示了日本海Ulleung火山岛下方的明显低速异常,在100 km深度处达到-19%。 Ulleung异常发源于太平洋板块或以上,垂直向上上升到菲律宾海板块的底部,深度约200 km,在西北方向绕过它,然后在菲律宾海板块的最上地幔中显着增强。在俯冲系统中产生低速异常的众多假设中,那些最有可能在板坯进入过渡带之前或之时调用不稳定性的假设。太平洋板块的年龄和快速俯冲可能有助于将流体输送到过渡带。借助于周围的地幔流,例如地幔楔内的回流,这可以促进粘度的降低和对流上升流的开始。

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