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Deep roots of upper plate faults and earthquake generation illuminated by volcanism

机译:火山作用下上盘断裂的深层根源和地震的产生

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For many years, the generation mechanism of disastrous intraplate earthquakes in the upper plate of a subduction zone have remained unclear largely because the roots of upper plate intraplate faults have particularly quiet inter-seismic nature and limited visibility. Here we propose that the 2008 Mw 6.9 Iwate-Miyagi Nairiku, Japan, Earthquake, occurred on a dipping fault in a volcanic region, contains previously-unreported co-seismic evidence of a ductile shear zone (DSZ) present on the down-dip fault extension beneath the seismogenic layer, and DSZ plays a dominant role in the seismogenesis. We found the evidence in the spatial pattern of the co-seismic ground displacement, which was well captured by synthetic aperture radar, reflecting geothermal anomalies there. A dynamic forward model including the inter-seismic deformation of DSZ naturally reproduced this displacement pattern without kinematic inversions and consistently explained other independent observations. This finding should make breakthroughs in observational and theoretical studies of earthquake generation.
机译:多年来,俯冲带上板块内的灾难性板内地震的发生机理一直不清楚,这在很大程度上是因为上板块内断层的根部具有特别安静的间震性质和能见度有限。我们在此提出,日本2008年岩手-宫城县纳里库6.9级地震是在火山区的一次浸润断层中发生的,其中包含先前未报告的下倾断层上存在韧性剪切带(DSZ)的同震证据。在地震发生层下面延伸,而DSZ在地震发生中起主导作用。我们在同震地面位移的空间模式中找到了证据,合成孔径雷达很好地捕获了这一点,反映了那里的地热异常。一个动态的前向模型(包括DSZ的地震间变形)自然再现了这种位移模式,而没有运动学上的反演,并一致地解释了其他独立的观测结果。这一发现应在地震发生的观测和理论研究方面取得突破。

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