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Seismic evidence for a cold serpentinized mantle wedge beneath Mount St Helens

机译:圣海伦斯山下的蛇形化地幔楔冷的地震证据

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摘要

Mount St Helens is the most active volcano within the Cascade arc; however, its location is unusual because it lies 50 km west of the main axis of arc volcanism. Subduction zone thermal models indicate that the down-going slab is decoupled from the overriding mantle wedge beneath the forearc, resulting in a cold mantle wedge that is unlikely to generate melt. Consequently, the forearc location of Mount St Helens raises questions regarding the extent of the cold mantle wedge and the source region of melts that are responsible for volcanism. Here using, high-resolution active-source seismic data, we show that Mount St Helens sits atop a sharp lateral boundary in Moho reflectivity. Weak-to-absent PmP reflections to the west are attributed to serpentinite in the mantle-wedge, which requires a cold hydrated mantle wedge beneath Mount St Helens (<∼700 °C). These results suggest that the melt source region lies east towards Mount Adams.
机译:圣海伦斯山是喀斯喀特山脉内最活跃的火山。但是,它的位置不寻常,因为它位于弧火山作用主轴线以西50公里处。俯冲带热模型表明,下沉的平板与前臂下方的上覆地幔楔解耦,从而导致冷地幔楔不太可能产生熔体。因此,圣海伦斯火山的前部位置引发了有关冷幔楔的范围和造成火山活动的熔体源区的疑问。在这里,使用高分辨率有源源地震数据,我们显示了圣海伦斯山位于Moho反射率的陡峭侧向边界之上。西部微弱的PmP反射归因于地幔楔中的蛇纹岩,这需要在圣海伦斯山(<〜700 C)下的冷水化地幔楔。这些结果表明,熔体源区域位于亚当斯山以东。

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