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The southwestern edge of the Ryukyu subduction zone: A high Q mantle wedge

机译:琉球俯冲带的西南边缘:高Q幔楔

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The lateral edge of a subduction zone is usually depicted as an opening to the asthenosphere where invigorated dynamics and amplified magmatism take place. In this study we present evidence from seismic data suggesting the presence of a cold and dynamically sluggish edge environment at the southwest end of the Ryukyu subduction system. We measured attenuation, or 1/. Q, for P waves from subduction zone events at ~100. km depths received by OBSs in the Okinawa trough and land stations in NE Taiwan. In the Okinawa trough 100-200. km from the edge, Q values are lower than 100. In the vicinity of the edge, Q values increase from 100 to over 1000 towards Taiwan. To reconcile arguments from geophysical and geochemical observations, we propose that the mantle wedge near the edge has high Q values due to low temperatures and probably low water content. These may result from coupling of the slab laterally with the thick Eurasian lithosphere, which inhibits back-arc rifting, retards subduction, and reduces the water supply to the mantle wedge. The SW Ryukyu subduction system represents a subduction-zone edge type distinct from more commonly documented free or warm edges.
机译:俯冲带的侧向边缘通常被描绘为通向软流圈的开口,在此处发生了活跃的动力学和放大的岩浆作用。在这项研究中,我们从地震数据中得出的证据表明,琉球俯冲系统西南端存在寒冷且动态缓慢的边缘环境。我们测量了衰减或1 /。 Q,来自俯冲带事件的P波在〜100。台湾东北部冲绳海槽和地面站的OBS接收到的千米深度。在冲绳低谷100-200。在距边缘1公里的地方,Q值低于100。在边缘附近,Q值从100增加到1000到台湾。为了调和来自地球物理和地球化学观测的观点,我们建议靠近边缘的地幔楔由于低温和可能较低的含水量而具有较高的Q值。这些可能是由于板块横向与厚厚的欧亚岩石圈耦合而造成的,这抑制了弧后裂谷,延缓俯冲并减少了对地幔楔的供水。 SW Ryukyu俯冲系统代表的是俯冲带边缘类型,与更常见的自由边缘或暖边缘不同。

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