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Dehydration of subducting slow-spread oceanic lithosphere in the Lesser Antilles

机译:小安的列斯群岛俯冲缓慢扩张的海洋岩石圈的脱水

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摘要

Subducting slabs carry water into the mantle and are a major gateway in the global geochemical water cycle. Fluid transport and release can be constrained with seismological data. Here we use joint active-source/local-earthquake seismic tomography to derive unprecedented constraints on multi-stage fluid release from subducting slow-spread oceanic lithosphere. We image the low P-wave velocity crustal layer on the slab top and show that it disappears beneath 60–100 km depth, marking the depth of dehydration metamorphism and eclogitization. Clustering of seismicity at 120–160 km depth suggests that the slab’s mantle dehydrates beneath the volcanic arc, and may be the main source of fluids triggering arc magma generation. Lateral variations in seismic properties on the slab surface suggest that serpentinized peridotite exhumed in tectonized slow-spread crust near fracture zones may increase water transport to sub-arc depths. This results in heterogeneous water release and directly impacts earthquakes generation and mantle wedge dynamics.
机译:俯冲板将水带入地幔,是全球地球化学水循环的主要门户。流体的传输和释放可能受到地震数据的限制。在这里,我们使用主动源/局部地震联合层析成像技术,通过俯冲慢扩散海洋岩石圈对多级流体释放获得了前所未有的约束。我们对平板顶部的低P波速度地壳层进行了成像,结果表明它在60–100 km深度以下消失,标志着脱水变质作用和凝结作用的深度。在120-160 km深度处的地震活动性聚集表明,平板的地幔在火山弧下方脱水,并且可能是触发弧岩浆生成的主要流体来源。平板表面地震特性的横向变化表明,在断裂带附近的构造缓速地壳中发掘出蛇纹化橄榄岩可能会增加水向亚弧深度的输送。这导致了非均质的水释放,并直接影响地震的产生和地幔楔形动力学。

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