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Mantle flow and multistage melting beneath the Galpagos hotspot revealed by seismic imaging

机译:地震成像显示加拉帕戈斯热点下方的地幔流和多级融化

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Some of Earth’s largest magmatic provinces result from the interaction between mid-ocean ridges and near-ridge hotspots, which are hypothesized to overlie plumes of upwelling mantle. Geodynamic models predict that upwelling plumes are sheared by the motion of the overlying tectonic plates and can connect to a nearby mid-ocean ridge by shallow flow beneath thin, young lithosphere. Here we present seismic tomographic images of the upper 300 km of the mantle beneath the Galápagos Archipelago in the eastern Pacific Ocean. We observe a low-velocity anomaly, indicative of an upwelling plume, that is not deflected in the direction of plate motion. Instead, the anomaly tilts towards the mid-ocean ridge at depths well below the lithosphere. These characteristics of the plume–ridge connection beneath the Galápagos Archipelago are consistent with the presence of multiple stages of partial melting, melt extraction, and melt remixing within the plume and surrounding mantle. These processes affect the viscosity of the asthenosphere, alter the upwelling plume and influence the compositions of surface lavas. Our results imply that the coupling between the oceanic plate and plume upwelling beneath the Galápagos is weak. Multistage melting may similarly affect the geophysical and geochemical characteristics of other hotspots.
机译:地球上最大的岩浆省份是由中海洋脊和近脊热点之间的相互作用产生的,据推测这些热点覆盖了上升的地幔柱。地球动力学模型预测,上升的羽流会受到上覆构造板块的剪切作用,并且可以通过较薄的年轻岩石圈下面的浅流连接到附近的中洋海脊。在这里,我们展示了东太平洋加拉帕戈斯群岛下方地幔上部300公里的地震层析图像。我们观察到低速异常,表明上升的羽流,并没有在板块运动的方向上偏转。取而代之的是,异常在岩石圈以下的深度向中海脊倾斜。加拉帕戈斯群岛下方的羽-脊连接的这些特征与羽和周围地幔内部分熔融,熔体提取和熔体再混合的多个阶段一致。这些过程影响软流圈的粘度,改变上升流羽流,并影响地表熔岩的成分。我们的结果表明,加拉帕戈斯群岛下方的洋板和上升流之间的耦合很弱。多阶段熔融可能同样影响其他热点的地球物理和地球化学特征。

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