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Origins of ultralow velocity zones through slab-derived metallic melt

机译:通过板坯衍生的金属熔体形成超低速区的起源

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摘要

Understanding the ultralow velocity zones (ULVZs) places constraints on the chemical composition and thermal structure of deep Earth and provides critical information on the dynamics of large-scale mantle convection, but their origin has remained enigmatic for decades. Recent studies suggest that metallic iron and carbon are produced in subducted slabs when they sink beyond a depth of 250 km. Here we show that the eutectic melting curve of the iron−carbon system crosses the current geotherm near Earth’s core−mantle boundary, suggesting that dense metallic melt may form in the lowermost mantle. If concentrated into isolated patches, such melt could produce the seismically observed density and velocity features of ULVZs. Depending on the wetting behavior of the metallic melt, the resultant ULVZs may be short-lived domains that are replenished or regenerated through subduction, or long-lasting regions containing both metallic and silicate melts. Slab-derived metallic melt may produce another type of ULVZ that escapes core sequestration by reacting with the mantle to form iron-rich postbridgmanite or ferropericlase. The hypotheses connect peculiar features near Earth's core−mantle boundary to subduction of the oceanic lithosphere through the deep carbon cycle.
机译:了解超低速带(ULVZs)对深层地球的化学成分和热结构施加了限制,并提供了有关大规模地幔对流动力学的重要信息,但数十年来它们的起源一直是谜团。最近的研究表明,俯冲板块下沉超过250公里时会产生金属铁和碳。在这里,我们表明,铁碳体系的共熔熔融曲线穿过了地球核心-地幔边界附近的当前地热,表明最底层的地幔中可能形成致密的金属熔体。如果将其集中到孤立的斑块中,则这种熔体可能会产生地震观察到的ULVZ的密度和速度特征。取决于金属熔体的润湿行为,所得的ULVZ可能是短寿命的区域,可以通过俯冲来补充或再生,也可以是包含金属熔体和硅酸盐熔体的持久区域。板坯衍生的金属熔体可能会产生另一种类型的ULVZ,通过与地幔反应形成富铁的后桥锰铁矿或铁镁锰矿而逃脱堆芯。这些假说将地球核心-地幔边界附近的特殊特征通过深层碳循环与海洋岩石圈的俯冲联系起来。

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