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Precise seismic-wave velocity atop Earth's core: No evidence for outer-core stratification

机译:精确的地震波速度位于地球核心之上:没有证据表明外部核心分层

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摘要

Earth's outer core is composed of liquid Fe and Ni alloyed with a similar to 10% fraction of light elements such as O, S, or Si. Secular cooling and compositional buoyancy drive vigorous convection that sustains the geodynamo, but critical details of light-element composition and thermal regime remain uncertain. Seismic velocities can provide important observational constraints on these parameters, but global reference models such as Preliminary Reference Earth Model (PREM), IASP91 and AK135 exhibit significant discrepancies in the outermost similar to 200 km of the core. Here, we apply an Empirical Transfer Function method to obtain precise arrival times for SmKS waves, a whispering-gallery mode that propagates near the underside of the core-mantle boundary. Models that fit our data are all characterized by seismic velocities and depth gradients in the outermost 200 km of the core that correspond best with PREM. This similarity to PREM, which has a smooth velocity profile that satisfies the adiabatic Adams and Williamson equation, argues against the presence of an anomalous layer of light material near the top of the core as suggested in some previous studies. A new model, AE09, is proposed as a slight modification to PREM for use as a reference model of the outermost core.
机译:地球的外核是由液态的铁和镍组成的,合金中的铁元素含量与O,S或Si等轻元素的比例接近10%。长期的冷却和成分的浮力驱动维持对流的强力对流,但对光元素的成分和热态的关键细节仍然不确定。地震速度可以为这些参数提供重要的观测约束,但是诸如参考地球初步模型(PREM),IASP91和AK135之类的全球参考模型在最外层表现出明显的差异,类似于岩心200 km。在这里,我们应用经验传递函数方法来获取SmKS波的精确到达时间,这是一种在核心-地幔边界下侧附近传播的耳语画廊模式。符合我们数据的模型均以岩心最外侧200 km处的地震速度和深度梯度为特征,这与PREM最相符。与PREM的相似之处在于,它具有满足绝热的Adams和Williamson方程的平滑速度分布,并反对先前研究中提出的在岩心顶部附近存在轻质材料异常层的说法。提出了一种新模型AE09,作为对PREM的略微修改,可以用作最外层核心的参考模型。

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