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Regionally heterogeneous uppermost inner core observed with Hi-net array

机译:用Hi-net阵列观察到区域异质性最上层内芯

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Studies of velocity structure in the Earth’s inner core and its volumetric variations illuminate our understanding of inner core dynamics and composition. Here we use an extensive number of seismograms recorded by the Hi-net array to construct complete empirical curves of PKP_(BC)-PKP_(DF) differential traveltimes. The nature of these curves implies that significant variations in traveltimes are accumulated during the passage of PKP_(DF) waves through the uppermost inner core and rules out outer core structure effects. Uniformcylindrical anisotropy of a plausible strength in the uppermost inner core can also be ruled out as a cause of the observed traveltime variations because the range of sampled ray angles is too narrow. The configuration and strength of inhomogeneities froma recent tomographicmodel of the lowermostmantle cannot account for the observed traveltime variations. Therefore, we infer that either variations of P wave isotropic velocity on the scale of about hundred km and less are present in the uppermost inner core or the material may be organized in distinctive anisotropic domains, and both of these features may be superimposed on long-wavelength hemispherical structure. If the former holds true, the absolute magnitude of required P wave velocity perturbations from referent values is 0.60 ± 0.10% in the quasi-eastern and 1.55 ± 0.15% in the quasi-western hemisphere (0.85 ± 0.05% and 1.10 ± 0.10%, respectively, with the lowermost mantle correction). The existence of these variations is a plausible physical outcome given that vigorous compositional convection in the outer core and variations in heat exchange across the inner core boundary may control the process of solidification.
机译:对地球内核的速度结构及其体积变化的研究,使我们对内核的动力学和组成有了更深入的了解。在这里,我们使用由Hi-net阵列记录的大量地震图来构造PKP_(BC)-PKP_(DF)差分传播时间的完整经验曲线。这些曲线的性质暗示,在PKP_(DF)波通过最上层内芯的过程中,累积了行进时间的明显变化,从而排除了外芯结构的影响。由于采样射线角度的范围太窄,也可以排除最上层内芯中合理强度的均匀圆柱各向异性,这是观察到的传播时间变化的原因。最近的最低地幔层析成像模型的不均匀性的构造和强度不能解释观察到的传播时间变化。因此,我们推断,最上层内芯存在P波各向同性速度的变化(约百公里或更小),或者材料可能组织在独特的各向异性域中,并且这两个特征都可能叠加在长波上。波长半球结构。如果前者成立,则准参考点所需的P波速度扰动的绝对量在准东半球为0.60±0.10%,在准西半球为1.55±0.15%(0.85±0.05%和1.10±0.10%,分别以最低的地幔校正)。这些变化的存在是合理的物理结果,因为外核中剧烈的成分对流以及跨内核边界的热交换变化可控制凝固过程。

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