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Support for differential inner core superrotation from earthquakes in Alaska recorded at South Pole station

机译:南极台站记录的阿拉斯加地震对内芯超微旋转的支持

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Observational evidence for differential inner core rotation has recently been reported. The most convincing evidence has been restricted to one ray path from earthquakes in the South Sandwich Islands to stations in Alaska. Here we show that the differential travel times between PKP(DF) and PKP(BC) for a new ray path from earthquakes in southern Alaska to the station at the South Pole have increased by about 0.6 s over 37 years, providing support for a differential inner core rotation. We apply a newly developed technique to invert simultaneously for the inner core structure and the rotation rate. The rotation rate determined from the new pathway is about 0.6 degrees/yr faster than the mantle, compatible with the estimates of the rate from earthquakes in the South Sandwich Islands to stations in Alaska. We also address some criticisms concerning the reported detection of the differential inner core rotation, including biases from event mislocations, biases from mantle heterogeneity, and uncertainty in the tilt of the inner core anisotropy axis. We show that although these potential biases would affect the determination of the rotation rate, they are unlikely to account for the observed time dependence in the BC-DF times. We found no evidence for a correlation between BC-DF residuals and event magnitudes as suggested previously. [References: 23]
机译:最近报道了内芯旋转差异的观察证据。最有说服力的证据仅限于从南桑威奇群岛地震到阿拉斯加气象站的一条射线路径。在这里,我们显示了从阿拉斯加南部地震到南极电台的新射线路径在PKP(DF)和PKP(BC)之间的差分传播时间在37年中增加了约0.6 s,为差分提供了支持内芯旋转。我们应用一种新开发的技术来同时反转内芯结构和旋转速度。从新路径确定的自转速度比地幔快约0.6度/年,这与从南桑威奇群岛地震到阿拉斯加站点的速度估算值相符。我们还解决了一些有关报告的内芯旋转差异检测的批评,包括事件错位造成的偏差,地幔异质性造成的偏差以及内芯各向异性轴倾斜的不确定性。我们表明,尽管这些潜在偏差会影响转速的确定,但它们不太可能解释BC-DF时间中观察到的时间依赖性。如前所述,我们没有发现BC-DF残差与事件幅度之间存在相关性的证据。 [参考:23]

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