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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Joint inversion for inner core rotation, inner core anisotropy, and mantle heterogeneity
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Joint inversion for inner core rotation, inner core anisotropy, and mantle heterogeneity

机译:联合反演,用于内核旋转,内核各向异性和地幔非均质性

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Observational evidence for differential rotation of the inner core has recently been reported from time-dependent travel times of the seismic inner core phase, PKP(DF). These analyses are hindered by potential biases from the mantle heterogeneity and systematic earthquake location errors, which have raised doubts about the reality of the inferred differential rotation. Here we report time-dependent PKP(DF)-PKP(BC) differential travel times of a total of 611 measurements obtained from 92 earthquakes in the South Sandwich Islands (SSI) over the past nearly half a century recorded at the College, Alaska station (COL) and Alaska Seismic Network (ASN). The events are relocated using the joint hypercenter determination (JHD) technique [Dewey, 1971]. Travel time residuals at COL from SSI earthquakes over a period of 45 years and at three additional stations from SSI earthquakes over periods of about 22 years show steady increases with time; the temporal trends are demonstrated to be statistically very significant. With dense samples of the pathway at different time periods, we use a joint inversion technique that allows us to separate the time-dependent inner core structure from the time-independent mantle biases. Surprisingly, the inner core rotation seems resolvable even from digital data observed at ASN in the 1990s (spanning over 8 years) alone in such a joint inversion. The results provide strong support for a differential inner core rotation. The inferred rotation rate ranges from 0.3 degrees to 1.1 degrees per year faster than the mantle when we take into account the uncertainty in the tilt of the anisotropy axis of the patch, of the inner core that was sampled. A westward inner core rotation can be ruled out. [References: 30]
机译:最近,根据地震内芯相PKP(DF)随时间变化的传播时间,报告了内芯差异旋转的观测证据。这些分析受到地幔非均质性和系统地震定位误差的潜在偏差的阻碍,这些偏差使人们对推断的旋转差的真实性产生怀疑。在这里,我们报告了在过去近半个世纪以来从南桑威奇群岛(SSI)的92次地震中获得的总共611次测量值随时间变化的PKP(DF)-PKP(BC)的传播时间,这些记录在阿拉斯加大学学院记录(COL)和阿拉斯加地震台网(ASN)。使用联合超中心确定(JHD)技术将事件重新定位[Dewey,1971]。随着时间的推移,来自SSI地震45年的COL的行进时间残差以及来自SSI地震大约22年的三个附加站的行进时间残差随时间呈稳定增长;时间趋势被证明在统计学上非常重要。对于不同时间段路径的密集样本,我们使用联合反演技术,该技术可使我们将与时间相关的内芯结构与与时间无关的地幔偏向分开。出乎意料的是,仅通过这样的联合反演,仅从1990年代ASN(跨越8年)观察到的数字数据,内核旋转似乎就可以解决。结果为内芯差异旋转提供了有力的支持。当我们考虑到采样的内芯的斑块的各向异性轴的倾斜度的不确定性时,推断的旋转速度比地幔每年要快0.3至1.1度。可以排除向西的内芯旋转。 [参考:30]

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