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On the frequency dependence and spatial coherence of PKP precursor amplitudes

机译:关于PKP前体振幅的频率依赖性和空间相干性

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Studies now agree that small-scale (approximate to 10km) weak (approximate to 0.1%) velocity perturbations throughout the lowermost mantle generate the globally averaged amplitudes of 1Hz precursors to the core phase, . The possible frequency dependence and spatial coherence of this scattered phase, however, has been given less attention. Using a large global data set of approximate to 150,000 PKP precursor recordings, we characterize the frequency dependence of PKP precursors at central frequencies ranging from 0.5 to 4Hz. At greater frequencies, we observe more scattered energy (relative to the reference phase PKPdf), particularly at shorter ranges. We model this observation by invoking heterogeneity at length scales from 2 to 30km. Amplitudes at 0.5Hz, in particular, suggest the presence of more heterogeneity at scales >8km than present in previously published models. Using a regional bootstrap approach, we identify large (>20 degrees), spatially coherent regions of anomalously strong scattering beneath the West Pacific, Central/North America, andto a lesser extentEast Africa. Finally, as proof of concept, we use array processing techniques to locate the origin of scattered energy observed in Southern California by the Anza and Southern California Seismic Networks. The energy appears to come primarily from out-of-plane scattering on the receiver side. We suggest that such improvised arrays can increase global coverage and may reveal whether a majority of precursor energy comes from localized heterogeneity in the lowermost mantle.
机译:现在的研究认为,整个最下地幔的小范围(约10 km)弱(约0.1%)速度扰动会产生核心相1Hz前兆的全球平均振幅。然而,这种分散相位可能的频率依赖性和空间相干性却很少受到关注。使用大约150,000个PKP前体记录的大型全局数据集,我们可以表征0.5到4Hz中心频率下PKP前体的频率依赖性。在更高的频率下,我们观察到更多的散射能量(相对于参考相位PKPdf),尤其是在较短的范围内。我们通过在2到30 km的长度尺度上调用异质性来对此观察进行建模。特别是在0.5Hz处的振幅表明,在大于8km的尺度上比以前发表的模型中存在更多的异质性。使用区域自举方法,我们确定了西太平洋,中/北美洲以及东非范围较小的大型(> 20度),空间相干的异常强散射区域。最后,作为概念证明,我们使用阵列处理技术来定位由安萨和南加州地震台网在南加州观测到的散射能量的起源。能量似乎主要来自接收器侧的面外散射。我们建议,这种简易阵列可以增加全球覆盖范围,并可以揭示大多数前驱能量是否来自最下部地幔的局部异质性。

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