首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Three-dimensional Elastic and Anelastic Structure of the Lowermost Mantle Beneath the Western Pacific From Finite-Frequency Tomography
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Three-dimensional Elastic and Anelastic Structure of the Lowermost Mantle Beneath the Western Pacific From Finite-Frequency Tomography

机译:来自有限频率断层扫描的西太平洋下方最低地幔的三维弹性结构

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We build a finite-frequency tomography method that uses traveltime and amplitude data for obtaining 3-D maps of shear velocity (Vs) and seismic attenuation (measured with the quality factor Q). We then apply this method to recover the 3-D Vs and Q structures in the lowermost mantle beneath the western edge of the Pacific large low shear velocity province, using the S and ScS phases for 31 earthquakes that occurred underneath the vicinity of Tonga and Fiji regions. Our data set consists of the transverse components of 1,341 traces from the Japanese F-net seismic station network. The waveform data are applied with a band-pass filter in the period range of 12.5-200 s, corresponding to the frequency range of 0.005-0.08 Hz. Both Vs and Q are lower than those in the Preliminary reference Earth model (PREM) in the bottom depth range, with the lowest part being situated at the center of the region we sample. This feature is robust across a variety of inversion configurations. We then estimate possible temperature anomalies in this region from the obtained V-s and Q structures. Discrepancy between the temperature anomalies predicted by these two quantities suggests that explaining simultaneously V-s and Q anomalies in this region requires both temperature and chemical anomalies. Assuming that Q anomalies are a reliable proxy for temperature and that compositional anomalies primarily consist of an excess in iron oxide, we propose a possible thermal and compositional structure for this region.
机译:我们构建了一种有限频率的断层扫描方法,该方法使用旅行时间和幅度数据来获得剪切速度(Vs)的3-D映射和地震衰减(用质量因子Q测量)。然后,我们将这种方法应用于在太平洋大型低剪切速度省的西部边缘下方的最低型地幔中的3-D与Q结构,使用S和SCS阶段发生在汤加和斐济附近发生的31个地震地区。我们的数据集包括来自日本F-Net地震站网络的1,341次迹线的横向组件。波形数据在12.5-200秒的周期范围内使用带通滤波器,对应于0.005-0.08 Hz的频率范围。 VS和Q都低于底部深度范围内的初步参考地球模型(PREM)中的那些,其中部分位于我们样本的区域的中心。此功能跨各种反转配置强大。然后,我们从所获得的V-S和Q结构估计该区域中可能的温度异常。这两种量预测的温度异常之间的差异表明该区域同时解释了该区域的V-S和Q异常需要温度和化学异常。假设Q异常是温度可靠的代理,并且该组成异常主要由氧化铁中的过量组成,我们为该区域提出了可能的热和组成结构。

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