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Trans-Pacific temperature field in the mantle transition region derived from seismic and electromagnetic tomography

机译:地震和电磁层析成像在地幔过渡区的跨太平洋温度场

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The trans-Pacific temperature field for the depth range 350–850 km was inferred from global seismic tomography and semi-global electromagnetic tomography. The seismic tomography incorporated millions of reported first arrival times and 7000 PP–P differential travel times measured on broadband seismograms. The electromagnetic tomography used voltage data from trans-Pacific submarine cables and magnetic field data from circum-Pacific geomagnetic observatories. The resultant P-wave velocity anomalies and electrical conductivity anomalies were converted to temperature anomalies using a proposed conversion formula and experimental results for mantle minerals, respectively. These conversions show consistently high-temperature anomalies of 200–300 K in the mantle transition region beneath the Hawaiian hotspot. At subduction zones, where slab-related cold anomalies and wedge mantle-related hot anomalies are likely to coexist in close proximity, the seismic and electromagnetic tomography did not always give consistent features, in part because of the preferred sensitivity of electromagnetic tomography to hot anomalies. Low-temperature anomalies of 200–300 K associated with subducted slabs are clearly resolved in the seismic tomography, but are less apparent in the electromagnetic tomography. The high-temperature anomaly in the intervening zone between the Mariana and Philippine slabs is very pronounced in the electromagnetic tomography but is marginal in the seismic tomography.
机译:从全球地震层析成像和半全局电磁层析成像可以推断出350-850 km深度范围的跨太平洋温度场。地震层析成像结合了数百万次报告的首次到达时间以及在宽带地震图上测得的7000 PP-P差分传播时间。电磁层析成像使用了来自跨太平洋海底电缆的电压数据和来自环太平洋地磁观测站的磁场数据。分别使用提出的转换公式和地幔矿物的实验结果,将所得的P波速度异常和电导率异常转换为温度异常。这些转换表明,在夏威夷热点下方的地幔过渡区始终出现200–300 K的高温异常。在俯冲带,平板相关的冷异常和楔形幔相关的热异常很可能并存,地震和电磁层析成像并不总是具有一致的特征,部分原因是电磁层析成像对热异常的敏感性更高。与俯冲平板相关的200–300 K的低温异常在地震层析层析成像中已得到明显解决,但在电磁层析层析成像中却不太明显。 Mariana和菲律宾平板之间的中间区域的高温异常在电磁层析成像中非常明显,而在地震层析成像中则很少。

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