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Satellite tidal magnetic signals constrain oceanic lithosphere-asthenosphere boundary

机译:卫星潮汐磁信号约束海洋岩石圈-软流圈边界

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摘要

The tidal flow of electrically conductive oceans through the geomagnetic field results in the generation of secondary magnetic signals, which provide information on the subsurface structure. Data from the new generation of satellites were shown to contain magnetic signals due to tidal flow; however, there are no reports that these signals have been used to infer subsurface structure. We use satellite-detected tidal magnetic fields to image the global electrical structure of the oceanic lithosphere and upper mantle down to a depth of about 250 km. The model derived from more than 12 years of satellite data reveals a ≈72-km-thick upper resistive layer followed by a sharp increase in electrical conductivity likely associated with the lithosphere-asthenosphere boundary, which separates colder rigid oceanic plates from the ductile and hotter asthenosphere.
机译:导电海洋通过地磁场的潮汐流导致产生次级磁信号,从而提供有关地下结构的信息。新一代卫星的数据显示由于潮汐流而包含磁信号。然而,没有报道称这些信号已经被用来推断地下结构。我们使用卫星检测到的潮汐磁场来成像海洋岩石圈和上地幔的全球电气结构,直至约250 km的深度。该模型来自超过12年的卫星数据,揭示了一个约72公里厚的上部电阻层,随后电导率急剧上升,这可能与岩石圈-软流圈边界有关,从而将较冷的刚性海洋板块与韧性和较热的板块分开。软流圈。

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