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Induced magnetic field effects at planet Mercury

机译:水星对行星的感应磁场效应

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摘要

At Mercury's surface external magnetic field contributions caused by magnetospheric current systems play a much more important role than at Earth. They are subjected to temporal variations and therefore will induce currents in the large conductive iron core. These currents give rise to an additional magnetic field superposing the planetary field. We present a model to estimate the size of the induced fields using a magnetospheric magnetic field model with time-varying magnetopause position. For the Hermean interior we assume a two-layer conductivity distribution. We found out that about half of the surface magnetic field is due to magnetospheric or induced currents. The induced fields achieve 7-12% of the mean surface magnetic intensity of the internal planetary field, depending on the core size. The magnetic field was also modeled for a satellite moving along a polar orbit in the Hermean magnetosphere, showing the importance of a careful separation of the magnetic field measurements.
机译:在水星表面,由磁层电流系统引起的外部磁场的作用比在地球上更为重要。它们会随时间变化,因此会在大的导电铁芯中感应出电流。这些电流引起叠加在行星磁场上的附加磁场。我们提出了一个模型,该模型使用具有随时间变化的磁顶位置的磁层磁场模型来估计感应场的大小。对于Hermean内部,我们假设两层电导率分布。我们发现表面磁场的大约一半是由磁层或感应电流引起的。感应磁场达到内部行星磁场平均表面磁强度的7-12%,具体取决于铁心尺寸。还为沿着Hermean磁层的极轨道运动的卫星模拟了磁场,显示了仔细分离磁场测量值的重要性。

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