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Variations Of The Magnetic Field Near Mars Caused By Magnetic Crustal Anomalies

机译:地壳磁异常引起的火星附近磁场变化

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The possible avenues for photoelectron transport were determined during southern hemisphere winter at Mars by using a mapping analysis of the theoretical magnetic field. Magnetic field line tracing was performed by superposing two magnetic field models: (1) magnetic field derived from a three-dimensional (3D) self-consistent quasi-neutral hybrid model which does not contain the Martian crustal magnetic anomalies and (2) a 3D map of the magnetic field associated with the magnetic anomalies based on Mars Global Surveyor magnetic field measurements. It was found that magnetic field lines connected to the nightside of the planet are mainly channeled within the optical shadow of the magnetotail whereas magnetic field lines connected to the dayside of the planet are observed to form the remainder of the magnetosphere. The simulation suggests that the crustal anomalies create "a magnetic shield" by decreasing the region near Mars which is magnetically connected to the Martian magnetosphere. The rotation of Mars causes periodic changes in magnetic connectivity, but not to qualitative changes in the overall magnetic field draping around Mars.
机译:通过使用理论磁场的映射分析,确定了南半球冬季在火星上进行光电子传输的可能途径。通过叠加两个磁场模型来执行磁场线跟踪:(1)来自三维(3D)自洽准中性混合模型的磁场,其中不包含火星地壳磁异常;(2)3D基于Mars Global Surveyor磁场测量结果的与磁异常相关的磁场的三维图。发现连接到行星夜侧的磁力线主要在磁尾的光影内传播,而观察到连接到行星日侧的磁力线形成了磁层的其余部分。该模拟表明,地壳异常通过减小与火星磁层磁连接的火星附近区域而形成了“磁屏蔽”。火星的旋转会引起磁连通性的周期性变化,但不会引起围绕火星的整个磁场的质变。

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