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Electron pitch angle distributions as indicators of magnetic field topology near Mars

机译:电子俯仰角分布作为火星附近磁场拓扑结构的指标

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We have analyzed electron angular distributions recorded near Mars over a period of 7 years in order to constrain the topology of magnetic field lines near Mars. We used 63 million pitch angle distributions of 115 eV electrons measured at ~400 km altitudes by the Mars Global Surveyor (MGS) spacecraft and classified them according to their shape. Closed magnetic field lines are associated with the Martian crustal magnetic fields and are identified on the nightside by the presence of plasma voids or two-sided loss cones (trapped distributions). Trapped distributions on the nightside are most often observed in regions surrounding moderate or strong crustal fields, indicating a source process such as reconnection populates the outer layers of closed magnetic field regions. Open magnetic field lines are identified in regions of strong crustal magnetic field by the absence of field-aligned electrons returning from the planet (loss cones). In regions far from crustal sources many field lines intersect the collisional atmosphere. On the Martian dayside, closed field lines are identified by the presence of trapped or fully isotropic distributions, and they occur at times when ionospheric photoelectron features are evident in MGS electron energy spectra. Variability of the dominant pitch angle distribution shape in certain regions suggests that Martian magnetic field topology is dynamic and is controlled by external conditions.
机译:为了限制火星附近磁场线的拓扑,我们分析了在火星附近记录的7年内的电子角分布。我们使用了火星全球测量师(MGS)航天器在〜400 km高度测量的6300万个115 eV电子的俯仰角分布,并根据其形状对它们进行了分类。闭合的磁场线与火星的地壳磁场相关联,并在夜间通过等离子空洞或两侧损失锥(陷阱分布)的存在来识别。夜间分布的陷阱分布最常见于中度或强地壳周围的区域,这表明诸如重新连接之类的源过程构成了封闭磁场区域的外层。通过不存在从行星返回的场取向电子(损耗锥),可以在强地壳磁场区域识别出开放的磁力线。在远离地壳源的地区,许多场线与碰撞大气相交。在火星的白天,通过捕获或完全各向同性的分布来识别封闭的场线,它们发生在MGS电子能谱中的电离层光电子特征明显的时候。主俯仰角分布形状在某些区域的变化表明火星磁场拓扑是动态的,并受外部条件的控制。

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