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The influence of crustal magnetic sources on the topology of the Martian magnetic environment.

机译:地壳磁源对火星磁环境拓扑的影响。

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摘要

In this thesis I use magnetometer data and magnetic field models to explore the morphology of magnetic fields close to Mars, with emphasis on the manner and extent to which crustal magnetic sources affect the magnetic field configuration.; I analyze Mars Global Surveyor (MGS) Magnetometer (MAG) data to determine the relative importance of the solar wind and of crustal magnetic sources in the observations. Crustal sources locally modify the solar wind interaction, adding variability to the Martian magnetic environment that depends on planetary rotation. I identify trends in the vector magnetic field with respect to altitude, solar zenith angle, and geographic location. The influence of the strongest crustal source extends to 1300–1400 km.; I then use MAG data to evaluate models for the magnetic field associated with Mars' crust and for the solar wind interaction with the Martian ionosphere. A linear superposition of a spherical harmonic crustal model and a gasdynamic solar wind model improves the fit to MAG data over that from either model individually.; I use simple pressure balance to calculate the shape and size of the Martian solar wind obstacle under a variety of different conditions. The obstacle is irregularly shaped (“lumpy”) and varies over the course of a Martian rotation, over a Martian year, and with changes in the upstream pressure. The obstacle above strong crustal sources can exceed 1000 km and is always higher than the altitude of the MGS spacecraft in its mapping orbit.; I use a superposition model to explore the magnetic field topology at Mars under a variety of conditions. The model field topology is sensitive to changes in the interplanetary magnetic field (IMF) strength and orientation, as well as to Mars' orientation with respect to the solar wind flow. Regions of open magnetic field are located above strong crustal sources in the models, where the magnetic field is radially oriented with respect to the Martian surface. An examination of MAG and electron reflectometer (ER) data above one of these regions reveals a sharp change in the electron energy spectrum coinciding with perturbations in the orientation of the magnetic field.
机译:在本文中,我使用磁力计数据和磁场模型来探索接近火星的磁场的形态,重点是地壳磁源影响磁场构造的方式和程度。我分析了火星全球测量师(MGS)磁力计(MAG)数据,以确定观测中太阳风和地壳磁源的相对重要性。地壳源局部地改变了太阳风的相互作用,从而增加了取决于行星旋转的火星磁环境的变异性。我确定了矢量磁场中与海拔高度,太阳天顶角和地理位置有关的趋势。最强地壳源的影响范围延伸到1300-1400 km。然后,我使用MAG数据评估与火星地壳相关的磁场以及太阳风与火星电离层相互作用的模型。球形谐波地壳模型和气动力太阳风模型的线性叠加比单独从这两个模型得到的数据更适合MAG数据。我使用简单的压力平衡来计算各种条件下火星太阳风障碍物的形状和大小。障碍物呈不规则形状(“块状”),并且在火星旋转过程中,火星年份内以及上游压力的变化中变化。强地壳源上方的障碍物可能超过1000公里,并且始终高于其映射轨道上的MGS航天器的高度。我使用叠加模型来探索火星在各种条件下的磁场拓扑。模型场拓扑对行星际磁场(IMF)强度和方向的变化以及火星相对于太阳风的方向的变化敏感。在模型中,开放磁场区域位于强地壳源上方,其中磁场相对于火星表面呈放射状。对这些区域之一上方的MAG和电子反射仪(ER)数据进行检查后,发现电子能谱的急剧变化与磁场方向的扰动相吻合。

著录项

  • 作者

    Brain, David Andrew.;

  • 作者单位

    University of Colorado at Boulder.;

  • 授予单位 University of Colorado at Boulder.;
  • 学科 Physics Astronomy and Astrophysics.; Geophysics.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 193 p.
  • 总页数 193
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 天文学;地球物理学;
  • 关键词

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