首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Characterization of Low-Altitude Nightside Martian Magnetic Topology Using Electron Pitch Angle Distributions
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Characterization of Low-Altitude Nightside Martian Magnetic Topology Using Electron Pitch Angle Distributions

机译:使用电子桨距角分布的低空夜间火星磁拓扑表征

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Magnetic field lines at Mars act as direct pathways for both energy inflow and ion escape. Local variations in magnetic field topology can therefore directly impact the interaction between the solar wind and the Martian ionosphere. One method of analyzing magnetic topology is through the use of electron pitch angle distributions (PADs). Previous PAD investigations have characterized magnetic topology in the Martian system using data from the Mars Global Surveyor spacecraft, but these studies were orbitally constrained to similar to 400 km altitude and 2 a.m./2p.m. local time. With the Mars Atmosphere and Volatile Evolution (MAVEN) mission, we are now able to extend this analysis to a larger range of altitudes and local times. Here we use electron PADs measured using the Solar Wind Electrostatic Analyzer and Magnetometer instruments on MAVEN to analyze the magnetic topology of the nightside Martian environment. We use several characteristic PAD shapes to determine where Martian magnetic field lines are open or closed to the solar wind and present frequency maps of how these PAD shapes vary both geographically and with altitude. Finally, we present an initial analysis of the variation of the PAD shapes with local time, finding that trapped electron distributions become increasingly frequent as crustal fields rotate from dusk to dawn across the nightside of Mars.
机译:MARS的磁场线作为能量流入和离子逸出的直接途径。因此,磁场拓扑的局部变化可以直接影响太阳风和火星电离层之间的相互作用。一种分析磁拓扑的方法是通过使用电子桨距角分布(焊盘)。之前的PAD调查在Martian系统中使用来自火星全球测量师航天器的数据在Martian系统中具有特征拓扑,但这些研究被甘蔗般的受限制与400公里的海拔高度和2米。/ 2P.M。当地时间。随着火星氛围和挥发性的演变(Maven)使命,我们现在能够将这种分析扩展到更大范围的高度和当地时间。在这里,我们使用使用MAAVEN上的太阳能静电分析仪和磁力计仪器测量的电子焊盘来分析夜间火星环境的磁拓扑。我们使用若干特征垫形状来确定火星磁场线的何处打开或关闭到太阳风和当前焊盘形状如何在地理上和高度变化的频率图。最后,我们初步分析了当地时间的垫形状的变化,发现被困的电子分布变得越来越频繁,因为在火星的夜间夜间从黄昏到黎明旋转。

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