首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Electrostatic Waves and Electron Heating Observed Over Lunar Crustal Magnetic Anomalies
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Electrostatic Waves and Electron Heating Observed Over Lunar Crustal Magnetic Anomalies

机译:静电波和电子加热在月球地壳磁异常

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Above lunar crustal magnetic anomalies, large fractions of solar wind electrons and ions can be scattered and stream back toward the solar wind flow, leading to a number of interesting effects such as electrostatic instabilities and waves. These electrostatic structures can also interact with the background plasma, resulting in electron heating and scattering. We study the electrostatic waves and electron heating observed over the lunar magnetic anomalies by analyzing data from the Acceleration,Reconnection, Turbulence, and Electrodynamics of Moon's Interaction with the Sun (ARTEMIS) spacecraft. Based on the analysis of two lunar flybys in 2011 and 2013, we find that the electron twostream instability (ETSI) and electron cyclotron drift instability (ECDI) may play an important role in driving the electrostatic waves. We also find that ECDI, along with the modified two-stream instability (MTSI), may provide the mechanisms responsible for substantial isotropic electron heating over the lunar magnetic anomalies.
机译:上面的月球地壳磁异常,大分数的太阳风电子和离子分散和流回太阳风流,导致许多有趣的效果如静电不稳定性和波。这些静电结构还可以互动与背景等离子体,导致电子加热和散射。静电波和电子加热在月球磁异常进行分析从加速度数据,重新连接,月球的动荡和电动力学交互与太阳(阿耳特弥斯)宇宙飞船。通过分析两个农历2011年飞越到2013年,我们发现电子twostream不稳定(ETSI)和电子回旋漂移不稳定(ECDI)可能发挥重要作用驱动静电波。二束ECDI,以及修改不稳定(MTSI),可以提供的机制负责大量的各向同性电子加热在月球磁异常。

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